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首页> 外文期刊>Expert opinion on therapeutic targets >Advancing therapeutic discovery through phenotypic screening of the extracellular proteome using hydrodynamic intravascular injection
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Advancing therapeutic discovery through phenotypic screening of the extracellular proteome using hydrodynamic intravascular injection

机译:通过使用流体动力血管内注射对细胞外蛋白质组进行表型筛选来促进治疗发现

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Objective: Although the human genome encodes ~ 20,000 protein-coding genes, only a very small fraction of these have been explored as potential targets for therapeutic development. The challenge of identifying and validating new protein targets has contributed to the significant reduction in the productivity of the pharmaceutical industry in the recent decade, highlighting the continued need to find new therapeutic targets. Research design and methods: The traditional methods to discover new targets are expensive, low throughput and time consuming, usually taking years to validate or invalidate a target. To address these limitations, as a proof of concept, we explored the hydrodynamic tail vein (HTV) injection as a gene delivery method for direct in vivo phenotypic screening of novel secreted factor targets for Type II diabetes therapeutics. Results: High levels and sustained expression of target proteins were observed in diabetic mouse models tested, allowing us to identify multiple novel hormones that may regulate glucose metabolism. Conclusions: These results suggest that HTV is a low-cost, high-throughput method for direct in vivo phenotypic drug screening in metabolic disorders and could be applicable to many other disease areas as well. This method if combined with other approaches such as human genetic studies could provide a significant value to future drug discovery.
机译:目的:尽管人类基因组编码了约20,000种蛋白质编码基因,但只有极小部分被探索为治疗发展的潜在靶标。在最近十年中,鉴定和验证新蛋白质靶标的挑战导致制药行业的生产率显着下降,这突出表明了寻找新治疗靶标的持续需求。研究设计和方法:发现新目标的传统方法昂贵,通量低且耗时,通常需要花费数年才能验证或使目标无效。为了解决这些局限性,作为概念证明,我们探索了流体动力尾静脉(HTV)注射液作为基因递送方法,用于直接体内表型筛选II型糖尿病治疗药物的新型分泌因子靶标。结果:在测试的糖尿病小鼠模型中观察到高水平和持续表达的目标蛋白,这使我们能够鉴定出多种可能调节葡萄糖代谢的新型激素。结论:这些结果表明,HTV是一种低成本,高通量的代谢紊乱体内表型药物直接筛查方法,也可应用于许多其他疾病领域。如果与其他方法(例如人类遗传学研究)结合使用,则该方法可为将来的药物开发提供重要价值。

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