miR-27b对血管生成的治疗作用。

Q4 Neuroscience
Vascular Cell Pub Date : 2015-06-24 eCollection Date: 2015-01-01 DOI:10.1186/s13221-015-0031-1
Dorina Veliceasa, Dauren Biyashev, Gangjian Qin, Sol Misener, Alexander Roy Mackie, Raj Kishore, Olga V Volpert
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引用次数: 60

摘要

背景:多项研究证实了microRNA (miR)-27b的促血管生成作用。其靶点包括Notch配体Dll4、Sprouty (Spry)-2、PPARγ和Semaphorin (SEMA) 6A。miR-27在心脏中的作用依赖于环境:尽管它是心室成熟所必需的,但心肌细胞中的靶向过表达会导致发育过程中的肥厚和功能障碍。尽管最近取得了重大进展,但miR-27b在心血管疾病中的治疗潜力及其在成人心脏中的作用仍未被探索。在这里,我们评估了miR-27b模拟物和抑制剂在缺血性疾病和癌症啮齿动物模型中的治疗潜力。方法:我们使用了多种模型来证明miR-27b在体内的模拟和抑制作用,包括皮下基质塞实验、小鼠后肢缺血和心肌梗死模型和皮下Lewis肺癌模型。结果:通过冠状动脉结扎引起的小鼠心肌梗死模型,我们发现miR-27b mimic具有总体有益作用,包括增加血管化,减少纤维化和增加射血分数。在小鼠重度肢体缺血模型中,miR-27b mimic也能改善组织再血管化和灌注。在这两种模型中,miR-27b模拟明显减少了巨噬细胞向缺氧损伤部位的招募。相反,miR-27b增加了骨髓来源细胞向新生血管的募集,这是用荧光标记的骨髓重建的小鼠所显示的。这些影响至少部分是由于Dll4、PPARγ和IL10的表达降低。相反,阻断miR-27b可显著降低皮下肿瘤的血管化和生长,并减少BMDCs向肿瘤血管系统的募集。结论:我们的研究证明了操纵miR-27b水平在心血管疾病和癌症治疗中的效用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Therapeutic manipulation of angiogenesis with miR-27b.

Therapeutic manipulation of angiogenesis with miR-27b.

Therapeutic manipulation of angiogenesis with miR-27b.

Therapeutic manipulation of angiogenesis with miR-27b.

Background: Multiple studies demonstrated pro-angiogenic effects of microRNA (miR)-27b. Its targets include Notch ligand Dll4, Sprouty (Spry)-2, PPARγ and Semaphorin (SEMA) 6A. miR-27 effects in the heart are context-dependent: although it is necessary for ventricular maturation, targeted overexpression in cardiomyocytes causes hypertrophy and dysfunction during development. Despite significant recent advances, therapeutic potential of miR-27b in cardiovascular disease and its effects in adult heart remain unexplored. Here, we assessed the therapeutic potential of miR-27b mimics and inhibitors in rodent models of ischemic disease and cancer.

Methods: We have used a number of models to demonstrate the effects of miR-27b mimicry and inhibition in vivo, including subcutaneous Matrigel plug assay, mouse models of hind limb ischemia and myocardial infarction and subcutaneous Lewis Lung carcinoma.

Results: Using mouse model of myocardial infarction due to the coronary artery ligation, we showed that miR-27b mimic had overall beneficial effects, including increased vascularization, decreased fibrosis and increased ejection fraction. In mouse model of critical limb ischemia, miR-27b mimic also improved tissue re-vascularization and perfusion. In both models, miR-27b mimic clearly decreased macrophage recruitment to the site of hypoxic injury. In contrast, miR-27b increased the recruitment of bone marrow derived cells to the neovasculature, as was shown using mice reconstituted with fluorescence-tagged bone marrow. These effects were due, at least in part, to the decreased expression of Dll4, PPARγ and IL10. In contrast, blocking miR-27b significantly decreased vascularization and reduced growth of subcutaneous tumors and decreased BMDCs recruitment to the tumor vasculature.

Conclusions: Our study demonstrates the utility of manipulating miR-27b levels in the treatment of cardiovascular disease and cancer.

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来源期刊
Vascular Cell
Vascular Cell Neuroscience-Neurology
CiteScore
0.70
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