Artesunate Targets MBL2 to Modulate the TLR4/NRF2/HO‑1 Axis and Ameliorate Podophyllotoxin‑Induced Liver Injury

Mingyue Wei,1,* Junjie He,2,* Yanzhao Zhang,1 Hetao Chen,3 Xue Wang,2 Miaomiao Liu,1 Jianying Chang,1 Chunyang Fan,1 Hongwei Jiang,1 Chuanxin Liu11Luoyang Key Laboratory of Clinical Multiomics and Translational Medicine, Key Laboratory of Hereditary Rare Diseases of Health Commission of Henan Province, Henan Key Laboratory of Rare Diseases, Endocrinology and Metabolism Center, The First Affiliated Hospital, and College of Clinical Medicine of Henan University of Science and Technology, Luoyang, Henan, People’s Republic of China; 2State Key Laboratory of Component‑based Chinese Medicine, Tianjin University of Traditional Chinese Medicine, Tianjin, People’s Republic of China; 3Luoyang Key Laboratory of Zebrafish Toxicology Research, Luoyang Key Laboratory of Transplantation and Immunological Studies for Haematological Diseases and Department of Clinical Laboratory, The First Affiliated Hospital and College of Clinical Medicine of Henan University of Science and Technology, Luoyang, Henan, People’s Republic of China*These authors contributed equally to this workCorrespondence: Chuanxin Liu, Luoyang Key Laboratory of Clinical Multiomics and Translational Medicine, Key Laboratory of Hereditary Rare Diseases of Health Commission of Henan Province, Henan Key Laboratory of Rare Diseases, Endocrinology and Metabolism Center, The First Affiliated Hospital, and College of Clinical Medicine of Henan University of Science and Technology, Luoyang, Henan, People’s Republic of China, Email [email protected] Hongwei Jiang, Luoyang Key Laboratory of Clinical Multiomics and Translational Medicine, Key Laboratory of Hereditary Rare Diseases of Health Commission of Henan Province, Henan Key Laboratory of Rare Diseases, Endocrinology and Metabolism Center, The First Affiliated Hospital, and College of Clinical Medicine of Henan University of Science and Technology, Luoyang, Henan, People’s Republic of China, Email [email protected]: Drug-induced liver injury (DILI) presents a significant clinical challenge with limited preventive and therapeutic options. Artesunate (ART) holds potential for DILI treatment; however, its precise hepatoprotective mechanisms and direct molecular target(s) remain unclear.Methods: We evaluated ART in a podophyllotoxin (PPT)-induced rat model of DILI. Its direct target was identified through integrated chemical proteomics (pull-down/LC-MS/MS) followed by biophysical validation (SPR, MST) and molecular dynamics simulations. Mechanistic insights from hepatic transcriptomics (RNA-seq) were confirmed by Western blot, and extended with targeted metabolomics and 16S rRNA sequencing of gut microbiota.Results: ART administration conferred significant hepatoprotection in the PPT-induced rat model, as evidenced by dose-dependent amelioration of key serum markers of liver injury (P < 0.05), attenuation of hepatic oxidative stress, and improved histopathological outcomes. Mechanistically, we identified mannose-binding lectin 2 (MBL2) as a direct, high-affinity target of ART (KD ≈ 3.84 μM). Upon binding to MBL2, ART suppressed the hepatic TLR4/NF-κB inflammatory axis and, in parallel, relieved NF-κB-mediated repression of NRF2, thereby cooperatively activating the NRF2-driven antioxidant defense program. Integrated multi-omics analysis further revealed that ART remodeled the gut microbiota, enriching beneficial genera including Lactobacillus, and that the abundance of these bacteria correlated positively with hepatic levels of antioxidant metabolites (P < 0.05), supporting a functional role of the gut-liver axis in its systemic protective effects.Conclusion: This study elucidates that ART alleviates DILI through targeting MBL2, thereby dually modulating the NF-κB/NRF2 signaling axis to simultaneously suppress inflammatory responses and enhance endogenous antioxidant defenses. These findings provide a novel and robust pharmacological basis for repositioning ART for the clinical prevention and treatment of DILI.Keywords: artesunate, podophyllotoxin, drug-induced liver injury, oxidative stress

Authors

Publication Details

Journal
Dove Medical Press (Taylor and Francis Group)
Published
2026-09-21
Primary Topic
Interstitial Lung Diseases and Idiopathic Pulmonary Fibrosis
Type
article
Field-Weighted Citation Impact
0.00
Controls
|||
ALL TIME
JAN
FEB
MAR
APR
MAY
JUN
JUL
AUG
SEP
article

Artesunate Targets MBL2 to Modulate the TLR4/NRF2/HO‑1 Axis and Ameliorate Podophyllotoxin‑Induced Liver Injury

Junjie He, Hongwei� Jiang, Hetao Chen, Jianying Chang et al.
Dove Medical Press (Taylor and Francis Group)
Interstitial Lung Diseases and Idiopathic Pulmonary Fibrosis
article

