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Association of MBL2 gene polymorphisms with pulmonary tuberculosis susceptibility: trial sequence meta-analysis as evidence

BACKGROUND: Mannose-binding lectin (MBL) or mannose-binding protein (MBP), encoded by MBL2 gene and secreted by the liver, activates complement system through lectin pathway in innate immunity against the host’s infection. Conflictingly, a number of MBL2 variants, rs1800450 (A>B), rs1800451 (A>...

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Autores principales: Mandal, Raju K, Khan, Munawwar Ali, Hussain, Arif, Dar, Sajad A, Aloufi, Sultan, Jawed, Arshad, Wahid, Mohd, Panda, Aditya K, Lohani, Mohtashim, Akhter, Naseem, Khan, Saif, Mishra, Bhartendu Nath, Haque, Shafiul
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6333159/
https://www.ncbi.nlm.nih.gov/pubmed/30666135
http://dx.doi.org/10.2147/IDR.S188980
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author Mandal, Raju K
Khan, Munawwar Ali
Hussain, Arif
Dar, Sajad A
Aloufi, Sultan
Jawed, Arshad
Wahid, Mohd
Panda, Aditya K
Lohani, Mohtashim
Akhter, Naseem
Khan, Saif
Mishra, Bhartendu Nath
Haque, Shafiul
author_facet Mandal, Raju K
Khan, Munawwar Ali
Hussain, Arif
Dar, Sajad A
Aloufi, Sultan
Jawed, Arshad
Wahid, Mohd
Panda, Aditya K
Lohani, Mohtashim
Akhter, Naseem
Khan, Saif
Mishra, Bhartendu Nath
Haque, Shafiul
author_sort Mandal, Raju K
collection PubMed
description BACKGROUND: Mannose-binding lectin (MBL) or mannose-binding protein (MBP), encoded by MBL2 gene and secreted by the liver, activates complement system through lectin pathway in innate immunity against the host’s infection. Conflictingly, a number of MBL2 variants, rs1800450 (A>B), rs1800451 (A>C), rs5030737 (A>D), rs7096206 (Y>X), rs11003125 (H>L), and rs7095891 (P>Q) allele, have been found to be associated with compromised serum levels and pulmonary tuberculosis (PTB) susceptibility. The present meta-analysis study was performed to evaluate the potential association of these MBL2 gene variants with PTB susceptibility. MATERIALS AND METHODS: A quantitative synthesis was performed on PubMed (Medline), EMBASE, and Google Scholar web database searches. A meta-analysis was performed to calculate the pooled odds ratios and 95% CIs for all the genetic models. RESULTS: A total of 14 eligible studies were included to analyze their pooled data for associations between alleles, genotypes, and minor allele carriers. The statistical analysis revealed the significant reduced PTB risk with homozygous variant genotype of rs1800451 polymorphism (CC vs AA: P=0.043; OR =0.828, 95% CI =0.689–0.994). Contrary to this, the variant allele of rs5030737 polymorphism showed association with increased PTB risk (D vs A: P=0.026; OR =1.563, 95% CI =1.054–2.317). However, the other genetic models of rs1800450 (A>B), rs7096206 (Y>X), and rs11003125 (H>L) MBL2 gene polymorphisms did not divulge any association with PTB susceptibility. CONCLUSION: The current meta-analysis concludes that rs1800451 (A>C) and rs5030737 (A>D) polymorphisms of MBL2 gene play a significant role in PTB susceptibility. Further, well-designed epidemiological studies with larger sample size including consideration of environmental factors are warranted for the future.
