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Human umbilical cord perivascular cells (HUCPVC)

机译:人脐带血管周细胞(HUCPVC)

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摘要

Human bone marrow mesenchymal stem cells (hBM-MSC) have recently been employed in the clinical treatment of challenging skin defects. We have described an MSC population that can be easily harvested from human umbilical cord perivascular tissue, human umbilical cord perivascular cells (HUCPVC), which exhibit a higher proliferative rate and frequency than hBM-MSC. Our objective was to establish whether HUCPVC could promote healing of full thickness murine skin defects, and thus find utility as a cell source for dermal repair. To this end, bilateral full thickness defects were created on the dorsum of Balb/c nude mice. Fibrin was used as delivery vehicle for 1 × 106 PKH67-labeled HUCPVC with contralateral controls receiving fibrin only. Epifluorescent and brightfield microscopic evaluation of the wound site was carried out at 3 and 7 days while mechanical testing of wounds was carried out at 3, 7 and 10 days. Our results show that by 3 days, marked contraction of the wound was observed in the fibrin controls whilst the HUCPVC samples exhibited neither collapse nor contraction of the defect, and the dermal repair tissue was considerably thicker and more organized. By 7 days, complete re-epithelialization of the HUCPVC wounds was observed whilst in the controls re-epithelialization was limited to the wound margins. Wound strength was significantly increased in the HUCPVC treatment group by 3 and 7 days but no statistical difference was seen at 10 days. We conclude that HUCPVCs accelerate early wound healing in full thickness skin defects and thus represent a putative source of human MSCs for use in dermal tissue engineering.
机译:人类骨髓间充质干细胞(hBM-MSC)最近已用于具有挑战性的皮肤缺陷的临床治疗。我们已经描述了可以容易地从人脐带血管周组织,人脐带血管周细胞(HUCPVC)收获的MSC群体,其显示出比hBM-MSC更高的增殖率和频率。我们的目标是确定HUCPVC是否能促进鼠全层皮肤缺损的愈合,从而发现其可作为皮肤修复的细胞来源。为此,在Balb / c裸鼠的背部产生了双侧全厚度缺陷。纤维蛋白被用作1×10 6 PKH67标记的HUCPVC的递送载体,而对侧对照仅接受纤维蛋白。在第3和7天对伤口部位进行落射荧光和明场显微镜评估,而在第3、7和10天对伤口进行机械测试。我们的结果表明,到3天时,在血纤蛋白对照中观察到明显的伤口收缩,而HUCPVC样品既未表现出塌陷也没有收缩,并且皮肤修复组织明显增厚和组织化。到第7天,观察到HUCPVC伤口完全上皮再形成,而在对照中,上皮再形成限于伤口边缘。 HUCPVC治疗组的伤口强度在第3天和第7天显着增加,但在10天时没有统计学差异。我们得出的结论是,HUCPVC可以加速全层皮肤缺损的早期伤口愈合,因此代表了用于皮肤组织工程的人类MSC的推定来源。

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