Artesunate Targets MBL2 to Modulate the TLR4/NRF2/HO‑1 Axis and Ameliorate Podophyllotoxin‑Induced Liver Injury

Junjie He, Hongwei� Jiang, Hetao Chen, Jianying Chang, Chuanxin Liu, Mingyue Wei, Yanzhao Zhang, Chunyang Fan, Xue Wang, Miaomiao Liu
article en

Abstract

Mingyue Wei,1,* Junjie He,2,* Yanzhao Zhang,1 Hetao Chen,3 Xue Wang,2 Miaomiao Liu,1 Jianying Chang,1 Chunyang Fan,1 Hongwei Jiang,1 Chuanxin Liu11Luoyang Key Laboratory of Clinical Multiomics and Translational Medicine, Key Laboratory of Hereditary Rare Diseases of Health Commission of Henan Province, Henan Key Laboratory of Rare Diseases, Endocrinology and Metabolism Center, The First Affiliated Hospital, and College of Clinical Medicine of Henan University of Science and Technology, Luoyang, Henan, People’s Republic of China; 2State Key Laboratory of Component‑based Chinese Medicine, Tianjin University of Traditional Chinese Medicine, Tianjin, People’s Republic of China; 3Luoyang Key Laboratory of Zebrafish Toxicology Research, Luoyang Key Laboratory of Transplantation and Immunological Studies for Haematological Diseases and Department of Clinical Laboratory, The First Affiliated Hospital and College of Clinical Medicine of Henan University of Science and Technology, Luoyang, Henan, People’s Republic of China*These authors contributed equally to this workCorrespondence: Chuanxin Liu, Luoyang Key Laboratory of Clinical Multiomics and Translational Medicine, Key Laboratory of Hereditary Rare Diseases of Health Commission of Henan Province, Henan Key Laboratory of Rare Diseases, Endocrinology and Metabolism Center, The First Affiliated Hospital, and College of Clinical Medicine of Henan University of Science and Technology, Luoyang, Henan, People’s Republic of China, Email [email protected] Hongwei Jiang, Luoyang Key Laboratory of Clinical Multiomics and Translational Medicine, Key Laboratory of Hereditary Rare Diseases of Health Commission of Henan Province, Henan Key Laboratory of Rare Diseases, Endocrinology and Metabolism Center, The First Affiliated Hospital, and College of Clinical Medicine of Henan University of Science and Technology, Luoyang, Henan, People’s Republic of China, Email [email protected]: Drug-induced liver injury (DILI) presents a significant clinical challenge with limited preventive and therapeutic options. Artesunate (ART) holds potential for DILI treatment; however, its precise hepatoprotective mechanisms and direct molecular target(s) remain unclear.Methods: We evaluated ART in a podophyllotoxin (PPT)-induced rat model of DILI. Its direct target was identified through integrated chemical proteomics (pull-down/LC-MS/MS) followed by biophysical validation (SPR, MST) and molecular dynamics simulations. Mechanistic insights from hepatic transcriptomics (RNA-seq) were confirmed by Western blot, and extended with targeted metabolomics and 16S rRNA sequencing of gut microbiota.Results: ART administration conferred significant hepatoprotection in the PPT-induced rat model, as evidenced by dose-dependent amelioration of key serum markers of liver injury (P < 0.05), attenuation of hepatic oxidative stress, and improved histopathological outcomes. Mechanistically, we identified mannose-binding lectin 2 (MBL2) as a direct, high-affinity target of ART (KD ≈ 3.84 μM). Upon binding to MBL2, ART suppressed the hepatic TLR4/NF-κB inflammatory axis and, in parallel, relieved NF-κB-mediated repression of NRF2, thereby cooperatively activating the NRF2-driven antioxidant defense program. Integrated multi-omics analysis further revealed that ART remodeled the gut microbiota, enriching beneficial genera including Lactobacillus, and that the abundance of these bacteria correlated positively with hepatic levels of antioxidant metabolites (P < 0.05), supporting a functional role of the gut-liver axis in its systemic protective effects.Conclusion: This study elucidates that ART alleviates DILI through targeting MBL2, thereby dually modulating the NF-κB/NRF2 signaling axis to simultaneously suppress inflammatory responses and enhance endogenous antioxidant defenses. These findings provide a novel and robust pharmacological basis for repositioning ART for the clinical prevention and treatment of DILI.Keywords: artesunate, podophyllotoxin, drug-induced liver injury, oxidative stress

Dove Medical Press (Taylor and Francis Group)
Openalex Percentile: Top 11%
Interstitial Lung Diseases and Idiopathic Pulmonary Fibrosis
AI Navigator

Ask Laika to Summarize, Analyze, and Connect papers live on the map.

Summarize Papers & Methodologies

Extract key findings, datasets, and comparative methods across publications.

Benchmark Rankings & Visual Analytics

Rank top research institutions, authors, funders, topics, and journals by Field-Weighted Citation Impact (FWCI) and paper volume with instant charts.

Connect Distant Disciplines

Bridge topological clusters on the map to find hidden collaborative intersections.