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在单根大鼠心肌细胞中,胞质钙和肌丝在收缩期松弛过程中达到动态平衡。

Cytosolic calcium and myofilaments in single rat cardiac myocytes achieve a dynamic equilibrium during twitch relaxation.

作者信息

Spurgeon H A, duBell W H, Stern M D, Sollott S J, Ziman B D, Silverman H S, Capogrossi M C, Talo A, Lakatta E G

机构信息

Laboratory of Cardiovascular Science, National Institute on Aging, National Institutes of Health, Baltimore, MD 21224.

出版信息

J Physiol. 1992 Feb;447:83-102. doi: 10.1113/jphysiol.1992.sp018992.

DOI:10.1113/jphysiol.1992.sp018992
PMID:1593465
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1176026/
Abstract
  1. Single isolated rat cardiac myocytes were loaded with either the pentapotassium salt form or the acetoxymethyl ester (AM) form of the calcium-sensitive fluorescent probe, Indo-1. The relationship of the Indo-1 fluorescence transient, an index of the change in cytosolic calcium [Ca2+]i concentration, to the simultaneously measured cell length during the electrically stimulated twitch originating from slack length at 23 degrees C was evaluated. It was demonstrated that even if the Ca2+ dissociation rate from Indo-1 was assumed to be as slow as 10 s-1, the descending limb ('relaxation phase') of the Indo-1 fluorescence transient induced by excitation under these conditions is in equilibrium with the [Ca2+]i transient. Additionally, the extent of Indo-1 loading employed did not substantially alter the twitch characteristics. 2. A unique relationship between the fluorescence transient and cell length was observed during relaxation of contractions that varied in amplitude. This was manifest as a common trajectory in the cell length vs. [Ca2+]i phase-plane diagrams beginning at the time of cell relengthening. The common trajectory could also be demonstrated in Indo-1 AM-loaded cells. The Indo-1 fluorescence-length relation defined by this common trajectory is steeper than that described by the relation of peak contraction amplitude and peak fluorescence during the twitch contractions. 3. The trajectory of the [Ca2+]i-length relation elicited via an abrupt, rapid, brief (200 ms) pulse of caffeine directly onto the cell surface or by 'tetanization' of cells in the presence of ryanodine is identical to the common [Ca2+]i-length trajectory formed by electrically stimulated contractions of different magnitudes. As the [Ca2+]i and length transients induced by caffeine application or during tetanization in the presence of ryanodine develop with a much slower time course than those elicited by electrical stimulation, the common trajectory is not fortuitous, i.e. it cannot be attributed to equivalent rate-limiting steps for the decrease of [Ca2+]i and cell relengthening. 4. The [Ca2+]i-length relation defined by the common trajectory shifts appropriately in response to perturbations that have previously been demonstrated to alter the steady-state myofilament Ca2+ sensitivity in skinned cardiac fibres. Specifically, the trajectory shifts leftward in response to an acute increase in pH or following the addition of novel myofilament calcium-sensitizing thiadiazinone derivatives; a rightward shift occurs in response to an acute reduction in pH or following the addition of butanedione monoxime.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 将分离的单个大鼠心肌细胞用钙敏感荧光探针Indo-1的五钾盐形式或乙酰氧基甲基酯(AM)形式进行负载。评估了Indo-1荧光瞬变(细胞溶质钙[Ca2+]i浓度变化的指标)与在23℃下从松弛长度开始的电刺激抽搐过程中同时测量的细胞长度之间的关系。结果表明,即使假设Indo-1的Ca2+解离速率慢至10 s-1,在这些条件下激发诱导的Indo-1荧光瞬变的下降支(“松弛相”)也与[Ca2+]i瞬变处于平衡状态。此外,所采用的Indo-1负载程度并未显著改变抽搐特征。2. 在幅度不同的收缩松弛过程中,观察到荧光瞬变与细胞长度之间存在独特的关系。这在细胞长度与[Ca2+]i相平面图中表现为从细胞重新伸长时开始的共同轨迹。在负载Indo-1 AM的细胞中也能证明这种共同轨迹。由该共同轨迹定义的Indo-1荧光-长度关系比抽搐收缩期间峰值收缩幅度与峰值荧光的关系所描述的更陡峭。3. 通过直接施加在细胞表面的突然、快速、短暂(200毫秒)的咖啡因脉冲或在存在雷诺丁的情况下对细胞进行“强直刺激”引发的[Ca2+]i-长度关系轨迹,与不同幅度电刺激收缩形成的共同[Ca2+]i-长度轨迹相同。由于咖啡因施加或在存在雷诺丁的情况下强直刺激诱导的[Ca2+]i和长度瞬变的发展时间进程比电刺激引发的要慢得多,所以这种共同轨迹并非偶然,即它不能归因于[Ca2+]i降低和细胞重新伸长的等效限速步骤。4. 由共同轨迹定义的[Ca2+]i-长度关系会根据先前已证明会改变去表皮心脏纤维中稳态肌丝Ca2+敏感性的扰动而适当地发生变化。具体而言,响应pH值急性升高或添加新型肌丝钙敏化噻二嗪酮衍生物时,轨迹向左移动;响应pH值急性降低或添加丁二酮单肟时,轨迹向右移动。(摘要截取自400字)

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