Tumour conditioned macrophages up regulate endothelial derived fibronectin to facilitate lung metastasis in breast cancer

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Tumour conditioned macrophages up regulate endothelial derived fibronectin to facilitate lung metastasis in breast cancer

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TUMOUR-CONDITIONED MACROPHAGES UP-REGULATE ENDOTHELIAL-DERIVED FIBRONECTIN TO FACILITATE LUNG METASTASIS IN BREAST CANCER LOW PIN YAN (B.Sc (Hons), NUS) THESIS SUBMITTED FOR THE DEGREE OF DOCTOR OF PHILOSOPHY DEPARTMENT OF PHYSIOLOGY YONG LOO LIN SCHOOL OF MEDICINE NATIONAL UNIVERSITY OF SINGAPORE 2015 i ii ACKNOWLEDGEMENTS First and foremost, I would like to express immense gratitude to my supervisor, Dr Lim Yaw Chyn Without her, this project would not have been possible I am extremely grateful for her continuous supervision and strong support throughout my graduate studies You have imparted valuable scientific research knowledge which is very helpful to my future career Your critical scientific input has contributed to what I have achieved today I sincerely thank you for the countless opportunities that you have given me Other than a supervisor, you have been a great companion both in the lab and outside of the lab I will not forget our delightful conference/travel experience in San Diego Thank you for being a wonderful mentor and a listening ear all these years I would also wish to extend my sincere thanks to Assoc Prof Chong Siew Meng and Assoc Prof Celestial Yap for the invaluable guidance and the critical inputs throughout this project To A/Prof Chong, every discussion with you has been educational and brain teasing I greatly appreciate you for taking time off from your busy schedule to attend my presentation rehearsals and helping me perfect every presentation I also greatly appreciate A/Prof Celestial Yap and her lab members for their help throughout my graduate studies Thank you for the reagents and experimental tools that you have generously shared with me To my thesis advisory committee (TAC) members Prof Peter Lobie and Dr Seet Ju Ee, thank you for the assistance and advice during the last two years of my studies To my fellow lab mates, Joe Thuan, Chi Kuen, Chee Wai, Kim Yee and Huey Jin, thank you for making my lab experience so memorable and enjoyable I truly enjoy working with them and they have made this journey a lot easier Outside of lab, you guys have been such dear friends I treasure our friendship and thank you for helping me survive all the stress i To my boyfriend, Stephen, thank you for being so understanding, supportive and caring during the last year of my study Thanks for sharing my joy, sorrow and hardship Thank you for being there and looking out for me all these while Last but not least, I would like to express deep gratitude to my family: my parents and my brother, for their support and patience throughout this entire period Thank you for taking care of me and allowing me to fully focus on my research ii Contents ACKNOWLEDGEMENTS i SUMMARY .vii LIST OF TABLES x LIST OF FIGURES xi LIST OF ABBREVIATIONS xiv CHAPTER 1: GENERAL INTRODUCTION 1.1 Metastasis 1.1.1 Organ specific metastasis 1.2 Tumour adhesive interactions with endothelium 1.2.1 E-selectins and Immunoglobulin superfamily 1.2.2 Integrins 1.2.3 E-selectins and Immunoglobulin superfamily in cancer 1.2.4 Integrins in cancer 10 1.3 Extravasation of tumour cells 11 1.3.1 Endothelium disruption by tumour cells 12 1.3.2 Matrix metalloproteinases 14 1.3.3 Matrix metalloproteinases in cancer 16 1.4 Tumour microenvironment 17 1.4.1 Inflammation and cancer 18 1.4.2 Tumour Necrosis Factor-alpha (TNF-α) and its role in cancer 21 1.4.3 Interleukin-6 (IL-6) and its role in cancer 24 1.4.4 Pre-metastatic niche 28 1.4.5 Fibronectin and its role in cancer 33 1.5 Signalling pathways in cancer 36 1.5.1 JNK/cJUN signalling and its role in cancer 37 1.5.2 STAT3 signalling and its role in cancer 39 1.6 Breast cancer 42 1.6.1 Tumour microenvironment and breast cancer progression 43 1.7 Aims and objectives 45 CHAPTER 2: MATERIALS AND METHODS 49 2.1 Breast Cells Culture 49 iii 2.1.1 Preparation of tumour-conditioned media 49 2.2 Endothelial Cells Culture 50 2.2.1 Preparation of gelatin coated dishes 50 2.2.2 Isolation of Human Umbilical Cord Vein Endothelial cells 50 2.2.3 Isolation of Saphenous Vein Endothelial Cells (SVEC) 52 2.2.4 Isolation of Fetal Lung Endothelial Cells (FLEC) and Adult Lung Endothelial Cells (ALEC) 53 2.3 Monocytes, Macrophages, Dendritic Cells and Tumour-conditioned Macrophages culture 55 2.3.1 Monocytes isolation 55 2.3.2 Macrophages and Tumour- conditioned Macrophages differentiation 56 2.3.3 Dendritic cells differentiation 57 2.4 Flow cytometry 58 2.4.1 Cell surface markers and adhesion molecules expression 59 2.4.2 MCSF-mϕ, MDA-mϕ, M1-mϕ, M2-mϕ and DC characterisation 62 2.5 Tumour cell-endothelial cell interaction study 65 2.5.1 Tumour cell binding assay 65 2.5.2 Trans-endothelial migration assay 67 2.6 Immunofluorescence staining 70 2.6.1 Tumour endothelial interactions 70 2.6.2 Fibronectin staining 73 2.7 Western blot 74 2.8 Enzyme-linked immunosorbent assay (ELISA) 76 2.9 PCR array 77 2.10 SiRNA Transfection 78 2.11 Statistical analysis 80 CHAPTER 3: Interactions of breast cancer cells with endothelial cells from metastatic sites and non-metastatic sites 81 3.1 Introduction 81 3.2 Results 84 3.2.1 Endothelial cells from various organ sites were able to support the adhesion of breast cells 84 3.2.2 Invasive MDA-MB-231 most readily transmigrated across lung endothelial monolayer 87 iv 3.2.3 FLEC is most susceptible to invasion by invasive breast tumour cells, MDA-MB-231 92 3.2.4 Matrix metalloproteinases (MMPs) 2, MMP3 and MMP8 are involved in facilitating trans-endothelial migration of MDA-MB-231 99 3.3 Discussion 105 CHAPTER 4: Primary tumour-derived factors could transform microenvironment of distant organs into potential sites of metastasis 114 4.1 Introduction 114 4.2 Results 118 4.2.1 Enhancement of tumour interactions by TNF-α is specific to the lung endothelial cells 118 4.2.2 Tumour secreted factors in MDA-MB-231 conditioned medium did not enhance tumour-endothelial interactions 122 4.2.3 Tumour-conditioned macrophages play a key role in enhancing tumour cell interactions specifically to lung endothelium 125 4.2.4 TNF-α and MDA-mϕ CM stimulation of FLEC up-regulated expression of