Activating SIRT3 in peritoneal mesothelial cells alleviates postsurgical peritoneal adhesion formation by decreasing oxidative stress and inhibiting the NLRP3 inflammasome. 2022

Tianli Shen, and Yunhua Wu, and Xingjie Wang, and Zijun Wang, and Enmeng Li, and Cancan Zhou, and Chenyang Yue, and Zhengdong Jiang, and Guangbing Wei, and Jie Lian, and Qinhong Xu, and Xuqi Li
Department of General Surgery, The First Affiliated Hospital of Xi'an Jiaotong University, 710061, Xi'an, Shaanxi, China.

Peritoneal adhesions (PAs) are a serious complication of abdominal surgery and negatively affect the quality of life of millions of people worldwide. However, a clear molecular mechanism and a standard therapeutic strategy for PAs have not been established. Here, we developed a standardized method to mimic the pathological changes in PAs and found that sirtuin 3 (SIRT3) expression was severely decreased in adhesion tissues, which was consistent with our bioinformatics analysis and patient adhesion tissue analysis. Thus, we hypothesized that activating SIRT3 could alleviate postsurgical PAs. Sirt3-deficient (Sirt3-/-) mice exhibited many more PAs after standardized abdominal surgery. Furthermore, compared with wild-type (Sirt3+/+) mice, Sirt3-deficient (Sirt3-/-) mice showed more prominent reactive oxygen species (ROS) accumulation, increased levels of inflammatory factors, and exacerbated mitochondrial damage and fragmentation. In addition, we observed NLRP3 inflammasome activation in the adhesion tissues of Sirt3-/- but, not Sirt3+/+ mice. Furthermore, mesothelial cells sorted from Sirt3-/- mice exhibited impaired mitochondrial bioenergetics and redox homeostasis. Honokiol (HKL), a natural compound found in several species of the genus Magnolia, could activate SIRT3 in vitro. Then, we demonstrated that treatment with HKL could reduce oxidative stress and the levels of inflammatory factors and suppress NLRP3 activation in vivo, reducing the occurrence of postsurgical PAs. In vitro treatment with HKL also restored mitochondrial bioenergetics and promoted mesothelial cell viability under oxidative stress conditions. Taken together, our findings show that the rescue of SIRT3 by HKL may be a new therapeutic strategy to alleviate and block postsurgical PA formation.

UI MeSH Term Description Entries
D010636 Phenols Benzene derivatives that include one or more hydroxyl groups attached to the ring structure.
D011788 Quality of Life A generic concept reflecting concern with the modification and enhancement of life attributes, e.g., physical, political, moral, social environment as well as health and disease. HRQOL,Health-Related Quality Of Life,Life Quality,Health Related Quality Of Life
D002478 Cells, Cultured Cells propagated in vitro in special media conducive to their growth. Cultured cells are used to study developmental, morphologic, metabolic, physiologic, and genetic processes, among others. Cultured Cells,Cell, Cultured,Cultured Cell
D000071199 NLR Family, Pyrin Domain-Containing 3 Protein An NLR protein that contains an N-terminal PYRIN DOMAIN and ATP-binding site and 9 C-terminal LEUCINE-rich repeats; it is expressed primarily by MACROPHAGES. It is a core component of the INFLAMMASOME and directs its assembly in response to pathogen infection and damage-associated stimuli. Mutations in the NLRP3 gene are associated with FAMILIAL COLD AUTOINFLAMMATORY SYNDROME. Cold Autoinflammatory Syndrome 1 Protein,NACHT, LRR and PYD Domains-Containing Protein 3,NLRP3 Protein,NACHT, LRR and PYD Domains Containing Protein 3,NLR Family, Pyrin Domain Containing 3 Protein
D000498 Allyl Compounds Alkenes with the general formula H2C Compounds, Allyl
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D001713 Biphenyl Compounds Whitish aromatic crystalline organic compounds made up of two conjoined BENZENE rings. Compounds, Biphenyl
D017382 Reactive Oxygen Species Molecules or ions formed by the incomplete one-electron reduction of oxygen. These reactive oxygen intermediates include SINGLET OXYGEN; SUPEROXIDES; PEROXIDES; HYDROXYL RADICAL; and HYPOCHLOROUS ACID. They contribute to the microbicidal activity of PHAGOCYTES, regulation of SIGNAL TRANSDUCTION and GENE EXPRESSION, and the oxidative damage to NUCLEIC ACIDS; PROTEINS; and LIPIDS. Active Oxygen Species,Oxygen Radical,Oxygen Radicals,Pro-Oxidant,Reactive Oxygen Intermediates,Active Oxygen,Oxygen Species, Reactive,Pro-Oxidants,Oxygen, Active,Pro Oxidant,Pro Oxidants,Radical, Oxygen
D051379 Mice The common name for the genus Mus. Mice, House,Mus,Mus musculus,Mice, Laboratory,Mouse,Mouse, House,Mouse, Laboratory,Mouse, Swiss,Mus domesticus,Mus musculus domesticus,Swiss Mice,House Mice,House Mouse,Laboratory Mice,Laboratory Mouse,Mice, Swiss,Swiss Mouse,domesticus, Mus musculus
D056566 Sirtuin 3 A sirtuin family member found primarily in MITOCHONDRIA. It is a multifunctional enzyme that contains a NAD-dependent deacetylase activity that is specific for HISTONES and a mono-ADP-ribosyltransferase activity. Silent Mating Type Information Regulation 2 Homolog 3,Sirt3

