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再生医学治疗男性不育症:关注于干细胞龛损伤模型。

Regenerative medicine for male infertility: A focus on stem cell niche injury models.

机构信息

Institute for Regenerative Medicine, Medical Research and Education Center, Lomonosov Moscow State University, Moscow, Russia.

Faculty of Medicine, Lomonosov Moscow State University, Moscow, Russia.

出版信息

Biomed J. 2022 Aug;45(4):607-614. doi: 10.1016/j.bj.2022.01.015. Epub 2022 Feb 3.

Abstract

Stem and progenitor cells located within stem cell niches maintain the renewal and regeneration of tissues and organs throughout the life of an adult organism. Stem cell niche component dysfunction might alter the activity of stem cells and ultimately lead to the development of difficult-to-treat chronic or acute disorders. Of note, some cases of idiopathic male infertility, a highly prevalent diagnosis with no specific treatment options, might be associated with a spermatogonial stem cell(SSC) niche disturbance. To overcome this disease entity, approaches aiming at launching the regeneration of an altered stem cell niche are worth considering. Particularly, mesenchymal stromal cells (MSCs) or their secretome might fulfill this task due to their promising contribution in recovering injured stem cell niches. However, the successful application of MSC-based treatment is limited by the uncovered mechanisms of action of MSCs and their secretome. Specific animal models should be developed or adapted to reveal the role of MSCs and their secretome in a stem cell niche recovery. In this review, in a bid to consider MSCs and their secretome as a therapeutic regenerative approach for idiopathic male infertility we focus on the rationale of SSC niche injury modeling.

摘要

位于干细胞巢中的干细胞和祖细胞维持着成年生物体整个生命周期内组织和器官的更新和再生。干细胞巢成分功能障碍可能会改变干细胞的活性,并最终导致难以治疗的慢性或急性疾病的发生。值得注意的是,一些特发性男性不育症的病例(一种高度流行的诊断,尚无特定的治疗方法)可能与精原干细胞(SSC)巢干扰有关。为了克服这种疾病实体,可以考虑采用旨在启动改变的干细胞巢再生的方法。特别是间充质基质细胞(MSCs)或其分泌组由于其在恢复受损的干细胞巢方面的有希望的贡献,可能能够完成这项任务。然而,MSC 为基础的治疗的成功应用受到 MSCs 和其分泌组的作用机制尚未阐明的限制。应开发或适应特定的动物模型,以揭示 MSCs 和其分泌组在干细胞巢恢复中的作用。在这篇综述中,为了将 MSCs 和其分泌组视为特发性男性不育症的一种治疗性再生方法,我们专注于 SSC 巢损伤建模的基本原理。

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