MMP2, MMP3, collagen, fibronectin, veriscan, TGFBI and integrins α2, 135 4.2.5 Integrins α5β1, α6β1 and α6β4 on tumour cells are involved in the adhesion of MDA-MB-231 and MCF-7 to TNF-α- and MDA-mϕ CMstimulated FLEC 138 4.2.6 Breast tumour-lung endothelium adhesion is mediated by the binding of α5β1 integrin on breast tumour cells to fibronectin on the lung endothelium 147 4.3 Discussion 156 CHAPTER 5: MDA-mϕ derived IL6 up-regulates endothelial fibronectin expression via activation of the STAT3 signalling pathway 167 5.1 Introduction 167 5.2 Results 171 5.2.1 MDA-mϕ CM stimulation activates the JNK/cJUN and STAT3 signalling pathways in FLEC 171 5.2.2 JNK/cJUN and STAT3 signalling pathways are involved in regulating FLEC fibronectin surface expression 174 5.2.3 MDA-mϕ secretes higher concentration of IL-6 compared to MCSF-mϕ 191 5.2.4 MDA-mϕ-derived IL-6 plays a role in the up-regulation of endothelial surface fibronectin and tumour adhesion 195 v 5.3 Discussion 203 5.3.1 MDA-mϕ CM activates JNK/cJUN and STAT3 signalling pathways in lung endothelium 203 5.3.2 JNK/cJUN and STAT3 pathways regulate fibronectin expression on MDA-mϕ CM stimulated lung endothelium 205 5.3.3 MDA-mϕ-derived IL-6 is the stimulating factor that up-regulates fibronectin expression in lung endothelium 207 CHAPTER 6: GENERAL DISCUSSION 212 6.1 Activated endothelium is the gateway to successful colonisation of the distant target organ 213 6.2 Tumour-conditioned macrophages promote pre-metastatic niche formation 217 6.3 Conclusion 220 6.4 Future work 223 REFERENCES 227 APPENDIX I 261 vi SUMMARY Organ-specific metastasis is dependent on both the intrinsic properties of the tumour cells and the receptiveness of the host organ Primary tumour cellderived factors can modulate distant microenvironment to become more receptive to colonisation by circulating tumour cells Such sites are known as the pre-metastatic niche The endothelium is a physical barrier that the disseminated tumour cells encounter during extravasation into the secondary site However, it is not known whether tumour secreted factors could alter endothelial function during pre-metastatic niche formation to augment tumourendothelial interactions The aim of this study is to develop a robust co-culture model using breast tumour cells, endothelial cells derived from lung (FLEC), and in-vitro differentiated macrophages to systematically examine the cell-cell interactions between these three cell types Data from this study will help elucidate the mechanisms underlying the homing and extravasation of breast cancer cells to the lung Using breast tumour cells (MDA-MB-231 and MCF-7) and endothelial cells isolated from various organs, tumour-endothelial interactions including stable binding and trans-endothelial migration were examined in-vitro In order to simulate the systemic effect of tumour-secreted factors on extravasation, the different types of endothelium were subjected to stimulation with various factors (TNF-α, conditioned media from MDA-MB-231 (MDA-MB-231 CM) and from tumour-conditioned macrophages (MDA-mϕ CM)) prior to use in the tumour-endothelial interaction assays The adhesion molecules involved in these interactions and the signalling pathways that regulate the endothelial responses were also studied vii My data revealed that FLEC was more susceptible to invasion by breast cancer cells, MDA-MB-231, compared to endothelium isolated from the umbilical cord vein and saphenous vein, which represent the vasculature at nonmetastatic sites In addition, FLEC-derived MMP2 and a yet unidentified MMP(s) secreted by MDA-MB-231 acted in concert to disrupt FLEC monolayer integrity This resulted in the formation of “gaps” in the FLEC monolayer, thus allowing the tumour cells to transmigrate across endothelial monolayer more readily FLEC subjected to stimulation with TNF-α and MDA-mϕ CM exhibited significantly more interactions with MDA-MB-231 and MCF-7 cells than untreated FLEC or FLEC treated with MDA-MB-231 CM Such enhanced interactions were not observed with endothelium from non-metastatic sites under similar conditions The observed tumour cell-FLEC interactions were mediated by the binding of tumour-α5β1 integrin to fibronectin expressed on the MDA-mϕ-primed FLEC surface The enhanced expression of fibronectin on MDA-mϕ primed FLEC was regulated by the activation of the JNK/cJUN and STAT3 signalling pathways My data also identified MDA-mϕ-derived interleukin (IL-6) as the dominant mediator that primed FLEC in this model system Data from this study suggest that factors secreted by breast cancer cells can transform resident macrophages in target organs to become M2-like with protumour properties; and these conditioned-macrophages in turn prime the organ microenvironment Macrophage-derived IL-6 enhances fibronectin expression in the endothelial cells via the activation of JNK and STAT3 pathways The activation of the endothelium ensuing surface fibronectin up-regulation in pre- viii 348 349 350 351 352 353 354 355 356 357 358 359 360 361 362 363 364 Soule, H D et al Isolation and characterization of a spontaneously immortalized human breast epithelial cell line, MCF-10 Cancer Res 50, 6075-86 (1990) Belloni, P N & Tressler, R J Microvascular endothelial cell heterogeneity: interactions with leukocytes and tumor cells Cancer Metastasis Rev 8, 353-89 (1990) Elble, R C et al Cloning and characterization of lung-endothelial cell adhesion molecule-1 suggest it is an endothelial chloride channel J Biol Chem 272, 27853-61 (1997) Eppihimer, M J., Wolitzky, B., Anderson, D C., Labow, M A & Granger, D N Heterogeneity of expression of E- and P-selectins in vivo Circ Res 79, 560-9 (1996) Aird, W C Phenotypic heterogeneity of the endothelium: I Structure, function, and mechanisms Circ Res 100, 158-73 (2007) Bhujwalla, Z M., Artemov, D., Natarajan, K., Ackerstaff, E & Solaiyappan, M Vascular differences detected by MRI for metastatic versus nonmetastatic breast and prostate cancer xenografts Neoplasia 3, 143-53 (2001) Ackerstaff, E., Artemov, D., Gillies, R., Bhujwalla,Z Evaluation of Breast Cancer Cell Invasion with the 'Metabolic Boyden Chamber' Proc Intl Soc Mag Reson Med 9, 2215 (2001) Kalluri, R & Weinberg, R A The basics of epithelial-mesenchymal transition J Clin Invest 119, 1420-8 (2009) Vuoriluoto, K et al Vimentin regulates EMT induction by Slug and oncogenic H-Ras and migration by governing Axl expression in breast cancer Oncogene 30, 1436-48 (2011) McInroy, L & Maatta, A Down-regulation of vimentin expression inhibits carcinoma cell migration and adhesion Biochem Biophys Res Commun 360, 109-14 (2007) Sarrio, D et al Epithelial-mesenchymal transition in breast cancer relates to the basal-like phenotype Cancer Res 68, 989-97 (2008) Li, Y H & Zhu, C A modified Boyden chamber assay for tumor cell transendothelial migration in vitro Clin Exp Metastasis 17, 423-9 (1999) Corada, M et al Vascular endothelial-cadherin is an important determinant of microvascular integrity in vivo Proc Natl Acad Sci U S A 96, 9815-20 (1999) Dejana, E., Orsenigo, F & Lampugnani, M G The role of adherens junctions and VE-cadherin in the control of vascular permeability J Cell Sci 121, 2115-22 (2008) Weis, S., Cui, J., Barnes, L & Cheresh, D Endothelial barrier disruption by VEGF-mediated Src activity potentiates tumor cell extravasation and metastasis J Cell Biol 167, 223-9 (2004) Criscuoli, M L., Nguyen, M & Eliceiri, B P Tumor metastasis but not tumor growth is dependent on Src-mediated vascular permeability Blood 105, 1508-14 (2005) Juncker-Jensen, A et al Tumor MMP-1 activates endothelial PAR1 to facilitate vascular intravasation and metastatic dissemination Cancer Res 73, 4196-211 (2013) 247 365 366 367 368 369 370 371 372 373 374 375 376 377 378 379 380 Hegedus, L., Cho, H., Xie, X & Eliceiri, G L Additional MDA-MB231 breast cancer cell matrix metalloproteinases promote invasiveness J Cell Physiol 216, 480-5 (2008) Vizoso, F J et al Study of matrix metalloproteinases and their inhibitors in breast cancer Br J Cancer 96, 903-11 (2007) Duffy, M J., Maguire, T M., Hill, A., McDermott, E & O'Higgins, N Metalloproteinases: role in breast carcinogenesis, invasion and metastasis Breast Cancer Res 2, 252-7 (2000) Nielsen, B S et al Collagenase-3 expression in breast myofibroblasts as a molecular marker of transition of ductal carcinoma in situ lesions to invasive ductal carcinomas Cancer Res 61, 7091-100 (2001) McGowan, P M & Duffy, M J Matrix metalloproteinase expression and outcome in patients with breast cancer: analysis of a published database Ann Oncol 19, 1566-72 (2008) Yuan, S Y Signal transduction pathways in enhanced microvascular permeability Microcirculation 7, 395-403 (2000) Puyraimond, A., Fridman, R., Lemesle, M., Arbeille, B & Menashi, S MMP-2 colocalizes with caveolae on the surface of endothelial cells Exp Cell Res 262, 28-36 (2001) Taraboletti, G et al Shedding of the matrix metalloproteinases MMP2, MMP-9, and MT1-MMP as membrane vesicle-associated components by endothelial cells Am J Pathol 160, 673-80 (2002) Szlosarek, P., Charles, K A & Balkwill, F R Tumour necrosis factoralpha as a tumour promoter Eur J Cancer 42, 745-50 (2006) Bebok, Z., Markus, B & Nemeth, P Prognostic relevance of transforming growth factor alpha (TGF-alpha) and tumor necrosis factor alpha (TNF-alpha) detected in breast cancer tissues by immunohistochemistry Breast Cancer Res Treat 29, 229-35 (1994) Berberoglu, U., Yildirim, E & Celen, O Serum levels of tumor necrosis factor alpha correlate with response to neoadjuvant chemotherapy in locally advanced breast cancer Int J Biol Markers 19, 130-4 (2004) Bozcuk, H et al Tumour necrosis factor-alpha, interleukin-6, and fasting serum insulin correlate with clinical outcome in metastatic breast cancer patients treated with chemotherapy Cytokine 27, 58-65 (2004) Mantovani, A., Sozzani, S., Locati, M., Allavena, P & Sica, A Macrophage polarization: tumor-associated macrophages as a paradigm for polarized M2 mononuclear phagocytes Trends Immunol 23, 549-55 (2002) Mantovani, A., Bottazzi, B., Colotta, F., Sozzani, S & Ruco, L The origin and function of tumor-associated macrophages Immunol Today 13, 265-70 (1992) Aerts-Toegaert, C et al CD83 expression on dendritic cells and T cells: correlation with effective immune responses Eur J Immunol 37, 68695 (2007) Herrera, M et al Cancer-associated fibroblast and M2 macrophage markers together predict outcome in colorectal cancer patients Cancer Sci 104, 437-44 (2013) 248 381 382 383 384 385 386 387 388 389 390 391 392 393 394 395 396 397 398 Edin, S et al The distribution of macrophages with a M1 or M2 phenotype in relation to prognosis and the molecular characteristics of colorectal cancer PLoS One 7, e47045 (2012) Heusinkveld, M et al M2 macrophages induced by prostaglandin E2 and IL-6 from cervical carcinoma are switched to activated M1 macrophages by CD4+ Th1 cells J Immunol 187, 1157-65 (2011) Hasita, H et al Significance of alternatively activated macrophages in patients with intrahepatic cholangiocarcinoma Cancer Sci 101, 1913-9 (2010) Bevilacqua, M P Endothelial-leukocyte adhesion molecules Annu Rev Immunol 11, 767-804 (1993) Munro, J M Endothelial-leukocyte adhesive interactions in inflammatory diseases Eur Heart J 14 Suppl K, 72-7 (1993) Abdel-Ghany, M., Cheng, H C., Elble, R C & Pauli, B U The breast cancer beta integrin and endothelial human CLCA2 mediate lung metastasis J Biol Chem 276, 25438-46 (2001) Chen, L B., Summerhayes, I., Hsieh, P & Gallimore, P H Possible role of fibronectin in malignancy J Supramol Struct 12, 139-50 (1979) Labat-Robert, J Fibronectin in malignancy Semin Cancer Biol 12, 187-95 (2002) Ruoslahti, E Fibronectin and its alpha beta integrin receptor in malignancy Invasion Metastasis 14, 87-97 (1994) Halper, J & Kjaer, M Basic components of connective tissues and extracellular matrix: elastin, fibrillin, fibulins, fibrinogen, fibronectin, laminin, tenascins and thrombospondins Adv Exp Med Biol 802, 31-47 (2014) Quail, D F & Joyce, J A Microenvironmental regulation of tumor progression and metastasis Nat Med 19, 1423-37 (2013) Mantovani, A Cancer: inflammation by remote control Nature 435, 752-3 (2005) Aggarwal, B B., Shishodia, S., Sandur, S K., Pandey, M K & Sethi, G Inflammation and cancer: how hot is the link? Biochem Pharmacol 72, 1605-21 (2006) Montesano, R., Soulie, P., Eble, J A & Carrozzino, F Tumour necrosis factor alpha confers an invasive, transformed phenotype on mammary epithelial cells J Cell Sci 118, 3487-500 (2005) Kalthoff, H., Roeder, C., Gieseking, J., Humburg, I & Schmiegel, W Inverse regulation of human ERBB2 and epidermal growth factor receptors by tumor necrosis factor alpha Proc Natl Acad Sci U S A 90, 8972-6 (1993) Schmiegel, W., Roeder, C., Schmielau, J., Rodeck, U & Kalthoff, H Tumor necrosis factor alpha induces the expression of transforming growth factor alpha and the