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工程化可离子化脂质 siRNA 缀合物可增强内体逃逸,但在体内会引起毒性。

Engineered ionizable lipid siRNA conjugates enhance endosomal escape but induce toxicity in vivo.

机构信息

RNA Therapeutics Institute, University of Massachusetts Chan Medical School, Worcester, 01604, MA, USA.

RNA Therapeutics Institute, University of Massachusetts Chan Medical School, Worcester, 01604, MA, USA.

出版信息

J Control Release. 2022 Sep;349:831-843. doi: 10.1016/j.jconrel.2022.07.041. Epub 2022 Aug 3.

Abstract

Lipid conjugation supports delivery of small interfering RNAs (siRNAs) to extrahepatic tissues, expanding the therapeutic potential of siRNAs beyond liver indications. However, siRNA silencing efficacy in extrahepatic tissues remains inferior to that routinely achieved in liver, partially due to the low rate of endosomal escape following siRNA internalization. Improving siRNA endosomal release into cytoplasm is crucial to improving efficacy of lipid-conjugated siRNAs. Given the ability of ionizable lipids to enhance endosomal escape in a context of lipid nanoparticles (LNP), here, we provide the first report on the effect of an ionizable lipid conjugate on siRNA endosomal escape, tissue distribution, efficacy, and toxicity in vivo. After developing a synthetic route to covalently attach the ionizable lipid, DLin-MC3-DMA, to siRNAs, we demonstrate that DLin-MC3-DMA enhances endosomal escape in cell culture without compromising siRNA efficacy. In mice, DLin-MC3-DMA conjugated siRNAs exhibit a similar overall tissue distribution profile to the similarly hydrophobic cholesterol-conjugated siRNA. However, only DLin-MC3-DMA conjugated siRNAs accumulated in vascular compartments, suggesting an effect of conjugate structure on intratissue distribution. Interestingly, we observed non-specific modulation of gene expression in tissues with high accumulation of DLin-MC3-DMA siRNAs (>20 pmol/mg of tissue) while limited non-specific gene modulation has been observed in tissues with lower siRNA accumulation. These findings suggest modulating the nature of the conjugate is a promising strategy to alter siRNA intratissue and intracellular trafficking. Fine-tuning the nature of the conjugate to optimize endosomal escape while minimizing toxicity will be critical for the progression of therapeutic siRNA applications beyond the liver.

摘要

脂质偶联物支持将小干扰 RNA(siRNA)递送到肝外组织,从而扩大了 siRNA 的治疗潜力,使其超出了肝脏适应证的范围。然而,肝外组织中的 siRNA 沉默效果仍然不如在肝脏中常规实现的效果好,部分原因是 siRNA 内化后,内体逃逸的效率较低。提高 siRNA 从内体释放到细胞质中的效率对于提高脂质偶联 siRNA 的功效至关重要。鉴于可离子化脂质在脂质纳米颗粒(LNP)的情况下能够增强内体逃逸的能力,在这里,我们首次报道了可离子化脂质偶联物对 siRNA 内体逃逸、组织分布、功效和体内毒性的影响。在开发了将可离子化脂质 DLin-MC3-DMA 共价连接到 siRNA 的合成途径之后,我们证明 DLin-MC3-DMA 在不损害 siRNA 功效的情况下增强了细胞培养中的内体逃逸。在小鼠中,DLin-MC3-DMA 偶联的 siRNA 表现出与类似疏水性胆固醇偶联的 siRNA 相似的总体组织分布特征。然而,只有 DLin-MC3-DMA 偶联的 siRNA 积累在血管隔室中,这表明偶联物结构对内组织分布有影响。有趣的是,我们观察到在高浓度 DLin-MC3-DMA siRNA 积累的组织中(>20 pmol/mg 组织)发生了非特异性基因表达的调节,而在 siRNA 积累较低的组织中观察到了有限的非特异性基因调节。这些发现表明,调节偶联物的性质是改变 siRNA 组织内和细胞内转运的有前途的策略。调整偶联物的性质以优化内体逃逸,同时最小化毒性,对于将治疗性 siRNA 应用扩展到肝脏以外将是至关重要的。

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