首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >PNAS Plus: Charge-altering releasable transporters (CARTs) for the delivery and release of mRNA in living animals
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PNAS Plus: Charge-altering releasable transporters (CARTs) for the delivery and release of mRNA in living animals

机译:PNAS Plus:改变电荷的可释放转运蛋白(CART)用于在活体动物中递送和释放mRNA

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摘要

Functional delivery of mRNA to tissues in the body is key to implementing fundamentally new and potentially transformative strategies for vaccination, protein replacement therapy, and genome editing, collectively affecting approaches for the prevention, detection, and treatment of disease. Broadly applicable tools for the efficient delivery of mRNA into cultured cells would advance many areas of research, and effective and safe in vivo mRNA delivery could fundamentally transform clinical practice. Here we report the step-economical synthesis and evaluation of a tunable and effective class of synthetic biodegradable materials: charge-altering releasable transporters (CARTs) for mRNA delivery into cells. CARTs are structurally unique and operate through an unprecedented mechanism, serving initially as oligo(α-amino ester) cations that complex, protect, and deliver mRNA and then change physical properties through a degradative, charge-neutralizing intramolecular rearrangement, leading to intracellular release of functional mRNA and highly efficient protein translation. With demonstrated utility in both cultured cells and animals, this mRNA delivery technology should be broadly applicable to numerous research and therapeutic applications.
机译:向体内组织中mRNA的功能传递是实施疫苗,蛋白质替代疗法和基因组编辑的根本性新方法以及潜在的转化策略的关键,这些策略共同影响着疾病的预防,检测和治疗方法。有效地将mRNA有效地传递到培养细胞中的广泛应用的工具将推动许多研究领域的发展,有效而安全的体内mRNA传递可以从根本上改变临床实践。在这里,我们报告了可调节且有效的一类合成生物可降解材料的分步经济合成和评估:改变电荷的可释放转运蛋白(CART),用于将mRNA传递到细胞中。 CARTs在结构上是独特的,并且通过空前的机制运行,最初是寡聚(α-氨基酯)阳离子,可复合,保护和传递mRNA,然后通过降解,电荷中和的分子内重排改变物理性质,从而导致细胞内释放功能性mRNA和高效蛋白质翻译。随着在培养的细胞和动物中都显示出实用性,这种mRNA传递技术应广泛应用于众多研究和治疗应用。

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