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The protective effect of puerarin-loaded mesoporous silicon nanoparticles on alcoholic hepatitis through
Xia-Xia Zhang1, Yan-Fei Lang1, Xin Li1
1Department of Gastroenterology, Beijing Tiantan Hospital, Capital Medical University, Beijing, 100070, People's Republic of China.
Abstract:
Puerarin, a bioactive flavone compound isolated from Pueraria (Wild.), provides hepatoprotection by anti-inflammatory, anti-alcoholism, and regulating mechanistic target of rapamycin (mTOR). Building evidence suggests that the activation of mTOR reduces liver injuries associated with alcohol consumption and metabolism. However, the poor water solubility, low bioavailability, and short half-life of puerarin hinder its clinical application. The utility of mesoporous silicon nanoparticles (MSNs) can improve traditional Chinese medicine limitations. Stober methods were used to fabricate MSNs@Pue, and the size, zeta potentials and drug encapsulation efficiency were characterized by a series of analytical methods. IVIS Imaging System demonstrated liver-targeted bio-distribution, and then high-throughput sequencing, immunoproteomics and ultrastructure methods indicated autophagy related protective mechanism, followed by curative effect evaluation for the treatment efficacy. An acute-on chronic ethanol-drinking according to Gao-binge model induced alcoholic hepatitis (AH) pathology and resulted in hepatic hyper-autophagy, which was improved with MSNs@Pue administration (puerarin: 30 mM, 42 mg/kg; intravenously [i.v.]). Ethanol-fed mice were found to have increased expression of autophagy-related proteins (Atg3, Atg7, LC3 and p62). In contrast, MSNs@Pue administration significantly decreased the expression of these proteins and alleviated fatty droplets infiltration in damaged liver. Furthermore, acute-on-chronic ethanol feeding also resulted in the activiation of ERK activation and mTOR expression, which were reversed with MSNs@Pue administration and better than the usage of puerarin alone. Results point to MSNs@Pue mediated ERK/mTOR signaling pathway activation as a possible protective strategy to improve AH, which provides a strategy and evidence for treating liver disease using an MSN delivery system.
Insights
Mesoporous silicon nanoparticles (MSNs) loaded with puerarin (MSNs@Pue) effectively treat alcoholic hepatitis by improving drug delivery and activating the ERK/mTOR pathway, reducing liver injury and autophagy.
Area of Science:
- Biomedical Engineering
- Pharmacology
- Hepatology
Background:
- Puerarin offers hepatoprotection but suffers from poor solubility and bioavailability.
- Mesoporous silicon nanoparticles (MSNs) can overcome limitations of traditional Chinese medicine delivery.
- Alcoholic hepatitis (AH) involves complex liver injuries, including hyper-autophagy and signaling pathway dysregulation.
Purpose of the Study:
- To develop and evaluate MSNs loaded with puerarin (MSNs@Pue) for treating alcoholic hepatitis.
- To investigate the liver-targeted distribution and protective mechanisms of MSNs@Pue.
- To assess the efficacy of MSNs@Pue in an acute-on-chronic ethanol-induced AH mouse model.
Main Methods:
- Fabrication of MSNs@Pue using Stober methods and characterization of physicochemical properties.
- In vivo liver-targeted bio-distribution assessment using an IVIS Imaging System.
- Evaluation of autophagy-related protein expression, hepatic ultrastructure, and signaling pathways (ERK/mTOR) in an AH mouse model.
Main Results:
- MSNs@Pue demonstrated liver-targeted distribution and improved therapeutic efficacy compared to puerarin alone.
- MSNs@Pue administration reversed ethanol-induced hepatic hyper-autophagy and decreased autophagy-related protein expression (Atg3, Atg7, LC3, p62).
- MSNs@Pue treatment alleviated fatty droplet infiltration and modulated the ERK/mTOR signaling pathway in damaged livers.
Conclusions:
- MSNs@Pue represents a promising strategy for enhancing puerarin's efficacy in treating alcoholic hepatitis.
- The protective effects are mediated through improved drug delivery, modulation of autophagy, and activation of the ERK/mTOR signaling pathway.
- MSN-based delivery systems offer a viable approach for improving the clinical application of traditional Chinese medicines for liver diseases.
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