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成年间充质干细胞及其衍生物在改善腹主动脉瘤大鼠模型中弹性蛋白稳态中的作用。

Adult Mesenchymal Stem Cells and Derivatives in Improved Elastin Homeostasis in a Rat Model of Abdominal Aortic Aneurysms.

机构信息

Lehigh University, Department of Bioengineering, Bethlehem, PA, USA.

Cleveland Clinic, Lerner Research Institute, Department of Biomedical Engineering, Cleveland, OH, USA.

出版信息

Stem Cells Transl Med. 2022 Aug 23;11(8):850-860. doi: 10.1093/stcltm/szac043.

Abstract

Abdominal aortic aneurysms (AAAs) are localized rupture-prone expansions of the aorta with limited reversibility that develop due to proteolysis of the elastic matrix. Natural regenerative repair of an elastic matrix is difficult due to the intrinsically poor elastogenicity of adult vascular smooth muscle cells (VSMCs). This justifies the need to provide external, pro-elastin regenerative- and anti-proteolytic stimuli to VSMCs in the AAA wall towards reinstating matrix structure in the aorta wall. Introducing alternative phenotypes of highly elastogenic and contractile cells into the AAA wall capable of providing such cues, proffers attractive prospects for AAA treatment. In this regard, we have previously demonstrated the superior elastogenicity of bone marrow mesenchymal stem cell (BM-MSC)-derived SMCs (cBM-SMCs) and their ability to provide pro-elastogenic and anti-proteolytic stimuli to aneurysmal SMCs in vitro. However, the major issues associated with cell therapy, such as their natural ability to home into the AAA tissue, their in vivo biodistribution and retention in the AAA wall, and possible paracrine effects on AAA tissue repair processes in the event of localization in remote tissues remain uncertain. Therefore, in this study we focused on assessing the fate, safety, and AAA reparative effects of BM-MSC-derived cBM-SMCs in vivo. Our results indicate that the cBM-SMCs (a) possess natural homing abilities similar to the undifferentiated BM-MSCs, (b) exhibit higher retention upon localization in the aneurysmal aorta than BM-MSCs, (c) downregulate the expression of several inflammatory and pro-apoptotic cytokines that are upregulated in the AAA wall contributing to accelerated elastic matrix breakdown and suppression of elastic fiber neo-assembly, repair, and crosslinking, and (d) improve elastic matrix content and structure in the AAA wall toward slowing the growth of AAAs. Our study provides initial evidence of the in vivo elastic matrix reparative benefits of cBM-SMCs and their utility in cell therapy to reverse the pathophysiology of AAAs.

摘要

腹主动脉瘤 (AAA) 是主动脉的局部易破裂扩张,其弹性基质的蛋白水解导致其具有一定的不可逆转性。由于成年血管平滑肌细胞 (VSMC) 的固有弹性生成能力较差,因此,天然的弹性基质再生修复较为困难。这就需要为 AAA 壁中的 VSMC 提供外部的、促进弹性蛋白再生和抗蛋白水解的刺激,以恢复主动脉壁中的基质结构。引入具有高度弹性生成和收缩能力的替代表型的细胞进入 AAA 壁,为 AAA 提供这样的信号,为 AAA 的治疗提供了有吸引力的前景。在这方面,我们之前已经证明了骨髓间充质干细胞 (BM-MSC) 衍生的平滑肌细胞 (cBM-SMC) 的卓越弹性生成能力,以及它们在体外为动脉瘤平滑肌细胞提供促弹性生成和抗蛋白水解刺激的能力。然而,细胞治疗相关的主要问题,如它们向 AAA 组织的天然归巢能力、它们在体内的生物分布和在 AAA 壁中的保留、以及在定位到远程组织的情况下对 AAA 组织修复过程的可能旁分泌作用等,仍然不确定。因此,在这项研究中,我们专注于评估 BM-MSC 衍生的 cBM-SMC 在体内的命运、安全性和 AAA 修复效果。我们的结果表明,cBM-SMC(a) 具有类似于未分化的 BM-MSC 的天然归巢能力,(b) 在定位到动脉瘤主动脉时比 BM-MSC 具有更高的保留率,(c) 下调几种在 AAA 壁中上调的炎症和促凋亡细胞因子的表达,这有助于加速弹性基质的破坏,并抑制弹性纤维的新组装、修复和交联,以及 (d) 改善 AAA 壁中的弹性基质含量和结构,从而减缓 AAA 的生长。我们的研究提供了 cBM-SMC 在体内弹性基质修复益处的初步证据,以及它们在细胞治疗中逆转 AAA 病理生理学的应用价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e0e/9397656/9fc6d601ca9a/szac043f0008.jpg

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