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The Genetics of Fetal Alcohol Spectrum Disorders
Author(s) -
Eberhart Johann K.,
Parnell Scott E.
Publication year - 2016
Publication title -
alcoholism: clinical and experimental research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.267
H-Index - 153
eISSN - 1530-0277
pISSN - 0145-6008
DOI - 10.1111/acer.13066
Subject(s) - fetal alcohol , genetics , human genetics , phenotype , molecular genetics , biology , genetic predisposition , fetal alcohol spectrum disorder , animal model , gene , pregnancy , endocrinology
The term “fetal alcohol spectrum disorders” ( FASD ) defines the full range of ethanol (Et OH )‐induced birth defects. Numerous variables influence the phenotypic outcomes of embryonic Et OH exposure. Among these variables, genetics appears to play an important role, yet our understanding of the genetic predisposition to FASD is still in its infancy. We review the current literature that relates to the genetics of FASD susceptibility and gene–Et OH interactions. Where possible, we comment on potential mechanisms of reported gene–Et OH interactions. Early indications of genetic sensitivity to FASD came from human and animal studies using twins or inbred strains, respectively. These analyses prompted searches for susceptibility loci involved in Et OH metabolism and analyses of candidate loci, based on phenotypes observed in FASD . More recently, genetic screens in animal models have provided an additional insight into the genetics of FASD . Understanding FASD requires that we understand the many factors influencing phenotypic outcome following embryonic Et OH exposure. We are gaining ground on understanding some of the genetics behind FASD , yet much work remains to be carried out. Coordinated analyses using human patients and animal models are likely to be highly fruitful in uncovering the genetics behind FASD .
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