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周细胞缺失导致 NG2 基因敲除小鼠脑肿瘤血管生成异常。

Pericyte deficiencies lead to aberrant tumor vascularizaton in the brain of the NG2 null mouse.

机构信息

Sanford-Burnham Medical Research Institute, Cancer Center, La Jolla, CA 92037, USA.

出版信息

Dev Biol. 2010 Aug 15;344(2):1035-46. doi: 10.1016/j.ydbio.2010.06.023. Epub 2010 Jun 27.

DOI:10.1016/j.ydbio.2010.06.023
PMID:20599895
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3197744/
Abstract

Tightly regulated crosstalk between endothelial cells and pericytes is required for formation and maintenance of functional blood vessels. When the NG2 proteoglycan is absent from pericyte surfaces, vascularization of syngeneic tumors growing in the C57Bl/6 mouse brain is aberrant in several respects, resulting in retardation of tumor progression. In the NG2 null mouse brain, pericyte investment of the tumor vascular endothelium is reduced, causing deficiencies in both pericyte and endothelial cell maturation, as well as reduced basal lamina assembly. While part of this deficit may be due to the previously-identified role of NG2 in beta1 integrin-dependent periyte/endothelial cell crosstalk, the ablation of NG2 also appears responsible for loss of collagen VI anchorage, in turn leading to reduced collagen IV deposition. Poor functionality of tumor vessels in NG2 null brain is reflected by reduced vessel patency and increased vessel leakiness, resulting in large increases in tumor hypoxia. These findings demonstrate the importance of NG2-dependent pericyte/endothelial cell interaction in the development and maturation of tumor blood vessels, identifying NG2 as a potential target for anti-angiogenic cancer therapy.

摘要

内皮细胞和周细胞之间受到严格调控的串扰对于功能性血管的形成和维持是必需的。当周细胞表面缺乏 NG2 蛋白聚糖时,在 C57Bl/6 小鼠脑中生长的同源肿瘤的血管生成在几个方面发生异常,导致肿瘤进展迟缓。在 NG2 缺失的小鼠脑中,肿瘤血管内皮细胞的周细胞投资减少,导致周细胞和内皮细胞成熟以及基底膜组装减少。虽然这种缺陷的一部分可能是由于 NG2 在β1 整合素依赖性周细胞/内皮细胞串扰中的先前确定的作用,但 NG2 的缺失似乎也导致了胶原 VI 锚定的丧失,进而导致胶原 IV 沉积减少。NG2 缺失的大脑中肿瘤血管功能不良反映在血管通透性降低和血管通透性增加,导致肿瘤缺氧增加。这些发现表明 NG2 依赖性周细胞/内皮细胞相互作用在肿瘤血管的发育和成熟中的重要性,确定 NG2 为抗血管生成癌症治疗的潜在靶点。

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血管重塑过程中血管特性的变化。
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Focal adhesion in the tumour metastasis: from molecular mechanisms to therapeutic targets.肿瘤转移中的粘着斑:从分子机制到治疗靶点
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MedComm (2020). 2024 Dec 4;5(12):e70014. doi: 10.1002/mco2.70014. eCollection 2024 Dec.
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