Literature DB >> 18281485

Profound but dysfunctional lymphangiogenesis via vascular endothelial growth factor ligands from CD11b+ macrophages in advanced ovarian cancer.

Bong-Hyun Jeon1, Cholsoon Jang, Jinah Han, Raghu P Kataru, Lianhua Piao, Keehoon Jung, Hye Ji Cha, Reto A Schwendener, Kyu Yun Jang, Kwan-Sik Kim, Kari Alitalo, Gou Young Koh.   

Abstract

Severe ascites is a hallmark of advanced ovarian cancer (OVCA), yet the underlying mechanism that creates an imbalance between peritoneal vascular leakage and lymphatic drainage is unknown. Here, we identified and characterized peritoneal lymphatic vessels in OVCA mice, a model generated by implantation of human OVCA cells into athymic nude mice. The OVCA mice displayed substantial lymphangiogenesis and lymphatic remodeling, massive infiltration of CD11b(+)/LYVE-1(+) macrophages and disseminated carcinomatosis in the mesentery and diaphragm, and progressive chylous ascites formation. Functional assays indicated that the abnormally abundant lymphatic vessels in the diaphragm were not conductive in peritoneal fluid drainage. Moreover, lipid absorbed from the gut leaked out from the aberrant mesenteric lymphatic vessels. Our results indicate that vascular endothelial growth factor (VEGF)-C, VEGF-D, and VEGF-A from CD11b(+) macrophages are responsible for producing OVCA-induced dysfunctional lymphangiogenesis, although other cell types contribute to the increased ascites formation. Accordingly, the combined blockade of VEGF-C/D and VEGF-A signaling with soluble VEGF receptor-3 and VEGF-Trap, respectively, markedly inhibited chylous ascites formation. These findings provide additional therapeutic targets to ameliorate chylous ascites formation in patients with advanced OVCA.

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Year:  2008        PMID: 18281485     DOI: 10.1158/0008-5472.CAN-07-2572

Source DB:  PubMed          Journal:  Cancer Res        ISSN: 0008-5472            Impact factor:   12.701


  57 in total

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4.  Macrophages define dermal lymphatic vessel calibre during development by regulating lymphatic endothelial cell proliferation.

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Journal:  Development       Date:  2010-11       Impact factor: 6.868

Review 5.  Interaction between the extracellular matrix and lymphatics: consequences for lymphangiogenesis and lymphatic function.

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Journal:  Matrix Biol       Date:  2010-08-18       Impact factor: 11.583

6.  Notch leads lymphatics and links them to blood vessels.

Authors:  Shan Liao; Timothy P Padera; Rakesh K Jain
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Review 7.  Macrophages: An Inflammatory Link Between Angiogenesis and Lymphangiogenesis.

Authors:  Bruce A Corliss; Mohammad S Azimi; Jennifer M Munson; Shayn M Peirce; Walter L Murfee
Journal:  Microcirculation       Date:  2016-02       Impact factor: 2.628

8.  Impaired lymphatic contraction associated with immunosuppression.

Authors:  Shan Liao; Gang Cheng; David A Conner; Yuhui Huang; Raju S Kucherlapati; Lance L Munn; Nancy H Ruddle; Rakesh K Jain; Dai Fukumura; Timothy P Padera
Journal:  Proc Natl Acad Sci U S A       Date:  2011-11-07       Impact factor: 11.205

9.  Diphtheria toxin-mediated ablation of lymphatic endothelial cells results in progressive lymphedema.

Authors:  Jason C Gardenier; Geoffrey E Hespe; Raghu P Kataru; Ira L Savetsky; Jeremy S Torrisi; Gabriela D García Nores; Joseph J Dayan; David Chang; Jamie Zampell; Inés Martínez-Corral; Sagrario Ortega; Babak J Mehrara
Journal:  JCI Insight       Date:  2016-09-22

Review 10.  Angiogenesis and ovarian cancer.

Authors:  César Gómez-Raposo; Marta Mendiola; Jorge Barriuso; Enrique Casado; David Hardisson; Andrés Redondo
Journal:  Clin Transl Oncol       Date:  2009-09       Impact factor: 3.405

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