The use of animal models in the study of complex disease: all else is never equal or why do so many human studies fail to replicate animal findings?
- 21 January 2004
- Vol. 26 (2) , 170-179
- https://doi.org/10.1002/bies.10401
Abstract
The study of the genetics of complex human disease has met with limited success. Many findings with candidate genes fail to replicate despite seemingly overwhelming physiological data implicating the genes. In contrast, animal model studies of the same genes and disease models usually have more consistent results. We propose that one important reason for this is the ability to control genetic background in animal studies. The fact that controlling genetic background can produce more consistent results suggests that the failure to replicate human findings in the same diseases is due to variation in interacting genes. Hence, the contrasting nature of the findings from the different study designs indicates the importance of non‐additive genetic effects on human disease. We discuss these issues and some methodological approaches that can detect multilocus effects, using hypertension as a model disease. This article contains supplementary material, which may be viewed at the BioEssays website at http://www.interscience.wiley.com/jpages/0265‐9247/suppmat/index.html. BioEssays 26:170–179, 2004.Keywords
This publication has 92 references indexed in Scilit:
- Power of multifactor dimensionality reduction for detecting gene‐gene interactions in the presence of genotyping error, missing data, phenocopy, and genetic heterogeneityGenetic Epidemiology, 2003
- Essential Role of AT 1A Receptor in the Development of 2K1C HypertensionHypertension, 2002
- A Combinatorial Partitioning Method to Identify Multilocus Genotypic Partitions That Predict Quantitative Trait VariationGenome Research, 2001
- Angiotensin I-converting enzyme and angiotensinogen gene interaction and prediction of essential hypertensionKidney International, 1998
- Gene polymorphisms of the renin-angiotensin system in relation to hypertension and parental history of myocardial infarction and strokeJournal Of Hypertension, 1998
- High Human Renin Hypertension in Transgenic RatsHypertension, 1997
- Angiotensinogen gene in human hypertension. Lack of an association of the 235T allele among African Americans.Hypertension, 1994
- Molecular basis of human hypertension: Role of angiotensinogenCell, 1992
- Chromosomal mapping of two genetic loci associated with blood-pressure regulation in hereditary hypertensive ratsNature, 1991
- Similar frequencies of renin gene restriction fragment length polymorphisms in hypertensive and normotensive subjects.Hypertension, 1990