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首页> 外文期刊>Plastic and reconstructive surgery >Human tissue-resident stem cells combined with hyaluronic acid gel provide fibrovascular-integrated soft-tissue augmentation in a murine photoaged skin model.
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Human tissue-resident stem cells combined with hyaluronic acid gel provide fibrovascular-integrated soft-tissue augmentation in a murine photoaged skin model.

机译:结合人体组织的干细胞与透明质酸凝胶相结合,可在小鼠光老化的皮肤模型中提供纤维血管整合的软组织增强作用。

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BACKGROUND: Transplantation of adipose tissue-resident mesenchymal stem cells has been found to contribute to the establishment of a supportive fibrovascular network. The authors sought to evaluate the potential of human adipose tissue-derived stem cells to integrate with nonanimal stabilized hyaluronic acid as a novel injectable soft-tissue filler. METHODS: Cell proliferation was measured by bromodeoxyuridine incorporation. Interactions of adipose tissue-derived stem cells with hyaluronic acid were documented by scanning electron microscopy. The effect of this combination on procollagen mRNA was assessed by real-time polymerase chain reaction. The potential therapeutic effects were evaluated in an athymic murine photoaged skin model by histology and by high-resolution magnetic resonance imaging. Angiogenesis was assessed by microvessel density analysis. RESULTS: Under in vitro culture conditions, the authors found an equal proliferation capacity of adipose tissue-derived stem cells grown on hyaluronic acid versus controls. Scanning electron microscopy showed enhanced establishment of complex microvillous networks in adipose tissue-derived stem cells adherent to hyaluronic acid compared with controls. Adipose tissue-derived stem cells and hyaluronic acid induced a significant increase in procollagen 1-alpha-2 mRNA expression compared with controls. In an athymic murine photoaged skin model, injection of this combination ablated photoinduced skin wrinkles. Magnetic resonance imaging revealed a consistent and stable volume fill by adipose tissue-derived stem cells and nonanimal stabilized hyaluronic acid at 3 weeks. Adipose tissue-derived stem cells actively incorporated into the hyaluronic acid fill and showed an organized fibrovascular network at 3 weeks. CONCLUSION: The combination of adipose tissue-derived stem cells and nonanimal stabilized hyaluronic acid holds promise as a tool with which to achieve lasting volume fill in reconstructive surgical soft-tissue augmentation.
机译:背景:已经发现脂肪组织驻留间充质干细胞的移植有助于建立支持性血管网络。作者试图评估人类脂肪组织衍生的干细胞与非动物稳定的透明质酸整合成新型可注射软组织填充剂的潜力。方法:通过溴脱氧尿苷掺入法测定细胞增殖。脂肪组织来源的干细胞与透明质酸的相互作用通过扫描电子显微镜记录。通过实时聚合酶链反应评估该组合对原胶原mRNA的作用。通过组织学和高分辨率磁共振成像,在无胸腺鼠光老化皮肤模型中评估了潜在的治疗效果。通过微血管密度分析评估血管生成。结果:在体外培养条件下,作者发现在透明质酸上生长的脂肪组织干细胞与对照组相比具有相同的增殖能力。扫描电子显微镜显示,与对照组相比,在附着于透明质酸的脂肪组织干细胞中复杂微孔网络的建立得到增强。与对照组相比,源自脂肪组织的干细胞和透明质酸可显着增加原胶原1-α-2mRNA的表达。在无胸腺小鼠光老化的皮肤模型中,注射该组合可消融光诱导的皮肤皱纹。磁共振成像显示脂肪组织来源的干细胞和非动物稳定的透明质酸在3周时保持一致且稳定的体积填充。脂肪组织衍生的干细胞被积极地掺入透明质酸填充物中,并在3周时显示出一个有组织的纤维血管网络。结论:脂肪组织来源的干细胞与非动物性稳定的透明质酸的结合有望成为实现持久性填充性软组织重建手术的工具。

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