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Biphasic decay of the Ca transient results from increased sarcoplasmic reticulum Ca leak

机译:Ca瞬态的双相衰减是由于肌浆网Ca泄漏增加

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In heart failure, a reduction in Ca transient amplitude and contractile dysfunction can by caused by Ca leak through the sarcoplasmic reticulum (SR) Ca channel (ryanodine receptor, RyR) and/or decreased activity of the SR Ca ATPase (SERCA). We have characterised the effects of two forms of Ca leak (Ca-sensitising and non-sensitising) on calcium cycling and compared with those of SERCA inhibition. We measured [Ca2+](i) with fluo-3 in voltage-clamped rat ventricular myocytes. Increasing SR leak with either caffeine (to sensitise the RyR to Ca activation) or ryanodine (non-sensitising) had similar effects to SERCA inhibition: decreased systolic [Ca2+](i), increased diastolic [Ca2+](i) and slowed decay. However, in the presence of isoproterenol, leak produced a biphasic decay of the Ca transient in the majority of cells while SERCA inhibition produced monophasic decay. Tetracaine reversed the effects of caffeine but not of ryanodine. When caffeine (1mmoll(-1)) was added to a cell which displayed Ca waves, the wave frequency initially increased before waves disappeared and biphasic decay developed. Eventually (at higher caffeine concentrations), the biphasic decay was replaced by slow decay. We conclude that, in the presence of adrenergic stimulation, Ca leak can produce biphasic decay; the slow phase results from the leak opposing Ca uptake by SERCA. The degree of leak determines whether decay of Ca waves, biphasic or monophasic, occurs.
机译:在心力衰竭中,Ca瞬变幅度和收缩功能障碍的减少可能是由于Ca通过肌质网(SR)Ca通道(ryanodine受体,RyR)泄漏和/或SR Ca ATPase(SERCA)活性降低所致。我们已经表征了两种形式的Ca泄漏(Ca致敏和非致敏)对钙循环的影响,并与SERCA抑制进行了比较。我们在电压钳制的大鼠心室肌细胞中用fluo-3测量了[Ca2 +](i)。用咖啡因(使RyR对Ca活化敏感)或雷诺定(对非致敏作用)增加SR渗漏具有与SERCA抑制相似的作用:收缩压[Ca2 +](i)降低,舒张性[Ca2 +](i)升高和衰变减慢。但是,在存在异丙肾上腺素的情况下,泄漏会在大多数细胞中产生Ca瞬变的双相衰减,而SERCA抑制则会产生单相衰减。 Tetracaine可逆转咖啡因的作用,但不能逆转ryanodine的作用。当向显示Ca波的细胞中添加咖啡因(1mmoll(-1))时,波频率最初在波消失之前开始增加,并且出现了双相衰减。最终(在较高的咖啡因浓度下),双相衰减被缓慢衰减所取代。我们得出的结论是,在肾上腺素刺激的存在下,Ca泄漏会产生两相衰变。慢相是由于泄漏导致SERCA吸收了Ca。泄漏的程度决定了Ca波是双相还是单相的衰减。

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