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Biomedical advances from tissue culture

机译:组织培养的生物医学进展

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The demonstration that the “dedifferentiation” of cells commonly observed in the early days of tissue culture was due to selective overgrowth of fibroblasts led to enrichment culture techniques (alternate animal and culture passage) designed to give a selective advantage to functionally differentiated tumor cells. These experiments resulted in the derivation of a large number of functionally differentiated clonal strains of a range of cell types. These results gave rise to the hypothesis that cells in culture accurately represent cells in vivo but without the complex in vivo environment. This concept has been strengthened with the development of hormonally defined culture media in combination with functionally differentiated clonal cell lines, which have augmented the potential of tissue culture studies. The use of hormonally defined media in place of serum-supplemented media demonstrates that hormonal responses and dependencies can be discovered in culture. Discoveries of hormonal dependencies of cancer cells has led to therapies targeting intracellular signaling pathways while discoveries of hormonal responses of pluripotent cells are helping to identify the potential application of stem cells. In these and other ways tissue culture technology will continue to contribute to solving problems of human health.
机译:在组织培养初期通常观察到的细胞“去分化”是由于成纤维细胞的选择性过度生长所引起的证明,导致了旨在为功能分化的肿瘤细胞提供选择性优势的富集培养技术(交替的动物和培养传代)。这些实验导致衍生出一系列细胞类型的大量功能分化的克隆菌株。这些结果引起了这样的假设,即培养中的细胞准确地代表体内细胞,但没有复杂的体内环境。随着激素定义培养基与功能分化克隆细胞系的发展,这一概念得到了加强,这增加了组织培养研究的潜力。用激素定义的培养基代替补充血清的培养基表明,在培养物中可以发现激素反应和依赖性。癌细胞荷尔蒙依赖性的发现导致靶向细胞内信号通路的疗法,而多能细胞荷尔蒙反应的发现则有助于确定干细胞的潜在应用。以这些和其他方式,组织培养技术将继续为解决人类健康问题做出贡献。

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