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信号蛋白 4D 与 VEGF 协同促进血管生成和肿瘤进展。

Semaphorin 4D cooperates with VEGF to promote angiogenesis and tumor progression.

机构信息

Department of Oncology and Diagnostic Sciences, University of Maryland Dental School, 650 West Baltimore Street, 7-North, Baltimore, MD 21201, USA.

出版信息

Angiogenesis. 2012 Sep;15(3):391-407. doi: 10.1007/s10456-012-9268-y. Epub 2012 Apr 3.

Abstract

The semaphorins and plexins comprise a family of cysteine-rich proteins implicated in control of nerve growth and development and regulation of the immune response. Our group and others have found that Semaphorin 4D (SEMA4D) and its receptor, Plexin-B1, play an important role in tumor-induced angiogenesis, with some neoplasms producing SEMA4D in a manner analogous to vascular endothelial growth factor (VEGF) in order to attract Plexin-B1-expressing endothelial cells into the tumor for the purpose of promoting growth and vascularity. While anti-VEGF strategies have been the focus of most angiogenesis inhibition research, such treatment can lead to upregulation of pro-angiogenic factors that can compensate for the loss of VEGF, eventually leading to failure of therapy. Here, we demonstrate that SEMA4D cooperates with VEGF to promote angiogenesis in malignancies and can perform the same function in a setting of VEGF blockade. We also show the potential value of inhibiting SEMA4D/Plexin-B1 signaling as a complementary mechanism to anti-VEGF treatment, particularly in VEGF inhibitor-resistant tumors, suggesting that this may represent a novel treatment for some cancers.

摘要

信号素和神经丛蛋白构成了富含半胱氨酸的蛋白质家族,它们参与控制神经生长和发育以及调节免疫反应。我们的研究小组和其他研究小组发现,信号素 4D(SEMA4D)及其受体神经丛蛋白 B1(Plexin-B1)在肿瘤诱导的血管生成中发挥着重要作用,一些肿瘤以类似于血管内皮生长因子(VEGF)的方式产生 SEMA4D,目的是将表达 Plexin-B1 的内皮细胞吸引到肿瘤中,以促进肿瘤生长和血管生成。虽然抗 VEGF 策略一直是大多数血管生成抑制研究的重点,但这种治疗方法可能导致促血管生成因子的上调,从而补偿 VEGF 的损失,最终导致治疗失败。在这里,我们证明 SEMA4D 与 VEGF 合作促进恶性肿瘤中的血管生成,并且可以在 VEGF 阻断的情况下发挥相同的功能。我们还表明,抑制 SEMA4D/神经丛蛋白 B1 信号转导作为抗 VEGF 治疗的补充机制具有潜在价值,特别是在 VEGF 抑制剂耐药的肿瘤中,这表明这可能代表某些癌症的一种新的治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/50b0/3733222/4b6bf33c7ed6/nihms488805f1.jpg

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