Decker M L, Behnke-Barclay M, Cook M G, Lesch M, Decker R S
Department of Medicine, Northwestern University Medical School, Chicago, Ill. 60611.
Circ Res. 1991 Jul;69(1):86-94. doi: 10.1161/01.res.69.1.86.
Rabbit cardiac myocytes remain quiescent for more than 1 month when cultured at low density. During this period, myofibrillar volume density declines sixfold as myofibrils are disassembled or degraded and are replaced by actin and alpha-actinin-positive, myosin-negative structures that resemble myofibrils but lack thick filaments. Such structures are termed minute myofibrils. The length of the sarcomeres in these altered myofibrils is significantly less than length values obtained from freshly isolated heart cells or from contracting myocytes. A number of high density cultures develop spontaneous, synchronous contraction during the second week of culture. Myofibrillar volume density is stabilized when beating begins, and no further decline is observed in the succeeding weeks of culture. Such contracting myocytes display myofibrils typical of normal heart with no visible evidence of minute myofibrils. The volume density of the transverse tubular system also declines significantly in both beating and nonbeating myocytes, and its reduction appears more closely correlated with cell spreading than with beating per se. No quantitative changes in volume density of mitochondria or sarcoplasmic reticulum could be documented, but the structural organization of the sarcoplasmic reticulum seems to be greatly influenced by the physiological state of the heart cell. The present observations document the importance of mechanical factors in regulating the integrity of the contractile apparatus in cardiac myocytes and emphasize the utility of the cultured heart cell to directly investigate structure-function relations in individual myocytes.
低密度培养时,兔心肌细胞可保持静止状态超过1个月。在此期间,肌原纤维体积密度下降6倍,原因是肌原纤维被拆解或降解,并被肌动蛋白和α - 辅肌动蛋白阳性、肌球蛋白阴性的结构所取代,这些结构类似肌原纤维,但缺乏粗肌丝。此类结构被称为微小肌原纤维。这些改变的肌原纤维中肌节的长度明显小于从新鲜分离的心脏细胞或收缩性心肌细胞获得的长度值。许多高密度培养物在培养的第二周会出现自发的同步收缩。开始跳动时,肌原纤维体积密度趋于稳定,在后续培养周中未观察到进一步下降。此类收缩性心肌细胞显示出正常心脏典型的肌原纤维,没有微小肌原纤维的明显迹象。在跳动和不跳动的心肌细胞中,横管系统的体积密度也显著下降,其减少似乎与细胞铺展的相关性比与跳动本身的相关性更大。线粒体或肌浆网的体积密度没有定量变化,但肌浆网的结构组织似乎受心脏细胞生理状态的极大影响。本观察结果证明了机械因素在调节心肌细胞收缩装置完整性方面的重要性,并强调了培养的心脏细胞在直接研究单个心肌细胞结构 - 功能关系方面的实用性。