Related Publications

Tianli Shen, and Yunhua Wu, and Xingjie Wang, and Zijun Wang, and Enmeng Li, and Cancan Zhou, and Chenyang Yue, and Zhengdong Jiang, and Guangbing Wei, and Jie Lian, and Qinhong Xu, and Xuqi Li
September 2021, Life sciences,
Tianli Shen, and Yunhua Wu, and Xingjie Wang, and Zijun Wang, and Enmeng Li, and Cancan Zhou, and Chenyang Yue, and Zhengdong Jiang, and Guangbing Wei, and Jie Lian, and Qinhong Xu, and Xuqi Li
January 2022, Evidence-based complementary and alternative medicine : eCAM,
Tianli Shen, and Yunhua Wu, and Xingjie Wang, and Zijun Wang, and Enmeng Li, and Cancan Zhou, and Chenyang Yue, and Zhengdong Jiang, and Guangbing Wei, and Jie Lian, and Qinhong Xu, and Xuqi Li
September 2022, Free radical biology & medicine,
Tianli Shen, and Yunhua Wu, and Xingjie Wang, and Zijun Wang, and Enmeng Li, and Cancan Zhou, and Chenyang Yue, and Zhengdong Jiang, and Guangbing Wei, and Jie Lian, and Qinhong Xu, and Xuqi Li
June 2022, Bioscience, biotechnology, and biochemistry,
Tianli Shen, and Yunhua Wu, and Xingjie Wang, and Zijun Wang, and Enmeng Li, and Cancan Zhou, and Chenyang Yue, and Zhengdong Jiang, and Guangbing Wei, and Jie Lian, and Qinhong Xu, and Xuqi Li
January 2022, PloS one,
Tianli Shen, and Yunhua Wu, and Xingjie Wang, and Zijun Wang, and Enmeng Li, and Cancan Zhou, and Chenyang Yue, and Zhengdong Jiang, and Guangbing Wei, and Jie Lian, and Qinhong Xu, and Xuqi Li
January 2023, Biochemical pharmacology,
Tianli Shen, and Yunhua Wu, and Xingjie Wang, and Zijun Wang, and Enmeng Li, and Cancan Zhou, and Chenyang Yue, and Zhengdong Jiang, and Guangbing Wei, and Jie Lian, and Qinhong Xu, and Xuqi Li
January 2024, Heliyon,
Tianli Shen, and Yunhua Wu, and Xingjie Wang, and Zijun Wang, and Enmeng Li, and Cancan Zhou, and Chenyang Yue, and Zhengdong Jiang, and Guangbing Wei, and Jie Lian, and Qinhong Xu, and Xuqi Li
February 2019, FASEB journal : official publication of the Federation of American Societies for Experimental Biology,
Tianli Shen, and Yunhua Wu, and Xingjie Wang, and Zijun Wang, and Enmeng Li, and Cancan Zhou, and Chenyang Yue, and Zhengdong Jiang, and Guangbing Wei, and Jie Lian, and Qinhong Xu, and Xuqi Li
May 2024, The Prostate,
Tianli Shen, and Yunhua Wu, and Xingjie Wang, and Zijun Wang, and Enmeng Li, and Cancan Zhou, and Chenyang Yue, and Zhengdong Jiang, and Guangbing Wei, and Jie Lian, and Qinhong Xu, and Xuqi Li
October 2019, Experimental cell research,
Copied contents to your clipboard!