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Updated: Jan 22, 2026

Isolation and Differentiation of Adipose-Derived Stem Cells from Porcine Subcutaneous Adipose Tissues
Published on: March 31, 2016
miR-19b-3p engineered adipose-derived stem cell exosomes attenuate acute liver failure via promoting tissue repair
Baitong Wu1, Jiuxing Feng2,3, Xi Wang4
1East Hospital, Stem Cell Research Center, School of Medicine, Tongji University, Shanghai, 200120, China.
Abstract:
Acute liver failure (ALF) is a life-threatening clinical syndrome, characterized by rapid hepatocyte injury and deteriorating hepatic microenvironment. To date, there is still no effective clinical treatment for ALF. Adipose-derived stem cells (ADSCs) have been proven to be an ideal seed-cell in tissue engineering and regenerative medicine through ADSCs-derived exosomes (ADSC-EXO) by paracrine effect. Herein, we presented an ADSC-EXO based therapeutic strategy that could facilitate microenvironment reconstruction and tissue repairing simultaneously in ALF. We demonstrated that miR-19b-3p exhibited remarkable anti-inflammation and anti-oxidation effect. Functionalized exosomes miR-19-EXO administration elevated survival rates from 25 % to 75 %, concurrently reversing liver function, promoting histoarchitectural integrity, and ameliorating inflammatory infiltration in vivo. Mechanistically, miR-19b-3p directly targeted p47phox (a NADPH oxidase subunit) and impede hepatic oxidative stress level. Then, the redox homeostasis changes inactivated NF-κB pathway by impeding iKBα ubiquitination and blocking nuclear translocation of NF-κB P65, and then triggered the damping of M1 macrophage polarization. Notably, miR-19-EXO also outperformed lentiviral miR-19b-3p or shp47phox delivery and conventional ROS scavengers in synergistic biological functions. Our finding paves the way of engineering ADSC-EXO to develop a proactive intervention strategy for ALF by increasing its specificity and functionality.
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