纳米载体
生物物理学
化学
体内分布
共聚物
序列(生物学)
纳米颗粒
肽序列
氨基酸
红细胞
生物化学
细胞
缬氨酸
原位
肽
动力学
纳米毒理学
纳米技术
组合化学
脂质体
毒品携带者
作者
Ning Li,Jiahe Shen,Yuheng Lei,Junhong Wang,Wei Zhou,Aoting Li,Hui Liu,Shanshan Xiao,Jing Zhao,Shaobo Feng,Guanglin Wang,Lichen Yin,Ziyuan Song
标识
DOI:10.1038/s41467-026-76188-x
摘要
Abstract Targeted lung delivery of therapeutics is critical for various respiratory diseases. However, the rational design of lung-targeting nanocarriers through fine-tuning of polymeric structures remains challenging. Herein, we reported the development of lung-targeting, heteropolypeptide-grafted nanoparticles (NPs), whose targeting ability was dependent on the copolymer sequence that mediated in situ erythrocyte hitchhiking. Specifically, the incorporation of β-branched amino acid residues in poly( L -glutamic acid)s, like valine and isoleucine, resulted in gradient copolymer sequence with terminal hydrophobic segments. The corresponding heteropolypeptide-decorated NPs with hydrophobic coronas thus showed high affinity to red blood cell membranes, leading to accumulation in lung tissues at up to 37% of the injected dose through erythrocyte hitchhiking. This strategy mediated effective lung-targeting of CeO 2 , showing anti-oxidant effect that alleviated pulmonary inflammation to treat acute lung injury. This work highlights the importance of copolymer sequence in tuning the biodistribution of polymer-decorated NPs, shedding light on the design of nanocarriers for pulmonary delivery.
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