Single cell mechanics of rat cardiomyocytes under isometric, unloaded, and physiologically loaded conditions

被引:89
作者
Nishimura, S
Yasuda, S
Katoh, M
Yamada, KP
Yamashita, H
Saeki, Y
Sunagawa, K
Nagai, R
Hisada, T
Sugiura, S [1 ]
机构
[1] Univ Tokyo, Grad Sch Frontier Sci, Inst Environm Studies, Biomech Div,Bunkyo Ku, Tokyo 1130033, Japan
[2] Univ Tokyo, Grad Sch Med, Dept Cardiovasc Med, Tokyo 1130033, Japan
[3] Tsurumi Univ, Sch Dent Med, Dept Physiol, Kanagawa 2305801, Japan
[4] Natl Cardiovasc Ctr, Res Inst, Dept Cardiovasc Dynam, Osaka 5658565, Japan
来源
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY | 2004年 / 287卷 / 01期
关键词
cardiomyocyte; mechanics; carbon fiber;
D O I
10.1152/ajpheart.00948.2003
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
One of the most salient characteristics of the heart is its ability to adjust work output to external load. To examine whether a single cardiomyocyte preparation retains this property, we measured the contractile function of a single rat cardiomyocyte under a wide range of loading conditions using a force-length measurement system implemented with adaptive control. A pair of carbon fibers was used to clamp the cardiomyocyte, attached to each end under a microscope. One fiber was stiff, serving as a mechanical anchor, while the bending motion of the compliant fiber was monitored for force-length measurement. Furthermore, by controlling the position of the compliant fiber using a piezoelectric translator based on adaptive control, we could change load dynamically during contractions. Under unloaded conditions, maximal shortening velocity was 106 +/- 8.9 mum/s (n = 13 cells), and, under isometric conditions, peak developed force reached 5,720 nN (41.6 +/- 5.6 mN/mm(2); n = 17 cells). When we simulated physiological working conditions consisting of an isometric contraction, followed by shortening and relaxation, the average work output was 828 +/- 123 J/m(3) (n = 20 cells). The top left corners of tension-length loops obtained under all of these conditions approximate a line, analogous to the end-systolic pressure-volume relation of the ventricle. All of the functional characteristics described were analogous to those established by studies using papillary muscle or trabeculae preparations. In conclusion, the present results confirmed the fact that each myocyte forms the functional basis for ventricular function and that single cell mechanics can be a link between subcellular events and ventricular mechanics.
引用
收藏
页码:H196 / H202
页数:7
相关论文
共 27 条
[1]  
ANVERSA P, 2000, HDB PHYSL CARDIOVA 2, V1, P75
[2]   ACTIVE FORCE IN RABBIT VENTRICULAR MYOCYTES [J].
BLUHM, WF ;
MCCULLOCH, AD ;
LEW, WYW .
JOURNAL OF BIOMECHANICS, 1995, 28 (09) :1119-1122
[3]   CONTRACTILE-FORCE MEASURED IN UN-SKINNED ISOLATED ADULT-RAT HEART FIBERS [J].
BRADY, AJ ;
TAN, ST ;
RICCHIUTI, NV .
NATURE, 1979, 282 (5740) :728-729
[4]   MECHANICAL-PROPERTIES OF ISOLATED CARDIAC MYOCYTES [J].
BRADY, AJ .
PHYSIOLOGICAL REVIEWS, 1991, 71 (02) :413-428
[5]   COMPARISON OF CONTRACTILE STATE AND MYOSIN ISOZYMES OF RAT RIGHT AND LEFT-VENTRICULAR MYOCARDIUM [J].
BROOKS, WW ;
BING, OHL ;
BLAUSTEIN, AS ;
ALLEN, PD .
JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 1987, 19 (05) :433-440
[6]   FORCE-VELOCITY-LENGTH-TIME RELATIONS OF CONTRACTILE ELEMENTS IN HEART MUSCLE OF CAT [J].
BRUTSAER.DL ;
SONNENBL.EH .
CIRCULATION RESEARCH, 1969, 24 (02) :137-&
[7]   Restoration of contractile function in isolated cardiomyocytes from failing human hearts by gene transfer of SERCA2a [J].
del Monte, F ;
Harding, SE ;
Schmidt, U ;
Matsui, T ;
Kang, ZB ;
Dec, W ;
Gwathmey, JK ;
Rosenzweig, A ;
Hajjar, RJ .
CIRCULATION, 1999, 100 (23) :2308-2311
[8]   FORCE AND VELOCITY OF SARCOMERE SHORTENING IN TRABECULAE FROM RAT-HEART - EFFECTS OF TEMPERATURE [J].
DETOMBE, PP ;
TERKEURS, HEDJ .
CIRCULATION RESEARCH, 1990, 66 (05) :1239-1254
[9]   ISOLATION OF CALCIUM TOLERANT MYOCYTES FROM ADULT-RAT HEARTS - REVIEW OF THE LITERATURE AND DESCRIPTION OF A METHOD [J].
FARMER, BB ;
MANCINA, M ;
WILLIAMS, ES ;
WATANABE, AM .
LIFE SCIENCES, 1983, 33 (01) :1-18
[10]   Role of myosin heavy chain composition in kinetics of force development and relaxation in rat myocardium [J].
Fitzsimons, DP ;
Patel, JR ;
Moss, RL .
JOURNAL OF PHYSIOLOGY-LONDON, 1998, 513 (01) :171-183