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Citrus Alkaline Extracts Inhibit Senescence of A549 Cells to Alleviate Pulmonary Fibrosis via the β-Catenin/P53 Pathway

BACKGROUND: Idiopathic pulmonary fibrosis (IPF) is a disease related to aging, which has become increasingly prevalent as the population has aged. However, there remains no effective treatment for the disease. Alveolar epithelial type II cell (AEC II) senescence plays an important role in the occurr...

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Autores principales: Han, Di, Xu, Yong, Peng, Wen-Pan, Feng, Fanchao, Wang, Zhichao, Gu, Cheng, Zhou, Xianmei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Scientific Literature, Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7962417/
https://www.ncbi.nlm.nih.gov/pubmed/33707405
http://dx.doi.org/10.12659/MSM.928547
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author Han, Di
Xu, Yong
Peng, Wen-Pan
Feng, Fanchao
Wang, Zhichao
Gu, Cheng
Zhou, Xianmei
author_facet Han, Di
Xu, Yong
Peng, Wen-Pan
Feng, Fanchao
Wang, Zhichao
Gu, Cheng
Zhou, Xianmei
author_sort Han, Di
collection PubMed
description BACKGROUND: Idiopathic pulmonary fibrosis (IPF) is a disease related to aging, which has become increasingly prevalent as the population has aged. However, there remains no effective treatment for the disease. Alveolar epithelial type II cell (AEC II) senescence plays an important role in the occurrence and development of IPF. Therefore, enhancing our understanding of aging AEC IIs might facilitate the development of a new therapeutic strategy for the prevention and treatment of IPF. The aim of this study was to investigate the effect of citrus alkaline extracts (CAE) on senescence in A549 cells and elucidate the mechanism by which CAE function. MATERIAL/METHODS: Adriamycin RD (ARD) induces the senescence of A549 cells. Relevant indicators were identified following administration of 3 concentrations of CAE (50 μg/mL, 100 μg/mL, and 200 μg/mL) to A549 cells. RESULTS: CAE inhibited senescence in ARD-induced A549 cells. It inhibited p16, p21, p53, and a senescence-associated secretory phenotype, and reduced expression of the senescence-related positive cells of β-galactosidase. Further study revealed that activation of the β-catenin signaling pathway is closely associated with p53. CAE inhibited senescence in A549 cells via the β-catenin/p53 pathway. Further, inhibition of β-catenin was associated with reduced expression levels of p53 and p21, and the anti-aging effects of CAE were enhanced. When expression of p53 was inhibited, expression levels of β-catenin also tended to decrease. CONCLUSIONS: In summary, our study showed that CAE can inhibit aging in A549 cells to alleviate pulmonary fibrosis, and thus limit the secretion of the extracellular matrix and collagen in lung fibroblasts.
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spelling pubmed-79624172021-03-19 Citrus Alkaline Extracts Inhibit Senescence of A549 Cells to Alleviate Pulmonary Fibrosis via the β-Catenin/P53 Pathway Han, Di Xu, Yong Peng, Wen-Pan Feng, Fanchao Wang, Zhichao Gu, Cheng Zhou, Xianmei Med Sci Monit Lab/In Vitro Research BACKGROUND: Idiopathic pulmonary fibrosis (IPF) is a disease related to aging, which has become increasingly prevalent as the population has aged. However, there remains no effective treatment for the disease. Alveolar epithelial type II cell (AEC II) senescence plays an important role in the occurrence and development of IPF. Therefore, enhancing our understanding of aging AEC IIs might facilitate the development of a new therapeutic strategy for the prevention and treatment of IPF. The aim of this study was to investigate the effect of citrus alkaline extracts (CAE) on senescence in A549 cells and elucidate the mechanism by which CAE function. MATERIAL/METHODS: Adriamycin RD (ARD) induces the senescence of A549 cells. Relevant indicators were identified following administration of 3 concentrations of CAE (50 μg/mL, 100 μg/mL, and 200 μg/mL) to A549 cells. RESULTS: CAE inhibited senescence in ARD-induced A549 cells. It inhibited p16, p21, p53, and a senescence-associated secretory phenotype, and reduced expression of the senescence-related positive cells of β-galactosidase. Further study revealed that activation of the β-catenin signaling pathway is closely associated with p53. CAE inhibited senescence in A549 cells via the β-catenin/p53 pathway. Further, inhibition of β-catenin was associated with reduced expression levels of p53 and p21, and the anti-aging effects of CAE were enhanced. When expression of p53 was inhibited, expression levels of β-catenin also tended to decrease. CONCLUSIONS: In summary, our study showed that CAE can inhibit aging in A549 cells to alleviate pulmonary fibrosis, and thus limit the secretion of the extracellular matrix and collagen in lung fibroblasts. International Scientific Literature, Inc. 2021-03-12 /pmc/articles/PMC7962417/ /pubmed/33707405 http://dx.doi.org/10.12659/MSM.928547 Text en © Med Sci Monit, 2021 This work is licensed under Creative Common Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0 (https://creativecommons.org/licenses/by-nc-nd/4.0/) )
spellingShingle Lab/In Vitro Research
Han, Di
Xu, Yong
Peng, Wen-Pan
Feng, Fanchao
Wang, Zhichao
Gu, Cheng
Zhou, Xianmei
Citrus Alkaline Extracts Inhibit Senescence of A549 Cells to Alleviate Pulmonary Fibrosis via the β-Catenin/P53 Pathway
title Citrus Alkaline Extracts Inhibit Senescence of A549 Cells to Alleviate Pulmonary Fibrosis via the β-Catenin/P53 Pathway
title_full Citrus Alkaline Extracts Inhibit Senescence of A549 Cells to Alleviate Pulmonary Fibrosis via the β-Catenin/P53 Pathway
title_fullStr Citrus Alkaline Extracts Inhibit Senescence of A549 Cells to Alleviate Pulmonary Fibrosis via the β-Catenin/P53 Pathway
title_full_unstemmed Citrus Alkaline Extracts Inhibit Senescence of A549 Cells to Alleviate Pulmonary Fibrosis via the β-Catenin/P53 Pathway
title_short Citrus Alkaline Extracts Inhibit Senescence of A549 Cells to Alleviate Pulmonary Fibrosis via the β-Catenin/P53 Pathway
title_sort citrus alkaline extracts inhibit senescence of a549 cells to alleviate pulmonary fibrosis via the β-catenin/p53 pathway
topic Lab/In Vitro Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7962417/
https://www.ncbi.nlm.nih.gov/pubmed/33707405
http://dx.doi.org/10.12659/MSM.928547
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