Endostatin overexpression inhibits lymphangiogenesis and lymph node metastasis in mice.

Cancer Res

Collagen Research Unit, Biocenter Oulu and Department of Medical Biochemistry and Molecular Biology, University of Oulu, Oulu, Finland.

Published: December 2007

AI Article Synopsis

  • Endostatin, a fragment of collagen XVIII, inhibits angiogenesis and tumor growth, but did not reduce skin tumor occurrence in J4 transgenic mice, which overexpress this protein.
  • Despite similar tumor incidence to control mice, endostatin led to less aggressive squamous cell carcinomas (SCCs) in J4 mice, indicating it influences keratinocyte differentiation.
  • The study found endostatin decreases VEGF-C levels and lymphatic vessel formation in tumors by inhibiting mast cell activity, suggesting it impacts both tumor growth and inflammation beyond just affecting blood vessel formation.

Article Abstract

Endostatin, a proteolytic fragment of collagen XVIII, is a potent inhibitor of angiogenesis and tumor growth. We studied the development of carcinogen-induced skin tumors in transgenic J4 mice overexpressing endostatin in their keratinocytes. Unexpectedly, we did not observe any differences in tumor incidence and multiplicity between these and control mice, nor in the rate of conversion of benign papillomas to malignant squamous cell carcinomas (SCC). We did find, however, that endostatin regulates the terminal differentiation of keratinocytes because the SCCs in the J4 mice were less aggressive and more often well differentiated than those in the control mice. We observed an inhibition of tumor angiogenesis by endostatin at an early stage in skin tumor development, but more strikingly, there was a significant reduction in lymphatic vessels in the papillomas and SCCs in association with elevated endostatin levels and also a significant inhibition of lymph node metastasis in the J4 mice. We showed that tumor-infiltrating mast cells strongly expressed vascular endothelial growth factor-C (VEGF-C), and that the accumulation of these cells was markedly decreased in the tumors of the J4 mice. Moreover, endostatin inhibited the adhesion and migration of murine MC/9 mast cells on fibronectin in vitro. Our data suggest that endostatin can inhibit tumor lymphangiogenesis by decreasing the VEGF-C levels in the tumors, apparently via inhibition of mast cell migration and adhesion, and support the view that the biological effects of endostatin are not restricted to endothelial cells because endostatin also regulates tumor-associated inflammation and differentiation, and the phenotype of epithelial tumors.

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Source
http://dx.doi.org/10.1158/0008-5472.CAN-07-1458DOI Listing

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