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Rapamycin Inhibits Osteoclastogenesis and Prevents LPS-Induced Alveolar Bone Loss by Oxidative Stress Suppression

[Image: see text] Periodontitis is a progressive inflammatory skeletal disease characterized by periodontal tissue destruction, alveolar bone resorption, and tooth loss. Chronic inflammatory response and excessive osteoclastogenesis play essential roles in periodontitis progression. Unfortunately, t...

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Autores principales: Feng, Chong, Liu, Yan, Zhang, Bao-Yi, Zhang, Hao, Shan, Fa-Yu, Li, Tian-Qi, Zhao, Zhi-Ning, Wang, Xin-Xing, Zhang, Xiang-Yu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10268267/
https://www.ncbi.nlm.nih.gov/pubmed/37323396
http://dx.doi.org/10.1021/acsomega.3c01289
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author Feng, Chong
Liu, Yan
Zhang, Bao-Yi
Zhang, Hao
Shan, Fa-Yu
Li, Tian-Qi
Zhao, Zhi-Ning
Wang, Xin-Xing
Zhang, Xiang-Yu
author_facet Feng, Chong
Liu, Yan
Zhang, Bao-Yi
Zhang, Hao
Shan, Fa-Yu
Li, Tian-Qi
Zhao, Zhi-Ning
Wang, Xin-Xing
Zhang, Xiang-Yu
author_sort Feng, Chong
collection PubMed
description [Image: see text] Periodontitis is a progressive inflammatory skeletal disease characterized by periodontal tissue destruction, alveolar bone resorption, and tooth loss. Chronic inflammatory response and excessive osteoclastogenesis play essential roles in periodontitis progression. Unfortunately, the pathogenesis that contributes to periodontitis remains unclear. As a specific inhibitor of the mTOR (mammalian/mechanistic target of rapamycin) signaling pathway and the most common autophagy activator, rapamycin plays a vital role in regulating various cellular processes. The present study investigated the effects of rapamycin on osteoclast (OC) formation in vitro and its effects on the rat periodontitis model. The results showed that rapamycin inhibited OC formation in a dose-dependent manner by up-regulating the Nrf2/GCLC signaling pathway, thus suppressing the intracellular redox status, as measured by 2′,7′-dichlorofluorescein diacetate and MitoSOX. In addition, rather than simply increasing the autophagosome formation, rapamycin increased the autophagy flux during OC formation. Importantly, the anti-oxidative effect of rapamycin was regulated by an increase in autophagy flux, which could be attenuated by blocking autophagy with bafilomycin A1. In line with the in vitro results, rapamycin treatment attenuated alveolar bone resorption in rats with lipopolysaccharide-induced periodontitis in a dose-dependent manner, as assessed by micro-computed tomography, hematoxylin–eosin staining, and tartrate-resistant acid phosphatase staining. Besides, high-dose rapamycin treatment could reduce the serum levels of proinflammatory factors and oxidative stress in periodontitis rats. In conclusion, this study expanded our understanding of rapamycin’s role in OC formation and protection from inflammatory bone diseases.
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spelling pubmed-102682672023-06-15 Rapamycin Inhibits Osteoclastogenesis and Prevents LPS-Induced Alveolar Bone Loss by Oxidative Stress Suppression Feng, Chong Liu, Yan Zhang, Bao-Yi Zhang, Hao Shan, Fa-Yu Li, Tian-Qi Zhao, Zhi-Ning Wang, Xin-Xing Zhang, Xiang-Yu ACS Omega [Image: see text] Periodontitis is a progressive inflammatory skeletal disease characterized by periodontal tissue destruction, alveolar bone resorption, and tooth loss. Chronic inflammatory response and excessive osteoclastogenesis play essential roles in periodontitis progression. Unfortunately, the pathogenesis that contributes to periodontitis remains unclear. As a specific inhibitor of the mTOR (mammalian/mechanistic target of rapamycin) signaling pathway and the most common autophagy activator, rapamycin plays a vital role in regulating various cellular processes. The present study investigated the effects of rapamycin on osteoclast (OC) formation in vitro and its effects on the rat periodontitis model. The results showed that rapamycin inhibited OC formation in a dose-dependent manner by up-regulating the Nrf2/GCLC signaling pathway, thus suppressing the intracellular redox status, as measured by 2′,7′-dichlorofluorescein diacetate and MitoSOX. In addition, rather than simply increasing the autophagosome formation, rapamycin increased the autophagy flux during OC formation. Importantly, the anti-oxidative effect of rapamycin was regulated by an increase in autophagy flux, which could be attenuated by blocking autophagy with bafilomycin A1. In line with the in vitro results, rapamycin treatment attenuated alveolar bone resorption in rats with lipopolysaccharide-induced periodontitis in a dose-dependent manner, as assessed by micro-computed tomography, hematoxylin–eosin staining, and tartrate-resistant acid phosphatase staining. Besides, high-dose rapamycin treatment could reduce the serum levels of proinflammatory factors and oxidative stress in periodontitis rats. In conclusion, this study expanded our understanding of rapamycin’s role in OC formation and protection from inflammatory bone diseases. American Chemical Society 2023-05-29 /pmc/articles/PMC10268267/ /pubmed/37323396 http://dx.doi.org/10.1021/acsomega.3c01289 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Feng, Chong
Liu, Yan
Zhang, Bao-Yi
Zhang, Hao
Shan, Fa-Yu
Li, Tian-Qi
Zhao, Zhi-Ning
Wang, Xin-Xing
Zhang, Xiang-Yu
Rapamycin Inhibits Osteoclastogenesis and Prevents LPS-Induced Alveolar Bone Loss by Oxidative Stress Suppression
title Rapamycin Inhibits Osteoclastogenesis and Prevents LPS-Induced Alveolar Bone Loss by Oxidative Stress Suppression
title_full Rapamycin Inhibits Osteoclastogenesis and Prevents LPS-Induced Alveolar Bone Loss by Oxidative Stress Suppression
title_fullStr Rapamycin Inhibits Osteoclastogenesis and Prevents LPS-Induced Alveolar Bone Loss by Oxidative Stress Suppression
title_full_unstemmed Rapamycin Inhibits Osteoclastogenesis and Prevents LPS-Induced Alveolar Bone Loss by Oxidative Stress Suppression
title_short Rapamycin Inhibits Osteoclastogenesis and Prevents LPS-Induced Alveolar Bone Loss by Oxidative Stress Suppression
title_sort rapamycin inhibits osteoclastogenesis and prevents lps-induced alveolar bone loss by oxidative stress suppression
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10268267/
https://www.ncbi.nlm.nih.gov/pubmed/37323396
http://dx.doi.org/10.1021/acsomega.3c01289
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