肌层
离子通道
超极化(物理学)
心脏动作电位
钾通道
复极
化学
膜电位
内分泌学
内科学
心肌细胞
内向整流钾离子通道
门控
BK通道
生物物理学
细胞生物学
电生理学
生物
医学
受体
子宫
有机化学
核磁共振波谱
作者
Susan Wray,Sarah Arrowsmith
标识
DOI:10.1146/annurev-physiol-032420-035509
摘要
We address advances in the understanding of myometrial physiology, focusing on excitation and the effects of gestation on ion channels and their relevance to labor. This review moves through pioneering studies to exciting new findings. We begin with the myometrium and its myocytes and describe how excitation might initiate and spread in this myogenic smooth muscle. We then review each of the ion channels in the myometrium: L- and T-type Ca 2+ channels, K ATP (Kir6) channels, voltage-dependent K channels (Kv4, Kv7, and Kv11), twin-pore domain K channels (TASK, TREK), inward rectifier Kir7.1, Ca 2+ -activated K + channels with large (KCNMA1, Slo1), small (KCNN1–3), and intermediate (KCNN4) conductance, Na-activated K channels (Slo2), voltage-gated (SCN) Na + and Na + leak channels, nonselective (NALCN) channels, the Na K-ATPase, and hyperpolarization-activated cation channels. We finish by assessing how three key hormones— oxytocin, estrogen, and progesterone—modulate and integrate excitability throughout gestation.
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