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Updated: Mar 1, 2026

Mechanistic Insight into the Development of TNBS-Mediated Intestinal Fibrosis and Evaluating the Inhibitory Effects of Rapamycin
Published on: September 12, 2019
TRIM13 in situ engineering boosts anti-inflammatory capacity of CAR-Ms for liver fibrosis therapy
Jinxin Gao1, Zhenmei Yang1, Yudong Song1
1State Key Laboratory of Discovery and Utilization of Functional Components in Traditional Chinese Medicine, Shandong Key Laboratory of Targeted Drug Delivery and Advanced Pharmaceutics, NMPA Key Laboratory for Clinical Research and Evaluation of Innovative Drug, NMPA Key Laboratory for Technology Research and Evaluation of Drug Products and Key Laboratory of Chemical Biology (Ministry of Education), Department of Pharmaceutics, School of Pharmaceutical Sciences, Comprehensive Health Frontier Sub-Center of Interdisciplinary Center, Cheeloo College of Medicine, Shandong University, Jinan, Shandong Province, China.
Abstract:
Chimeric antigen receptor macrophages (CAR-Ms) therapy has shown great promise in liver fibrosis, however limited anti-inflammatory capacity of CAR-Ms in the fibrotic foci compromises their anti-fibrotic potency. We here report tripartite motif containing 13 (TRIM13) engineered CAR-Ms for effectively manipulating the anti-inflammatory phenotype of CAR-Ms, augmenting their anti-fibrosis efficacy. Specifically, our efferocytosis-sparked lipid nanoparticles (ESLNPs) efficiently engineered fibrosis-associated macrophages to anti-inflammatory CAR-Ms by co-delivering mRNA encoding TRIM13 and anti-fibroblast activation protein (FAP) CAR respectively. Our data demonstrated these reprogrammed CAR-Ms exhibited a sustained anti-inflammatory phenotype via blocking the mitochondrial DNA (mtDNA)-STING pathway through the overexpression of TRIM13, and showed notable FAP-targeted phagocytosis. Treatment with ESLNPs in male mice with liver fibrosis obviously ameliorated fibrosis through synergizing anti-fibrotic and inflammation-resolution activities, ultimately prompting substantial hepatic function restoration. In sum, our findings established that remodeling and sustaining the anti-inflammatory phenotype of CAR-Ms markedly elevated their therapeutic efficacy in liver fibrosis, benefiting CAR-Ms therapy with broad application in other fibrotic diseases.
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