Toxicological effects of the different substances in tobacco smoke on human embryonic development by a systems chemo-biology approach.

The physiological and molecular effects of tobacco smoke in adult humans and the development of cancer have been well described. In contrast, how tobacco smoke affects embryonic development remains poorly understood. Morphological studies of the fetuses of smoking pregnant women have shown various p...

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Main Authors: Bruno César Feltes, Joice de Faria Poloni, Daniel Luis Notari, Diego Bonatto
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3639264?pdf=render
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spelling doaj-cf8605186f964035a17458908834557d2020-11-25T02:20:09ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0184e6174310.1371/journal.pone.0061743Toxicological effects of the different substances in tobacco smoke on human embryonic development by a systems chemo-biology approach.Bruno César FeltesJoice de Faria PoloniDaniel Luis NotariDiego BonattoThe physiological and molecular effects of tobacco smoke in adult humans and the development of cancer have been well described. In contrast, how tobacco smoke affects embryonic development remains poorly understood. Morphological studies of the fetuses of smoking pregnant women have shown various physical deformities induced by constant fetal exposure to tobacco components, especially nicotine. In addition, nicotine exposure decreases fetal body weight and bone/cartilage growth in addition to decreasing cranial diameter and tibia length. Unfortunately, the molecular pathways leading to these morphological anomalies are not completely understood. In this study, we applied interactome data mining tools and small compound interaction networks to elucidate possible molecular pathways associated with the effects of tobacco smoke components during embryonic development in pregnant female smokers. Our analysis showed a relationship between nicotine and 50 additional harmful substances involved in a variety of biological process that can cause abnormal proliferation, impaired cell differentiation, and increased oxidative stress. We also describe how nicotine can negatively affect retinoic acid signaling and cell differentiation through inhibition of retinoic acid receptors. In addition, nicotine causes a stress reaction and/or a pro-inflammatory response that inhibits the agonistic action of retinoic acid. Moreover, we show that the effect of cigarette smoke on the developing fetus could represent systemic and aggressive impacts in the short term, causing malformations during certain stages of development. Our work provides the first approach describing how different tobacco constituents affect a broad range of biological process in human embryonic development.http://europepmc.org/articles/PMC3639264?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Bruno César Feltes
Joice de Faria Poloni
Daniel Luis Notari
Diego Bonatto
spellingShingle Bruno César Feltes
Joice de Faria Poloni
Daniel Luis Notari
Diego Bonatto
Toxicological effects of the different substances in tobacco smoke on human embryonic development by a systems chemo-biology approach.
PLoS ONE
author_facet Bruno César Feltes
Joice de Faria Poloni
Daniel Luis Notari
Diego Bonatto
author_sort Bruno César Feltes
title Toxicological effects of the different substances in tobacco smoke on human embryonic development by a systems chemo-biology approach.
title_short Toxicological effects of the different substances in tobacco smoke on human embryonic development by a systems chemo-biology approach.
title_full Toxicological effects of the different substances in tobacco smoke on human embryonic development by a systems chemo-biology approach.
title_fullStr Toxicological effects of the different substances in tobacco smoke on human embryonic development by a systems chemo-biology approach.
title_full_unstemmed Toxicological effects of the different substances in tobacco smoke on human embryonic development by a systems chemo-biology approach.
title_sort toxicological effects of the different substances in tobacco smoke on human embryonic development by a systems chemo-biology approach.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description The physiological and molecular effects of tobacco smoke in adult humans and the development of cancer have been well described. In contrast, how tobacco smoke affects embryonic development remains poorly understood. Morphological studies of the fetuses of smoking pregnant women have shown various physical deformities induced by constant fetal exposure to tobacco components, especially nicotine. In addition, nicotine exposure decreases fetal body weight and bone/cartilage growth in addition to decreasing cranial diameter and tibia length. Unfortunately, the molecular pathways leading to these morphological anomalies are not completely understood. In this study, we applied interactome data mining tools and small compound interaction networks to elucidate possible molecular pathways associated with the effects of tobacco smoke components during embryonic development in pregnant female smokers. Our analysis showed a relationship between nicotine and 50 additional harmful substances involved in a variety of biological process that can cause abnormal proliferation, impaired cell differentiation, and increased oxidative stress. We also describe how nicotine can negatively affect retinoic acid signaling and cell differentiation through inhibition of retinoic acid receptors. In addition, nicotine causes a stress reaction and/or a pro-inflammatory response that inhibits the agonistic action of retinoic acid. Moreover, we show that the effect of cigarette smoke on the developing fetus could represent systemic and aggressive impacts in the short term, causing malformations during certain stages of development. Our work provides the first approach describing how different tobacco constituents affect a broad range of biological process in human embryonic development.
url http://europepmc.org/articles/PMC3639264?pdf=render
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AT danielluisnotari toxicologicaleffectsofthedifferentsubstancesintobaccosmokeonhumanembryonicdevelopmentbyasystemschemobiologyapproach
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