首页> 外文期刊>In Vitro Cellular and Developmental Biology. Animal: Journal of the Tissues Culture Association >ESTABLISHMENT OF A THREE-DIMENSIONAL HUMAN PROSTATE ORGANOID COCULTURE UNDER MICROGRAVITY-SIMULATED CONDITIONS - EVALUATION OF ANDROGEN-INDUCED GROWTH AND PSA EXPRESSION
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ESTABLISHMENT OF A THREE-DIMENSIONAL HUMAN PROSTATE ORGANOID COCULTURE UNDER MICROGRAVITY-SIMULATED CONDITIONS - EVALUATION OF ANDROGEN-INDUCED GROWTH AND PSA EXPRESSION

机译:在微重力模拟条件下建立三维人体前列腺有机素培养物的方法-雄激素诱导的生长和PSA表达的评估

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A novel in vitro human prostate cancer model was established by using a coculture technique in which isolated human prostate fibroblasts were observed to grow as a mixed culture with isolated human prostate cancer cells (LNCaP) on microcarrier beads under microgravity-simulated conditions. This model appears to be promising: and deserves further exploration because: (a) cocultured human prostate fibroblasts and cancer epithelial cells appear to undergo patterns of histogenesis similar to those observed in human prostate tumors and (b) unlike the conventional cell culture on plastic dishes, cocultured human prostate fibroblasts and LNCaP cells in microgravity-simulated conditions responded to the inductive signals of growth and differentiation from dihydrotestosterone in a manner similar to that observed in the in vivo condition. These results offer an opportunity to examine molecular mechanisms of cellular signaling in response to androgen stimulation during normal and aberrant human prostate development. The microgravity-simulated three-dimensional prostate epithelial cell culture with prostate fibroblasts car. be further explored as an ideal in vitro model for the study of normal and neoplastic prostate development. This model could also be adopted as a drug screening program for the discovery of novel therapeutic agents in the treatment of human prostate cancer and benign hyperplastic growth.
机译:通过使用共培养技术建立了新的体外人前列腺癌模型,其中在微重力模拟条件下,观察到分离的人前列腺成纤维细胞与分离的人前列腺癌细胞(LNCaP)混合培养在微载体珠上生长。该模型似乎很有希望:并且值得进一步探索,因为:(a)共培养的人类前列腺成纤维细胞和癌细胞上皮细胞似乎经历类似于人类前列腺肿瘤中观察到的组织发生模式,并且(b)与传统的在塑料皿上进行的细胞培养不同,在微重力模拟条件下共培养的人前列腺成纤维细胞和LNCaP细胞以与在体内条件下观察到的方式相似的方式,对二氢睾丸激素的生长和分化诱导信号作出反应。这些结果提供了检查正常和异常的人类前列腺发育过程中响应于雄激素刺激的细胞信号传导分子机制的机会。微重力模拟前列腺成纤维细胞三维前列腺上皮细胞培养。进一步探索作为研究正常和赘生性前列腺发育的理想体外模型。该模型也可以用作药物筛选程序,用于发现治疗人类前列腺癌和良性增生性生长的新型治疗剂。

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