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Pigment Cell Differentiation in Sea Urchin Blastula-Derived Primary Cell Cultures

机译:海胆囊胚来源的原代细胞培养物中色素细胞的分化

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摘要

The quinone pigments of sea urchins, specifically echinochrome and spinochromes, are known for their effective antioxidant, antibacterial, antifungal, and antitumor activities. We developed in vitro technology for inducing pigment differentiation in cell culture. The intensification of the pigment differentiation was accompanied by a simultaneous decrease in cell proliferation. The number of pigment cells was two-fold higher in the cells cultivated in the coelomic fluids of injured sea urchins than in those intact. The possible roles of the specific components of the coelomic fluids in the pigment differentiation process and the quantitative measurement of the production of naphthoquinone pigments during cultivation were examined by MALDI and electrospray ionization mass spectrometry. Echinochrome A and spinochrome E were produced by the cultivated cells of the sand dollar Scaphechinus mirabilis in all tested media, while only spinochromes were found in the cultivated cells of another sea urchin, Strongylocentrotus intermedius. The expression of genes associated with the induction of pigment differentiation was increased in cells cultivated in the presence of shikimic acid, a precursor of naphthoquinone pigments. Our results should contribute to the development of new techniques in marine biotechnology, including the generation of cell cultures producing complex bioactive compounds with therapeutic potential.
机译:海胆的醌型颜料,特别是棘铬和旋色素,以其有效的抗氧化剂,抗菌,抗真菌和抗肿瘤活性而闻名。我们开发了在细胞培养中诱导色素分化的体外技术。色素分化的加剧伴随着细胞增殖的同时减少。在受损海胆腔液中培养的细胞中,色素细胞的数量是完整细胞的两倍。通过MALDI和电喷雾电离质谱法研究了结肠油中特定成分在色素分化过程中的可能作用以及在培养过程中萘醌色素生成的定量测量。 Echinochrome A和spinochrome E是在所有测试培养基中由沙钱Scaphechinus mirabilis的培养细胞产生的,而在另一个海胆intermedius的培养细胞中仅发现了spinochrome。在of草酸(萘醌颜料的前体)存在下培养的细胞中,与诱导色素分化相关的基因的表达增加了。我们的研究结果应有助于海洋生物技术新技术的发展,包括细胞培养产生具有治疗潜力的复杂生物活性化合物。

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