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间质干细胞与内皮祖细胞的共同注射通过内格伦依赖性机制加速后肢缺血肌肉恢复。

Co-injection of mesenchymal stem cells with endothelial progenitor cells accelerates muscle recovery in hind limb ischemia through an endoglin-dependent mechanism.

机构信息

Prof. David Smadja, European Hospital Georges Pompidou, Hematology Department and UMR-S1140, 20 rue Leblanc, 75015 Paris, France, Tel.: +31 56093933, Fax: +31 56093393, E-mail:

出版信息

Thromb Haemost. 2017 Oct 5;117(10):1908-1918. doi: 10.1160/TH17-01-0007. Epub 2017 Aug 3.

Abstract

Endothelial colony-forming cells (ECFCs) are progenitor cells committed to endothelial lineages and have robust vasculogenic properties. Mesenchymal stem cells (MSCs) have been described to support ECFC-mediated angiogenic processes in various matrices. However, MSC-ECFC interactions in hind limb ischemia (HLI) are largely unknown. Here we examined whether co-administration of ECFCs and MSCs bolsters vasculogenic activity in nude mice with HLI. In addition, as we have previously shown that endoglin is a key adhesion molecule, we evaluated its involvement in ECFC/MSC interaction. Foot perfusion increased on day 7 after ECFC injection and was even better at 14 days. Co-administration of MSCs significantly increased vessel density and foot perfusion on day 7 but the differences were no longer significant at day 14. Analysis of mouse and human CD31, and in situ hybridization of the human ALU sequence, showed enhanced capillary density in ECFC+MSC mice. When ECFCs were silenced for endoglin, coinjection with MSCs led to lower vessel density and foot perfusion at both 7 and 14 days (p<0.001). Endoglin silencing in ECFCs did not affect MSC differentiation into perivascular cells or other mesenchymal lineages. Endoglin silencing markedly inhibited ECFC adhesion to MSCs. Thus, MSCs, when combined with ECFCs, accelerate muscle recovery in a mouse model of hind limb ischemia, through an endoglin-dependent mechanism.

摘要

内皮祖细胞 (ECFCs) 是一种定向于内皮谱系的祖细胞,具有强大的血管生成特性。间充质干细胞 (MSCs) 已被描述为在各种基质中支持 ECFC 介导的血管生成过程。然而,MSC-ECFC 在下肢缺血 (HLI) 中的相互作用在很大程度上尚不清楚。在这里,我们研究了在 HLI 的裸鼠中共同给予 ECFC 和 MSCs 是否能增强血管生成活性。此外,由于我们之前已经表明内皮糖蛋白是一种关键的粘附分子,我们评估了它在 ECFC/MSC 相互作用中的参与。在注射 ECFC 后第 7 天,足部灌注增加,第 14 天甚至更好。共给予 MSCs 可显著增加第 7 天的血管密度和足部灌注,但第 14 天的差异不再显著。对小鼠和人 CD31 的分析以及人类 ALU 序列的原位杂交显示,ECFC+MSC 小鼠的毛细血管密度增加。当 ECFCs 沉默内糖蛋白时,与 MSCs 共注射导致第 7 天和第 14 天的血管密度和足部灌注降低 (p<0.001)。ECFCs 中的内糖蛋白沉默不影响 MSC 分化为血管周围细胞或其他间充质谱系。内糖蛋白沉默显著抑制 ECFC 与 MSCs 的粘附。因此,当与 ECFC 联合使用时,MSCs 通过依赖内糖蛋白的机制加速了小鼠下肢缺血模型中的肌肉恢复。

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