外植程序对培养的新生大鼠脑室细胞电特性和形态学的影响。

Advances in myocardiology Pub Date : 1985-01-01
B Fermini, O F Schanne, J S Hugon
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引用次数: 0

摘要

对新生大鼠脑室细胞外植前后的超微结构和电生理特性进行了研究。培养的细胞用胰蛋白酶或胶原酶解离,后一种酶用磁性棒搅拌或不搅拌。分别在离体后10小时和48小时或更长时间对细胞进行观察。在外植10小时后,细胞动作电位快速上升,但肌原纤维组织混乱,除了搅拌的胶原酶分散细胞也去极化和不兴奋。在离体后2天及以后,所有制剂均出现与离体前相似的清晰的肌节和平行定向的肌原纤维,但细胞表现出慢反应动作电位和自发活动。这些发现表明肌原纤维的紊乱并不反映表面膜的损伤。此外,在相似的条件下(机械搅拌时间相当),胶原酶对细胞的损害似乎比胰蛋白酶更大,尤其是在外植后10小时。
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Influence of explantation procedure on the electrical and morphological properties of cultured neonatal rat ventricle cells.

The ultrastructure and electrophysiological properties of ventricle cells from newborn rats were studied before and after explantation. The cultured cells were dissociated either with trypsin or with collagenase, the latter enzyme being used with and without stirring with a magnetic bar. The explanted cells were studied 10 hr and 48 hr or more after explantation. At 10 hr after explantation, the cells exhibited fast-rising action potentials, but their myofibrils were disorganized, except for stirred collagenase-dispersed cells, which were also depolarized and inexcitable. At 2 days and later after explantation, all preparations had well-defined sarcomeres and myofibrils oriented in parallel similar to the ventricle before explantation, but the cells showed slow-response action potentials together with spontaneous activity. These findings suggest that the disorganization of myofibrils does not reflect damage to the surface membrane. Moreover, collagenase seems more damaging to the cells than trypsin under similar conditions (comparable periods of mechanical stirring), especially 10 hr after explantation.

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