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首页> 外文期刊>American Journal of Physiology >Gel stretch method: a new method to measure constitutive properties of cardiac muscle cells.
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Gel stretch method: a new method to measure constitutive properties of cardiac muscle cells.

机译:凝胶拉伸法:一种测量心肌细胞本构性质的新方法。

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Diastolic dysfunction is an important cause of congestive heart failure; however, the basic mechanisms causing diastolic congestive heart failure are not fully understood, especially the role of the cardiac muscle cell, or cardiocyte, in this process. Before the role of the cardiocyte in this pathophysiology can be defined, methods for measuring cardiocyte constitutive properties must be developed and validated. Thus this study was designed to evaluate a new method to characterize cardiocyte constitutive properties, the gel stretch method. Cardiocytes were isolated enzymatically from normal feline hearts and embedded in a 2% agarose gel containing HEPES-Krebs buffer and laminin. This gel was cast in a shape that allowed it to be placed in a stretching device. The ends of the gel were held between a movable roller and fixed plates that acted as mandibles. Distance between the right and left mandibles was increased using a stepper motor system. The force applied to the gel was measured by a force transducer. The resultant cardiocyte strain was determined by imaging the cells with a microscope, capturing the images with a CCD camera, and measuring cardiocyte and sarcomere length changes. Cardiocyte stress was characterized with a finite-element method. These measurements of cardiocyte stress and strain were used to determine cardiocyte stiffness. Two variables affecting cardiocyte stiffness were measured, the passive elastic spring and viscous damping. The passive spring was assessed by increasing the force on the gel at 1 g/min, modeling the resultant stress vs. strain relationship as an exponential [sigma = A/k(ekepsilon - 1)]. In normal cardiocytes, A = 23.0 kN/m2 and k = 16. Viscous damping was assessed by examining the loop area between the stress vs. strain relationship during 1 g/min increases and decreases in force. Normal cardiocytes had a finite loop area = 1.39 kN/m2, indicating the presence of viscous damping. Thus the gel stretch method provided accurate measurements of cardiocyte constitutive properties. These measurements have allowed the first quantitative assessment of passive elastic spring properties and viscous damping in normal mammalian cardiocytes.
机译:舒张功能障碍是充血性心力衰竭的重要原因。但是,引起舒张性充血性心力衰竭的基本机制尚未完全了解,尤其是在此过程中心肌细胞或心肌细胞的作用。在确定心肌细胞在这种病理生理中的作用之前,必须开发和验证用于测量心肌细胞组成特性的方法。因此,本研究旨在评估一种表征心肌细胞本构特性的新方法,即凝胶拉伸法。从正常猫的心脏中酶分离心肌细胞,并将其包埋在含有HEPES-Krebs缓冲液和层粘连蛋白的2%琼脂糖凝胶中。将该凝胶浇铸成可将其放置在拉伸装置中的形状。凝胶的末端固定在可移动的滚筒和充当下颌骨的固定板之间。下颌骨之间的距离使用步进电机系统增加。通过力传感器测量施加到凝胶上的力。通过用显微镜对细胞成像,用CCD相机捕获图像并测量心肌细胞和肌节长度的变化来确定所得的心肌细胞应变。用有限元法表征心肌细胞的应激。这些对心肌细胞压力和应变的测量用于确定心肌细胞的硬度。测量了影响心肌硬度的两个变量,即被动弹性弹簧和粘性阻尼。通过以1 g / min的速度增加凝胶上的力来评估被动弹簧,将合成应力与应变关系建模为指数[sigma = A / k(ekepsilon-1)]。在正常的心肌细胞中,A = 23.0 kN / m2,k =16。通过检查1 g / min的力增加和减少之间的应力与应变关系之间的环面积来评估粘性阻尼。正常心肌细胞的有限环面积= 1.39 kN / m2,表明存在粘性阻尼。因此,凝胶拉伸方法提供了心肌细胞组成特性的准确测量。这些测量值允许对正常哺乳动物心肌细胞中的被动弹性弹簧特性和粘性阻尼进行首次定量评估。

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