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SCD1 deficiency exacerbates osteoarthritis by inducing ferroptosis in chondrocytes

BACKGROUND: Osteoarthritis (OA) is a severe joint disease that causes cartilage destruction and mobility loss. Abnormal fatty acid metabolism of chondrocytes plays a role in OA development. Stearoyl-CoA desaturase (SCD1) is a rate-limiting enzyme in the anabolism of unsaturated fatty acids. This stu...

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Autores principales: Yu, Chao, Yang, Xian, Jiang, Qingsong, Liu, Zhibo, Chen, Yan, Zang, Guangchao, Huang, Wei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AME Publishing Company 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10009576/
https://www.ncbi.nlm.nih.gov/pubmed/36923091
http://dx.doi.org/10.21037/atm-22-6630
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author Yu, Chao
Yang, Xian
Jiang, Qingsong
Liu, Zhibo
Chen, Yan
Zang, Guangchao
Huang, Wei
author_facet Yu, Chao
Yang, Xian
Jiang, Qingsong
Liu, Zhibo
Chen, Yan
Zang, Guangchao
Huang, Wei
author_sort Yu, Chao
collection PubMed
description BACKGROUND: Osteoarthritis (OA) is a severe joint disease that causes cartilage destruction and mobility loss. Abnormal fatty acid metabolism of chondrocytes plays a role in OA development. Stearoyl-CoA desaturase (SCD1) is a rate-limiting enzyme in the anabolism of unsaturated fatty acids. This study aimed to investigate the role of the SCD1 protein in the degenerative process of OA. METHODS: The GSE176199 gene expression profile dataset was analyzed by Gene Set Enrichment Analysis (GSEA). An animal model of OA was established using C57BL/6J wild-type (WT) (n=40) and SCD1 knockout (SCD1-KO) (n=20) mice. The histological scoring method of the Osteoarthritis Research Society International (OARSI) was used to quantify the degree of cartilage degeneration. The expression of SCD1 protein and relevant ferroptosis indicators were evaluated. RESULTS: The GSEA analysis showed that unsaturated fatty acid synthesis was inhibited in human OA chondrocytes. Meanwhile, the expression of SCD1 protein was significantly reduced in human OA articular cartilage. SCD1-KO mice exhibited early OA and accelerated cartilage loss after destabilization of medial meniscus (DMM)-induced OA. Furthermore, we found that the SCD1-PPARG axis regulates articular cartilage homeostasis via a mechanism involving the induction of ferroptosis-related gene expression in ATDC5 chondrocytes. CONCLUSIONS: SCD1 deficiency exacerbates OA by inducing ferroptosis in chondrocytes.
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spelling pubmed-100095762023-03-14 SCD1 deficiency exacerbates osteoarthritis by inducing ferroptosis in chondrocytes Yu, Chao Yang, Xian Jiang, Qingsong Liu, Zhibo Chen, Yan Zang, Guangchao Huang, Wei Ann Transl Med Original Article BACKGROUND: Osteoarthritis (OA) is a severe joint disease that causes cartilage destruction and mobility loss. Abnormal fatty acid metabolism of chondrocytes plays a role in OA development. Stearoyl-CoA desaturase (SCD1) is a rate-limiting enzyme in the anabolism of unsaturated fatty acids. This study aimed to investigate the role of the SCD1 protein in the degenerative process of OA. METHODS: The GSE176199 gene expression profile dataset was analyzed by Gene Set Enrichment Analysis (GSEA). An animal model of OA was established using C57BL/6J wild-type (WT) (n=40) and SCD1 knockout (SCD1-KO) (n=20) mice. The histological scoring method of the Osteoarthritis Research Society International (OARSI) was used to quantify the degree of cartilage degeneration. The expression of SCD1 protein and relevant ferroptosis indicators were evaluated. RESULTS: The GSEA analysis showed that unsaturated fatty acid synthesis was inhibited in human OA chondrocytes. Meanwhile, the expression of SCD1 protein was significantly reduced in human OA articular cartilage. SCD1-KO mice exhibited early OA and accelerated cartilage loss after destabilization of medial meniscus (DMM)-induced OA. Furthermore, we found that the SCD1-PPARG axis regulates articular cartilage homeostasis via a mechanism involving the induction of ferroptosis-related gene expression in ATDC5 chondrocytes. CONCLUSIONS: SCD1 deficiency exacerbates OA by inducing ferroptosis in chondrocytes. AME Publishing Company 2023-02-21 2023-02-28 /pmc/articles/PMC10009576/ /pubmed/36923091 http://dx.doi.org/10.21037/atm-22-6630 Text en 2023 Annals of Translational Medicine. All rights reserved. https://creativecommons.org/licenses/by-nc-nd/4.0/Open Access Statement: This is an Open Access article distributed in accordance with the Creative Commons Attribution-NonCommercial-NoDerivs 4.0 International License (CC BY-NC-ND 4.0), which permits the non-commercial replication and distribution of the article with the strict proviso that no changes or edits are made and the original work is properly cited (including links to both the formal publication through the relevant DOI and the license). See: https://creativecommons.org/licenses/by-nc-nd/4.0 (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Original Article
Yu, Chao
Yang, Xian
Jiang, Qingsong
Liu, Zhibo
Chen, Yan
Zang, Guangchao
Huang, Wei
SCD1 deficiency exacerbates osteoarthritis by inducing ferroptosis in chondrocytes
title SCD1 deficiency exacerbates osteoarthritis by inducing ferroptosis in chondrocytes
title_full SCD1 deficiency exacerbates osteoarthritis by inducing ferroptosis in chondrocytes
title_fullStr SCD1 deficiency exacerbates osteoarthritis by inducing ferroptosis in chondrocytes
title_full_unstemmed SCD1 deficiency exacerbates osteoarthritis by inducing ferroptosis in chondrocytes
title_short SCD1 deficiency exacerbates osteoarthritis by inducing ferroptosis in chondrocytes
title_sort scd1 deficiency exacerbates osteoarthritis by inducing ferroptosis in chondrocytes
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10009576/
https://www.ncbi.nlm.nih.gov/pubmed/36923091
http://dx.doi.org/10.21037/atm-22-6630
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