Vicious Cycle‐Breaking Lipid Nanoparticles Remodeling Multicellular Crosstalk to Reverse Liver Fibrosis

Author:

Zhang Ling‐Feng1,Deng Wen‐Qi1,Huang Qing‐Wen1,Zhang Jiao‐Jiao1,Wang Yi1,Zhou Tian‐Jiao1,Xing Lei1,Jiang Hu‐Lin123ORCID

Affiliation:

1. State Key Laboratory of Natural Medicines Department of Pharmaceutics China Pharmaceutical University Nanjing 210009 China

2. College of Pharmacy Yanbian University Yanji 133002 China

3. Jiangsu Key Laboratory of Druggability of Biopharmaceuticals China Pharmaceutical University Nanjing 210009 China

Abstract

AbstractDuring liver fibrogenesis, the reciprocal crosstalk among capillarized liver sinusoidal endothelial cells (LSECs), activated hepatic stellate cells (HSCs), and dysfunctional hepatocytes constructs a self‐amplifying vicious cycle, greatly exacerbating the disease condition and weakening therapeutic effect. Limited by the malignant cellular interactions, the previous single‐cell centric treatment approaches show unsatisfactory efficacy and fail to meet clinical demand. Herein, a vicious cycle‐breaking strategy is proposed to target and repair pathological cells separately to terminate the malignant progression of liver fibrosis. Chondroitin sulfate‐modified and vismodegib‐loaded nanoparticles (CS‐NPs/VDG) are designed to efficiently normalize the fenestrae phenotype of LSECs and restore HSCs to quiescent state by inhibiting Hedgehog signaling pathway. In addition, glycyrrhetinic acid‐modified and silybin‐loaded nanoparticles (GA‐NPs/SIB) are prepared to restore hepatocytes function by relieving oxidative stress. The results show successful interruption of vicious cycle as well as distinct fibrosis resolution in two animal models through multiregulation of the pathological cells. This work not only highlights the significance of modulating cellular crosstalk but also provides a promising avenue for developing antifibrotic regimens.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

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