epidermal growth factor receptor in human pancreatic cancer cells Proc Natl Acad Sci U S A 90, 863-7 (1993) Naylor, M S., Stamp, G W., Foulkes, W D., Eccles, D & Balkwill, F R Tumor necrosis factor and its receptors in human ovarian cancer Potential role in disease progression J Clin Invest 91, 2194-206 (1993) Takeyama, H et al Tumor necrosis factor expression by human ovarian carcinoma in vivo Cancer Res 51, 4476-80 (1991) 249 399 400 401 402 403 404 405 406 407 408 409 410 411 412 413 414 Szlosarek, P W et al Expression and regulation of tumor necrosis factor alpha in normal and malignant ovarian epithelium Mol Cancer Ther 5, 382-90 (2006) Gout, S., Morin, C., Houle, F & Huot, J Death receptor-3, a new ESelectin counter-receptor that confers migration and survival advantages to colon carcinoma cells by triggering p38 and ERK MAPK activation Cancer Res 66, 9117-24 (2006) Liang, M., Zhang, P & Fu, J Up-regulation of LOX-1 expression by TNF-alpha promotes trans-endothelial migration of MDA-MB-231 breast cancer cells Cancer Lett 258, 31-7 (2007) Bochner, B S., Peachell, P T., Brown, K E & Schleimer, R P Adherence of human basophils to cultured umbilical vein endothelial cells J Clin Invest 81, 1355-64 (1988) Mackay, F., Loetscher, H., Stueber, D., Gehr, G & Lesslauer, W Tumor necrosis factor alpha (TNF-alpha)-induced cell adhesion to human endothelial cells is under dominant control of one TNF receptor type, TNF-R55 J Exp Med 177, 1277-86 (1993) Xu, H et al Involvement of up-regulated CXC chemokine ligand 16/scavenger receptor that binds phosphatidylserine and oxidized lipoprotein in endotoxin-induced lethal liver injury via regulation of Tcell recruitment and adhesion Infect Immun 73, 4007-16 (2005) Gamble, J R., Harlan, J M., Klebanoff, S J & Vadas, M A Stimulation of the adherence of neutrophils to umbilical vein endothelium by human recombinant tumor necrosis factor Proc Natl Acad Sci U S A 82, 8667-71 (1985) Peinado, H., Rafii, S & Lyden, D Inflammation joins the "niche" Cancer Cell 14, 347-9 (2008) Solinas, G., Marchesi, F., Garlanda, C., Mantovani, A & Allavena, P Inflammation-mediated promotion of invasion and metastasis Cancer Metastasis Rev 29, 243-8 (2010) Taranova, A G et al Allergic pulmonary inflammation promotes the recruitment of circulating tumor cells to the lung Cancer Res 68, 8582-9 (2008) Ye, X Z., Yu, S C & Bian, X W Contribution of myeloid-derived suppressor cells to tumor-induced immune suppression, angiogenesis, invasion and metastasis J Genet Genomics 37, 423-30 (2010) Han, M et al Primary tumor regulates the pulmonary microenvironment in melanoma carcinoma model and facilitates lung metastasis J Cancer Res Clin Oncol 139, 57-65 (2013) Rafii, S & Lyden, D S100 chemokines mediate bookmarking of premetastatic niches Nat Cell Biol 8, 1321-3 (2006) Lin, E Y et al Macrophages regulate the angiogenic switch in a mouse model of breast cancer Cancer Res 66, 11238-46 (2006) Zeisberger, S M et al Clodronate-liposome-mediated depletion of tumour-associated macrophages: a new and highly effective antiangiogenic therapy approach Br J Cancer 95, 272-81 (2006) Kitamura, T et al SMAD4-deficient intestinal tumors recruit CCR1+ myeloid cells that promote invasion Nat Genet 39, 467-75 (2007) 250 415 416 417 418 419 420 421 422 423 424 425 426 427 428 Robinson, B D & Jones, J G Tumor microenvironment of metastasis (TMEM): a novel tissue-based assay for metastatic risk in breast cancer Future Oncol 5, 919-21 (2009) Wyckoff, J B et al Direct visualization of macrophage-assisted tumor cell intravasation in mammary tumors Cancer Res 67, 2649-56 (2007) Aharinejad, S et al Colony-stimulating factor-1 antisense treatment suppresses growth of human tumor xenografts in mice Cancer Res 62, 5317-24 (2002) Lin, E Y., Gouon-Evans, V., Nguyen, A V & Pollard, J W The macrophage growth factor CSF-1 in mammary gland development and tumor progression J Mammary Gland Biol Neoplasia 7, 147-62 (2002) Mandal, C C., Ghosh-Choudhury, T., Dey, N., Choudhury, G G & Ghosh-Choudhury, N miR-21 is targeted by omega-3 polyunsaturated fatty acid to regulate breast tumor CSF-1 expression Carcinogenesis 33, 1897-908 (2012) Patsialou, A et al Invasion of human breast cancer cells in vivo requires both paracrine and autocrine loops involving the colonystimulating factor-1 receptor Cancer Res 69, 9498-506 (2009) Haraldsen, G., Kvale, D., Lien, B., Farstad, I N & Brandtzaeg, P Cytokine-regulated expression of E-selectin, intercellular adhesion molecule-1 (ICAM-1), and vascular cell adhesion molecule-1 (VCAM1) in human microvascular endothelial cells J Immunol 156, 2558-65 (1996) Sana, T R., Janatpour, M J., Sathe, M., McEvoy, L M & McClanahan, T K Microarray analysis of primary endothelial cells challenged with different inflammatory and immune cytokines Cytokine 29, 256-69 (2005) Subramaniyam, D et al TNF-alpha-induced self expression in human lung endothelial cells is inhibited by native and oxidized alpha1antitrypsin Int J Biochem Cell Biol 40, 258-71 (2008) Jiang, M et al Systemic inflammation promotes lung metastasis via Eselectin upregulation in mouse breast cancer model Cancer Biol Ther 15, 789-96 (2014) Laferriere, J., Houle, F., Taher, M M., Valerie, K & Huot, J Transendothelial migration of colon carcinoma cells requires expression of E-selectin by endothelial cells and activation of stressactivated protein kinase-2 (SAPK2/p38) in the tumor cells J Biol Chem 276, 33762-72 (2001) Kam, J L et al MUC1 synthetic peptide inhibition of intercellular adhesion molecule-1 and MUC1 binding requires six tandem repeats Cancer Res 58, 5577-81 (1998) Regimbald, L H et al The breast mucin MUCI as a novel adhesion ligand for endothelial intercellular adhesion molecule in breast cancer Cancer Res 56, 4244-9 (1996) Taichman, D B et al Tumor cell surface alpha beta integrin mediates adhesion to vascular endothelium: demonstration of an interaction with the N-terminal domains of INCAM-110/VCAM-1 Cell Regul 2, 347-55 (1991) 251 429 430 431 432 433 434 435 436 437 438 439 440 441 442 443 444 Berry, M G., Gui, G P., Wells, C A & Carpenter, R Integrin expression and survival in human breast cancer Eur J Surg Oncol 30, 484-9 (2004) Park, H B et al Activated Src increases adhesion, survival and alpha2-integrin expression in human breast cancer cells Biochem J 378, 559-67 (2004) Mercurio, A M et al Integrin laminin receptors and breast carcinoma progression J Mammary Gland Biol Neoplasia 6, 