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首页> 外文期刊>Journal of Cellular Physiology >Molecular, biophysical, and pharmacological properties of calcium‐activated chloride channels
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Molecular, biophysical, and pharmacological properties of calcium‐activated chloride channels

机译:分子、生物物理和药物地理属性的钙激活氯通道

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摘要

Calcium‐activated chloride channels (CaCCs) are a family of anionic transmembrane ion channels. They are mainly responsible for the movement of Cl ? and other anions across the biological membranes, and they are widely expressed in different tissues. Since the Cl ? flow into or out of the cell plays a crucial role in hyperpolarizing or depolarizing the cells, respectively, the impact of intracellular Ca 2+ concentration on these channels is attracting a lot of attentions. After summarizing the molecular, biophysical, and pharmacological properties of CaCCs, the role of CaCCs in normal cellular functions will be discussed, and I will emphasize how dysregulation of CaCCs in pathological conditions can account for different diseases. A better understanding of CaCCs and a pivotal regulatory role of Ca 2+ can shed more light on the therapeutic strategies for different neurological disorders that arise from chloride dysregulation, such as asthma, cystic fibrosis, and neuropathic pain.
机译:钙激活氯通道(中国)阴离子跨膜离子通道的家庭。主要负责的运动Cl吗?膜,广泛表达不同的组织。的细胞起着至关重要的作用超极化或细胞去极化,分别的影响细胞内Ca 2 +集中在这些频道吸引了很多关注。分子、生物物理和药物中国商用飞机有限责任公司的性质,中国商用飞机有限责任公司在正常的作用细胞功能将讨论,我会的强调中国商用飞机有限责任公司的失调可以占不同病理条件疾病。关键的Ca 2 +流更多的监管作用对不同的治疗策略神经障碍源自氯失调,如哮喘、囊性纤维化、和神经性疼痛。

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