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Targeting cyclin B1 through peptide-based delivery of siRNA prevents tumour growth

机译:通过基于肽的siRNA靶向细胞周期蛋白B1防止肿瘤生长

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The development of short interfering RNA (siRNA), has provided great hope for therapeutic targeting of specific genes responsible for pathological disorders. However, the poor cellular uptake and bioavailability of siRNA remain a major obstacle to their clinical development and most strategies that propose to improve siRNA delivery remain limited for in vivo applications. In this study, we report a novel peptide-based approach, MPG-8 an improved variant of the amphipathic peptide carrier MPG, that forms nanoparticles with siRNA and promotes their efficient delivery into primary cell lines and in vivo upon intra-tumoral injection. Moreover, we show that functionalization of this carrier with cholesterol significantly improves tissue distribution and stability of siRNA in vivo, thereby enhancing the efficiency of this technology for systemic administration following intravenous injection without triggering any non-specific inflammatory response. We have validated the therapeutic potential of this strategy for cancer treatment by targeting cyclin B1 in mouse tumour models, and demonstrate that tumour growth is compromised. The robustness of the biological response achieved through this approach, infers that MPG 8-based technology holds a strong promise for therapeutic administration of siRNA.
机译:短干扰RNA(siRNA)的发展为靶向治疗病理疾病的特定基因提供了巨大希望。然而,差的细胞吸收和siRNA的生物利用度仍然是其临床发展的主要障碍,并且大多数提议改善siRNA递送的策略在体内应用中仍然受到限制。在这项研究中,我们报告了一种新颖的基于肽的方法,MPG-8是两亲性肽载体MPG的改良变体,可与siRNA形成纳米颗粒,并在肿瘤内注射后促进其有效递送至原代细胞系和体内。此外,我们显示该载体在胆固醇中的功能化显着改善了体内siRNA的组织分布和稳定性,从而提高了该技术在静脉注射后全身给药的效率,而不会触发任何非特异性炎症反应。我们已经通过靶向细胞周期蛋白B1在小鼠肿瘤模型中验证了该策略在癌症治疗中的治疗潜力,并证明肿瘤生长受到损害。通过这种方法实现的生物学反应的稳健性,表明基于MPG 8的技术对siRNA的治疗性给药具有广阔的前景。

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