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在缺氧细胞上优化的可定制聚合物纳米颗粒材料促进体内肺组织中的mRNA表达。

Customizable Polymeric Nanoparticle Materials Optimized on Hypoxic Cells Facilitate mRNA Expression in the Lungs In Vivo.

作者信息

Tiwade Palas Balakdas, Fung Vincent, Ma Yutian, VanKeulen-Miller Rachel, Narasipura Eshan A, Fenton Owen S

机构信息

Division of Pharmacoengineering and Molecular Pharmaceutics, Eshelman School of Pharmacy, University of North Carolina at Chapel Hill, Chapel Hill, NC, 27599, USA.

Department of Pharmacology, School of Medicine, University of North Carolina at Chapel Hill, Chapel Hill, NC, 27599, USA.

出版信息

Adv Healthc Mater. 2025 Jul;14(17):e2500245. doi: 10.1002/adhm.202500245. Epub 2025 May 27.

Abstract

mRNA therapy has shown great potential in treating lung diseases by enabling transient protein expression without permanently altering the genome. Despite advancements, most mRNA delivery systems, such as lipid nanoparticles and polymeric nanoparticles, predominantly express mRNA in the liver, limiting their effectiveness for extrahepatic organs like the lungs. Furthermore, hypoxia, a common feature of many pulmonary diseases, significantly reduces mRNA translation and protein synthesis, impacting therapeutic outcomes. In this study, we present a Tunable Lung Expressing Nanoparticle Platform (TULEP) designed to enhance mRNA delivery to the lungs and improve protein expression under hypoxic conditions. Our approach involved the combinatorial synthesis of polymers with varied hydrocarbon tail lengths and reaction equivalencies, followed by formulation into mRNA-loaded nanoparticles. These nanoparticles were characterized for size, charge, and mRNA encapsulation efficiency, and mechanistic and efficacy studies under normoxia and hypoxia were performed in vitro. In vivo studies demonstrated that the top-performing TULEPs improve mRNA-encoded protein expression in the lungs in a well-tolerated fashion as suggested by weight loss, blood paneling, and histological analyses. Taken together, these results highlight TULEPs as a viable platform for tunable expression of mRNA in the lungs and under hypoxia, highlighting their potential for long-term disease therapy.

摘要

信使核糖核酸(mRNA)疗法通过实现瞬时蛋白表达而不永久改变基因组,在治疗肺部疾病方面显示出巨大潜力。尽管取得了进展,但大多数mRNA递送系统,如脂质纳米颗粒和聚合物纳米颗粒,主要在肝脏中表达mRNA,限制了它们对肺等肝外器官的有效性。此外,缺氧是许多肺部疾病的一个常见特征,它会显著降低mRNA翻译和蛋白质合成,影响治疗效果。在本研究中,我们提出了一种可调节肺部表达纳米颗粒平台(TULEP),旨在增强mRNA向肺部的递送,并改善缺氧条件下的蛋白表达。我们的方法包括将具有不同烃链长度和反应当量的聚合物进行组合合成,然后将其制成负载mRNA的纳米颗粒。对这些纳米颗粒的大小、电荷和mRNA包封效率进行了表征,并在常氧和缺氧条件下进行了体外机制和疗效研究。体内研究表明,表现最佳的TULEP以一种耐受性良好的方式提高了肺部mRNA编码蛋白的表达,体重减轻、血液检测和组织学分析表明了这一点。综上所述,这些结果突出了TULEP作为一种在肺部和缺氧条件下实现mRNA可调表达的可行平台,突显了它们在长期疾病治疗中的潜力。

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