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Notch 信号修饰的间充质干细胞通过诱导大鼠后肢缺血模型中的动脉生成改善组织灌注。

Notch signaling-modified mesenchymal stem cells improve tissue perfusion by induction of arteriogenesis in a rat hindlimb ischemia model.

机构信息

Department of Cardiovascular Surgery, Osaka University Graduate School of Medicine, 2-15 Yamadaoka, Suita, Osaka, 565-0871, Japan.

SanBio, Inc., Tokyo, Japan.

出版信息

Sci Rep. 2021 Jan 28;11(1):2543. doi: 10.1038/s41598-021-82284-3.

Abstract

Notch signaling-modified human mesenchymal stem cell, SB623 cell, is a promising cell therapy product for ischemic stroke. With the aim to expand indications for their use for critical limb-threatening ischemia (CLTI), we hypothesized that SB623 cells improved tissue perfusion by inducing angiogenesis or arteriogenesis in a hindlimb ischemia model rat. In Sprague-Dawley rats, hindlimb ischemia was generated by femoral artery removal, then seven days after ischemic induction 1 × 10 SB623 cells or PBS was injected into the ischemic adductor muscle. As compared with the PBS group, tissue perfusion was significantly increased in the SB623 group. While capillary density did not vary between the groups, αSMA- and vWF-positive arterioles with a diameter  > 15 μm were significantly increased in the SB623 group. Whole transcriptome analysis of endothelial cells co-cultured with SB623 cells showed upregulation of the Notch signaling pathway as well as several other pathways potentially leading to arteriogenesis. Furthermore, rat muscle treated with SB623 cells showed a trend for higher ephrin-B2 and significantly higher EphB4 expression, which are known as arteriogenic markers. In the hindlimb ischemia model, SB623 cells improved tissue perfusion by inducing arteriogenesis, suggesting a promising cell source for treatment of CLTI.

摘要

Notch 信号修饰的人骨髓间充质干细胞,SB623 细胞,是一种有前途的缺血性脑卒中细胞治疗产品。为了扩大其在严重肢体缺血(CLTI)中的应用适应证,我们假设 SB623 细胞通过在大鼠后肢缺血模型中诱导血管生成或血管生成来改善组织灌注。在 Sprague-Dawley 大鼠中,通过股动脉切除来产生后肢缺血,然后在缺血诱导后 7 天,将 1×10 SB623 细胞或 PBS 注射到缺血内收肌中。与 PBS 组相比,SB623 组的组织灌注明显增加。虽然两组之间的毛细血管密度没有差异,但 SB623 组的直径大于 15μm 的 αSMA-和 vWF-阳性小动脉明显增加。与 SB623 细胞共培养的内皮细胞的全转录组分析显示 Notch 信号通路以及其他几个潜在导致血管生成的通路上调。此外,用 SB623 细胞处理的大鼠肌肉表现出 Ephrin-B2 升高的趋势,EphB4 表达显著升高,这是已知的血管生成标志物。在大鼠后肢缺血模型中,SB623 细胞通过诱导血管生成来改善组织灌注,提示其是治疗 CLTI 的一种有前途的细胞来源。

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