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快速安全制备独立的壳聚糖/海藻酸盐纳米膜以促进干细胞递送和伤口愈合。

Fast and safe fabrication of a free-standing chitosan/alginate nanomembrane to promote stem cell delivery and wound healing.

作者信息

Kong Yi, Xu Rui, Darabi Mohammad Ali, Zhong Wen, Luo Gaoxing, Xing Malcolm Mq, Wu Jun

机构信息

Institute of Burn Research, Southwest Hospital, State Key Laboratory of Trauma, Burns, and Combined Injury, Chongqing Key Laboratory for Diseases Proteomics, Third Military Medical University, Chongqing, People's Republic of China; Department of Mechanical Engineering, Biochemistry and Medical Genetics, Children's Hospital Research Institute of Manitoba, University of Manitoba, Winnipeg, MB, Canada.

Institute of Burn Research, Southwest Hospital, State Key Laboratory of Trauma, Burns, and Combined Injury, Chongqing Key Laboratory for Diseases Proteomics, Third Military Medical University, Chongqing, People's Republic of China.

出版信息

Int J Nanomedicine. 2016 Jun 3;11:2543-55. doi: 10.2147/IJN.S102861. eCollection 2016.

Abstract

Polymeric ultrathin membranes that are compatible with cells offer tremendous advantages for tissue engineering. In this article, we report a free-standing nanomembrane that was developed using a layer-by-layer self-assembly technique with a safe and sacrificial substrate method. After ionization, two oppositely charged polyelectrolytes, alginate and chitosan, were alternately deposited on a substrate of a solidified gelatin block to form an ultrathin nanomembrane. The space between the two adjacent layers was ∼200 nm. The thickness of the nanomembrane was proportional to the number of layers. The temperature-sensitive gelatin gel served as a sacrificial template at 37°C. The free-standing nanomembrane promoted bone marrow stem cell adhesion and proliferation. Fluorescence-activated cell sorting was used to analyze green-fluorescent-protein-positive mesenchymal stem cells from the wounds, which showed a significantly high survival and proliferation from the nanomembrane when cells were transplanted to mouse dorsal skin that had a full-thickness burn. The bone-marrow-stem-cell-loaded nanomembrane also accelerated wound contraction and epidermalization. Therefore, this methodology provides a fast and facile approach to construct free-standing ultrathin scaffolds for tissue engineering. The biocompatibility and free-standing nature of the fabricated nanomembrane may be particularly useful for stem cell delivery and wound healing.

摘要

与细胞兼容的聚合物超薄膜为组织工程带来了巨大优势。在本文中,我们报道了一种独立的纳米膜,它是采用逐层自组装技术结合安全的牺牲性底物法制备而成。离子化后,将带相反电荷的两种聚电解质——海藻酸盐和壳聚糖交替沉积在固化明胶块的底物上,以形成超薄膜纳米膜。相邻两层之间的间距约为200纳米。纳米膜的厚度与层数成正比。温度敏感的明胶凝胶在37℃时作为牺牲模板。这种独立的纳米膜促进了骨髓干细胞的黏附和增殖。利用荧光激活细胞分选技术分析伤口处绿色荧光蛋白阳性间充质干细胞,结果显示,当将细胞移植到全层烧伤的小鼠背部皮肤时,纳米膜上的细胞存活率和增殖率显著提高。负载骨髓干细胞的纳米膜还加速了伤口收缩和表皮化。因此,这种方法为构建用于组织工程的独立超薄支架提供了一种快速简便的途径。所制备纳米膜的生物相容性和独立性质可能对干细胞递送和伤口愈合特别有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e18a/4907708/dfec924f4052/ijn-11-2543Fig1.jpg

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