Literature DB >> 26385922

Klotho Reduction in Alveolar Macrophages Contributes to Cigarette Smoke Extract-induced Inflammation in Chronic Obstructive Pulmonary Disease.

Lingling Li1, Yujie Wang2, Wei Gao2, Cheng Yuan2, Sini Zhang2, Hong Zhou3, Mao Huang2, Xin Yao4.   

Abstract

Abnormal inflammation and accelerated decline in lung function occur in patients with chronic obstructive pulmonary disease (COPD). Klotho, an anti-aging protein, has an anti-inflammatory function. However, the role of Klotho has never been investigated in COPD. The aim of this study is to investigate the possible role of Klotho by alveolar macrophages in airway inflammation in COPD. Klotho levels were assessed in the lung samples and peripheral blood mononuclear cells of non-smokers, smokers, and patients with COPD. The regulation of Klotho expression by cigarette smoke extract (CSE) was studied in vitro, and small interfering RNA (siRNA) and recombinant Klotho were employed to investigate the role of Klotho on CSE-induced inflammation. Klotho expression was reduced in alveolar macrophages in the lungs and peripheral blood mononuclear cells of COPD patients. CSE decreased Klotho expression and release from MH-S cells. Knockdown of endogenous Klotho augmented the expression of the inflammatory mediators, such as MMP-9, IL-6, and TNF-α, by MH-S cells. Exogenous Klotho inhibited the expression of CSE-induced inflammatory mediators. Furthermore, we showed that Klotho interacts with IκBα of the NF-κB pathway. Dexamethasone treatment increased the expression and release level of Klotho in MH-S cells. Our findings suggest that Klotho plays a role in sustained inflammation of the lungs, which in turn may have therapeutic implications in COPD.
© 2015 by The American Society for Biochemistry and Molecular Biology, Inc.

Entities:  

Keywords:  Klotho; chronic obstructive pulmonary disease (COPD); cigarette smoke; inflammation; lung; macrophage

Mesh:

Substances:

Year:  2015        PMID: 26385922      PMCID: PMC4646031          DOI: 10.1074/jbc.M115.655431

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  38 in total

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  26 in total

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Journal:  Pediatr Nephrol       Date:  2018-01-08       Impact factor: 3.714

2.  Klotho Regulates Cigarette Smoke-Induced Autophagy: Implication in Pathogenesis of COPD.

Authors:  Lingling Li; Min Zhang; Liqin Zhang; Yusheng Cheng; Xiongwen Tu; Zhiwei Lu
Journal:  Lung       Date:  2017-03-28       Impact factor: 2.584

3.  A Paradox: α-Klotho Levels and Smoking Intensity.

Authors:  Zoraida Verde; Jose M Rodríguez González-Moro; Luis M Chicharro; Luis Reinoso-Barbero; Fernando Bandrés; Félix Gómez-Gallego; Catalina Santiago
Journal:  Lung       Date:  2016-10-17       Impact factor: 2.584

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Authors:  Connie C W Hsia; Priya Ravikumar; Jianfeng Ye
Journal:  Bone       Date:  2017-03-24       Impact factor: 4.398

5.  Extracellular Vesicles from Albumin-Induced Tubular Epithelial Cells Promote the M1 Macrophage Phenotype by Targeting Klotho.

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Authors:  Amiq Gazdhar; Priya Ravikumar; Johanne Pastor; Manfred Heller; Jianfeng Ye; Jianning Zhang; Orson W Moe; Thomas Geiser; Connie C W Hsia
Journal:  Stem Cells       Date:  2017-12-25       Impact factor: 6.277

7.  Shema Oral Liquid Ameliorates the Severity of LPS-Induced COPD via Regulating DNMT1.

Authors:  Fangbo Zhang; Feifei Guo; Yang Liu; Yi Zhang; Defeng Li; Hongjun Yang
Journal:  Front Pharmacol       Date:  2022-06-08       Impact factor: 5.988

8.  Association between serum cotinine and α-Klotho levels among adults: Findings from the National Health and Nutrition Examination Survey 2007-2016.

Authors:  Yu Yao; Ying Long; Fa-Wang Du; Yong Zhao; Xiao-Bin Luo
Journal:  Tob Induc Dis       Date:  2022-06-14       Impact factor: 5.163

9.  Fibroblast growth factor 23 and Klotho contribute to airway inflammation.

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Journal:  Eur Respir J       Date:  2018-07-04       Impact factor: 16.671

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Journal:  Sci Rep       Date:  2021-08-05       Impact factor: 4.379

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