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瞬时受体电位阳离子通道M4(TRPM4)在压力负荷下通过降低表达水平调节右心室重塑。

TRPM4 Modulates Right Ventricular Remodeling Under Pressure Load Accompanied With Decreased Expression Level.

作者信息

Frede Wiebke, Medert Rebekka, Poth Tanja, Gorenflo Matthias, Vennekens Rudi, Freichel Marc, Uhl Sebastian

机构信息

Department Pediatric and Congenital Cardiology, University Medical Center, Heidelberg, Germany; Institute of Pharmacology, University Medical Center, Heidelberg, Germany.

Institute of Pharmacology, University Medical Center, Heidelberg, Germany.

出版信息

J Card Fail. 2020 Jul;26(7):599-609. doi: 10.1016/j.cardfail.2020.02.006. Epub 2020 Mar 6.

Abstract

BACKGROUND

Survival of patients with congenital heart defects including increased right ventricular pressure load (ie, tetralogy of Fallot) or pulmonary hypertension is dependent on the function of the right ventricle (RV). RV remodeling has several effects with progressive transition from compensated status to heart failure. Transient receptor potential melastatin 4 (TRPM4) forms cation channels expressed in myocardium, which was shown to modulate cardiac remodeling in the left ventricle of mice. Aim of this study was to identify the role of TRPM4 for contractile function and remodeling of the RV in a rat model of right ventricular pressure load.

METHODS AND RESULTS

We performed experiments with untreated rats and under monocrotaline (MCT)-induced pressure load comparing wild-type (Trpm4) and TRPM4-deficient (Trpm4) rats. RV function was characterized by echocardiography and contractility measurements of isolated papillary muscles. RV hypertrophy was investigated by echocardiography and by determination of hypertrophy indices. Pulmonary arterial remodeling was evaluated by echocardiography and histology. TRPM4 protein expression in RV of human, rat and mouse was detected by Western blot and quantified in rat. TRPM4 proteins were detected in RV myocardium of rat and mouse, which were not detectable in TRPM4-deficient animals. Proteins of the same size were found in RV of a pediatric patient with tetralogy of Fallot. In untreated status, Trpm4 and Trpm4 rats showed comparable RV contractile function and dimensions. Under pressure load (42 days after MCT injection), RV hypertrophy was significantly increased in Trpm4 rats compared with Trpm4 controls, whereas MCT-mediated alterations in cardiac contractility and pulmonary arterial remodeling were not affected by TRPM4 inactivation in rats. Finally, TRPM4 protein expression in RV was drastically reduced in MCT-treated rats, whereas left ventricle of the same animals showed no alteration in TRPM4 expression.

CONCLUSIONS

Right ventricular pressure load evoked by MCT treatment in rats leads to a prominent downregulation of TRPM4 protein expression in the RV and complete deletion of TRPM4 expression aggravates right ventricular hypertrophy. Thus, therapeutic modulation of TRPM4 expression and activity might represent a novel approach to target right ventricular remodeling in patients with pulmonary hypertension or otherwise loaded RV.

摘要

背景

先天性心脏缺陷患者的生存,包括右心室压力负荷增加(如法洛四联症)或肺动脉高压,取决于右心室(RV)的功能。右心室重塑具有多种影响,会随着从代偿状态逐渐转变为心力衰竭。瞬时受体电位褪黑素4(TRPM4)形成在心肌中表达的阳离子通道,已显示其可调节小鼠左心室的心脏重塑。本研究的目的是确定TRPM4在右心室压力负荷大鼠模型中对右心室收缩功能和重塑的作用。

方法与结果

我们对未处理的大鼠以及在野百合碱(MCT)诱导的压力负荷下的野生型(Trpm4)和TRPM4缺陷型(Trpm4)大鼠进行了实验。通过超声心动图和分离乳头肌的收缩性测量来表征右心室功能。通过超声心动图和肥大指数的测定来研究右心室肥大。通过超声心动图和组织学评估肺动脉重塑。通过蛋白质印迹法检测人、大鼠和小鼠右心室中TRPM4蛋白的表达,并在大鼠中进行定量。在大鼠和小鼠的右心室心肌中检测到TRPM4蛋白,而在TRPM4缺陷动物中未检测到。在一名法洛四联症儿科患者的右心室中发现了相同大小的蛋白质。在未处理状态下,Trpm4和Trpm4大鼠表现出相当的右心室收缩功能和尺寸。在压力负荷下(MCT注射后42天),与Trpm4对照组相比,Trpm4大鼠的右心室肥大显著增加,而MCT介导的心脏收缩性改变和肺动脉重塑在大鼠中不受TRPM4失活的影响。最后,在MCT处理的大鼠中,右心室中TRPM4蛋白表达急剧降低,而同一动物的左心室中TRPM4表达没有改变。

结论

MCT处理在大鼠中诱发的右心室压力负荷导致右心室中TRPM4蛋白表达显著下调,TRPM4表达的完全缺失会加重右心室肥大。因此,对TRPM4表达和活性的治疗性调节可能代表了一种针对肺动脉高压患者或右心室负荷异常患者右心室重塑的新方法。

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