首页> 外文期刊>Frontiers in Cell and Developmental Biology >The Role of TRP Channels and PMCA in Brain Disorders: Intracellular Calcium and pH Homeostasis
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The Role of TRP Channels and PMCA in Brain Disorders: Intracellular Calcium and pH Homeostasis

机译:TRP频道和PMCA在脑病中的作用:细胞内钙和pH稳态

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Brain disorders include neurodegenerative diseases (NDs) with different conditions that primarily affect the neurons and glia in the brain. However, the risk factors and pathophysiological mechanisms of NDs have not been fully elucidated. Homeostasis of intracellular Ca2 concentration and intracellular pH (pHi) is crucial for cell function. The regulatory processes of these ionic mechanisms may be absent or excessive in pathological conditions, leading to a loss of cell death in distinct regions of ND patients. Herein, we review the potential involvement of transient receptor potential (TRP) channels in NDs, where disrupted Ca2 homeostasis leads to cell death. The capability of TRP channels to restore or excite the cell through Ca2 regulation depending on the level of plasma membrane Ca2 ATPase (PMCA) activity is discussed in detail. As PMCA simultaneously affects intracellular Ca2 regulation as well as pHi, TRP channels and PMCA thus play vital roles in modulating ionic homeostasis in various cell types or specific regions of the brain where the TRP channels and PMCA are expressed. For this reason, the dysfunction of TRP channels and/or PMCA under pathological conditions disrupts neuronal homeostasis due to abnormal Ca2 and pH levels in the brain, resulting in various NDs. This review addresses the function of TRP channels and PMCA in controlling intracellular Ca2 and pH, which may provide novel targets for treating NDs.
机译:脑疾病包括具有不同条件的神经退行性疾病(NDS),其主要影响大脑中神经元和胶石。然而,NDS的危险因素和病理生理机制尚未完全阐明。细胞内Ca2浓度和细胞内pH(phi)的稳态对于细胞功能至关重要。这些离子机制的调节过程可能在病理条件下不存在或过量,导致ND患者的不同区域中的细胞死亡丧失。在此,我们审查了NDS中瞬态受体电位(TRP)通道的潜在累积,其中破坏了CA2稳态导致细胞死亡。细节讨论了根据血浆膜Ca2 ATP酶(PMCA)活性水平的CRP通道通过CA2调节恢复或​​激发细胞的能力。由于PMCA同时影响细胞内Ca2调节以及PHI,TRP通道和PMCA,因此在调节TRP通道和PMCA的大脑的各种细胞类型或特定区域中调节离子稳态中的重要作用。因此,由于CA2异常和脑中的pH水平,TRP通道和/或PMCA在病理病症下的功能障碍破坏了神经元稳态,导致各种NDS。该综述满足TRP通道和PMCA在控制细胞内Ca2和pH的情况下的功能,这可以提供用于治疗ND的新靶标。

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