Spatial changes in transmembrane potential during extracellular electrical shocks in cultured monolayers of neonatal rat ventricular myocytes

被引:106
作者
Gillis, AM [1 ]
Fast, VG [1 ]
Rohr, S [1 ]
Kleber, AG [1 ]
机构
[1] UNIV BERN,DEPT PHYSIOL,CH-3012 BERN,SWITZERLAND
关键词
optical mapping; electrical shock; cell culture; secondary source; defibrillation;
D O I
10.1161/01.RES.79.4.676
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
This study investigated the role oi different types of discontinuities in tissue architecture on the spatial distribution of the transmembrane potential. Specifically, we tested the occurrence of so-called ''secondary sources,'' ie, localized hyperpolarizations and depolarizations during the application of extracellular electrical shocks (EESs). Changes in transmembrane potential relative to action potential amplitude (Delta V-m/APA) were measured in patterned cultures of neonatal rat myocytes, stained with voltage-sensitive dye (RH-237), by optical mapping (96-channel photodiode array, 6- to 30-mu m resolution) during the application of EES (field strength, 8 to 22 V/cm; duration, 6 ms). Across narrow cell strands (width, 218 +/- 59 [mean +/- SD] mu m), EES applied during the relative refractory period produced a linear and symmetrical profile of Delta V-m/APA (-65 +/- 23% maximal hyperpolarization versus +64 +/- 15% maximal depolarization). In contrast, the profile of Delta V-m/APA was asymmetrical when EESs were applied during the action potential plateau (-95 +/- 32% versus +37 +/- 14%). At high magnification, no secondary sources were observed at the borders between cells. In dense isotropic cell monolayers or in monolayers and strands showing intercellular clefts, secondary sources were frequently observed. Intercellular clefts of the size of one to several myocytes were sufficient to produce secondary sources of the same magnitude as those that elicited action potentials in dense cell strands. There was a close correlation between the location of secondary sources during EES and localized conduction slowing during propagation. Thus, densely packed cultured cell strands behave as an electrical continuum with no secondary sources occurring at cell borders. Small intercellular clefts can create secondary sources of sufficient magnitude to exert a stimulatory effect.
引用
收藏
页码:676 / 690
页数:15
相关论文
共 57 条
[1]   EXPRESSION OF MULTIPLE CONNEXINS IN CULTURED NEONATAL RAT VENTRICULAR MYOCYTES [J].
DARROW, BJ ;
LAING, JG ;
LAMPE, PD ;
SAFFITZ, JE ;
BEYER, EC .
CIRCULATION RESEARCH, 1995, 76 (03) :381-387
[2]   SLOW CONDUCTION IN THE INFARCTED HUMAN HEART - ZIGZAG COURSE OF ACTIVATION [J].
DEBAKKER, JMT ;
VANCAPELLE, FJL ;
JANSE, MJ ;
TASSERON, S ;
VERMEULEN, JT ;
DEJONGE, N ;
LAHPOR, JR .
CIRCULATION, 1993, 88 (03) :915-926
[3]   OPTICAL RECORDINGS IN THE RABBIT HEART SHOW THAT DEFIBRILLATION STRENGTH SHOCKS PROLONG THE DURATION OF DEPOLARIZATION AND THE REFRACTORY PERIOD [J].
DILLON, SM .
CIRCULATION RESEARCH, 1991, 69 (03) :842-856
[4]   SYNCHRONIZED REPOLARIZATION AFTER DEFIBRILLATION SHOCKS - A POSSIBLE COMPONENT OF THE DEFIBRILLATION PROCESS DEMONSTRATED BY OPTICAL RECORDINGS IN RABBIT HEART [J].
DILLON, SM .
CIRCULATION, 1992, 85 (05) :1865-1878
[5]  
ELAOUMARI A, 1990, J MEMBRANE BIOL, V115, P229
[6]   MICROSCOPIC CONDUCTION IN CULTURED STRANDS OF NEONATAL RAT-HEART CELLS MEASURED WITH VOLTAGE-SENSITIVE DYES [J].
FAST, VG ;
KLEBER, AG .
CIRCULATION RESEARCH, 1993, 73 (05) :914-925
[7]   ANISOTROPIC CONDUCTION IN MONOLAYERS OF NEONATAL RAT-HEART CELLS CULTURED ON COLLAGEN SUBSTRATE [J].
FAST, VG ;
KLEBER, AG .
CIRCULATION RESEARCH, 1994, 75 (03) :591-595
[8]  
FAST VG, 1995, CARDIOVASC RES, V29, P697, DOI 10.1016/S0008-6363(96)88643-3
[9]   Anisotropic activation spread in heart cell monolayers assessed by high-resolution optical mapping - Role of tissue discontinuities [J].
Fast, VG ;
Darrow, BJ ;
Saffitz, JE ;
Kleber, AG .
CIRCULATION RESEARCH, 1996, 79 (01) :115-127
[10]  
GURVICH N L, 1946, Am Rev Sov Med, V3, P236