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spelling pubmed-63331592019-01-21 Association of MBL2 gene polymorphisms with pulmonary tuberculosis susceptibility: trial sequence meta-analysis as evidence Mandal, Raju K Khan, Munawwar Ali Hussain, Arif Dar, Sajad A Aloufi, Sultan Jawed, Arshad Wahid, Mohd Panda, Aditya K Lohani, Mohtashim Akhter, Naseem Khan, Saif Mishra, Bhartendu Nath Haque, Shafiul Infect Drug Resist Original Research BACKGROUND: Mannose-binding lectin (MBL) or mannose-binding protein (MBP), encoded by MBL2 gene and secreted by the liver, activates complement system through lectin pathway in innate immunity against the host’s infection. Conflictingly, a number of MBL2 variants, rs1800450 (A>B), rs1800451 (A>C), rs5030737 (A>D), rs7096206 (Y>X), rs11003125 (H>L), and rs7095891 (P>Q) allele, have been found to be associated with compromised serum levels and pulmonary tuberculosis (PTB) susceptibility. The present meta-analysis study was performed to evaluate the potential association of these MBL2 gene variants with PTB susceptibility. MATERIALS AND METHODS: A quantitative synthesis was performed on PubMed (Medline), EMBASE, and Google Scholar web database searches. A meta-analysis was performed to calculate the pooled odds ratios and 95% CIs for all the genetic models. RESULTS: A total of 14 eligible studies were included to analyze their pooled data for associations between alleles, genotypes, and minor allele carriers. The statistical analysis revealed the significant reduced PTB risk with homozygous variant genotype of rs1800451 polymorphism (CC vs AA: P=0.043; OR =0.828, 95% CI =0.689–0.994). Contrary to this, the variant allele of rs5030737 polymorphism showed association with increased PTB risk (D vs A: P=0.026; OR =1.563, 95% CI =1.054–2.317). However, the other genetic models of rs1800450 (A>B), rs7096206 (Y>X), and rs11003125 (H>L) MBL2 gene polymorphisms did not divulge any association with PTB susceptibility. CONCLUSION: The current meta-analysis concludes that rs1800451 (A>C) and rs5030737 (A>D) polymorphisms of MBL2 gene play a significant role in PTB susceptibility. Further, well-designed epidemiological studies with larger sample size including consideration of environmental factors are warranted for the future. Dove Medical Press 2019-01-11 /pmc/articles/PMC6333159/ /pubmed/30666135 http://dx.doi.org/10.2147/IDR.S188980 Text en © 2019 Mandal et al. This work is published and licensed by Dove Medical Press Limited The full terms of this license are available at https://www.dovepress.com/terms.php and incorporate the Creative Commons Attribution – Non Commercial (unported, v3.0) License (http://creativecommons.org/licenses/by-nc/3.0/). By accessing the work you hereby accept the Terms. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Limited, provided the work is properly attributed.
spellingShingle Original Research
Mandal, Raju K
Khan, Munawwar Ali
Hussain, Arif
Dar, Sajad A
Aloufi, Sultan
Jawed, Arshad
Wahid, Mohd
Panda, Aditya K
Lohani, Mohtashim
Akhter, Naseem
Khan, Saif
Mishra, Bhartendu Nath
Haque, Shafiul
Association of MBL2 gene polymorphisms with pulmonary tuberculosis susceptibility: trial sequence meta-analysis as evidence
title Association of MBL2 gene polymorphisms with pulmonary tuberculosis susceptibility: trial sequence meta-analysis as evidence
title_full Association of MBL2 gene polymorphisms with pulmonary tuberculosis susceptibility: trial sequence meta-analysis as evidence
title_fullStr Association of MBL2 gene polymorphisms with pulmonary tuberculosis susceptibility: trial sequence meta-analysis as evidence
title_full_unstemmed Association of MBL2 gene polymorphisms with pulmonary tuberculosis susceptibility: trial sequence meta-analysis as evidence
title_short Association of MBL2 gene polymorphisms with pulmonary tuberculosis susceptibility: trial sequence meta-analysis as evidence
title_sort association of mbl2 gene polymorphisms with pulmonary tuberculosis susceptibility: trial sequence meta-analysis as evidence
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6333159/
https://www.ncbi.nlm.nih.gov/pubmed/30666135
http://dx.doi.org/10.2147/IDR.S188980
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