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lonizable Amino-Polyesters Synthesized via Ring Opening Polymerization of Tertiary Amino-Alcohols for Tissue Selective mRNA Delivery

机译:叔胺醇通过开环聚合合成的可聚合的氨基聚酯,用于组织选择性mRNA的递送

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摘要

The utility of messenger RNA (mRNA) as a therapy is gaining a broad interest due to its potential for addressing a wide range of diseases, while effective delivery of mRNA molecules to various tissues still poses a challenge. This study reports on the design and characterization of new ionizable amino-polyesters (APEs), synthesized via ring opening polymerization (ROP) of lactones with tertiary amino-alcohols that enable tissue and cell type selective delivery of mRNA. With a diverse library of APEs formulated into lipid nanoparticles (LNP), structure-activity parameters crucial for efficient transfection are established and APE-LNPs are identified that can preferentially home to and elicit effective mRNA expression with low in vivo toxicity in lung endothelium, liver hepatocytes, and splenic antigen presenting cells, including APE-LNP demonstrating nearly tenfold more potent systemic mRNA delivery to the lungs than vivo-jetPEI. Adopting tertiary amino-alcohols to initiate ROP of lactones allows to control polymer molecular weight and obtain amino-polyesters with narrow molecular weight distribution, exhibiting batch-to-batch consistency. All of which highlight the potential for clinical translation of APEs for systemic mRNA delivery and demonstrate the importance of employing controlled polymerization in the design of new polymeric nanomaterials to improve in vivo nucleic acid delivery.
机译:信使RNA(mRNA)作为一种治疗方法,因其具有解决多种疾病的潜力而受到广泛关注,而有效地将mRNA分子传递到各种组织中仍然是一个挑战。这项研究报告了通过内酯与叔氨基醇通过内酯的开环聚合(ROP)合成的新型可电离氨基聚酯(APE)的设计和表征,该酯能使组织和细胞类型选择性地递送mRNA。通过将多种APE配制为脂质纳米颗粒(LNP),可以建立对于有效转染至关重要的结构活性参数,并鉴定出APE-LNPs可以优先归巢并诱导有效的mRNA表达,并且在肺内皮,肝脏中的体内毒性低。肝细胞和脾抗原呈递细胞(包括APE-LNP)向体内向肺部的有效系统mRNA递送比vivo-jetPEI高出近十倍。采用叔氨基醇引发内酯的ROP可以控制聚合物的分子量,并获得分子量分布窄的氨基聚酯,表现出批次间的一致性。所有这些都突出了用于全身mRNA递送的APE的临床翻译的潜力,并且表明了在设计新的聚合物纳米材料以改善体内核酸递送中采用受控聚合的重要性。

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