Anti-angiogenic cues from vascular basement membrane collagen.

血管生成 基底膜 细胞生物学 基质凝胶 整合素 内皮干细胞 新生血管 生物 细胞外基质 内皮 IV型胶原 化学 层粘连蛋白 细胞 癌症研究 生物化学 内分泌学 体外
作者
Pablo Colorado,Adriana de la Torre,George D. Kamphaus,Yohei Maeshima,Helmut Hopfer,Keiko Takahashi,Ruediger Volk,Eric D. Zamborsky,Seth Herman,Pradip Sarkar,Mark B. Ericksen,Mohanraj Dhanabal,Michael Simons,Mark J. Post,Donald Küfe,Ralph R. Weichselbaum,Vikas P. Sukhatme,Raghu Kalluri
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期刊:PubMed 卷期号:60 (9): 2520-6 被引量:423
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Vascular basement membrane is an important structural component of blood vessels and has been shown to interact with and modulate vascular endothelial behavior during angiogenesis. During the inductive phase of tumor angiogenesis, this membrane undergoes many degradative and structural changes and reorganizes to a native state around newly formed capillaries in the resolution phase. Such matrix changes are potentially associated with molecular modifications that include expression of matrix gene products coupled with conformational changes, which expose cryptic protein modules for interaction with the vascular endothelium. We speculate that these interactions provide important endogenous angiogenic and anti-angiogenic cues. In this report, we identify an important antiangiogenic vascular basement membrane-associated protein, the 26-kDa NC1 domain of the alpha1 chain of type IV collagen, termed arresten. Arresten was isolated from human placenta and produced as a recombinant molecule in Escherichia coli and 293 embryonic kidney cells. We demonstrate that arresten functions as an anti-angiogenic molecule by inhibiting endothelial cell proliferation, migration, tube formation, and Matrigel neovascularization. Arresten inhibits the growth of two human xenograft tumors in nude mice and the development of tumor metastases. Additionally, we show that the anti-angiogenic activity of arresten is potentially mediated via mechanisms involving cell surface proteoglycans and the alpha1beta1 integrin on endothelial cells. Collectively, our results suggest that arresten is a potent inhibitor of angiogenesis with a potential for therapeutic use.

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