A Biomimetic Nanoparticle Exerting Protection against Acute Liver Failure by Suppressing CYP2E1 Activity and Scavenging Excessive ROS

Author:

Yao Qing12,Tang Yingying13,Dai Sheng13,Huang Lihui13,Jiang Zewei13,Zheng Shiming13,Sun Meng13,Xu Yitianhe12,Lu Ruijie1,Sun Tuyue1,Huang Huirong12,Jiang Xinyu13,Yao Xiaomin4,Lin Guangyong1,Kou Longfa13567ORCID,Chen Ruijie12

Affiliation:

1. Wenzhou Municipal Key Laboratory of Pediatric Pharmacy Department of Pharmacy The Second Affiliated Hospital and Yuying Children's Hospital of Wenzhou Medical University Wenzhou 325027 P. R. China

2. School of Pharmaceutical Sciences Wenzhou Medical University Wenzhou 325035 P. R. China

3. Key Laboratory of Structural Malformations in Children of Zhejiang Province Wenzhou 325027 P. R. China

4. Faculty of Pharmacy Zhejiang Pharmaceutical University Ningbo 315100 P. R. China

5. Zhejiang Engineering Research Center for Innovation and Application of Intelligent Radiotherapy Technology Wenzhou 325000 P. R. China

6. Wenzhou Key Laboratory of Basic Science and Translational Research of Radiation Oncology Wenzhou 325027 P. R. China

7. Zhejiang‐Hong Kong Precision Theranostics of Thoracic Tumors Joint Laboratory Wenzhou 325000 P. R. China

Abstract

AbstractAcute liver failure (ALF) is a severe liver disease caused by many reasons. One of them is the overdosed acetaminophen (APAP), which is metabolized into N‐acetyl‐p‐benzoquinone imine (NAPQI), an excessive toxic metabolite, by CYP2E1, resulting in excessive reactive oxygen species (ROS), exhausted glutathione (GSH), and thereafter hepatocyte necrosis. N‐acetylcysteine is the Food and Drug Administration‐approved drug for detoxification of APAP, but it has limited clinical application due to the short therapeutic time window and concentration‐related adverse effects. In this study, a carrier‐free and bilirubin dotted nanoparticle (B/BG@N) is developed, which is formed using bilirubin and 18β‐Glycyrrhetinic acid, and bovine serum albumin (BSA) is then adsorbed to mimic the in vivo behavior of the conjugated bilirubin for hitchhiking. The results demonstrate that B/BG@N can effectively reduce the production of NAPQI as well as exhibit antioxidant effects against intracellular oxidative stress via regulating the nuclear factor erythroid 2‐related factor 2/heme oxygenase‐1 signal axis and reducing the production of inflammatory factors. In vivo study shows that B/BG@N can effectively improve the clinical symptom of the mice model. This study suggests that B/BG@N own increases circulation half‐life, improves accumulation in the liver, and dual detoxification, providing a promising strategy for clinical ALF treatment.

Funder

Natural Science Foundation of Zhejiang Province

Wenzhou Municipal Science and Technology Bureau

Publisher

Wiley

Subject

Pharmaceutical Science,Biomedical Engineering,Biomaterials

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