299-309 (2001) Cress, A E., Rabinovitz, I., Zhu, W & Nagle, R B The alpha beta and alpha beta integrins in human prostate cancer progression Cancer Metastasis Rev 14, 219-28 (1995) Garzino-Demo, P et al Altered expression of alpha integrin subunit in oral squamous cell carcinoma and oral potentially malignant lesions Oral Oncol 34, 204-10 (1998) Ramos, D M et al Expression of integrin beta enhances invasive behavior in oral squamous cell carcinoma Matrix Biol 21, 297-307 (2002) Koochekpour, S., Merzak, A & Pilkington, G J Extracellular matrix proteins inhibit proliferation, upregulate migration and induce morphological changes in human glioma cell lines Eur J Cancer 31A, 375-80 (1995) Donaldson, E A et al The expression of membrane-associated 67kDa laminin receptor (67LR) is modulated in vitro by cell-contact inhibition Mol Cell Biol Res Commun 3, 53-9 (2000) Brar, P K et al Laminin alpha-1, alpha-3, and alpha-5 chain expression in human prepubertal [correction of prepubetal] benign prostate glands and adult benign and malignant prostate glands Prostate 55, 65-70 (2003) Chia, J et al Evidence for a role of tumor-derived laminin-511 in the metastatic progression of breast cancer Am J Pathol 170, 2135-48 (2007) Subbaram, S & Dipersio, C M Integrin alpha3beta1 as a breast cancer target Expert Opin Ther Targets 15, 1197-210 (2011) Cannistra, S A., Ottensmeier, C., Niloff, J., Orta, B & DiCarlo, J Expression and function of beta and alpha v beta integrins in ovarian cancer Gynecol Oncol 58, 216-25 (1995) Stachurska, A., Elbanowski, J & Kowalczynska, H M Role of alpha5beta1 and alphavbeta3 integrins in relation to adhesion and spreading dynamics of prostate cancer cells interacting with fibronectin under in vitro conditions Cell Biol Int 36, 883-92 (2012) Mitchell, K et al Suppression of integrin alpha3beta1 in breast cancer cells reduces cyclooxygenase-2 gene expression and inhibits tumorigenesis, invasion, and cross-talk to endothelial cells Cancer Res 70, 6359-67 (2010) Sun, Y X et al Expression and activation of alpha v beta integrins by SDF-1/CXC12 increases the aggressiveness of prostate cancer cells Prostate 67, 61-73 (2007) Kim, S., Bell, K., Mousa, S A & Varner, J A Regulation of angiogenesis in vivo by ligation of integrin alpha5beta1 with the 252 445 446 447 448 449 450 451 452 453 454 455 456 457 458 459 460 central cell-binding domain of fibronectin Am J Pathol 156, 1345-62 (2000) Kenny, H A., Kaur, S., Coussens, L M & Lengyel, E The initial steps of ovarian cancer cell metastasis are mediated by MMP-2 cleavage of vitronectin and fibronectin J Clin Invest 118, 1367-79 (2008) Waalkes, S et al Fibronectin mRNA expression correlates with advanced disease in renal cancer BMC Cancer 10, 503 (2010) Aoudjit, F & Vuori, K Integrin signaling in cancer cell survival and chemoresistance Chemother Res Pract 2012, 283181 (2012) Lee, M., Park, J J & Lee, Y S Adhesion of ST6Gal I-mediated human colon cancer cells to fibronectin contributes to cell survival by integrin beta1-mediated paxillin and AKT activation Oncol Rep 23, 757-61 (2010) Ruiz-Garcia, E et al Gene expression profiling identifies Fibronectin and CXCL9 as candidate biomarkers for breast cancer screening Br J Cancer 102, 462-8 (2010) Hunt, B J & Jurd, K M Endothelial cell activation A central pathophysiological process BMJ 316, 1328-9 (1998) Pober, J S & Sessa, W C Evolving functions of endothelial cells in inflammation Nat Rev Immunol 7, 803-15 (2007) Munro, J M., Pober, J S & Cotran, R S Tumor necrosis factor and interferon-gamma induce distinct patterns of endothelial activation and associated leukocyte accumulation in skin of Papio anubis Am J Pathol 135, 121-33 (1989) Pober, J S et al Activation of cultured human endothelial cells by recombinant lymphotoxin: comparison with tumor necrosis factor and interleukin species J Immunol 138, 3319-24 (1987) Petrache, I., Birukova, A., Ramirez, S I., Garcia, J G & Verin, A D The role of the microtubules in tumor necrosis factor-alpha-induced endothelial cell permeability Am J Respir Cell Mol Biol 28, 574-81 (2003) Imhof, B A & Aurrand-Lions, M Angiogenesis and inflammation face off Nat Med 12, 171-2 (2006) Zhang, R et al Etk/Bmx transactivates vascular endothelial growth factor and recruits phosphatidylinositol 3-kinase to mediate the tumor necrosis factor-induced angiogenic pathway J Biol Chem 278, 51267-76 (2003) Fiedler, U & Augustin, H G Angiopoietins: a link between angiogenesis and inflammation Trends Immunol 27, 552-8 (2006) Shibuya, M & Claesson-Welsh, L Signal transduction by VEGF receptors in regulation of angiogenesis and lymphangiogenesis Exp Cell Res 312, 549-60 (2006) Hofer, E & Schweighofer, B Signal transduction induced in endothelial cells by growth factor receptors involved in angiogenesis Thromb Haemost 97, 355-63 (2007) Munoz-Chapuli, R., Quesada, A R & Angel Medina, M Angiogenesis and signal transduction in endothelial cells Cell Mol Life Sci 61, 2224-43 (2004) 253 461 462 463 464 465 466 467 468 469 470 471 472 473 474 475 476 477 Lee, T H., Avraham, H K., Jiang, S & Avraham, S Vascular endothelial growth factor modulates the transendothelial migration of MDA-MB-231 breast cancer cells through regulation of brain microvascular endothelial cell permeability J Biol Chem 278, 5277-84 (2003) Xu, M et al Ethanol disrupts vascular endothelial barrier: implication in cancer metastasis Toxicol Sci 127, 42-53 (2012) Huang, R L et al ANGPTL4 modulates vascular junction integrity by integrin signaling and disruption of intercellular VE-cadherin and claudin-5 clusters Blood 118, 3990-4002 (2011) Hao, N B et al Macrophages in tumor microenvironments and the progression of tumors Clin Dev Immunol 2012, 948098 (2012) McAllister, S S & Weinberg, R A Tumor-host interactions: a farreaching relationship J Clin Oncol 28, 4022-8 (2010) Surapisitchat, J et al Fluid shear stress inhibits TNF-alpha activation of JNK but not ERK1/2 or p38 in human umbilical vein endothelial cells: Inhibitory crosstalk among MAPK family members Proc Natl Acad Sci U S A 98, 6476-81 (2001) Li, J M., Fan, L M., Christie, M R & Shah, A M Acute tumor necrosis factor alpha signaling via NADPH oxidase in microvascular endothelial cells: role of p47phox phosphorylation and binding to TRAF4 Mol Cell Biol 25, 2320-30 (2005) Chang, L & Karin, M Mammalian MAP kinase signalling cascades Nature 410, 37-40 (2001) Bennett, B L et al SP600125, an anthrapyrazolone inhibitor of Jun