Subscribe to RSS
DOI: 10.1055/s-0032-1309045
Incidence of Type 1 Diabetes in Childhood before and after the Reunification of Germany – an Analysis of Epidemiological Data, 1960–2006
Publication History
received 26 January 2012
first decision 20 March 2012
accepted 21 March 2012
Publication Date:
10 May 2012 (online)
Abstract
Objective:
To examine the impact of rapidly changing environmental factors on the incidence of type 1 diabetes mellitus (T1D).
Method:
We compared the frequency of T1D in children before and after the reunification of Germany by means of the registries of the German Democratic Republic (GDR, 1960–1989) and of Baden-Wuerttemberg (BW, 1987–2006). The number of cases of diabetes onset in East Germany after the reunification was predicted by a mathematical model. The observed incidence rate in the Eastern part of Germany after the reunification was taken from the literature [1].
Results:
In Germany, the incidence rate of T1D in children aged 0–14 was 7.2/100 000/year (95%-CI 6.9–7.5, GDR, 1980–1987), and 10.4/100 000/year (95%-CI 9.5–11.4, BW, 1987–1994). For the whole observation period (1960–2006), the observed incidence rates y could be described by the square of a linear function [GDR: y=(1.86 + 0.040 * (year – 1960))2; r2=0.85; BW: y=(3.03 + 0.085 * (year – 1987))2, r2=0.89]. The mean rise in incidence before the reunification was less than half the mean rise after the reunification (mean slope: BW 0.085, 95%-CI 0.080–0.090 vs. GDR 0.040, 95% CI 0.036–0.044). The observed incidence for East Germany after 1989 was higher than the prediction on the basis of the GDR registry (GDR 12.3/100 000/year vs. Saxony 15.7/100 000/year, 95%-CI 14.2–17.3, n=412; 1999–2003).
Conclusion:
We conclude that the basis for the disease progress is a genetic predisposition. Environmental factors may modify changes in incidence of type 1 diabetes but do not determine the overall risk.
Key words
Type 1 diabetes mellitus - epidemiology - incidence - pathogenesis - environmental factors* U Bihler, A Böckmann, U Brand, C Döring, R Dürr, D Ecker, F Eickmeier, U Elpel, U Faller, M Fedorcak, L Feldhahn, G Fitzke, P Freisinger, J Grulich-Henn, M Holder, D Jantzen, M Kelle, K Ketteler, M Krüger, B Lippmann-Grob, E Müller, U Radlow, U Rappen, A Ruland, R Sauter, A Schumacher, U Schürmann, KO Schwab, A Veigel, M Wabitsch, J Wissert.
-
References
- 1 Galler A, Stange T, Müller G et al. Childhood Diabetes Registry in Saxony, Germany. Incidence of childhood diabetes in children aged less than 15 years and its clinical and metabolic characteristics at the time of diagnosis: data from the Childhood Diabetes Registry of Saxony. Germany. Horm Res Paediatr 2010; 74 (04) 285-291
- 2 Neu A, Willasch A, Ehehalt S et al. Diabetes incidence in children of different nationalities: an epidemiological approach to the pathogenesis of diabetes. Diabetologia 2001; 44 (Suppl. 03) B21-B26
- 3 Ehehalt S, Popovic P, Muntoni S et al. DIARY Group Baden-Wuerttemberg. Incidence of diabetes mellitus among children of Italian migrants substantiates the role of genetic factors in the pathogenesis of type 1 diabetes. Eur J Pediatr 2009; 168 (05) 613-617
- 4 Ehehalt S, Dietz K, Willasch A et al. DIARY Group Baden-Wuerttemberg. Epidemiological perspectives on type 1 diabetes in childhood and adolescence in Germany: 20 years of the DIARY registry. Diabetes Care 2010; 33: 338-340
- 5 Ehehalt S, Dietz K, Willasch AM et al. for the DIARY Group Baden-Wuerttemberg. Prediction model for the incidence and prevalence of type 1 diabetes in childhood and adolescence: Evidence for a cohort-dependent increase within the next two decades in Germany. Pediatr Diabetes Aug 3 2011; [Epub ahead of print]
