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表面锚定纳米凝胶涂层通过下调细胞因子-受体结合途径赋予干细胞抗应激能力和修复潜能。

Surface-Anchored Nanogel Coating Endows Stem Cells with Stress Resistance and Reparative Potency via Turning Down the Cytokine-Receptor Binding Pathways.

作者信息

Zhang Ling, Liu Guowu, Lv Kaiqi, Xin Jinxia, Wang Yingchao, Zhao Jing, Hu Wangxing, Xiao Changchen, Zhu Keyang, Zhu Lianlian, Nan Jinliang, Feng Ye, Zhu Huaying, Chen Wei, Zhu Wei, Zhang Jianyi, Wang Jian'an, Wang Ben, Hu Xinyang

机构信息

Department of Cardiology, The Second Affiliated Hospital Zhejiang University School of Medicine Hangzhou 310009 China.

Cardiovascular Key Laboratory of Zhejiang Province Hangzhou 310009 China.

出版信息

Adv Sci (Weinh). 2021 Jan 6;8(3):2003348. doi: 10.1002/advs.202003348. eCollection 2021 Feb.

Abstract

Stem cell-based therapy has great potential in regenerative medicine. However, the survival and engraftment rates of transplanted stem cells in disease regions are poor and limit the effectiveness of cell therapy due to the fragility of stem cells. Here, an approach involving a single-cell coating of surface-anchored nanogel to regulate stem cell fate with anti-apoptosis capacity in the hypoxic and ischemic environment of infarcted hearts is developed for the first time. A polysialic acid-based system is used to anchor microbial transglutaminase to the external surface of the cell membrane, where it catalyzes the crosslinking of gelatin. The single-cell coating with surface-anchored nanogel endows mesenchymal stem cells (MSCs) with stress resistance by blocking the activity of apoptotic cytokines including the binding of tumor necrosis factor α (TNFα) to tumor necrosis factor receptor, which in turn maintains mitochondrial integrity, function and protects MSCs from TNF-induces apoptosis. The administration of surface engineered MSCs to hearts results in significant improvements in engraftment, cardiac function, infarct size, and vascularity compared with using uncoated MSCs in treating myocardial infarction. The surface-anchored, biocompatible cell surface engineering with nanogel armor provides a new way to produce robust therapeutic stem cells and may explore immense potentials in cell-based therapy.

摘要

基于干细胞的疗法在再生医学中具有巨大潜力。然而,由于干细胞的脆弱性,移植的干细胞在疾病区域的存活率和植入率很低,限制了细胞疗法的有效性。在此,首次开发了一种方法,即在梗死心脏的缺氧和缺血环境中,通过对表面锚定纳米凝胶进行单细胞包被,以调节具有抗凋亡能力的干细胞命运。基于聚唾液酸的系统用于将微生物转谷氨酰胺酶锚定到细胞膜的外表面,在那里它催化明胶的交联。表面锚定纳米凝胶的单细胞包被通过阻断包括肿瘤坏死因子α(TNFα)与肿瘤坏死因子受体结合在内的凋亡细胞因子的活性,赋予间充质干细胞(MSC)抗应激能力,进而维持线粒体的完整性、功能并保护MSC免受TNF诱导的凋亡。与使用未包被的MSC治疗心肌梗死相比,将表面工程化的MSC注入心脏可显著改善植入率、心脏功能、梗死面积和血管生成。具有纳米凝胶盔甲的表面锚定、生物相容性细胞表面工程为生产强大的治疗性干细胞提供了一种新方法,并可能在基于细胞的疗法中发掘巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee67/7856906/938e34c43e27/ADVS-8-2003348-g001.jpg

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