Nterminal kinase Proc Natl Acad Sci U S A 98, 13681-6 (2001) Hibi, M., Lin, A., Smeal, T., Minden, A & Karin, M Identification of an oncoprotein- and UV-responsive protein kinase that binds and potentiates the c-Jun activation domain Genes Dev 7, 2135-48 (1993) Iwamaru, A et al A novel inhibitor of the STAT3 pathway induces apoptosis in malignant glioma cells both in vitro and in vivo Oncogene 26, 2435-44 (2007) Kupferman, M E et al Therapeutic suppression of constitutive and inducible JAK\STAT activation in head and neck squamous cell carcinoma J Exp Ther Oncol 8, 117-27 (2009) Bar, D., Apte, R N., Voronov, E., Dinarello, C A & Cohen, S A continuous delivery system of IL-1 receptor antagonist reduces angiogenesis and inhibits tumor development FASEB J 18, 161-3 (2004) Voronov, E et al IL-1 is required for tumor invasiveness and angiogenesis Proc Natl Acad Sci U S A 100, 2645-50 (2003) Miller, L J et al Interleukin-1 family expression in human breast cancer: interleukin-1 receptor antagonist Cancer Invest 18, 293-302 (2000) Liu, Z G., Hsu, H., Goeddel, D V & Karin, M Dissection of TNF receptor effector functions: JNK activation is not linked to apoptosis while NF-kappaB activation prevents cell death Cell 87, 565-76 (1996) Puls, A et al Activation of the small GTPase Cdc42 by the inflammatory cytokines TNF(alpha) and IL-1, and by the Epstein-Barr 254 478 479 480 481 482 483 484 485 486 487 488 489 490 491 492 virus transforming protein LMP1 J Cell Sci 112 ( Pt 17), 2983-92 (1999) Zhou, J et al Enhanced activation of STAT pathways and overexpression of survivin confer resistance to FLT3 inhibitors and could be therapeutic targets in AML Blood 113, 4052-62 (2009) Yu, C L., Jove, R & Burakoff, S J Constitutive activation of the Janus kinase-STAT pathway in T lymphoma overexpressing the Lck protein tyrosine kinase J Immunol 159, 5206-10 (1997) Lee, H et al STAT3-induced S1PR1 expression is crucial for persistent STAT3 activation in tumors Nat Med 16, 1421-8 (2010) Heim, M H The Jak-STAT pathway: cytokine signalling from the receptor to the nucleus J Recept Signal Transduct Res 19, 75-120 (1999) Guo, Y., Xu, F., Lu, T., Duan, Z & Zhang, Z Interleukin-6 signaling pathway in targeted therapy for cancer Cancer Treat Rev 38, 904-10 (2012) Waldner, M J., Foersch, S & Neurath, M F Interleukin-6 a key regulator of colorectal cancer development Int J Biol Sci 8, 1248-53 (2012) Holmer, R., Goumas, F A., Waetzig, G H., Rose-John, S & Kalthoff, H Interleukin-6: a villain in the drama of pancreatic cancer development and progression Hepatobiliary Pancreat Dis Int 13, 37180 (2014) Queen, M M., Ryan, R E., Holzer, R G., Keller-Peck, C R & Jorcyk, C L Breast cancer cells stimulate neutrophils to produce oncostatin M: potential implications for tumor progression Cancer Res 65, 8896-904 (2005) Fossey, S L., Bear, M D., Kisseberth, W C., Pennell, M & London, C A Oncostatin M promotes STAT3 activation, VEGF production, and invasion in osteosarcoma cell lines BMC Cancer 11, 125 (2011) Lapeire, L et al Cancer-associated adipose tissue promotes breast cancer progression by paracrine Oncostatin M and Jak/STAT3 signaling Cancer Res (2014) Weston, C R & Davis, R J The JNK signal transduction pathway Curr Opin Genet Dev 12, 14-21 (2002) Dunn, C., Wiltshire, C., MacLaren, A & Gillespie, D A Molecular mechanism and biological functions of c-Jun N-terminal kinase signalling via the c-Jun transcription factor Cell Signal 14, 585-93 (2002) Uchida, C., Gee, E., Ispanovic, E & Haas, T L JNK as a positive regulator of angiogenic potential in endothelial cells Cell Biol Int 32, 769-76 (2008) Nasrazadani, A & Van Den Berg, C L c-Jun N-terminal Kinase Regulates Multiple Receptor Tyrosine Kinase Pathways in Mouse Mammary Tumor Growth and Metastasis Genes Cancer 2, 31-45 (2011) Yamada, S D et al Mitogen-activated protein kinase kinase (MKK4) acts as a metastasis suppressor gene in human ovarian carcinoma Cancer Res 62, 6717-23 (2002) 255 493 494 495 496 497 498 499 500 501 502 503 504 505 506 507 508 Yoshida, B A et al Mitogen-activated protein kinase kinase 4/stressactivated protein/Erk kinase (MKK4/SEK1), a prostate cancer metastasis suppressor gene encoded by human chromosome 17 Cancer Res 59, 5483-7 (1999) Murray, P J The JAK-STAT signaling pathway: input and output integration J Immunol 178, 2623-9 (2007) Dean, D C et al Forskolin inducibility and tissue-specific expression of the fibronectin promoter Mol Cell Biol 9, 1498-506 (1989) Bowlus, C L., McQuillan, J J & Dean, D C Characterization of three different elements in the 5'-flanking region of the fibronectin gene which mediate a transcriptional response to cAMP J Biol Chem 266, 1122-7 (1991) Moriguchi, Y et al Angiotensin II-induced transactivation of epidermal growth factor receptor regulates fibronectin and transforming growth factor-beta synthesis via transcriptional and posttranscriptional mechanisms Circ Res 84, 1073-84 (1999) Kumazaki, T & Mitsui, Y Alterations in transcription factor-binding activities to fibronectin promoter during aging of vascular endothelial cells Mech Ageing Dev 88, 111-24 (1996) Force, T., Pombo, C M., Avruch, J A., Bonventre, J V & Kyriakis, J M Stress-activated protein kinases in cardiovascular disease Circ Res 78, 947-53 (1996) Gupta, S., Campbell, D., Derijard, B & Davis, R J Transcription factor ATF2 regulation by the JNK signal transduction pathway Science 267, 389-93 (1995) Sekkai, D et al Microarray analysis of LIF/Stat3 transcriptional targets in embryonic stem cells Stem Cells 23, 1634-42 (2005) Azare, J et al Constitutively activated Stat3 induces tumorigenesis and enhances cell motility of prostate epithelial cells through integrin beta Mol Cell Biol 27, 4444-53 (2007) Zhang, F., Li, C., Halfter, H & Liu, J Delineating an oncostatin Mactivated STAT3 signaling pathway that coordinates the expression of genes involved in cell cycle regulation and extracellular matrix deposition of MCF-7 cells Oncogene 22, 894-905 (2003) Kim, S et al Induction of fibronectin in response to epidermal growth factor is suppressed by silibinin through the inhibition of STAT3 in triple negative breast cancer cells Oncol Rep 32, 2230-6 (2014) Balanis, N et al Epithelial to mesenchymal transition promotes breast cancer progression via a fibronectin-dependent STAT3 signaling pathway J Biol Chem 288, 17954-67 (2013) Wang, X., Shaw, S., Amiri, F., Eaton, D C & Marrero, M B Inhibition of the Jak/STAT signaling