Aging impairs ischemia-induced neovascularization by attenuating the mobilization of bone marrow-derived angiogenic cells

Yuen Ting Lam , Laura Lecce , Zoe Clayton , Philippa J.L. Simpson , Richard H. Karas , Martin K.C. Ng
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引用次数: 2

Abstract

Background

Aging is associated with impaired ischemia-induced neovascularization. However, the effects of aging on bone marrow-derived angiogenic cell (BMDAC)-mediated vasculogenesis and on angiogenesis at the ischemic sites remain incompletely understood.

Methods and results

Two- and 24-month old male C57Bl/6J mice were subjected to hindlimb ischemia. The levels of Sca1 +/CXCR4 + BMDACs were determined post-ischemia by flow cytometry. In young mice, ischemia increased Sca1 +/CXCR4 + BMDAC levels in the bone marrow and spleen at day 3 (p < 0.001) and in the circulating blood at day 7 (p < 0.01) post-ischemia. However, ischemia-induced elevation of progenitor cells was attenuated in the bone marrow, spleen and blood of old mice despite a preserved HIF-1α-mediated angiogenic response in the ischemic tissues. Irradiated young recipient mice engrafted with old bone marrow displayed reduced levels of Sca1 +/CXCR4 + BMDACs in the bone marrow and circulating blood post-ischemia compared to recipients with young bone marrow. Ex vivo cultured BMDACs from old mice exhibited reduced SDF-1-stimulated migration (p < 0.01) and a decrease in JAK-2 and AKT activation. However, the intrinsic angiogenic function of BMDACs, including VEGF secretion and promotion of endothelial cell tubule formation, was preserved with aging. Furthermore, facilitated mobilization of old bone marrow-derived mononuclear cells to the ischemic hindlimb by intramuscular injection enhanced ischemia-induced neovascularization in old mice in vivo (p < 0.001).

Conclusions

The age-related impairment in ischemia-induced neovascularization is largely attributable to a marked attenuation of BMDAC mobilization with a preservation of intrinsic angiogenic function with age.

衰老通过减弱骨髓源性血管生成细胞的动员而损害缺血诱导的新生血管
衰老与缺血诱导的新生血管受损有关。然而,衰老对骨髓源性血管生成细胞(BMDAC)介导的血管生成和缺血部位血管生成的影响仍不完全清楚。方法与结果2、24月龄雄性C57Bl/6J小鼠后肢缺血。缺血后用流式细胞术检测Sca1 +/CXCR4 + BMDACs水平。在幼龄小鼠中,缺血在第3天增加骨髓和脾脏中Sca1 +/CXCR4 + BMDAC水平(p <0.001),第7天循环血液中(p <0.01) post-ischemia。然而,尽管缺血组织中保留了hif -1α-介导的血管生成反应,但缺血诱导的祖细胞升高在老年小鼠骨髓、脾脏和血液中减弱。与年轻骨髓受体相比,移植了旧骨髓的年轻受体小鼠在缺血后骨髓和循环血液中的Sca1 +/CXCR4 + bmdac水平降低。体外培养的老年小鼠BMDACs表现出sdf -1刺激的迁移减少(p <0.01), jak2和AKT活性降低。然而,BMDACs固有的血管生成功能,包括VEGF分泌和促进内皮细胞小管的形成,随着年龄的增长而保持不变。此外,肌内注射促进年老骨髓来源的单个核细胞向缺血后肢的动员,增强年老小鼠体内缺血诱导的新生血管(p <0.001)。结论缺血性新生血管的年龄相关损伤主要是由于BMDAC的动员明显减弱,而固有的血管生成功能随着年龄的增长而保留。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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