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Optical imaging of RNAi-mediated silencing of cancer

机译:RNAi介导的癌症沉默的光学成像

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摘要

RNAi has rapidly become a powerful tool for drug target discovery and validation in an in vitro culture system and, consequently, interest is rapidly growing for extension of its application to in vivo systems, such as animal disease models and human therapeutics. Cancer is one obvious application for RNAi therapeutics, because abnormal gene expression is thought to contribute to the pathogenesis and maintenance of the malignant phenotype of cancer and thereby many oncogenes and cell-signaling molecules present enticing drug target possibilities. RNAi, potent and specific, could silence tumor-related genes and would appear to be a rational approach to inhibit tumor growth. In subsequent in vivo studies, the appropriate cancer model must be developed for an evaluation of siRNA effects on tumors. How to evaluate the effect of siRNA in an in vivo therapeutic model is also important. Accelerating the analyses of these models and improving their predictive value through whole animal imaging methods, which provide cancer inhibition in real time and are sensitive to subtle changes, are crucial for rapid advancement of these approaches. Bioluminescent imaging is one of these optically based imaging methods that enable rapid in vivo analyses of a variety of cellular and molecular events with extreme sensitivity.
机译:RNAi迅速成为药物目标发现和在体外培养系统中的验证的强大工具,因此,对于延长其在体内系统(例如动物疾病模型和人类治疗)的应用,兴趣迅速增长。癌症是RNAi治疗剂的一个明显的应用,因为据认为,异常的基因表达有助于癌症恶性表型的发病机制和维持,从而有助于许多诱使药物目标可能性的癌症和细胞信号传导分子。 RNAi,有效和特异性,可以沉默肿瘤相关的基因,似乎是抑制肿瘤生长的合理方法。在Vivo研究的随后,必须开发适当的癌症模型以评估SiRNA对肿瘤的影响。如何评估siRNA在体内治疗模型中的效果也很重要。加速这些模型的分析并通过整个动物成像方法改善预测值,该方法实时提供癌症抑制,对微妙变化敏感,对这些方法的快速进步至关重要。生物发光成像是这些光学的成像方法之一,可以快速地体内分析各种细胞和分子事件,具有极端敏感性。

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