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可电离脂质中尾部不饱和度对脂质纳米颗粒mRNA递送效率和免疫原性的影响。

Impact of tail unsaturation in ionizable lipids on mRNA delivery efficiency and immunogenicity of lipid nanoparticles.

作者信息

Ge Xueer, He Zepeng, Yang Haihong, Pan Xiaorong, Yan Liang, Shi Yi, Chen Yongming, Liu Zhijia

机构信息

School of Materials Science and Engineering, Key Laboratory for Polymeric Composite and Functional Materials of Ministry of Education, Guangdong Functional Biomaterials Engineering Technology Research Center, Sun Yat-sen University, Guangzhou 510006, China.

Guangdong Provincial Key Laboratory of Spine and Spinal Cord Reconstruction, The Fifth Affiliated Hospital (Heyuan Shenhe People's Hospital), Jinan University, Heyuan 517000, China.

出版信息

J Control Release. 2025 Aug 10;384:113906. doi: 10.1016/j.jconrel.2025.113906. Epub 2025 Jun 1.

Abstract

Ionizable lipids are critical for determining the potency of mRNA lipid nanoparticles (LNPs). Various mRNA therapies require LNPs that achieve efficient delivery while maintaining appropriate immunogenicity in vivo. While research has largely focused on screening the amine headgroups, linkers and hydrophobic tails of ionizable lipids, the role of tail unsaturation in influencing mRNA delivery and immunogenicity of LNPs has received less attention. Here, we utilized a four-component Ugi reaction (Ugi-4CR) system to synthesize a small library of 17 ionizable lipids with identical backbones but varying in degrees, positions, and types of unsaturation in hydrophobic tails. We systemically investigated structure-activity relationships and elucidated the influence of tail unsaturation on physicochemical properties, endosomal escape, mRNA delivery efficiency and immunogenicity of LNPs. The findings indicate that optimization of tail unsaturation could serve as a promising strategy to improve mRNA encapsulation and delivery efficacy while modulating LNP immunogenicity in vivo. Using interleukin-27 (IL-27)-encoded mRNA as a model, we demonstrated the potential of selected LNPs for protein supplementation therapies. These insights provide a foundation for the rational design of ionizable lipids, advancing the development of more efficient and safer mRNA delivery systems.

摘要

可电离脂质对于确定信使核糖核酸脂质纳米颗粒(LNP)的效力至关重要。各种信使核糖核酸疗法需要LNP在体内实现高效递送,同时保持适当的免疫原性。虽然研究主要集中在筛选可电离脂质的胺头基、连接子和疏水尾部,但尾部不饱和度对LNP的信使核糖核酸递送和免疫原性的影响受到的关注较少。在此,我们利用四组分乌吉反应(Ugi-4CR)系统合成了一个由17种可电离脂质组成的小型文库,这些脂质具有相同的骨架,但疏水尾部的不饱和度程度、位置和类型各不相同。我们系统地研究了构效关系,并阐明了尾部不饱和度对LNP的物理化学性质、内体逃逸、信使核糖核酸递送效率和免疫原性的影响。研究结果表明,优化尾部不饱和度可作为一种有前景的策略,以提高信使核糖核酸的包封率和递送效率,同时在体内调节LNP的免疫原性。以编码白细胞介素-27(IL-27)的信使核糖核酸为模型,我们展示了所选LNP在蛋白质补充疗法中的潜力。这些见解为可电离脂质的合理设计提供了基础,推动了更高效、更安全的信使核糖核酸递送系统的发展。

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