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靶向缺氧肿瘤中的血管周细胞会通过血管生成素-2增加肺转移。

Targeting vascular pericytes in hypoxic tumors increases lung metastasis via angiopoietin-2.

作者信息

Keskin Doruk, Kim Jiha, Cooke Vesselina G, Wu Chia-Chin, Sugimoto Hikaru, Gu Chenghua, De Palma Michele, Kalluri Raghu, LeBleu Valerie S

机构信息

Department of Cancer Biology, Metastasis Research Center, University of Texas MD Anderson Cancer Center, Houston, TX 77054, USA; Division of Matrix Biology, Beth Israel Deaconess Medical Center and Harvard Medical School, Boston, MA 02115, USA.

Department of Cancer Biology, Metastasis Research Center, University of Texas MD Anderson Cancer Center, Houston, TX 77054, USA; Department of Neurobiology, Harvard Medical School, Boston, MA 02115, USA.

出版信息

Cell Rep. 2015 Feb 24;10(7):1066-81. doi: 10.1016/j.celrep.2015.01.035. Epub 2015 Feb 19.

Abstract

Strategies to target angiogenesis include inhibition of the vessel-stabilizing properties of vascular pericytes. Pericyte depletion in early-stage non-hypoxic tumors suppressed nascent angiogenesis, tumor growth, and lung metastasis. In contrast, pericyte depletion in advanced-stage hypoxic tumors with pre-established vasculature resulted in enhanced intra-tumoral hypoxia, decreased tumor growth, and increased lung metastasis. Furthermore, depletion of pericytes in post-natal retinal blood vessels resulted in abnormal and leaky vasculature. Tumor transcriptome profiling and biological validation revealed that angiopoietin signaling is a key regulatory pathway associated with pericyte targeting. Indeed, pericyte targeting in established mouse tumors increased angiopoietin-2 (ANG2/Angpt2) expression. Depletion of pericytes, coupled with targeting of ANG2 signaling, restored vascular stability in multiple model systems and decreased tumor growth and metastasis. Importantly, ANGPT2 expression correlated with poor outcome in patients with breast cancer. These results emphasize the potential utility of therapeutic regimens that target pericytes and ANG2 signaling in metastatic breast cancer.

摘要

针对血管生成的策略包括抑制血管周细胞的血管稳定特性。早期非缺氧肿瘤中的周细胞耗竭抑制了新生血管生成、肿瘤生长和肺转移。相比之下,在具有预先建立的脉管系统的晚期缺氧肿瘤中,周细胞耗竭导致肿瘤内缺氧增强、肿瘤生长减少和肺转移增加。此外,出生后视网膜血管中的周细胞耗竭导致血管异常和渗漏。肿瘤转录组分析和生物学验证表明,血管生成素信号传导是与靶向周细胞相关的关键调节途径。事实上,在已建立的小鼠肿瘤中靶向周细胞会增加血管生成素-2(ANG2/Angpt2)的表达。周细胞耗竭与ANG2信号传导靶向相结合,在多个模型系统中恢复了血管稳定性,并减少了肿瘤生长和转移。重要的是,ANGPT2表达与乳腺癌患者的不良预后相关。这些结果强调了在转移性乳腺癌中靶向周细胞和ANG2信号传导的治疗方案的潜在效用。

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