Kim Young Hwa, Lee Sumin, Yang Hyejin, Chun Yoo Lim, Kim Dokyoung, Yeo Seung Geun, Park Chan, Jung Junyang, Huh Youngbuhm
Department of Anatomy and Neurobiology, College of Medicine, Kyung Hee University, Seoul, Korea.
Department of Biomedical Science, Graduation School, Kyung Hee University, Seoul, Korea.
Anim Cells Syst (Seoul). 2020 Aug 5;24(4):189-196. doi: 10.1080/19768354.2020.1804445.
Irreversible peripheral neurodegenerative diseases such as diabetic peripheral neuropathy are becoming increasingly common due to rising rates of diabetes mellitus; however, no effective therapeutic treatments have been developed. One of main causes of irreversible peripheral neurodegenerative diseases is dysfunction in Schwann cells, which are neuroglia unique to the peripheral nervous system (PNS). Because homeostasis of calcium (Ca) and magnesium (Mg) is essential for Schwann cell dynamics, the regulation of these cations is important for controlling peripheral nerve degeneration and regeneration. Transient receptor potential melastatin 7 (TRPM7) is a non-selective ion (Ca and Mg) channel that is expressed in Schwann cells. In the present study, we demonstrated in an culture system that inhibition of TRPM7 during peripheral nerve degeneration (Wallerian degeneration) suppressed dedifferentiable or degenerative features (trans-dedifferentiation and proliferation) and conserved a differentiable feature of Schwann cells. Our results indicate that TRPM7 could be very useful as a molecular target for irreversible peripheral neurodegenerative diseases, facilitating discovery of new therapeutic methods for improving human health.
诸如糖尿病性周围神经病等不可逆性周围神经退行性疾病,因糖尿病发病率上升而愈发常见;然而,尚未开发出有效的治疗方法。不可逆性周围神经退行性疾病的主要病因之一是施万细胞功能障碍,施万细胞是周围神经系统(PNS)特有的神经胶质细胞。由于钙(Ca)和镁(Mg)的稳态对于施万细胞的动态变化至关重要,因此这些阳离子的调节对于控制周围神经的变性和再生很重要。瞬时受体电位香草酸亚型7(TRPM7)是一种在施万细胞中表达的非选择性离子(Ca和Mg)通道。在本研究中,我们在体外培养系统中证明,在周围神经变性(沃勒变性)期间抑制TRPM7可抑制施万细胞的去分化或退行性特征(转分化和增殖),并保留其可分化特征。我们的结果表明,TRPM7作为不可逆性周围神经退行性疾病的分子靶点可能非常有用,有助于发现改善人类健康的新治疗方法。