Muscle differentiation

肌肉分化
  • 文章类型: Journal Article
    肌肉骨骼疾病是全球残疾的主要原因之一,预计未来几十年它们的患病率会增加。干细胞疗法可能是治疗某些肌肉骨骼疾病的有希望的选择。尽管在肌肉骨骼干细胞研究方面取得了重大进展,骨关节炎,最常见的肌肉骨骼疾病,仍然缺乏治愈性治疗。为了微调基于干细胞的治疗,有必要关注潜在的生物学机制。离子通道和它们产生的生物电信号控制着增殖,分化,和肌肉骨骼祖细胞的迁移。钙和电压激活钾(KCa)通道是肌肉骨骼系统细胞中细胞生理学的关键参与者。本文主要研究大电导(BK)KCa通道。BK通道的调节功能需要与在组织驻留干细胞中具有不同功能的不同蛋白质组相互作用。在这篇叙事评论文章中,我们讨论了肌肉骨骼干细胞的主要离子通道,关注钙依赖性钾通道,特别是在大电导BK通道上。我们回顾了它们在祖细胞增殖中的表达和功能。分化,和迁移,并突出了他们参与肌肉骨骼疾病的现有知识的差距。
    Musculoskeletal disorders represent one of the main causes of disability worldwide, and their prevalence is predicted to increase in the coming decades. Stem cell therapy may be a promising option for the treatment of some of the musculoskeletal diseases. Although significant progress has been made in musculoskeletal stem cell research, osteoarthritis, the most-common musculoskeletal disorder, still lacks curative treatment. To fine-tune stem-cell-based therapy, it is necessary to focus on the underlying biological mechanisms. Ion channels and the bioelectric signals they generate control the proliferation, differentiation, and migration of musculoskeletal progenitor cells. Calcium- and voltage-activated potassium (KCa) channels are key players in cell physiology in cells of the musculoskeletal system. This review article focused on the big conductance (BK) KCa channels. The regulatory function of BK channels requires interactions with diverse sets of proteins that have different functions in tissue-resident stem cells. In this narrative review article, we discuss the main ion channels of musculoskeletal stem cells, with a focus on calcium-dependent potassium channels, especially on the large conductance BK channel. We review their expression and function in progenitor cell proliferation, differentiation, and migration and highlight gaps in current knowledge on their involvement in musculoskeletal diseases.
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