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Lipid and Polymer-Based Nanoparticle siRNA Delivery Systems for Cancer Therapy

机译:脂质和基于聚合物的纳米粒子siRNA递送系统用于癌症治疗

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摘要

RNA interference (RNAi) uses small interfering RNAs (siRNAs) to mediate gene-silencing in cells and represents an emerging strategy for cancer therapy. Successful RNAi-mediated gene silencing requires overcoming multiple physiological barriers to achieve efficient delivery of siRNAs into cells in vivo, including into tumor and/or host cells in the tumor micro-environment (TME). Consequently, lipid and polymer-based nanoparticle siRNA delivery systems have been developed to surmount these physiological barriers. In this article, we review the strategies that have been developed to facilitate siRNA survival in the circulatory system, siRNA movement from the blood into tissues and the TME, targeted siRNA delivery to the tumor or specific cell types, cellular uptake, and escape from endosomal degradation. We also discuss the use of various types of lipid and polymer-based carriers for cancer therapy, including a section on anti-tumor nanovaccines enhanced by siRNAs. Finally, we review current and recent clinical trials using NPs loaded with siRNAs for cancer therapy. The siRNA cancer therapeutics field is rapidly evolving, and it is conceivable that precision cancer therapy could, in the relatively near future, benefit from the combined use of cancer therapies, for example immune checkpoint blockade together with gene-targeting siRNAs, personalized for enhancing and fine-tuning a patient’s therapeutic response.
机译:RNA干扰(RNAi)使用小干扰RNA(siRNA)来介导细胞中的基因沉默,并表示癌症治疗的新出现策略。成功的RNai介导的基因沉默需要克服多种生理屏障,以使SIRNA的高效递送到体内细胞中,包括肿瘤微环境(TME)中的肿瘤和/或宿主细胞。因此,已经开发出脂质和基于聚合物的纳米颗粒siRNA递送系统以超越这些生理障碍。在本文中,我们审查了开发的策略,以促进循环系统中的siRNA存活,从血液中的siRNA运动到组织和TME,靶向siRNA递送给肿瘤或特定细胞类型,细胞摄取和逃离内体降解。我们还讨论了各种类型的脂质和基于聚合物的携带者用于癌症疗法,包括SIRNA增强的抗肿瘤纳米杆菌部分。最后,我们审查了使用癌症治疗的SIRNA装载的NPS的当前和最近的临床试验。 siRNA癌治疗领域正在快速发展,可以想到精确的癌症治疗可以在相对较近的将来可以从癌症疗法的结合使用中受益,例如免疫检查点与基因靶向siRNA一起封闭,个性化以增强和微调患者的治疗反应。

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