The effects of chronic cigarette smoking on gray matter volume: influence of sex.

Cigarette smoke contains nicotine and toxic chemicals and may cause significant neurochemical and anatomical brain changes. Voxel-based morphometry studies have examined the effects of smoking on the brain by comparing gray matter volume (GMV) in nicotine dependent individuals (NDs) to nonsmoking in...

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Main Authors: Teresa R Franklin, Reagan R Wetherill, Kanchana Jagannathan, Barbara Johnson, Joel Mumma, Nathan Hager, Hengyi Rao, Anna Rose Childress
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4121321?pdf=render
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spelling doaj-c0015f05e35c4164b144557c9f4e03da2020-11-25T00:19:16ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-0198e10410210.1371/journal.pone.0104102The effects of chronic cigarette smoking on gray matter volume: influence of sex.Teresa R FranklinReagan R WetherillKanchana JagannathanBarbara JohnsonJoel MummaNathan HagerHengyi RaoAnna Rose ChildressCigarette smoke contains nicotine and toxic chemicals and may cause significant neurochemical and anatomical brain changes. Voxel-based morphometry studies have examined the effects of smoking on the brain by comparing gray matter volume (GMV) in nicotine dependent individuals (NDs) to nonsmoking individuals with inconsistent results. Although sex differences in neural and behavioral features of nicotine dependence are reported, sex differences in regional GMV remain unknown. The current study examined sex differences in GMV in a large sample of 80 NDs (41 males) and 80 healthy controls (41 males) using voxel-based morphometry. Within NDs, we explored whether GMV was correlated with measures of cigarette use and nicotine dependence. High-resolution T1 structural scans were obtained from all participants. Segmentation and registration were performed in SPM8 using the optimized DARTEL approach. Covariates included age and an estimate of total global GMV. Differences were considered significant at p≤0.001, with a whole brain FWE-corrected cluster probability of p<0.025. Among NDs compared to Controls less GMV was observed in the thalamus and bilateral cerebellum and greater GMV was observed in the bilateral putamen and right parahippocampus. Lower thalamic GMV was observed in both female and male NDs compared to Controls. Female NDs also had lower GMV in the left cerebellum and in the ventral medial and orbitofrontal cortices with no areas of greater GMV. Male NDs had lower GMV in bilateral cerebellum and greater GMV in bilateral parahippocampus and left putamen. Within male NDs, GMV in the left putamen was correlated with number of pack years. This study, conducted in a large cohort, contributes to our knowledge of brain morphology in nicotine addiction and provides additional evidence of sex-specific effects on GMV in NDs. Identifying brain vulnerabilities with respect to sex provides a methodological framework for personalized therapies to improve relapse rates for both sexes.http://europepmc.org/articles/PMC4121321?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Teresa R Franklin
Reagan R Wetherill
Kanchana Jagannathan
Barbara Johnson
Joel Mumma
Nathan Hager
Hengyi Rao
Anna Rose Childress
spellingShingle Teresa R Franklin
Reagan R Wetherill
Kanchana Jagannathan
Barbara Johnson
Joel Mumma
Nathan Hager
Hengyi Rao
Anna Rose Childress
The effects of chronic cigarette smoking on gray matter volume: influence of sex.
PLoS ONE
author_facet Teresa R Franklin
Reagan R Wetherill
Kanchana Jagannathan
Barbara Johnson
Joel Mumma
Nathan Hager
Hengyi Rao
Anna Rose Childress
author_sort Teresa R Franklin
title The effects of chronic cigarette smoking on gray matter volume: influence of sex.
title_short The effects of chronic cigarette smoking on gray matter volume: influence of sex.
title_full The effects of chronic cigarette smoking on gray matter volume: influence of sex.
title_fullStr The effects of chronic cigarette smoking on gray matter volume: influence of sex.
title_full_unstemmed The effects of chronic cigarette smoking on gray matter volume: influence of sex.
title_sort effects of chronic cigarette smoking on gray matter volume: influence of sex.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description Cigarette smoke contains nicotine and toxic chemicals and may cause significant neurochemical and anatomical brain changes. Voxel-based morphometry studies have examined the effects of smoking on the brain by comparing gray matter volume (GMV) in nicotine dependent individuals (NDs) to nonsmoking individuals with inconsistent results. Although sex differences in neural and behavioral features of nicotine dependence are reported, sex differences in regional GMV remain unknown. The current study examined sex differences in GMV in a large sample of 80 NDs (41 males) and 80 healthy controls (41 males) using voxel-based morphometry. Within NDs, we explored whether GMV was correlated with measures of cigarette use and nicotine dependence. High-resolution T1 structural scans were obtained from all participants. Segmentation and registration were performed in SPM8 using the optimized DARTEL approach. Covariates included age and an estimate of total global GMV. Differences were considered significant at p≤0.001, with a whole brain FWE-corrected cluster probability of p<0.025. Among NDs compared to Controls less GMV was observed in the thalamus and bilateral cerebellum and greater GMV was observed in the bilateral putamen and right parahippocampus. Lower thalamic GMV was observed in both female and male NDs compared to Controls. Female NDs also had lower GMV in the left cerebellum and in the ventral medial and orbitofrontal cortices with no areas of greater GMV. Male NDs had lower GMV in bilateral cerebellum and greater GMV in bilateral parahippocampus and left putamen. Within male NDs, GMV in the left putamen was correlated with number of pack years. This study, conducted in a large cohort, contributes to our knowledge of brain morphology in nicotine addiction and provides additional evidence of sex-specific effects on GMV in NDs. Identifying brain vulnerabilities with respect to sex provides a methodological framework for personalized therapies to improve relapse rates for both sexes.
url http://europepmc.org/articles/PMC4121321?pdf=render
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