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首页> 外文期刊>The journal of thoracic and cardiovascular surgery >Intravenously injected human multilineage-differentiating stress-enduring cells selectively engraft into mouse aortic aneurysms and attenuate dilatation by differentiating into multiple cell types
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Intravenously injected human multilineage-differentiating stress-enduring cells selectively engraft into mouse aortic aneurysms and attenuate dilatation by differentiating into multiple cell types

机译:静脉注射的人类多向分化应激持久细胞选择性移植到小鼠主动脉瘤中,并通过分化为多种细胞类型来减弱扩张

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ObjectivesAortic aneurysms result from the degradation of multiple components represented by endothelial cells, vascular smooth muscle cells, and elastic fibers. Cells that can replenish these components are desirable for cell-based therapy. Intravenously injected multilineage-differentiating stress-enduring (Muse) cells, endogenous nontumorigenic pluripotent-like stem cells, reportedly integrate into the damaged site and repair the tissue through spontaneous differentiation into tissue-compatible cells. We evaluated the therapeutic efficacy of Muse cells in a murine aortic aneurysm model.MethodsHuman bone marrow Muse cells, isolated as stage-specific embryonic antigen-3+ from bone marrow mesenchymal stem cells, or non-Muse cells (stage-specific embryonic antigen-3- cells in mesenchymal stem cells), bone marrow mesenchymal stem cells, or vehicle was intravenously injected at day 0, day 7, and 2?weeks (20,000?cells/injection) after inducing aortic aneurysms by periaortic incubation of CaCl2 and elastase in severe combined immunodeficient mice.ResultsAt 8?weeks, infusion of human Muse cells attenuated aneurysm dilation, and the aneurysmal size in the Muse group corresponded to approximately 62.5%, 55.6%, and 45.6% in the non-Muse, mesenchymal stem cell, and vehicle groups, respectively. Multiphoton laser confocal microscopy revealed that infused Muse cells migrated into aneurysmal tissue from the adventitial side and penetrated toward the luminal side. Histologic analysis demonstrated robust preservation of elastic fibers and spontaneous differentiation into endothelial cells and vascular smooth muscle cells.ConclusionsAfter intravenous injection, Muse cells homed and expanded to the aneurysm from the adventitial side. Subsequently, Muse cells differentiated spontaneously into vascular smooth muscle cells and endothelial cells, and elastic fibers were preserved. These Muse cell features together led to substantial attenuation of aneurysmal dilation.
机译:目的主动脉瘤是由内皮细胞,血管平滑肌细胞和弹性纤维代表的多种成分降解所致。可以补充这些成分的细胞对于基于细胞的疗法是理想的。静脉内注射的多谱系分化应激耐(Muse)细胞,内源性非肿瘤多能性干细胞,据报道整合到受损部位并通过自发分化为组织相容性细胞修复组织。我们评估了Muse细胞在鼠主动脉瘤模型中的治疗效果。方法从骨髓间充质干细胞或非Muse细胞(阶段特异性胚胎抗原-分离为阶段特异性胚胎抗原3+)分离的人类骨髓Muse细胞。间充质干细胞在CaCl2和弹性蛋白酶的诱导下诱导主动脉瘤后,分别在第0天,第7天和第2周(20,000个细胞/次)静脉注射间充质干细胞中的3个细胞,骨髓间充质干细胞或运载体结果在8周时,输注人Muse细胞使动脉瘤扩张减弱,Muse组的动脉瘤大小分别约为非Muse,间充质干细胞和非小鼠Muse组的62.5%,55.6%和45.6%。车辆组。多光子激光共聚焦显微镜检查显示,注入的Muse细胞从外膜侧移入动脉瘤组织,并向腔侧渗透。组织学分析表明,弹性纤维的牢固保存和自发分化为内皮细胞和血管平滑肌细胞。结论静脉注射后,Muse细胞从外膜侧归巢并扩展到动脉瘤。随后,Muse细胞自发分化为血管平滑肌细胞和内皮细胞,并保留了弹性纤维。这些缪斯细胞特征共同导致动脉瘤扩张的明显减弱。

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