Isolation and primary culture of gill and digestive gland cells from the common mussel Mytilus edulis.

Jérôme Faucet, Manuelle Maurice, Béatrice Gagnaire, Tristan Renault, Thierry Burgeot
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引用次数: 23

Abstract

As the marine mussel Mytilus edulis is commonly used as a sentinel species, it would be useful to develop a primary culture of the target organs most often in contact with the marine environment. This study reports an improved method for dissociating the digestive gland and gills of M. edulis and considers the effect of mussel storage on cell viability and functionality before culture initiation. Viability and enzymatic activities such as those of esterase and peroxidase were monitored by flow cytometry, a sensitive, objective technique allowing large volumes of cells to be counted within a short time. A primary culture of digestive gland showed more than 75% viability after 72 h. Mussels were maintained in an aquarium containing clean, oxygenated seawater at 12 degrees C for two days before culture initiation, and dissociation was performed mechanically and chemically with Ca-Mg-free saline to obtain digestive gland cells. Application of non-specific esterase activity, using fluorescein diacetate (FDA test) coupled with flow cytometry, characterised the functionality of digestive gland and gill cells in culture.

普通贻贝蚌鳃和消化腺细胞的分离与原代培养。
由于贻贝(Mytilus edulis)通常被用作哨兵物种,因此对最常与海洋环境接触的目标器官进行原代培养是有益的。本研究报道了一种改进的分离消化腺和鳃的方法,并考虑了在培养开始前贻贝储存对细胞活力和功能的影响。通过流式细胞术监测细胞活力和酶活性,如酯酶和过氧化物酶,流式细胞术是一种敏感、客观的技术,可以在短时间内对大量细胞进行计数。消化腺的原代培养在72小时后显示出75%以上的活力。在培养开始前,将贻贝置于12℃的清洁含氧海水中2天,并用不含钙镁的生理盐水进行机械和化学解离,以获得消化腺细胞。应用非特异性酯酶活性,使用双醋酸荧光素(FDA测试)结合流式细胞术,表征了培养中消化腺和鳃细胞的功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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