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心肌收缩储备的性别差异。

Sex-based differences in myocardial contractile reserve.

作者信息

Petre Rebecca E, Quaile Michael P, Rossman Eric I, Ratcliffe Sarah J, Bailey Beth A, Houser Steven R, Margulies Kenneth B

机构信息

Department of Physiology and the Cardiovascular Research Center, Temple University School of Medicine, Philadelphia, Pennsylvania, USA.

出版信息

Am J Physiol Regul Integr Comp Physiol. 2007 Feb;292(2):R810-8. doi: 10.1152/ajpregu.00377.2006. Epub 2006 Sep 28.

Abstract

Recent studies have identified sex differences in heart function that may affect the risk of developing heart failure. We hypothesized that there are fundamental differences in calcium (Ca) regulation in cardiac myocytes of males and premenopausal females. Isometric force transients (n = 45) were measured at various stimulation frequencies to define the force frequency responses (FFR) (0.5, 1.0, 1.5, and 2.0 Hz) during either changes in bath Ca ([Ca]o) (1.0, 1.75, 3.5, and 7.0 mM) or length-tension (20, 40, 60, 80, and 100% L(max)) in right ventricle trabeculae from normal male (MT) and premenopausal female (FT) cats. Force-Ca measurements were also obtained in chemically skinned trabeculae. Under basal conditions (0.5 Hz, 1.75 mM Ca, 80% L(max)) both MT and FT achieved similar developed forces (DF) (MT 11 +/- 1, FT = 10 +/- 1 mN/mm2). At low rates and lengths, there is no sex difference. At higher preloads and rates, there is a separation in DF in MT and FT. At basal [Ca]o both MT and FT exhibited positive FFR (2.0 Hz, 1.75 mM Ca: MT 38 +/- 3, FT 21 +/- 4 mN/mm2); however, at higher [Ca]o, MT achieved greater DF (2.0 Hz, 7.0 mM Ca: MT 40 +/- 3 and FT = 24 +/- 4 mN/mm2). We detected no sex difference in myofilament Ca sensitivity at a sarcomere length of 2.1 mum. However, rapid cooling contractures indicated greater sarcoplasmic reticulum (SR) Ca load in MT at higher frequencies. Despite virtually identical contractile performance under basal conditions, significant sex differences emerge under conditions of increased physiological stress. Given the lack of sex differences in myofilament Ca sensitivity, these studies suggest fundamental sex differences in cellular Ca regulation to achieve contractile reserve, with myocardium from males exhibiting higher SR Ca load.

摘要

近期研究已确定心脏功能存在性别差异,这可能会影响心力衰竭的发病风险。我们推测,雄性和绝经前雌性心肌细胞中的钙(Ca)调节存在根本差异。在不同刺激频率下测量等长力瞬变(n = 45),以确定正常雄性(MT)和绝经前雌性(FT)猫右心室小梁在浴液钙浓度([Ca]o)变化(1.0、1.75、3.5和7.0 mM)或长度-张力(20、40、60、80和100% L(max))过程中的力频率响应(FFR)(0.5、1.0、1.5和2.0 Hz)。还在化学去表皮小梁中进行了力-钙测量。在基础条件下(0.5 Hz,1.75 mM钙,80% L(max)),MT和FT的舒张期力(DF)相似(MT为11±1,FT为10±1 mN/mm2)。在低频率和低长度时,不存在性别差异。在较高的前负荷和频率下,MT和FT的DF出现分离。在基础[Ca]o时,MT和FT均表现出正性FFR(2.0 Hz,1.75 mM钙:MT为38±3,FT为21±4 mN/mm2);然而,在较高的[Ca]o时,MT的DF更大(2.0 Hz,7.0 mM钙:MT为40±3,FT为24±4 mN/mm2)。在肌节长度为2.1μm时,我们未检测到肌丝钙敏感性存在性别差异。然而,快速冷却挛缩表明在较高频率下MT的肌浆网(SR)钙负荷更大。尽管在基础条件下收缩性能几乎相同,但在生理应激增加的情况下会出现显著的性别差异。鉴于肌丝钙敏感性不存在性别差异,这些研究表明在细胞钙调节以实现收缩储备方面存在根本的性别差异,雄性心肌的SR钙负荷更高。

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