Literature DB >> 11194775

Genetic risk factors for chronic obstructive pulmonary disease.

A J Sandford1, P D Paré.   

Abstract

Numerous epidemiologic studies have indicated that there is a genetic basis to COPD. This result suggests that COPD develops in genetically susceptible individuals after sufficient exposure to cigarette smoke. At present, most of the genes that contribute to the genetic component to COPD are unknown. alpha 1-Antitrypsin deficiency is clearly a risk factor for COPD, but the other genetic associations with this disease must be considered as tentative. The key to establishing that a gene modifies the risk for a disease is replication of the association in different populations. This is a difficult task, however, because different genetic risk factors may be present in different populations. In addition, these genetic factors may interact with each other and with environmental risk factors, obscuring the effect of the gene on the phenotype. Apart from alpha 1-AT only the GST-M1, VDBP and CFTR genes have been implicated as risk factors in more than one population. Identification of other candidate genes awaits further understanding of the pathogenesis of COPD at the molecular level. There is good evidence that the propensity to smoke cigarettes and the likelihood of quitting smoking are influenced by genetic factors. This information may be useful in efforts directed toward cessation; however, most of the genetic studies so far have shown a rather small effect. The responses to hypoxia and hypercapnia also seem to be influenced by genetic factors. Identification of the genes involved could yield important insights into the pathogenesis of COPD and may highlight new targets for therapeutic intervention for this debilitating disease.

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Year:  2000        PMID: 11194775     DOI: 10.1016/s0272-5231(05)70173-8

Source DB:  PubMed          Journal:  Clin Chest Med        ISSN: 0272-5231            Impact factor:   2.878


  8 in total

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2.  Vitamin D binding protein gene polymorphisms and chronic obstructive pulmonary disease: a meta-analysis.

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Review 3.  Canadian Thoracic Society recommendations for management of chronic obstructive pulmonary disease - 2007 update.

Authors:  Denis E O'Donnell; Shaw Aaron; Jean Bourbeau; Paul Hernandez; Darcy D Marciniuk; Meyer Balter; Gordon Ford; Andre Gervais; Rogers Goldstein; Rick Hodder; Alan Kaplan; Sean Keenan; Yves Lacasse; Francois Maltais; Jeremy Road; Graeme Rocker; Don Sin; Tasmin Sinuff; Nha Voduc
Journal:  Can Respir J       Date:  2007-09       Impact factor: 2.409

4.  XRCC1 Arg194Trp polymorphism and risk of chronic obstructive pulmonary disease.

Authors:  Jungang Xie; Shifang Yang; Yongjian Xu; Zhenxiang Zhang
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5.  Variation in the GST mu locus and tobacco smoke exposure as determinants of childhood lung function.

Authors:  Carrie V Breton; Hita Vora; Muhammad T Salam; Talat Islam; Made Wenten; W James Gauderman; David Van den Berg; Kiros Berhane; John M Peters; Frank D Gilliland
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6.  Urinary cadmium levels predict lower lung function in current and former smokers: data from the Third National Health and Nutrition Examination Survey.

Authors:  D M Mannino; F Holguin; H M Greves; A Savage-Brown; A L Stock; R L Jones
Journal:  Thorax       Date:  2004-03       Impact factor: 9.139

7.  Contribution of alpha- and beta-defensins to lung function decline and infection in smokers: an association study.

Authors:  Alison M Wallace; Jian-Qing He; Kelly M Burkett; Jian Ruan; John E Connett; Nicholas R Anthonisen; Peter D Paré; Andrew J Sandford
Journal:  Respir Res       Date:  2006-05-15

8.  Role of glutathione S transferase polymorphism in COPD with special reference to peoples living in the vicinity of the open cast coal mine of Assam.

Authors:  Tapan Dey; Kabita Gogoi; Bala Gopalan Unni; Munmi Kalita; Moonmee Bharadwaz; Minakshi Bhattacharjee; Pranab Kumar Boruah; Thaneswar Bora; Dibyajyoti Ozah; Manoj Kalita
Journal:  PLoS One       Date:  2014-05-08       Impact factor: 3.240

  8 in total

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