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生长激素转基因小鼠的离体心室肌细胞的心脏收缩功能增强。

Cardiac contractile function is enhanced in isolated ventricular myocytes from growth hormone transgenic mice.

作者信息

Colligan P B, Brown-Borg H M, Duan J, Ren B H, Ren J

机构信息

Department of Pharmacology, Physiology and Therapeutics, University of North Dakota School of Medicine, 501 N. Columbia Road, Grand Forks, North Dakota 58203, USA.

出版信息

J Endocrinol. 2002 May;173(2):257-64. doi: 10.1677/joe.0.1730257.

Abstract

Growth hormone (GH) plays a key role in cardiac growth and function. However, excessive levels of GH often result in cardiac dysfunction, which is the major cause of death in acromegalic patients. Transgenic mice with GH over-expression serve as useful models for acromegaly and exhibit impaired cardiac functions using echocardiography, similar to those of human acromegaly. However, the mechanism underscoring the impaired ventricular function has not been well defined. This study was designed to evaluate the cardiac excitation-contraction coupling in GH over-expressing transgenic mice at the single ventricular myocyte level. Myocytes were isolated from GH and age-matched wild-type mouse hearts. Mechanical properties were evaluated using an IonOptix MyoCam system. The contractile properties analyzed included peak shortening (PS), time-to-peak shortening (TPS) and time-to-90% relengthening (TR(90)), and maximal velocities of shortening/relengthening (+/-dL/dt). Intracellular Ca2+ properties were evaluated by fura-2. GH transgenic mice exhibited significantly increased body weights and enlarged heart and myocyte size. Myocytes from GH transgenic mice displayed significantly enhanced PS and+/-dL/dt associated with similar TPS and TR(90) compared with the wild-type littermates. Myocytes from GH transgenic mice displayed a similar resting intracellular Ca2+ level and Ca2+ removal rate but exhibited an elevated peak intracellular Ca2+ level compared with the wild-type group. Myocytes from both groups were equally responsive to increases in extracellular Ca2+ concentration and stimulating frequency. These results suggest that GH over-expression is associated with enhanced contractile function in isolated myocytes and that the impaired cardiac function observed in whole hearts may not be due to defects at the myocyte level.

摘要

生长激素(GH)在心脏生长和功能中起关键作用。然而,GH水平过高常导致心脏功能障碍,这是肢端肥大症患者死亡的主要原因。GH过表达的转基因小鼠可作为肢端肥大症的有用模型,并且使用超声心动图显示其心脏功能受损,类似于人类肢端肥大症患者。然而,心室功能受损的潜在机制尚未明确。本研究旨在在单个心室肌细胞水平评估GH过表达转基因小鼠的心脏兴奋-收缩偶联。从GH转基因小鼠和年龄匹配的野生型小鼠心脏中分离出肌细胞。使用IonOptix MyoCam系统评估力学特性。分析的收缩特性包括峰值缩短(PS)、达到峰值缩短的时间(TPS)和达到90%再伸长的时间(TR(90)),以及缩短/再伸长的最大速度(+/-dL/dt)。通过fura-2评估细胞内Ca2+特性。GH转基因小鼠的体重显著增加,心脏和肌细胞大小增大。与野生型同窝小鼠相比,GH转基因小鼠的肌细胞表现出显著增强的PS和+/-dL/dt,同时TPS和TR(90)相似。GH转基因小鼠的肌细胞表现出相似的静息细胞内Ca2+水平和Ca2+清除率,但与野生型组相比,其细胞内Ca2+峰值水平升高。两组的肌细胞对细胞外Ca2+浓度和刺激频率的增加具有相同的反应性。这些结果表明,GH过表达与分离的肌细胞收缩功能增强有关,并且在完整心脏中观察到的心脏功能受损可能不是由于肌细胞水平的缺陷所致。

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