Enhanced immunocompatibility of ligand-targeted liposomes by attenuating natural IgM absorption

Juan Guan(Fudan University), Qing Shen(Shanghai Jiao Tong University), Zui Zhang(Fudan University), Zhuxuan Jiang(Fudan University), Yang Yang(Fudan University), Meiqing Lou(Shanghai First People's Hospital), Jun Qian(Fudan University), Weiyue Lu(Fudan University), Changyou Zhan(Fudan University)
Nature Communications
July 24, 2018
Cited by 150Open Access
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Abstract

Targeting ligands are anticipated to facilitate the precise delivery of therapeutic agents to diseased tissues; however, they may also severely affect the interaction of nanocarriers with plasma proteins. Here, we study the immunocompatibility of brain-targeted liposomes, which inversely correlates with absorbed natural IgM. Modification of long, stable positively charged peptide ligands on liposomes is inclined to absorb natural IgM, leading to rapid clearance and enhanced immunogenicity. Small peptidomimetic D8 developed by computer-aided peptide design exhibits improved immunocompatibility by attenuating natural IgM absorption. The present study highlights the effects of peptide ligands on the formed protein corona and in vivo fate of liposomes. Stable positively charged peptide ligands play double-edged roles in targeted delivery, preserving in vivo bioactivities for binding receptors and long-term unfavorable interactions with the innate immune system. The development of D8 provides insights into how to rationally design immunocompatible drug delivery systems by modulating the protein corona composition.


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