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The association of body mass index and osteoarthritis of the knee joint: an examination of genetic and environmental influences.
Arthritis Rheum. 2003 Apr; 48(4):1024-9.AR

Abstract

OBJECTIVE

To examine the genetic and environmental influences on the known association between body mass index (BMI) and knee osteoarthritis (OA), using adult twin data.

METHODS

Bilateral knee radiographs were obtained from 785 pairs of healthy female twins (mean age 54.5 +/- 7.8 years) from the St. Thomas' Hospital Adult Twin Registry (261 monozygotic [MZ] and 524 dizygotic [DZ] twin pairs). Tibiofemoral knee OA was graded according to the Kellgren and Lawrence (K/L) scoring system on an ordinal scale of 0-4. Presence of knee OA was defined as a K/L grade of > or =2 on either side of the knee joint. Body weight and height were measured and the subjects were stratified into quartiles of BMI. Cross-trait cross-twin association of BMI and knee OA was assessed by logistic regression, to assess whether genetic or environmental influences explain the BMI-knee OA link. The genetic (heritability) and environmental contributions to each of the measures were estimated using path modeling.

RESULTS

A strong association was found between high BMI and the presence of knee OA (odds ratio 3.90 for highest versus lowest quartile of BMI; P = 0.0001). The heritability of knee OA was 50.4% (95% confidence interval [95% CI] 34-62%) and that of BMI was 55.7% (95% CI 35-72%). However, cross-trait cross-twin associations were not significantly different from unity in either the MZ or DZ twin pairs, indicating that shared genetic influences were unlikely to explain the association. Path modeling showed that the model containing additive genetic factors, common environmental factors, and unique environmental factors had the best fit to the data overall. The shared genetic path between BMI and knee OA could be dropped without deterioration in the fit of the model.

CONCLUSION

The strong association between high BMI and knee OA is not likely to be mediated by shared genetic factors. The results imply that environmental modification of BMI can influence knee OA.

Authors+Show Affiliations

Twin Research and Genetic Epidemiology Unit, St. Thomas' Hospital, London, UK. manek.nisha@mayo.eduNo affiliation info availableNo affiliation info availableNo affiliation info available

Pub Type(s)

Journal Article
Research Support, Non-U.S. Gov't
Twin Study

Language

eng

PubMed ID

12687544

Citation

Manek, Nisha J., et al. "The Association of Body Mass Index and Osteoarthritis of the Knee Joint: an Examination of Genetic and Environmental Influences." Arthritis and Rheumatism, vol. 48, no. 4, 2003, pp. 1024-9.
Manek NJ, Hart D, Spector TD, et al. The association of body mass index and osteoarthritis of the knee joint: an examination of genetic and environmental influences. Arthritis Rheum. 2003;48(4):1024-9.
Manek, N. J., Hart, D., Spector, T. D., & MacGregor, A. J. (2003). The association of body mass index and osteoarthritis of the knee joint: an examination of genetic and environmental influences. Arthritis and Rheumatism, 48(4), 1024-9.
Manek NJ, et al. The Association of Body Mass Index and Osteoarthritis of the Knee Joint: an Examination of Genetic and Environmental Influences. Arthritis Rheum. 2003;48(4):1024-9. PubMed PMID: 12687544.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - The association of body mass index and osteoarthritis of the knee joint: an examination of genetic and environmental influences. AU - Manek,Nisha J, AU - Hart,Deborah, AU - Spector,Timothy D, AU - MacGregor,Alexander J, PY - 2003/4/11/pubmed PY - 2003/4/25/medline PY - 2003/4/11/entrez SP - 1024 EP - 9 JF - Arthritis and rheumatism JO - Arthritis Rheum VL - 48 IS - 4 N2 - OBJECTIVE: To examine the genetic and environmental influences on the known association between body mass index (BMI) and knee osteoarthritis (OA), using adult twin data. METHODS: Bilateral knee radiographs were obtained from 785 pairs of healthy female twins (mean age 54.5 +/- 7.8 years) from the St. Thomas' Hospital Adult Twin Registry (261 monozygotic [MZ] and 524 dizygotic [DZ] twin pairs). Tibiofemoral knee OA was graded according to the Kellgren and Lawrence (K/L) scoring system on an ordinal scale of 0-4. Presence of knee OA was defined as a K/L grade of > or =2 on either side of the knee joint. Body weight and height were measured and the subjects were stratified into quartiles of BMI. Cross-trait cross-twin association of BMI and knee OA was assessed by logistic regression, to assess whether genetic or environmental influences explain the BMI-knee OA link. The genetic (heritability) and environmental contributions to each of the measures were estimated using path modeling. RESULTS: A strong association was found between high BMI and the presence of knee OA (odds ratio 3.90 for highest versus lowest quartile of BMI; P = 0.0001). The heritability of knee OA was 50.4% (95% confidence interval [95% CI] 34-62%) and that of BMI was 55.7% (95% CI 35-72%). However, cross-trait cross-twin associations were not significantly different from unity in either the MZ or DZ twin pairs, indicating that shared genetic influences were unlikely to explain the association. Path modeling showed that the model containing additive genetic factors, common environmental factors, and unique environmental factors had the best fit to the data overall. The shared genetic path between BMI and knee OA could be dropped without deterioration in the fit of the model. CONCLUSION: The strong association between high BMI and knee OA is not likely to be mediated by shared genetic factors. The results imply that environmental modification of BMI can influence knee OA. SN - 0004-3591 UR - https://www.unboundmedicine.com/medline/citation/12687544/The_association_of_body_mass_index_and_osteoarthritis_of_the_knee_joint:_an_examination_of_genetic_and_environmental_influences_ DB - PRIME DP - Unbound Medicine ER -