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Functional genomic screening to enhance oncolytic virotherapy

机译:功能基因组筛选以增强溶瘤病毒疗法

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Functional genomic screening has emerged as a powerful approach for understanding complex biological phenomena. Of the available tools, genome-wide RNA interference (RNAi) technology is unquestionably the most incisive, as it directly probes gene function. Recent applications of RNAi screening have been impressive. Notable amongst these are its use in elucidated mechanism(s) for signal transduction, various aspects of cell biology, tumourigenesis and metastasis, resistance to cancer therapeutics, and the host’s response to a pathogen. Herein we discuss how recent RNAi screening efforts have helped turn our attention to the targetability of non-oncogene support pathways for cancer treatment, with a particular focus on a recent study that identified a non-oncogene addiction to the ER stress response as a synergist target for oncolytic virus therapy (OVT). Moreover, we give our thoughts on the future of RNAi screening as a tool to enhance OVT and describe recent technical improvements that are poised to make genome-scale RNAi experiments more sensitive, less noisy, more applicable in vivo, and more easily validated in clinically relevant animal models.
机译:功能基因组筛选已成为理解复杂生物学现象的有力方法。在所有可用工具中,全基因组RNA干扰(RNAi)技术无疑是最精确的,因为它可以直接探测基因功能。 RNAi筛选的最新应用令人印象深刻。其中值得注意的是它在阐明信号转导机制,细胞生物学,肿瘤发生和转移的各个方面,对癌症疗法的抵抗力以及宿主对病原体的反应等方面的用途。在此,我们讨论最近的RNAi筛选工作如何帮助我们将注意力转向非癌基因支持途径的靶向治疗癌症,特别关注最近的一项研究,该研究确定了对ER应激反应的非癌基因成瘾是协同目标。用于溶瘤病毒治疗(OVT)。此外,我们对RNAi筛选作为增强OVT的工具的未来提出了自己的想法,并描述了近期的技术改进,这些改进有望使基因组规模的RNAi实验更加灵敏,噪音少,在体内更适用并且更易于在临床上验证相关的动物模型。

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