丝素
材料科学
癌症研究
体内
体内分布
细胞生物学
单核吞噬细胞系统
淋巴结
细胞毒性
细胞
抗原
癌症疫苗
生物物理学
细胞毒性T细胞
脾脏
人工细胞
药物输送
丝绸
生物相容性材料
间质细胞
纳米医学
核酸
癌细胞
纳米技术
免疫系统
T细胞
化学
阳离子脂质体
衣壳
纳米颗粒
分子生物学
生物
癌症免疫疗法
病毒学
作者
Shangyuan Cui,Zhongfeng Ye,Mariah L. Arral,Lihan Liu,Benson Weng,Xiaohan Zhang,Remya Nair,Yuchen Zhao,Jugal Kishore Sahoo,Shuliang Gao,Yushu Wang,Zhiyuan Qu,Zhongyang Shi,Qiaobing Xu,David L. Kaplan
标识
DOI:10.1002/adma.202521487
摘要
Lipid nanoparticles (LNPs) are clinically validated carriers for nucleic acid therapeutics; however, achieving targeted delivery to reticuloendothelial organs beyond the liver, lung, and spleen remains a major challenge. Here, we introduce a strategy for post-fabrication engineering of a custom protein corona on mRNA-LNPs using cationic silk fibroin (SF), a biocompatible and chemically tunable protein polymer. SF-coated LNPs exhibit enhanced cellular uptake and endosomal escape, resulting in a 3.6 fold increase in lymph node delivery and a 2.5 fold extension in in vivo protein expression compared to unmodified LNPs. In a cancer vaccine model, SF-LNPs significantly improve dendritic cell maturation, antigen cross-presentation, and cytotoxic T cell activation, leading to robust protection against tumor growth and metastasis, as well as durable immunological memory. This work expands the formulation space for LNPs and establishes silk fibroin as a modular surface engineering tool for enhancing the efficacy and specificity of mRNA-based therapeutics.
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