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IVD 祖细胞:理解椎间盘稳态和修复的新视野。

IVD progenitor cells: a new horizon for understanding disc homeostasis and repair.

机构信息

School of Medicine, South China University of Technology, Guangzhou, China.

Department of Orthopaedics and Traumatology, Li Ka Shing Faculty of Medicine, The University of Hong Kong, Hong Kong SAR, China.

出版信息

Nat Rev Rheumatol. 2019 Feb;15(2):102-112. doi: 10.1038/s41584-018-0154-x.

Abstract

Intervertebral disc (IVD) degeneration is associated with low back pain. In IVDs, a high mechanical load, high osmotic pressure and hypoxic conditions create a hostile microenvironment for resident cells. How IVD homeostasis and function are maintained under stress remains to be understood; however, several research groups have reported isolating native endogenous progenitor-like or otherwise proliferative cells from the IVD. The isolation of such cells implies that the IVD might contain a quiescent progenitor-like population that could be activated for IVD repair and regeneration. Increased understanding of endogenous disc progenitor cells will improve our knowledge of IVD homeostasis and, when combined with tissue engineering techniques, might hold promise for future therapeutic applications. In this Review, the characteristics of progenitor cells in different IVD compartments are discussed, as well as the potency of different cell populations within the IVD. The stem cell characteristics of these cells are also compared with those of mesenchymal stromal cells. On the basis of existing evidence, whether and how IVD degeneration and the hostile microenvironment might affect endogenous progenitor cell function are considered, and ways to channel the potential of these cells for IVD repair are suggested.

摘要

椎间盘(IVD)退变与下腰痛有关。在 IVD 中,高机械负荷、高渗透压和缺氧条件为常驻细胞创造了恶劣的微环境。IVD 在压力下如何维持内稳态和功能仍有待了解;然而,一些研究小组已经报告从 IVD 中分离出天然的内源性祖细胞样或其他增殖细胞。这些细胞的分离意味着 IVD 可能含有静止的祖细胞样群体,可被激活用于 IVD 修复和再生。增加对内源性椎间盘祖细胞的理解将提高我们对 IVD 内稳态的认识,并且与组织工程技术相结合,可能为未来的治疗应用提供希望。在这篇综述中,讨论了不同 IVD 隔室中祖细胞的特征,以及 IVD 内不同细胞群体的潜力。还将这些细胞的干细胞特性与间充质基质细胞进行了比较。根据现有证据,考虑了 IVD 退变和恶劣的微环境是否以及如何影响内源性祖细胞功能,并提出了利用这些细胞进行 IVD 修复的方法。

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