Developmental origins of health and disease: New insights

被引:248
作者
Hanson, Mark A.
Gluckman, Peter D. [1 ]
机构
[1] Univ Auckland, Liggins Inst, Auckland, New Zealand
关键词
D O I
10.1111/j.1742-7843.2007.00186.x
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Epidemiological and animal studies show that small changes in the developmental environment can induce phenotypic changes affecting an individual's responses to their later environment. These may alter the risk of chronic disease such as metabolic syndrome or cardiovascular disease. Recent research shows that animals exposed to such a mismatch between prenatal and postnatal environment develop obesity, reduced activity, leptin and insulin resistance, elevated blood pressure and vascular endothelial dysfunction. Epigenetic processes are involved in such effects, targeted to promoter regions of specific genes in specific tissues. Such fine control of gene expression suggests that the mechanisms have been retained through evolution through their adaptive advantage, rather than representing extreme effects of developmental disruption akin to teratogenesis. There may be adaptive advantage in a developmental cue inducing a phenotypic change in generations beyond the immediate pregnancy, and a range of data that support this concept. In animals, epigenetic effects such as DNA methylation can be passed to successive generations. Environmental toxins, including endocrine disruptors, may induce greater risk of chronic disease, even at low exposure levels, if they affect such normal developmental epigenetic processes. Appropriate interventions may have long-term multigenerational effects to reduce the risk of chronic disease.
引用
收藏
页码:90 / 93
页数:4
相关论文
共 39 条
[1]   Epigenetic transgenerational actions of endocrine disruptors and mate fertility [J].
Anway, MD ;
Cupp, AS ;
Uzumcu, M ;
Skinner, MK .
SCIENCE, 2005, 308 (5727) :1466-1469
[2]   FETAL ORIGINS OF CORONARY HEART-DISEASE [J].
BARKER, DJP .
BRITISH MEDICAL JOURNAL, 1995, 311 (6998) :171-174
[3]  
BARKER DJP, 1998, BABIES HLTH LATER LI
[4]   Fetal experience and good adult design [J].
Bateson, P .
INTERNATIONAL JOURNAL OF EPIDEMIOLOGY, 2001, 30 (05) :928-934
[5]   Glucose metabolism is altered in the adequately-nourished grand-offspring (F3 generation) of rats malnourished during gestation and perinatal life [J].
Benyshek, DC ;
Johnston, CS ;
Martin, JF .
DIABETOLOGIA, 2006, 49 (05) :1117-1119
[6]   Post-natal diet determines insulin resistance in fetally malnourished, low birthweight rats (F1) but diet does not modify the insulin resistance of their offspring (F2) [J].
Benyshek, DC ;
Johnston, CS ;
Martin, JF .
LIFE SCIENCES, 2004, 74 (24) :3033-3041
[7]   Dietary protein restriction of pregnant rats in the F0 generation induces altered methylation of hepatic gene promoters in the adult male offspring in the F1 and F2 generations [J].
Burdge, Graham C. ;
Slater-Jefferies, Jo ;
Torrens, Christopher ;
Phillips, Emma S. ;
Hanson, Mark A. ;
Lillycrop, Karen A. .
BRITISH JOURNAL OF NUTRITION, 2007, 97 (03) :435-439
[8]   Mismatched pre- and postnatal nutrition leads to cardiovascular dysfunction and altered renal function in adulthood [J].
Cleal, Jane K. ;
Poore, Kirsten R. ;
Boullin, Julian P. ;
Khan, Omar ;
Chau, Ryan ;
Hambidge, Oliver ;
Torrens, Christopher ;
Newman, James P. ;
Poston, Lucilla ;
Noakes, David E. ;
Hanson, Mark A. ;
Green, Lucy R. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2007, 104 (22) :9529-9533
[9]   Maternal nutrient supplementation counteracts bisphenol A-induced DNA hypomethylation in early development [J].
Dolinoy, Dana C. ;
Huang, Dale ;
Jirtle, Randy L. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2007, 104 (32) :13056-13061
[10]  
Dorner G, 1975, ANATOMICAL NEUROENDO, V1, P245