Sequence-regulated, lung-targeting heteropolypeptide nanoparticles via in situ erythrocyte hitchhiking
Abstract
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.
Article Details
Authors (13)
Ning Li
Jiahe Shen
Yuheng Lei
Junhong Wang
Wei Zhou
Aoting Li
Hui Liu
Shanshan Xiao
Jing Zhao
Shaobo Feng
Guanglin Wang
Lichen Yin
Institute of Functional Nano and Soft Materials (FUNSOM), Jiangsu Key Laboratory for Carbon-Based Functional Materials and Devices
Ziyuan Song