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首页> 外文期刊>Journal of hypertension >Influence of hypertension on cardiac contractile response of human erythrocyte-derived depressing factor in ventricular myocytes.
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Influence of hypertension on cardiac contractile response of human erythrocyte-derived depressing factor in ventricular myocytes.

机译:高血压对心室肌细胞中人红细胞源性抑制因子心脏收缩反应的影响。

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BACKGROUND: Erythrocyte-derived depressing factor (EDDF), a novel hypotensive factor purified from human erythrocytes, elicits endothelium-dependent vasorelaxation by reducing intracellular Ca2+ in vascular smooth muscle cells. However, its cardiac response is unknown. OBJECTIVE: This study was designed to examine the cardiac contractile response of EDDF under both normotensive and hypertensive conditions. METHODS: Ventricular myocytes were isolated from adult male spontaneously hypertensive rats (SHR) and age-matched Wistar-Kyoto (WKY) normotensive rats. Mechanical properties were evaluated using an IonOptix MyoCam system and intracellular Ca2+ was measured with fura-2 fluorescence. Myocytes were electrically stimulated to contract at 0.5 Hz. The contractile properties analyzed included peak shortening (PS), time-to-PS (TPS), time-to-90% re-lengthening (TR(90)), maximal velocity of shortening/re-lengthening (+/- dl/dt), fura-fluorescence intensity change (DeltaFFI), and fura-fluorescence decay rate (tau). RESULTS: SHR rats displayed significantly elevated blood pressure. EDDF (10-9-10-4 g/ml) did not affect PS, TPS, TR(90), DeltaFFI and tau but depressed +/- dl/dt at higher doses in WKY myocytes. However, EDDF depressed PS, +/- dl/dt and DeltaFFI, shortened TPS without affecting TR(90) and tau in SHR myocytes. Pretreatment of the myocytes with the nitric oxide synthase inhibitor Nvarpi-nitro-l-arginine methyl ester (l-NAME) did not affect the EDDF-induced inhibition of PS and +/- dl/dt in SHR myocytes but unmasked an EDDF-induced negative response in WKY myocytes. CONCLUSIONS: These data indicate that EDDF may participate in the modulation of cardiac contractile function under hypertensive, but not normotensive, conditions. The cardiac depressive effect of EDDF is unlikely due to release of nitric oxide, as suggested in vascular smooth muscles.
机译:背景:红细胞源性降压因子(EDDF)是一种从人红细胞中提纯的新型降压因子,可通过减少血管平滑肌细胞内的Ca2 +引起内皮依赖性血管舒张。但是,其心脏反应尚不清楚。目的:本研究旨在检查EDDF在正常血压和高血压情况下的心脏收缩反应。方法:从成年雄性自发性高血压大鼠(SHR)和年龄匹配的Wistar-Kyoto(WKY)血压正常大鼠中分离出室壁心肌细胞。使用IonOptix MyoCam系统评估机械性能,并通过fura-2荧光测量细胞内Ca2 +。电刺激心肌细胞以0.5 Hz收缩。分析的收缩特性包括峰缩短(PS),到达PS的时间(TPS),达到90%的重新伸长时间(TR(90)),缩短/重新伸长的最大速度(+/- dl / dt),呋喃荧光强度变化(DeltaFFI)和呋喃荧光衰减率(tau)。结果:SHR大鼠血压显着升高。 EDDF(10-9-10-4 g / ml)不会影响PS,TPS,TR(90),DeltaFFI和tau,但在WKY心肌细胞中以较高剂量会降低+/- dl / dt。但是,EDDF压低PS,+ /-dl / dt和DeltaFFI,缩短了TPS,而不会影响SHR心肌细胞的TR(90)和tau。用一氧化氮合酶抑制剂Nvarpi-硝基-1-精氨酸甲酯(l-NAME)预处理心肌细胞不会影响EDDF诱导的SHR心肌细胞PS和+/- dl / dt的抑制作用,但未掩盖EDDF诱导的WKY心肌细胞发生阴性反应。结论:这些数据表明,EDDF可能在高血压而非正常血压条件下参与心脏收缩功能的调节。 EDDF的心脏抑制作用不太可能是由于血管平滑肌中释放的一氧化氮所致。

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