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Inhibition of cardiomyocyte contractile/relaxation by MN9202 and mechanisms involved.

机译:MN9202对心肌细胞收缩/松弛的抑制作用及其机制。

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BACKGROUND: The cardiac contractile function of hypertensive patients is higher than non-hypertensive patients so that it is beneficial for lowering cardiac contractile function of hypertensive patients. It remains unclear if MN9202, a dihydropyridine calcium channel blocker, has effects on positive inotropic responses induced by tetraethylammonium chloride (TEA), an antagonist of calcium-activated potassium channels, forskolin (FSK), an activator of adenylyl cyclase, isoproterenol (Iso), an activator of beta-adrenergic receptors, and methylene blue (MB), an inhibitor of guanylyl cyclase, in electrically stimulated rat cardiomyocytes. Myocyte shortening and intracellular calcium transients were assessed and the underlying mechanisms were investigated. METHODS: Twitch amplitude was measured by a video edge tracker method. Cell shortening/relengthening indexes including peak height (ph), peak height/baseline percent (ph/bl%), maximal velocity of shortening (+dL/dt), and maximal velocity of relengthening (-dL/dt) were recorded and analyzed by computer. Calcium transient amplitude (DeltaFFI) indicates intracellular calcium transients. RESULTS: Iso, FSK, TEA, and MB enhanced electrical stimulation induced contraction as evidenced by increased ph, ph/bl%, +/- dL/dt, and calcium transient amplitude (DeltaFFI) compared with those in the control group. Under basal conditions, MN9202 decreased electrically induced contraction (ph, ph/bl%,+dL/dt,-dL/dt) in a concentration-dependent manner from 3 x 10(-10) to 3 x 10(-6) mol/L. MN9202 significantly decreased calcium transient amplitude. Moreover, MN9202 (3 x 10(-6) mol/L) partially but significantly blocked the positive inotropic effect induced by Iso, FSK, MB, and TEA through blocking DeltaFFI. CONCLUSIONS: Iso, FSK, TEA, and MB increased the shortening and relengthening function of cardiomyocytes, which were partially blocked by MN9202. These results suggest that MN9202 may not only block the dihydropyridine receptor but may also inhibit other calcium influx. The exact mechanism of the action of MN9202 requires further study.
机译:背景:高血压患者的心脏收缩功能高于非高血压患者,因此有利于降低高血压患者的心脏收缩功能。尚不清楚二氢吡啶钙通道阻滞剂MN9202是否对由四乙基氯化铵(TEA)(钙激活的钾通道的拮抗剂),福斯高林(FSK),腺苷酸环化酶激活剂,异丙肾上腺素(Iso)诱导的正性肌力反应产生影响β-肾上腺素能受体的激活剂,以及鸟嘌呤环化酶抑制剂亚甲基蓝(MB)在电刺激的大鼠心肌细胞中。评估了心肌细胞缩短和细胞内钙瞬变,并研究了潜在的机制。方法:通过视频边缘跟踪器方法测量抽搐幅度。记录并分析包括峰高(ph),峰高/基线百分比(ph / bl%),最大缩短速度(+ dL / dt)和最大延长速度(-dL / dt)的细胞缩短/延长指标通过计算机。钙瞬变幅度(DeltaFFI)表示细胞内钙瞬变。结果:与对照组相比,Iso,FSK,TEA和MB增强了电刺激诱导的收缩,这是由ph,ph / bl%,+ /-dL / dt和钙瞬变幅度(DeltaFFI)升高所证明的。在基础条件下,MN9202浓度依赖性地将电诱导的收缩(ph,ph / bl%,+ dL / dt,-dL / dt)从3 x 10(-10)降低到3 x 10(-6)mol /升MN9202显着降低了钙瞬变幅度。此外,MN9202(3 x 10(-6)mol / L)部分但通过阻断DeltaFFI阻断了Iso,FSK,MB和TEA诱导的正性肌力作用。结论:Iso,FSK,TEA和MB可增加心肌细胞的缩短和延长功能,而MN9202则可部分阻断心肌细胞的缩短和延长功能。这些结果表明,MN9202不仅可以阻断二氢吡啶受体,而且还可以抑制其他钙的流入。 MN9202作用的确切机制需要进一步研究。

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