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奥美卡替麦卡比可消除豚鼠心肌纤维钙敏感性的长度介导增加。

Omecamtiv Mecarbil Abolishes Length-Mediated Increase in Guinea Pig Cardiac Myofiber Ca Sensitivity.

作者信息

Gollapudi Sampath K, Reda Sherif M, Chandra Murali

机构信息

Department of Integrative Physiology and Neuroscience (IPN), Washington State University, Pullman, Washington.

Department of Integrative Physiology and Neuroscience (IPN), Washington State University, Pullman, Washington.

出版信息

Biophys J. 2017 Aug 22;113(4):880-888. doi: 10.1016/j.bpj.2017.07.002.

Abstract

Omecamtiv mecarbil (OM) is a pharmacological agent that augments cardiac contractile function by enhancing myofilament Ca sensitivity. Given that interventions that increase myofilament Ca sensitivity have the potential to alter length-dependent activation (LDA) of cardiac myofilaments, we tested the influence of OM on this fundamental property of the heart. This is significant not only because LDA is prominent in cardiac muscle but also because it contributes to the Frank-Starling law, a mechanism by which the heart increases stroke volume in response to an increase in venous return. We measured steady-state and dynamic contractile indices in detergent-skinned guinea pig (Cavia porcellus) cardiac muscle fibers in the absence and presence of 0.3 and 3.0 μM OM at two different sarcomere lengths (SLs), short SL (1.9 μm) and long SL (2.3 μm). Myofilament Ca sensitivity, as measured by pCa (-log of [Ca] concentration required for half-maximal activation), increased significantly at both short and long SLs in OM-treated fibers when compared to untreated fibers; however, the magnitude of increase in pCa was twofold greater at short SL than at long SL. A consequence of this greater increase in pCa at short SL was that pCa did not increase any further at long SL, suggesting that OM abolished the SL dependency of pCa. Furthermore, the SL dependency of rate constants of cross-bridge distortion dynamics (c) and force redevelopment (k) was abolished in 0.3-μM-OM-treated fibers. The negative impact of OM on the SL dependency of pCa, c, and k was also observed in 3.0-μM-OM-treated fibers, indicating that cooperative mechanisms linked to LDA were altered by the OM-mediated effects on cardiac myofilaments.

摘要

奥米卡替麦卡比(OM)是一种通过增强肌丝对钙离子的敏感性来增强心脏收缩功能的药物。鉴于增加肌丝对钙离子敏感性的干预措施有可能改变心肌肌丝的长度依赖性激活(LDA),我们测试了OM对心脏这一基本特性的影响。这不仅具有重要意义,因为LDA在心肌中很突出,还因为它有助于弗兰克 - 斯塔林定律,即心脏通过该机制响应静脉回流增加而增加每搏输出量。我们在不存在和存在0.3和3.0 μM OM的情况下,在两种不同的肌节长度(SL),即短SL(1.9 μm)和长SL(2.3 μm)下,测量了去垢剂处理的豚鼠(豚鼠)心肌纤维的稳态和动态收缩指标。与未处理的纤维相比,用OM处理的纤维在短和长SL下,通过pCa(半最大激活所需的[Ca]浓度的负对数)测量的肌丝对钙离子的敏感性均显著增加;然而,短SL下pCa的增加幅度是长SL下的两倍。短SL下pCa这种更大幅度的增加导致长SL下pCa不再进一步增加,这表明OM消除了pCa的SL依赖性。此外,在0.3 μM OM处理的纤维中,横桥变形动力学(c)和力重建(k)的速率常数的SL依赖性被消除。在3.0 μM OM处理的纤维中也观察到OM对pCa、c和k的SL依赖性的负面影响,表明与LDA相关的协同机制因OM对心肌肌丝的影响而改变。

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