Epidemiology, epigenetics and the 'Gloomy Prospect': embracing randomness in population health research and practice

被引:171
作者
Smith, George Davey [1 ]
机构
[1] Univ Bristol, Sch Social & Community Med, MRC Ctr Causal Anal Translat Epidemiol, Bristol BS8 2BN, Avon, England
基金
英国医学研究理事会;
关键词
BODY-MASS INDEX; GENOME-WIDE ASSOCIATION; ENVIRONMENTAL-INFLUENCES; LUNG-CANCER; BIRTH-ORDER; NONSHARED ENVIRONMENT; GENETIC INFLUENCES; DNA METHYLATION; SUSCEPTIBILITY LOCUS; ANTISOCIAL-BEHAVIOR;
D O I
10.1093/ije/dyr117
中图分类号
R1 [预防医学、卫生学];
学科分类号
1004 ; 120402 ;
摘要
Epidemiologists aim to identify modifiable causes of disease, this often being a prerequisite for the application of epidemiological findings in public health programmes, health service planning and clinical medicine. Despite successes in identifying causes, it is often claimed that there are missing additional causes for even reasonably well-understood conditions such as lung cancer and coronary heart disease. Several lines of evidence suggest that largely chance events, from the biographical down to the sub-cellular, contribute an important stochastic element to disease risk that is not epidemiologically tractable at the individual level. Epigenetic influences provide a fashionable contemporary explanation for such seemingly random processes. Chance events-such as a particular lifelong smoker living unharmed to 100 years-are averaged out at the group level. As a consequence population-level differences (for example, secular trends or differences between administrative areas) can be entirely explicable by causal factors that appear to account for only a small proportion of individual-level risk. In public health terms, a modifiable cause of the large majority of cases of a disease may have been identified, with a wild goose chase continuing in an attempt to discipline the random nature of the world with respect to which particular individuals will succumb. The quest for personalized medicine is a contemporary manifestation of this dream. An evolutionary explanation of why randomness exists in the development of organisms has long been articulated, in terms of offering a survival advantage in changing environments. Further, the basic notion that what is near-random at one level may be almost entirely predictable at a higher level is an emergent property of many systems, from particle physics to the social sciences. These considerations suggest that epidemiological approaches will remain fruitful as we enter the decade of the epigenome.
引用
收藏
页码:537 / 562
页数:26
相关论文
共 221 条
  • [1] Epigenetics and environment: a complex relationship
    Aguilera, Oscar
    Fernandez, Agustin F.
    Munoz, Alberto
    Fraga, Mario F.
    [J]. JOURNAL OF APPLIED PHYSIOLOGY, 2010, 109 (01) : 243 - 251
  • [2] Hundreds of variants clustered in genomic loci and biological pathways affect human height
    Allen, Hana Lango
    Estrada, Karol
    Lettre, Guillaume
    Berndt, Sonja I.
    Weedon, Michael N.
    Rivadeneira, Fernando
    Willer, Cristen J.
    Jackson, Anne U.
    Vedantam, Sailaja
    Raychaudhuri, Soumya
    Ferreira, Teresa
    Wood, Andrew R.
    Weyant, Robert J.
    Segre, Ayellet V.
    Speliotes, Elizabeth K.
    Wheeler, Eleanor
    Soranzo, Nicole
    Park, Ju-Hyun
    Yang, Jian
    Gudbjartsson, Daniel
    Heard-Costa, Nancy L.
    Randall, Joshua C.
    Qi, Lu
    Smith, Albert Vernon
    Maegi, Reedik
    Pastinen, Tomi
    Liang, Liming
    Heid, Iris M.
    Luan, Jian'an
    Thorleifsson, Gudmar
    Winkler, Thomas W.
    Goddard, Michael E.
    Lo, Ken Sin
    Palmer, Cameron
    Workalemahu, Tsegaselassie
    Aulchenko, Yurii S.
    Johansson, Asa
    Zillikens, M. Carola
    Feitosa, Mary F.
    Esko, Tonu
    Johnson, Toby
    Ketkar, Shamika
    Kraft, Peter
    Mangino, Massimo
    Prokopenko, Inga
    Absher, Devin
    Albrecht, Eva
    Ernst, Florian
    Glazer, Nicole L.
    Hayward, Caroline
    [J]. NATURE, 2010, 467 (7317) : 832 - 838
  • [3] Allison DB, 1996, INT J OBESITY, V20, P501
  • [4] Genome-wide association scan of tag SNPs identifies a susceptibility locus for lung cancer at 15q25.1
    Amos, Christopher I.
    Wu, Xifeng
    Broderick, Peter
    Gorlov, Ivan P.
    Gu, Jian
    Eisen, Timothy
    Dong, Qiong
    Zhang, Qing
    Gu, Xiangjun
    Vijayakrishnan, Jayaram
    Sullivan, Kate
    Matakidou, Athena
    Wang, Yufei
    Mills, Gordon
    Doheny, Kimberly
    Tsai, Ya-Yu
    Chen, Wei Vivien
    Shete, Sanjay
    Spitz, Margaret R.
    Houlston, Richard S.
    [J]. NATURE GENETICS, 2008, 40 (05) : 616 - 622
  • [5] Andersson JC, 2011, ENDOCR UPDAT, P25, DOI 10.1007/978-1-4419-7034-3_2
  • [6] [Anonymous], 2006, NO 2 ALIKE HUMAN NAT
  • [7] [Anonymous], 1978, EVOLUTION GENETIC PO
  • [8] [Anonymous], 2010, NEW STATESMAN 1006
  • [9] [Anonymous], 2010, Ensouling Language: On the Art of Nonfiction and the Writer's Life
  • [10] [Anonymous], 14573 NBER