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An antibody-like peptidic network for anti-angiogenesis.

Kuo Zhang | Hui Zhang | Xiao-Ran Zou | Ying Hu | Da-Yong Hou | Jia-Qi Fan | Chao Yang | Zi-Ming Chen | Shi-Fang Wen | Hui Cao | Pei-Pei Yang | Lei Wang
Biomaterials | 2021

Different from chemical (small molecular inhibitor) and biological (monoclonal antibody) drugs, herein, based on angiogenesis-related neuropilin-1 (NRP-1), we develop a biomimetic superstructure drug, i.e. an antibody-like peptidic network (ALPN) to achieve the high-efficient treatment of choroidal neovascularization (CNV). The ALPN in nanoparticulated formulation (ALPN-NPS) can bind NRP-1 through targeting unit and form fibrous peptidic networks trapping NRP-1 on the surface of endothelial cells (ECs), leading to anti-angiogenesis. The ALPN shows high-efficacy against angiogenesis in CNV rat model ascribed to the superstructure-enhanced binding and blockage of NRP-1. The very low dose of ALPN (0.263 μg/Kg) exhibits similar anti-angiogenesis effect comparing with monoclonal antibody bevacizumab (23.5 μg/Kg), which shows potential advantages over traditional monoclonal antibodies.

Pubmed ID: 34051670

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