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Cell culture of bivalves: tool for the study of the effects of environmental stressors.

机译:双壳类的细胞培养:研究环境应激源影响的工具。

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摘要

Spontaneous beating cells can be isolated from the heart of the oyster (Crassostrea gigas) and cultured for more than two months. They form adherent contractile networks in culture conditions. They show muscarinic and beta-adrenergic reactivity thus showing that they are functional cardio-myocytes: Acetylcholine induced a dose dependent decrease in spontaneous beating rate via an increase in potassium conductance, this effect being blocked by atropine. Epinephrine induced a dramatic increase in calcium conductance which was blocked by high concentrations of propranolol but not by sotalol and reversed by verapamil. Tributyltin and cadmium induced a dose and time dependent decrease mainly in inward ionic conductances, leading to a decrease or even a total suppression of the beating rate. Present study indicates that this model could be used as a sensitive test to study the effects of some marine pollutants at the cellular level in molluscs.
机译:可以从牡蛎(Crassostrea gigas)的心脏中分离出自发的跳动细胞,并培养两个多月。它们在培养条件下形成粘附的收缩网络。它们显示出毒蕈碱和β-肾上腺素反应性,因此表明它们是功能性心肌细胞:乙酰胆碱通过钾电导率的增加引起自发搏动率的剂量依赖性降低,该作用被阿托品所阻断。肾上腺素引起钙电导的急剧增加,这被高浓度的心得安阻止,但未被索他洛尔阻止,而被维拉帕米逆转。三丁基锡和镉引起剂量和时间依赖性的降低,主要是内向离子电导率降低,甚至导致跳动速率降低甚至完全被抑制。目前的研究表明,该模型可以用作灵敏测试来研究软体动物细胞水平上某些海洋污染物的影响。

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