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通过肾包膜移植和培养系统分析骨骼干细胞。

Analysis of skeletal stem cells by renal capsule transplantation and culture systems.

作者信息

Hsu Wei, Maruyama Takamitsu

机构信息

Forsyth Institue, Cambridge, MA, United States.

Faculty of Medicine of Harvard University, Harvard School of Dental Medicine, Boston, MA, United States.

出版信息

Front Physiol. 2023 Mar 29;14:1143344. doi: 10.3389/fphys.2023.1143344. eCollection 2023.

Abstract

Skeletal stem cells residing in the suture mesenchyme are responsible for proper development, homeostasis, and injury repair of the craniofacial skeleton. These naïve cells are programmed to differentiate into osteoblast cell types and mediate bone formation an intramembranous ossification mechanism. The simplicity of this system also offers great advantages to studying osteoblastogenesis compared to the appendicular and axial skeletons. Recent studies utilizing genetically based cell tracing have led to the identification of skeletal stem cell populations in craniofacial and body skeletons. Although the genetic analysis indicates these cells behave like stem cells , not all of them have been thoroughly examined by stem cell isolation and stem cell-mediated tissue generation. As regeneration is an integral part of stem cell characteristics, it is necessary to further analyze their ability to generate tissue at the ectopic site. The establishment of an culture system to maintain the stemness properties for extended periods without losing the regenerative ability is also pertinent to advance our knowledge base of skeletal stem cells and their clinical applications in regenerative medicine. The purpose of this review is to discuss our recent advancements in analyses of skeletal stem cells using renal capsule transplantation and sphere culture systems.

摘要

位于缝线间充质中的骨骼干细胞负责颅面骨骼的正常发育、内环境稳定和损伤修复。这些原始细胞被编程分化为成骨细胞类型,并通过膜内成骨机制介导骨形成。与附肢骨骼和中轴骨骼相比,该系统的简单性也为研究成骨细胞生成提供了巨大优势。最近利用基于基因的细胞追踪研究已经在颅面骨骼和身体骨骼中鉴定出骨骼干细胞群体。尽管遗传分析表明这些细胞表现得像干细胞,但并非所有细胞都经过了干细胞分离和干细胞介导的组织生成的彻底检查。由于再生是干细胞特性的一个组成部分,因此有必要进一步分析它们在异位部位生成组织的能力。建立一种能够长期维持干性特性而不丧失再生能力的培养系统,对于推进我们对骨骼干细胞的知识库及其在再生医学中的临床应用也至关重要。本综述的目的是讨论我们最近在使用肾包膜移植和球体培养系统分析骨骼干细胞方面取得的进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54aa/10090280/d0af51583868/fphys-14-1143344-g001.jpg

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