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通过对单个细胞的测量揭示的平滑肌中力与钙离子浓度之间的关系。

Relationship between force and Ca2+ concentration in smooth muscle as revealed by measurements on single cells.

作者信息

Yagi S, Becker P L, Fay F S

机构信息

Department of Physiology, University of Massachusetts Medical School, Worcester 01655.

出版信息

Proc Natl Acad Sci U S A. 1988 Jun;85(11):4109-13. doi: 10.1073/pnas.85.11.4109.

Abstract

The role of Ca2+ in regulating smooth muscle contraction was investigated by measuring isometric force and [Ca2+] simultaneously in individual single smooth-muscle cells. [Ca2+] was measured with fura-2 and a high time-resolution dual-wavelength digital microfluorimeter, and force was measured with an ultrasensitive force transducer attached to a probe around which was tied one end of the cell. Both [Ca2+] and force increase after maximal electrical stimulus, with [Ca2+] increasing considerably before the first detectable increase in force. Force development exhibited maximal sensitivity to [Ca2+] between 150 and 500 nM Ca2+. This Ca2+ sensitivity can account for the fact that many physiological stimuli produce full contraction even though such stimuli only increase Ca2+ to 600-800 nM. When Ca2+ was induced to increase rapidly, the relation between [Ca2+] and force exhibited hysteresis. During the onset of contraction, force at a given [Ca2+] was lower than during the muscle's return to rest, thus suggesting the existence of a slow step(s) linking Ca2+ and force development in smooth muscle. The direction of this hysteresis reversed during contractions in which Ca2+ increased slowly, suggesting that the contractile process becomes desensitized to [Ca2+] with time. These relations between calcium and force in intact single smooth-muscle cells differ in many respects from the relation found previously in chemically permeabilized multicellular preparations of smooth muscle.

摘要

通过在单个平滑肌细胞中同时测量等长力和[Ca2+],研究了Ca2+在调节平滑肌收缩中的作用。使用fura-2和高时间分辨率双波长数字显微荧光计测量[Ca2+],并使用连接到探针上的超灵敏力传感器测量力,细胞的一端系在该探针上。最大电刺激后,[Ca2+]和力均增加,在首次检测到力增加之前,[Ca2+]有相当大的增加。在150至500 nM Ca2+之间,力的发展对[Ca2+]表现出最大敏感性。这种Ca2+敏感性可以解释许多生理刺激即使仅将Ca2+增加到600 - 800 nM也能产生完全收缩这一事实。当诱导Ca2+快速增加时,[Ca2+]与力之间的关系表现出滞后现象。在收缩开始时,给定[Ca2+]下的力低于肌肉恢复到静止时的力,这表明在平滑肌中存在连接Ca2+与力发展的缓慢步骤。在Ca2+缓慢增加的收缩过程中,这种滞后的方向发生了逆转,这表明收缩过程随着时间的推移对[Ca2+]变得不敏感。完整单个平滑肌细胞中钙与力之间的这些关系在许多方面与先前在化学通透的平滑肌多细胞制剂中发现的关系不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c764/280372/487bb92520d6/pnas00263-0458-a.jpg

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