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鹿角干细胞及其在伤口愈合和骨再生中的潜力。

Antler stem cells and their potential in wound healing and bone regeneration.

作者信息

Zhang Wei, Ke Chang-Hong, Guo Hai-Hua, Xiao Li

机构信息

Medical Imaging Center, The First Affiliated Hospital of Jinan University, Jinan University, Guangzhou 510080, Guangdong Province, China.

Research & Development Center, YZ Health-tech Inc., Zhuhai 519000, Guangdong Province, China.

出版信息

World J Stem Cells. 2021 Aug 26;13(8):1049-1057. doi: 10.4252/wjsc.v13.i8.1049.

Abstract

Compared to other vertebrates, the regenerative capacity of appendages in mammals is very limited. Deer antlers are an exception and can fully regenerate annually in postnatal mammals. This process is initiated by the antler stem cells (AnSCs). AnSCs can be divided into three types: (1) Antlerogenic periosteum cells (for initial pedicle and first antler formation); (2) Pedicle periosteum cells (for annual antler regeneration); and (3) Reserve mesenchyme cells (RMCs) (for rapid antler growth). Previous studies have demonstrated that AnSCs express both classic mesenchymal stem cells (MSCs) and embryonic stem cells (ESCs), and are able to differentiate into multiple cell types . Thus, AnSCs were defined as MSCs, but with partial ESC attributes. Near-perfect generative wound healing can naturally occur in deer, and wound healing can be achieved by the direct injection of AnSCs or topical application of conditioned medium of AnSCs in rats. In addition, in rabbits, the use of both implants with AnSCs and cell-free preparations derived from AnSCs can stimulate osteogenesis and repair defects of bone. A more comprehensive understanding of AnSCs will lay the foundation for developing an effective clinical therapy for wound healing and bone repair.

摘要

与其他脊椎动物相比,哺乳动物附属肢体的再生能力非常有限。鹿角是个例外,在出生后的哺乳动物中,鹿角每年都能完全再生。这个过程由鹿角干细胞(AnSCs)启动。AnSCs可分为三种类型:(1)生角骨膜细胞(用于初始鹿角柄和第一支鹿角的形成);(2)鹿角柄骨膜细胞(用于每年的鹿角再生);以及(3)储备间充质细胞(RMCs)(用于鹿角的快速生长)。先前的研究表明,AnSCs同时表达经典的间充质干细胞(MSCs)和胚胎干细胞(ESCs),并且能够分化为多种细胞类型。因此,AnSCs被定义为MSCs,但具有部分ESC属性。近乎完美的创伤愈合在鹿身上可以自然发生,在大鼠中,通过直接注射AnSCs或局部应用AnSCs的条件培养基也可以实现创伤愈合。此外,在兔子中,使用含有AnSCs的植入物和源自AnSCs的无细胞制剂都可以刺激成骨并修复骨缺损。对AnSCs更全面的了解将为开发有效的伤口愈合和骨修复临床治疗方法奠定基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5af3/8422928/bcdbc8844f1d/WJSC-13-1049-g001.jpg

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