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衰老对小鼠急性后肢缺血后新生血管相关基因表达时间进程的影响。

Effects of aging on time course of neovascularization-related gene expression following acute hindlimb ischemia in mice.

机构信息

Cardiovascular Research Institute, MedStar Health Research Institute, Washington DC, 20010, USA.

出版信息

Chin Med J (Engl). 2011 Apr;124(7):1075-81.

Abstract

BACKGROUND

Molecular analysis of neovascularization related genes by time course in response to ischemia has not been described in the context of aging. We aimed to provide a progressively deeper understanding of how aging compromises neovascularization.

METHODS

Young (3-month) and old (18-month) C57Bl mice were subjected to left hindlimb ischemia. Necrosis score was evaluated in calf muscles. Calf muscles, peripheral blood, bone marrow were harvested at different time points. The expressions of matrix metalloproteiniase-9 (MMP9), endothelial nitric oxide synthase (eNOS), vascular endothelial growth factor (VEGF), stromal derived growth factor-1 (SDF1), hypoxia inducible factor-1α (HIF1α), VEGF receptor-1 (Flt1), VEGF receptor-2 (Flk1), angiopoietin-1 (Ang1), CD133, CD26 were detected by RT-PCR or Western blotting. White blood cells were counted in the peripheral blood. Gene expression data were compared by two-way analysis of variance.

RESULTS

MMP9, HIF-1α and SDF-1 were more upregulated during acute ischemia in old vs. young mice, reflecting increased ischemia in aging mice. However VEGF and eNOS exhibited lower expression in old vs. young mice, despite greater ischemia intensity. Ang1 and Flk1 showed similar expression in old vs. young mice. MMP9 peaked earlier in peripheral blood in young vs. old mice. Concurrent decreasing CD26 and increasing CD133 expression in aging bone marrow suggest aging impairs progenitor cell mobilization,

CONCLUSIONS

Our results indicate that a complex array of defects occur with aging that interfere with optimal neovascularization. These include potential impaired mobilization of progenitor cells to ischemic tissue, decreased levels of eNOS and VEGF and delayed responses to ischemia.

摘要

背景

关于在衰老背景下缺血后通过时间进程对血管新生相关基因进行分子分析尚未见报道。我们旨在深入了解衰老如何影响血管新生。

方法

将年轻(3 个月)和年老(18 个月)C57Bl 小鼠的左后肢缺血。评估小腿肌肉的坏死评分。在不同时间点收获小腿肌肉、外周血和骨髓。通过 RT-PCR 或 Western blot 检测基质金属蛋白酶 9(MMP9)、内皮型一氧化氮合酶(eNOS)、血管内皮生长因子(VEGF)、基质衍生生长因子 1(SDF1)、缺氧诱导因子 1α(HIF1α)、血管内皮生长因子受体 1(Flt1)、血管内皮生长因子受体 2(Flk1)、血管生成素 1(Ang1)、CD133、CD26 的表达。外周血中白细胞计数。通过双因素方差分析比较基因表达数据。

结果

与年轻小鼠相比,老年小鼠在急性缺血时 MMP9、HIF-1α 和 SDF-1 表达上调更多,反映了衰老小鼠缺血加重。然而,尽管缺血程度更重,老年小鼠的 VEGF 和 eNOS 表达却更低。Ang1 和 Flk1 在老年和年轻小鼠之间表达相似。与老年小鼠相比,MMP9 在年轻小鼠外周血中更早达到峰值。衰老骨髓中 CD26 表达降低和 CD133 表达增加提示衰老损害祖细胞动员。

结论

我们的结果表明,衰老会出现一系列复杂的缺陷,干扰最佳的血管新生。这包括潜在的祖细胞向缺血组织的动员受损、eNOS 和 VEGF 水平降低以及对缺血的反应延迟。

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