Targeted Delivery of mRNA with Polymer-Lipid Nanoparticles for In Vivo Base Editing
2025
发表期刊ACS NANO (IF:15.8[JCR-2023],16.2[5-Year])
ISSN1936-0851
EISSN1936-086X
卷号19期号:8
发表状态已发表
DOI10.1021/acsnano.4c14041
摘要

Messenger RNA (mRNA) encoding base editors, along with single guide RNAs (sgRNAs), have emerged as a promising therapeutic approach for various disorders. However, there is still insufficient exploration in achieving targeted and efficient delivery of mRNA and sgRNA to multiple organs while ensuring high biocompatibility and stability in vivo. To address this challenge, we synthesized a library of 108 poly(β-amino) esters (PBAEs) by incorporating 100% hydrophobic side chains and end-caps with varying amines. These PBAEs were further formulated with other excipients, including helper lipids, cholesterol, and PEGylated lipids, to form polymer-lipid nanoparticles (PLNPs). Structure-function analysis revealed that eLog P of PBAEs could serve as a predictive parameter for determining the liver or lung tropism of PLNPs. The biocompatibility of PBAEs end-capped with monoamines was significantly higher compared to those end-capped with diamines. Leveraging these findings, we expanded the PBAE library and identified a leading PBAE (7C8C8) with mRNA delivery efficiency outperforming current FDA-approved ionizable lipids (ALC-0315, SM-102, and Dlin-MC3-DMA). The LD50 of the empty PLNPs (7C8C8) was determined to be 403.8 ± 49.46 mg/kg, indicating a significantly high safety profile. Additionally, PLNPs (7C8C8) demonstrated sustained transfection activity for at least 2 months when stored at −20 °C after freezing or at 4 °C following lyophilization. Subsequently, in vivo base editing using PLNPs (7C8C8) achieved an impressive editing efficiency of approximately 70% along with a significant reduction in protein levels exceeding 90%. Notably, synergistic effects were observed through simultaneous disruption of proprotein convertase subtilisin/kexin type 9 and angiopoietin-like protein 3 genes, resulting in a sustained low-density lipoprotein cholesterol reduction of over 60% for several months. These compelling findings provide strong support for the further development of PLNPs as promising platforms for mRNA-based therapies. © 2025 American Chemical Society.

关键词Biological organs Elastomers Gene encoding Lipoproteins RNA Amino esters Base editing Hydrophobics Hyperlipidemia In-vivo Lipid nanoparticles Messenger RNA RNA encoding Synthesised Targeted delivery
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收录类别SCI ; EI
语种英语
资助项目ShanghaiTech University startup grant[YDZX20223100001002]
WOS研究方向Chemistry ; Science & Technology - Other Topics ; Materials Science
WOS类目Chemistry, Multidisciplinary ; Chemistry, Physical ; Nanoscience & Nanotechnology ; Materials Science, Multidisciplinary
WOS记录号WOS:001424853800001
出版者American Chemical Society
EI入藏号20250817906887
EI主题词Cholesterol
EI分类号101.1 Biomedical Engineering ; 101.3 Tissue Engineering ; 101.7.1 Genetic Engineering ; 103 Biology ; 212.2 Elastomers ; 804.1 Organic Compounds
原始文献类型Article in Press
文献类型期刊论文
条目标识符https://kms.shanghaitech.edu.cn/handle/2MSLDSTB/490308
专题生命科学与技术学院
生命科学与技术学院_PI研究组_陈佳组
iHuman研究所
iHuman研究所_PI研究组_钟桂生组
生命科学与技术学院_硕士生
物质科学与技术学院_硕士生
生命科学与技术学院_博士生
生命科学与技术学院_本科生
生命科学与技术学院_PI研究组_李剑峰组
通讯作者Chen, Jiabei; Li, Jianfeng
作者单位
1.School of Life Science and Technology, State Key Laboratory of Advanced Medical Materials and Devices, ShanghaiTech University, Shanghai; 201210, China;
2.Gene Editing Center, School of Life Science and Technology, ShanghaiTech University, Shanghai; 201210, China;
3.iHuman Institute, ShanghaiTech University, Shanghai; 201210, China;
4.Department of Pharmacy, Huashan Hospital, Fudan University, Shanghai; 200040, China
第一作者单位生命科学与技术学院
通讯作者单位生命科学与技术学院
第一作者的第一单位生命科学与技术学院
推荐引用方式
GB/T 7714
Chen, Qimingxing,Chang, Yan,He, Xiaoyan,et al. Targeted Delivery of mRNA with Polymer-Lipid Nanoparticles for In Vivo Base Editing[J]. ACS NANO,2025,19(8).
APA Chen, Qimingxing.,Chang, Yan.,He, Xiaoyan.,Ding, Yan.,Wang, Runyuan.,...&Li, Jianfeng.(2025).Targeted Delivery of mRNA with Polymer-Lipid Nanoparticles for In Vivo Base Editing.ACS NANO,19(8).
MLA Chen, Qimingxing,et al."Targeted Delivery of mRNA with Polymer-Lipid Nanoparticles for In Vivo Base Editing".ACS NANO 19.8(2025).
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