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A chemical genetics approach for specific differentiation of stem cells to somatic cells: a new promising therapeutical approach.

机译:干细胞特异性分化为体细胞的化学遗传学方法:一种新的有前途的治疗方法。

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Cell replacement therapy of severe degenerative diseases such as diabetes, myocardial infarction and Parkinson's disease through transplantation of somatic cells generated from embryonic stem (ES) cells is currently receiving considerable attention for the therapeutic applications. ES cells harvested from the inner cell mass (ICM) of the early embryo, can proliferate indefinitely in vitro while retaining the ability to differentiate into all somatic cells thereby providing an unlimited renewable source of somatic cells. In this context, identifying soluble factors, in particular chemically synthesized small molecules, and signal cascades involved in specific differentiation processes toward a defined tissue specific cell type are crucial for optimizing the generation of somatic cells in vitro for therapeutic approaches. However, experimental models are required allowing rapid and "easy-to-handle" parallel screening of chemical libraries to achieve this goal. Recently, the forward chemical genetic screening strategy has been postulated to screen small molecules in cellular systems for a specific desired phenotypic effect. The current review is focused on the progress of ES cell research in the context of the chemical genetics to identify small molecules promoting specific differentiation of ES cells to desired cell phenotype. Chemical genetics in the context of the cell ES-based cell replacement therapy remains a challenge for the near future for several scientific fields including chemistry, molecular biology, medicinal physics and robotic technologies.
机译:通过移植由胚胎干(ES)细胞产生的体细胞,严重的变性疾病(例如糖尿病,心肌梗塞和帕金森氏病)的细胞替代治疗目前在治疗应用中受到了广泛关注。从早期胚胎的内部细胞团(ICM)收获的ES细胞可以在体外无限增殖,同时保留分化为所有体细胞的能力,从而提供了无限的可再生体细胞来源。在这种情况下,识别可溶性因子,特别是化学合成的小分子,以及朝着确定的组织特异性细胞类型的特异性分化过程所涉及的信号级联,对于优化治疗方法的体外体细胞生成至关重要。但是,需要实验模型以允许快速且“易于操作”的化学文库并行筛选以实现此目标。近来,已经提出了正向化学遗传筛选策略,以针对特定的期望表型效应筛选细胞系统中的小分子。当前的综述集中在化学遗传学背景下ES细胞研究的进展,以鉴定促进ES细胞特异性分化为所需细胞表型的小分子。在不久的将来,基于细胞ES的细胞替代疗法的化学遗传学仍然是多个科学领域的挑战,包括化学,分子生物学,药物物理学和机器人技术。

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