pathway prevents the high glucose-induced increase in tgf-beta and fibronectin synthesis in mesangial cells Diabetes 51, 3505-9 (2002) Uchiyama-Tanaka, Y et al Angiotensin II signaling and HB-EGF shedding via metalloproteinase in glomerular mesangial cells Kidney Int 60, 2153-63 (2001) Kucich, U et al TGF-beta1 stimulation of fibronectin transcription in cultured human lung fibroblasts requires active geranylgeranyl transferase I, phosphatidylcholine-specific phospholipase C, protein 256 509 510 511 512 513 514 515 516 517 518 519 520 521 522 523 524 525 kinase C-delta, and p38, but not erk1/erk2 Arch Biochem Biophys 374, 313-24 (2000) Lee, B H et al Stimulation of fibronectin synthesis through the protein kinase C signalling pathway in normal and transformed human lung fibroblasts Biochem Mol Biol Int 39, 895-904 (1996) Mimura, Y et al Epidermal growth factor induces fibronectin expression in human dermal fibroblasts via protein kinase C delta signaling pathway J Invest Dermatol 122, 1390-8 (2004) Lee, B H et al Transcriptional regulation of fibronectin gene by phorbol myristate acetate in hepatoma cells: a negative role for NFkappaB J Cell Biochem 76, 437-51 (2000) Lee, B H., Park, S Y., Kang, K B., Park, R W & Kim, I S NFkappaB activates fibronectin gene expression in rat hepatocytes Biochem Biophys Res Commun 297, 1218-24 (2002) Gradl, D., Kuhl, M & Wedlich, D The Wnt/Wg signal transducer beta-catenin controls fibronectin expression Mol Cell Biol 19, 5576-87 (1999) Dean, D C Expression of the fibronectin gene Am J Respir Cell Mol Biol 1, 5-10 (1989) Vibe-Pedersen, K., Kornblihtt, A R & Baralle, F E Expression of a human alpha-globin/fibronectin gene hybrid generates two mRNAs by alternative splicing EMBO J 3, 2511-6 (1984) Sandell, L J & Boyd, C D in Extracellular Matrix Genes 195-219 (Academic Press, San Diego, 1990) Solinas, G., Germano, G., Mantovani, A & Allavena, P Tumorassociated macrophages (TAM) as major players of the cancer-related inflammation J Leukoc Biol 86, 1065-73 (2009) Ong, S M et al Macrophages in human colorectal cancer are proinflammatory and prime T cells towards an anti-tumour type-1 inflammatory response Eur J Immunol 42, 89-100 (2012) Mytar, B et al Tumor cell-induced deactivation of human monocytes J Leukoc Biol 74, 1094-101 (2003) Imada, K & Leonard, W J The Jak-STAT pathway Mol Immunol 37, 1-11 (2000) Liu, J et al Oncostatin M-specific receptor expression and function in regulating cell proliferation of normal and malignant mammary epithelial cells Cytokine 10, 295-302 (1998) Zarling, J M et al Oncostatin M: a growth regulator produced by differentiated histiocytic lymphoma cells Proc Natl Acad Sci U S A 83, 9739-43 (1986) Holzer, R G., Ryan, R E., Tommack, M., Schlekeway, E & Jorcyk, C L Oncostatin M stimulates the detachment of a reservoir of invasive mammary carcinoma cells: role of cyclooxygenase-2 Clin Exp Metastasis 21, 167-76 (2004) Repovic, P., Fears, C Y., Gladson, C L & Benveniste, E N Oncostatin-M induction of vascular endothelial growth factor expression in astroglioma cells Oncogene 22, 8117-24 (2003) Grenier, A et al Oncostatin M production and regulation by human polymorphonuclear neutrophils Blood 93, 1413-21 (1999) 257 526 527 528 529 530 531 532 533 534 535 536 537 538 539 540 541 Duluc, D et al Tumor-associated leukemia inhibitory factor and IL-6 skew monocyte differentiation into tumor-associated macrophage-like cells Blood 110, 4319-30 (2007) El Kasmi, K C et al General nature of the STAT3-activated antiinflammatory response J Immunol 177, 7880-8 (2006) Qin, Z., Noffz, G., Mohaupt, M & Blankenstein, T Interleukin-10 prevents dendritic cell accumulation and vaccination with granulocytemacrophage colony-stimulating factor gene-modified tumor cells J Immunol 159, 770-6 (1997) Ben-Baruch, A Inflammation-associated immune suppression in cancer: the roles played by cytokines, chemokines and additional mediators Semin Cancer Biol 16, 38-52 (2006) Schutyser, E et al Identification of biologically active chemokine isoforms from ascitic fluid and elevated levels of CCL18/pulmonary and activation-regulated chemokine in ovarian carcinoma J Biol Chem 277, 24584-93 (2002) Yamamoto, T., Eckes, B & Krieg, T Effect of interleukin-10 on the gene expression of type I collagen, fibronectin, and decorin in human skin fibroblasts: differential regulation by transforming growth factorbeta and monocyte chemoattractant protein-1 Biochem Biophys Res Commun 281, 200-5 (2001) Grivennikov, S et al IL-6 and Stat3 are required for survival of intestinal epithelial cells and development of colitis-associated cancer Cancer Cell 15, 103-13 (2009) Roca, H et al CCL2 and interleukin-6 promote survival of human CD11b+ peripheral blood mononuclear cells and induce M2-type macrophage polarization J Biol Chem 284, 34342-54 (2009) Bingle, L., Lewis, C E., Corke, K P., Reed, M W & Brown, N J Macrophages promote angiogenesis in human breast tumour spheroids in vivo Br J Cancer 94, 101-7 (2006) Kaminska, B., Wesolowska, A & Danilkiewicz, M TGF beta signalling and its role in tumour pathogenesis Acta Biochim Pol 52, 329-37 (2005) Liu, B et al Involvement of JNK-mediated pathway in EGF-mediated protection against paclitaxel-induced apoptosis in SiHa human cervical cancer cells Br J Cancer 85, 303-11 (2001) Pasqualini, R & Ruoslahti, E Organ targeting in vivo using phage display peptide libraries Nature 380, 364-6 (1996) Uehara, H et al Effects of blocking platelet-derived growth factorreceptor signaling in a mouse model of experimental prostate cancer bone metastases J Natl Cancer Inst 95, 458-70 (2003) Condeelis, J & Pollard, J W Macrophages: obligate partners for tumor cell migration, invasion, and metastasis Cell 124, 263-6 (2006) Talmadge, J E., Donkor, M & Scholar, E Inflammatory cell infiltration of tumors: Jekyll or Hyde Cancer Metastasis Rev 26, 373400 (2007) Pauli, B U & Lee, C L Organ preference of metastasis The role of organ-specifically modulated endothelial cells Lab Invest 58, 379-87 (1988) 258 542 543 544 545 546 547 548 549 550 551 552 553 554 555 556 557 Zhu, D Z., Cheng, C F & Pauli, B U Mediation of lung metastasis of murine melanomas by a lung-specific endothelial cell adhesion molecule Proc Natl Acad Sci U S A 88, 9568-72 (1991) Biancone, L., Araki, M., Araki, K., Vassalli, P & Stamenkovic, I Redirection of tumor metastasis by expression of E-selectin in vivo J Exp Med 183, 581-7 (1996) Schwarzbauer, J E Fibronectin: