Literature DB >> 24879054

Interrelated role of cigarette smoking, oxidative stress, and immune response in COPD and corresponding treatments.

Li Zuo1, Feng He2, Georgianna G Sergakis3, Majid S Koozehchian4, Julia N Stimpfl3, Yi Rong5, Philip T Diaz6, Thomas M Best7.   

Abstract

Cigarette smoking (CS) can impact the immune system and induce pulmonary disorders such as chronic obstructive pulmonary disease (COPD), which is currently the fourth leading cause of chronic morbidity and mortality worldwide. Accordingly, the most significant risk factor associated with COPD is exposure to cigarette smoke. The purpose of the present study is to provide an updated overview of the literature regarding the effect of CS on the immune system and lungs, the mechanism of CS-induced COPD and oxidative stress, as well as the available and potential treatment options for CS-induced COPD. An extensive literature search was conducted on the PubMed/Medline databases to review current COPD treatment research, available in the English language, dating from 1976 to 2014. Studies have investigated the mechanism by which CS elicits detrimental effects on the immune system and pulmonary function through the use of human and animal subjects. A strong relationship among continued tobacco use, oxidative stress, and exacerbation of COPD symptoms is frequently observed in COPD subjects. In addition, therapeutic approaches emphasizing smoking cessation have been developed, incorporating counseling and nicotine replacement therapy. However, the inability to reverse COPD progression establishes the need for improved preventative and therapeutic strategies, such as a combination of intensive smoking cessation treatment and pharmaceutical therapy, focusing on immune homeostasis and redox balance. CS initiates a complex interplay between oxidative stress and the immune response in COPD. Therefore, multiple approaches such as smoking cessation, counseling, and pharmaceutical therapies targeting inflammation and oxidative stress are recommended for COPD treatment.
Copyright © 2014 the American Physiological Society.

Entities:  

Keywords:  antioxidant; inflammation; reactive oxygen species; smoking cessation

Mesh:

Year:  2014        PMID: 24879054     DOI: 10.1152/ajplung.00330.2013

Source DB:  PubMed          Journal:  Am J Physiol Lung Cell Mol Physiol        ISSN: 1040-0605            Impact factor:   5.464


  85 in total

Review 1.  Modeling drug exposure in rodents using e-cigarettes and other electronic nicotine delivery systems.

Authors:  Cristina Miliano; E Reilly Scott; Laura B Murdaugh; Emma R Gnatowski; Christine L Faunce; Megan S Anderson; Malissa M Reyes; Ann M Gregus; Matthew W Buczynski
Journal:  J Neurosci Methods       Date:  2019-10-12       Impact factor: 2.390

2.  Chrysin suppresses cigarette smoke-induced airway inflammation in mice.

Authors:  Yongchun Shen; Panwen Tian; Diandian Li; Yanqiu Wu; Chun Wan; Ting Yang; Lei Chen; Tao Wang; Fuqiang Wen
Journal:  Int J Clin Exp Med       Date:  2015-02-15

Review 3.  Environmental aspects of congenital scoliosis.

Authors:  Zheng Li; Xin Yu; Jianxiong Shen
Journal:  Environ Sci Pollut Res Int       Date:  2015-01-29       Impact factor: 4.223

4.  Occupational exposures and chronic obstructive pulmonary disease. Causality established, time to focus on effect and phenotypes.

Authors:  Carlos H Martinez; George L Delclos
Journal:  Am J Respir Crit Care Med       Date:  2015-03-01       Impact factor: 21.405

5.  Rapamycin attenuates Tc1 and Tc17 cell responses in cigarette smoke-induced emphysema in mice.

Authors:  Hui Zhang; Xiu Zhou; Xin Chen; Yuanzhen Lin; Shilin Qiu; Yun Zhao; Qiya Tang; Yi Liang; Xiaoning Zhong
Journal:  Inflamm Res       Date:  2019-08-29       Impact factor: 4.575

6.  Beclin-1 regulates cigarette smoke-induced kidney injury in a murine model of chronic obstructive pulmonary disease.

Authors:  Maria A Pabón; Edwin Patino; Divya Bhatia; Joselyn Rojas-Quintero; Kevin C Ma; Eli J Finkelsztein; Juan C Osorio; Faryal Malick; Francesca Polverino; Caroline A Owen; Stefan W Ryter; Augustine Mk Choi; Suzanne M Cloonan; Mary E Choi
Journal:  JCI Insight       Date:  2018-09-20

7.  Cigarette smoke compounds induce cellular redox imbalance, activate NF-κB, and increase TNF-α/CRP secretion: a possible pathway in the pathogenesis of COPD.

Authors:  Tapan Dey; Prachurjya Dutta; Prasenjit Manna; Jatin Kalita; Hari Prasanna Deka Boruah; Alak Kumar Buragohain; Balagopalan Unni; Dibyajyoti Ozah; Mihir Kumar Goswami; Ratan Kumar Kotokey
Journal:  Toxicol Res (Camb)       Date:  2016-03-03       Impact factor: 3.524

Review 8.  Imaging Pulmonary Inflammation.

Authors:  Philip M Scherer; Delphine L Chen
Journal:  J Nucl Med       Date:  2016-09-01       Impact factor: 10.057

9.  Redox Role of ROS and Inflammation in Pulmonary Diseases.

Authors:  Li Zuo; Denethi Wijegunawardana
Journal:  Adv Exp Med Biol       Date:  2021       Impact factor: 2.622

10.  Resolvin D1 Reduces Emphysema and Chronic Inflammation.

Authors:  Hsi-Min Hsiao; Thomas H Thatcher; Romain A Colas; Charles N Serhan; Richard P Phipps; Patricia J Sime
Journal:  Am J Pathol       Date:  2015-10-24       Impact factor: 4.307

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