- 6 Frijters P, Haisken-DeNew JP, Shields MA. The causal effect of income on health: evidence from German reunification. J Health Econ 2005; 24 (05) 997-1017
- 7 Häussler B, Hempel E, Reschke P. Changes in life expectancy and mortality in East Germany after reunification (1989–1992). Gesundheitswesen 1995; 57 (07) 365-372
- 8 Wimmer K, Laubereau B, Wölke G et al. Weight gain in two adult cohorts in East and West Germany reunification. Cent Eur J Public Health 2003; 11 (04) 202-208
- 9 Winkler G, Brasche S, Heinrich J. Trends in food intake in adults from the city of Erfurt before and after the German reunification. Ann Nutr Metab 1997; 41 (05) 283-290
- 10 Federal Statistical Office of Germany . Population data of the German Democratic Republic (GDR), 1960–1989. Personal Communication 2011;
- 11 Michaelis D, Jutzi E, Heinke P. 30jähriger Inzidenz- und Prävalenztrend des juvenilen Typ-1-Diabetes in der ostdeutschen Bevölkerung. Diabetes und Stoffwechsel 1993; 2: 245-250
- 12 Michaelis D, Jutzi E, Vogt L. Epidemiology of insulin-treated diabetes mellitus in the East-German population: differences in long-term trends between incidence and prevalence rates. Diabete Metab 1993; 19: 110-115
- 13 Green A, Gale EAM, Patterson CC. Incidence of childhood-onset insulin-dependent diabetes mellitus: the EURODIAB ACE study. Lancet 1992; 339: 905-909
- 14 Ehehalt S, Blumenstock G, Willasch AM et al. for the DIARY-study Group Baden-Württemberg. Continuous rise in incidence of childhood type 1 diabetes in Germany. Diabet Med 2008; 25: 755-757
- 15 Neu A, Kehrer M, Hub R et al. Incidence of IDDM in German Children aged 0–14 years. Diabetes Care 1997; 20: 530-533
- 16 Neu A, Ehehalt S, Willasch A et al. Rising incidence of type 1 diabetes in Germany. 12-year trend analysis in children 0–14 years of age [letter]. Diabetes Care 2001; 24: 785-786
- 17 Beyan H, Drexhage RC, van der Heul Nieuwenhuijsen L et al. Monocyte gene-expression profiles associated with childhood-onset type 1 diabetes and disease risk: a study of identical twins. Diabetes 2010; 59 (07) 1751-1755
- 18 Fourlanos S, Varney MD, Tait BD et al. The rising incidence of type 1 diabetes is accounted for by cases with lower-risk human leukocyte antigen genotypes. Diabetes Care 2008; 31 (08) 1546-1549
- 19 Hyttinen V, Kaprio J, Kinnunen L et al. Genetic liability of type 1 diabetes and the onset age among 22 650 young Finnish twin pairs: a nationwide follow-up study. Diabetes 2003; 52: 1052-1055
- 20 Kondrashova A, Reunanen A, Romanov A et al. A six-fold gradient in the incidence of type 1 diabetes at the eastern border of Finland. Ann Med 2005; 37 (01) 67-72
- 21 MacFarlane AJ, Strom A, Scott FW. Epigenetics: deciphering how environmental factors may modify autoimmune type 1 diabetes. Mamm Genome 2009; 20 (9/10) 624-632
- 22 Muntoni S, Muntoni S. Gene-nutrient interactions in type 1 diabetes. World Rev Nutr Diet 2004; 93: 188-209
- 23 Soltész G. Diabetes in the young: a paediatric and epidemiological perspective. Diabetologia 2003; 46 (04) 447-454
- 24 Patterson CC, Dahlquist G, Soltesz G. Green A on behalf of the EURODIAB ACE Study Group. Is childhood-onset Type 1 diabetes a wealth-related disease?. An ecological analysis of European incidence rates Diabetologia 2001; 44 (03) B9-B16
- 25 Zellner K, Ulbricht G, Kromeyer-Hauschild K. Long-term trends in body mass index of children in Jena, Eastern Germany. Econ Hum Biol 2007; 5 (03) 426-434
- 26 Rosenbauer J, Icks A, Schmitter D et al. Incidence of childhood Type I diabetes mellitus is increasing at all ages in Germany. Diabetologia 2002; 45 (03) 457-458