from gene to protein Curr Opin Cell Biol 3, 786-91 (1991) Peacock, S J., Foster, T J., Cameron, B J & Berendt, A R Bacterial fibronectin-binding proteins and endothelial cell surface fibronectin mediate adherence of Staphylococcus aureus to resting human endothelial cells Microbiology 145 ( Pt 12), 3477-86 (1999) Vann, J M., Hamill, R J., Albrecht, R M., Mosher, D F & Proctor, R A Immunoelectron microscopic localization of fibronectin in adherence of Staphylococcus aureus to cultured bovine endothelial cells J Infect Dis 160, 538-42 (1989) Kowalczyk, A P., Tulloh, R H & McKeown-Longo, P J Polarized fibronectin secretion and localized matrix assembly sites correlate with subendothelial matrix formation Blood 75, 2335-42 (1990) Roberts, W G & Palade, G E Increased microvascular permeability and endothelial fenestration induced by vascular endothelial growth factor J Cell Sci 108 ( Pt 6), 2369-79 (1995) Li, G et al Dual functional monoclonal antibody PF-04605412 targets integrin alpha5beta1 and elicits potent antibody-dependent cellular cytotoxicity Cancer Res 70, 10243-54 (2010) Schaffner, F., Ray, A M & Dontenwill, M Integrin alpha5beta1, the Fibronectin Receptor, as a Pertinent Therapeutic Target in Solid Tumors Cancers (Basel) 5, 27-47 (2013) Mateo, J et al A first-in-human study of the anti-alpha5beta1 integrin monoclonal antibody PF-04605412 administered intravenously to patients with advanced solid tumors Cancer Chemother Pharmacol (2014) Mould, A P et al Defining the topology of integrin alpha5beta1fibronectin interactions using inhibitory anti-alpha5 and anti-beta1 monoclonal antibodies Evidence that the synergy sequence of fibronectin is recognized by the amino-terminal repeats of the alpha5 subunit J Biol Chem 272, 17283-92 (1997) Heremans, A., De Cock, B., Cassiman, J J., Van den Berghe, H & David, G The core protein of the matrix-associated heparan sulfate proteoglycan binds to fibronectin J Biol Chem 265, 8716-24 (1990) Bernfield, M et al Functions of cell surface heparan sulfate proteoglycans Annu Rev Biochem 68, 729-77 (1999) Tumova, S., Woods, A & Couchman, J R Heparan sulfate proteoglycans on the cell surface: versatile coordinators of cellular functions Int J Biochem Cell Biol 32, 269-88 (2000) Hiratsuka, S et al MMP9 induction by vascular endothelial growth factor receptor-1 is involved in lung-specific metastasis Cancer Cell 2, 289-300 (2002) Sun, X et al IL-6 secreted by cancer-associated fibroblasts induces tamoxifen resistance in luminal breast cancer Oncogene (2014) 259 558 559 560 561 562 563 564 565 566 567 568 569 Xie, G et al IL-6-induced epithelial-mesenchymal transition promotes the generation of breast cancer stem-like cells analogous to mammosphere cultures Int J Oncol 40, 1171-9 (2012) Dethlefsen, C., Hojfeldt, G & Hojman, P The role of intratumoral and systemic IL-6 in breast cancer Breast Cancer Res Treat 138, 657-64 (2013) Hussein, M Z., Al Fikky, A., Abdel Bar, I & Attia, O Serum IL-6 and IL-12 levels in breast cancer patients Egypt J Immunol 11, 165-70 (2004) Knupfer, H & Preiss, R Significance of interleukin-6 (IL-6) in breast cancer (review) Breast Cancer Res Treat 102, 129-35 (2007) Kozlowski, L., Zakrzewska, I., Tokajuk, P & Wojtukiewicz, M Z Concentration of interleukin-6 (IL-6), interleukin-8 (IL-8) and interleukin-10 (IL-10) in blood serum of breast cancer patients Rocz Akad Med Bialymst 48, 82-4 (2003) Miner, J H & Yurchenco, P D Laminin functions in tissue morphogenesis Annu Rev Cell Dev Biol 20, 255-84 (2004) Aumailley, M et al A simplified laminin nomenclature Matrix Biol 24, 326-32 (2005) Nishiuchi, R et al Ligand-binding specificities of laminin-binding integrins: a comprehensive survey of laminin-integrin interactions using recombinant alpha3beta1, alpha6beta1, alpha7beta1 and alpha6beta4 integrins Matrix Biol 25, 189-97 (2006) Aumailley, M & Smyth, N The role of laminins in basement membrane function J Anat 193 ( Pt 1), 1-21 (1998) Giannelli, G., Fransvea, E., Bergamini, C., Marinosci, F & Antonaci, S Laminin-5 chains are expressed differentially in metastatic and nonmetastatic hepatocellular carcinoma Clin Cancer Res 9, 3684-91 (2003) Giannelli, G., Bergamini, C., Fransvea, E., Sgarra, C & Antonaci, S Laminin-5 with transforming growth factor-beta1 induces epithelial to mesenchymal transition in hepatocellular carcinoma Gastroenterology 129, 1375-83 (2005) Katayama, M., Funakoshi, A., Sumii, T., Sanzen, N & Sekiguchi, K Laminin gamma2-chain fragment circulating level increases in patients with metastatic pancreatic ductal cell adenocarcinomas Cancer Lett 225, 167-76 (2005) 260 APPENDIX I Poster Presentation P Y LOW, C YAP, Y C LIM, “Redistribution of endothelial junction protein PECAM-1 and MMP activity are important for transmigration of breast tumour cells across lung endothelial monolayer in-vitro” (Second AACR International Conference on Frontiers in Basic Cancer Research, Sep 14 - 18 2011, InterContinental San Francisco, San Francisco, United States) P Y LOW, Y C LIM, “Upregulation of fibronectin expression on endothelial cells by tumour-conditioned macrophages facilitates lung metastasis in breast cancer” (Cellular Heterogeneity in the Tumour Microenvironment, AACR Special Conference, Feb 26 –March 2014, Westin Gaslamp Quarter, San Diego, CA, United States) Oral Presentation Y C LIM, P Y LOW, “Breast cancer cells modulate the tissue microenvironment of distant sites to facilitate metastasis” (CSH Asia/ International Cancer Microenvironment Society ICMS Joint Conference on Tumour Microenvironment, Nov 13-17 2012, Suzhou, China) Y C LIM, P Y LOW, "The Role and Contribution of the Endothelium to Formation of the Premetastatic Niche and to Organ Specific Metastasis" (BIT’s 6th Annual World Congress of Cancer, May 23-25 2013, Xi’an, China) 261 ... subunits of β1 integrin family that contain the αA-domain Laminin is also found to bind to non-αA-domain containing integrins such as integrins α3β1, α6β1, α7β1 and α6β4 37,44-46 Integrins also function... adhesion of tumour cells during the process of metastasis 61 Integrin αLβ2 and mucin (MUC1) can bind to ICAM-1 to mediate breast cancer cells adhesion 62,63 Similarly, integrin α4β1 interacts... within 1-2 weeks after the injection of tumour secreted factors 230,235 These tumour- derived factors comprise pro-angiogenic factors, hypoxiadependent factors, inflammatory cytokines, chemokines,

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