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Primary cell cultures from sea urchin ovaries: a new experimental tool

机译:海胆卵巢中的原代细胞培养:一种新的实验工具

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In the present work, primary cell cultures from ovaries of the edible sea urchin Paracentrotus lividus were developed in order to provide a simple and versatile experimental tool for researches in echinoderm reproductive biology. Ovary cell phenotypes were identified and characterized by different microscopic techniques. Although cell cultures could be produced from ovaries at all stages of maturation, the cells appeared healthier and viable, displaying a higher survival rate, when ovaries at early stages of gametogenesis were used. In terms of culture medium, ovarian cells were successfully cultured in modified Leibovitz-15 medium, whereas poor results were obtained in minimum essential medium Eagle and medium 199. Different substrates were tested, but ovarian cells completely adhered only on poly-L-lysine. To improve in vitro conditions and stimulate cell proliferation, different serum-supplements were tested. Fetal calf serum and an originally developed pluteus extract were detrimental to cell survival, apparently accelerating processes of cell death. In contrast, cells cultured with sea urchin egg extract appeared larger and healthier, displaying an increased longevity that allowed maintaining them for up to 1 month. Overall, our study provides new experimental bases and procedures for producing successfully long-term primary cell cultures from sea urchin ovaries offering a good potential to study echinoid oogenesis in a controlled system and to investigate different aspects of echinoderm endocrinology and reproductive biology.
机译:在当前的工作中,开发了可食用海胆Paracentrotus lividus卵巢的原代细胞培养物,以便为棘皮动物生殖生物学的研究提供简单而通用的实验工具。通过不同的显微镜技术鉴定并表征了卵巢细胞表型。尽管在成熟的各个阶段都可以从卵巢中产生细胞培养物,但是当使用配子体发育早期的卵巢时,这些细胞显得更健康,更有活力,显示出更高的存活率。就培养基而言,在改良的Leibovitz-15培养基中成功培养了卵巢细胞,而在最低必需培养基Eagle和199培养基中获得的结果很差。测试了不同的底物,但卵巢细胞仅完全粘附在聚L-赖氨酸上。为了改善体外条件并刺激细胞增殖,测试了不同的血清补充剂。胎牛血清和最初开发的侧柏提取物对细胞存活有害,显然加速了细胞死亡过程。相比之下,用海胆卵提取物培养的细胞显得更大且更健康,显示出更长的寿命,可以将它们维持长达1个月。总的来说,我们的研究提供了新的实验基础和程序,可以成功地从海胆卵巢中产生长期的原代细胞培养物,为研究受控系统中的棘突类卵母细胞发生以及研究棘皮动物内分泌学和生殖生物学的不同方面提供了良好的潜力。

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