低温对豚鼠离体心脏心肌功能和[Ca2+]敏感性的调节

D F Stowe, S Fujita, J An, R A Paulsen, S G Varadarajan, S C Smart
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引用次数: 56

摘要

心脏低温改变收缩力和细胞内Ca2+浓度([Ca2+]i)稳态。我们检查了左心室压(LVP)是如何作为细胞质[Ca2+]i的函数在细胞外CaCl2浓度([CaCl2]e)范围内改变的,在37℃,27℃和17℃时灌注分离的,有节奏的豚鼠心脏。使用Ca2+指示剂indo 1测量跨壁左室相[Ca2+],并在校正自身荧光,温度和非细胞质Ca2+后校准(以nM为单位)。非胞质[Ca2+]i,胞质舒张期和收缩期[Ca2+]i,期相[Ca2+]i和收缩期每拍释放的Ca2+(面积Ca2+)绘制为0.3-4.5 mM [CaCl2]e的函数,收缩性指标[LVP,最大LVP发育率(+dLVP/dt)和弛豫(-dLVP/dt),以及每拍LVP曲线积分(LVParea)]绘制为[Ca2+]i的函数。低温升高收缩压[Ca2+]i,略微改变收缩压LVP,但升高舒张压LVP和[Ca2+]i。舒张期和非胞质期[Ca2+]与[CaCl2]e的关系在17℃和27℃时向上移动,而期[Ca2+]与[CaCl2]e的关系在17℃时向上移动,而在27℃时则没有。期[Ca2+]i与发达的LVP、+dLVP/dt和LVP(面积)的关系随着低温的降低而逐渐降低,从而使最大Ca2+激活的LVP降低,心脏对Ca2+脱敏。因此,轻度低温适度增加舒张期和非胞质Ca2+,对收缩期Ca2+或释放(面积)Ca2+影响不大,而中度低温显著增加舒张期、非胞质期、峰值收缩期和释放Ca2+,并导致最大Ca2+激活的LVP和心肌对收缩期Ca2+的敏感性降低。
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Modulation of myocardial function and [Ca2+] sensitivity by moderate hypothermia in guinea pig isolated hearts.

Cardiac hypothermia alters contractility and intracellular Ca2+ concentration ([Ca2+]i) homeostasis. We examined how left ventricular pressure (LVP) is altered as a function of cytosolic [Ca2+]i over a range of extracellular CaCl2 concentration ([CaCl2]e) during perfusion of isolated, paced guinea pig hearts at 37 degrees C, 27 degrees C, and 17 degrees C. Transmural LV phasic [Ca2+] was measured using the Ca2+ indicator indo 1 and calibrated (in nM) after correction was made for autofluorescence, temperature, and noncytosolic Ca2+. Noncytosolic [Ca2+]i, cytosolic diastolic and systolic [Ca2+]i, phasic [Ca2+]i, and systolic Ca2+ released per beat (area Ca2+) were plotted as a function of 0.3-4.5 mM [CaCl2]e, and indexes of contractility [LVP, maximal rates of LVP development (+dLVP/dt) and relaxation (-dLVP/dt), and the integral of the LVP curve per beat (LVParea)] were plotted as a function of [Ca2+]i. Hypothermia increased systolic [Ca2+]i and slightly changed systolic LVP but increased diastolic LVP and [Ca2+]i. The relationship of diastolic and noncytosolic [Ca2+] to [CaCl2]e was shifted upward at 17 degrees C and 27 degrees C, whereas that of phasic [Ca2+]) to [CaCl2]e was shifted upward at 17 degrees C but not at 27 degrees C. The relationships of phasic [Ca2+]i to developed LVP, +dLVP/dt, and LVP(area) were progressively reduced by hypothermia so that maximal Ca2+-activated LVP decreased and hearts were desensitized to Ca2+. Thus mild hypothermia modestly increases diastolic and noncytosolic Ca2+ with little effect on systolic Ca2+ or released (area) Ca2+, whereas moderate hypothermia markedly increases diastolic, noncytosolic, peak systolic, and released Ca2+ and results in reduced maximal Ca2+-activated LVP and myocardial sensitivity to systolic Ca2+.

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