High Alcohol Intake in Older Men and the Probability of Osteoporotic Fracture According to the FRAX Algorithm
Abstract
:1. Introduction
2. Materials and Methods
2.1. Participants
2.2. Data
2.3. Statistics
3. Results
3.1. All Participants
3.2. Alcohol Drinkers
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Kanis, J.A.; Johnell, O.; Oden, A.; Johansson, H.; McCloskey, E. FRAX and the assessment of fracture probability in men and women from the UK. Osteoporos. Int. 2008, 19, 385–397. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Sommer, I.; Erkkila, A.T.; Jarvinen, R.; Mursu, J.; Sirola, J.; Jurvelin, J.S.; Kroger, H.; Tuppurainen, M. Alcohol consumption and bone mineral density in elderly women. Public Health Nutr. 2013, 16, 704–712. [Google Scholar] [CrossRef] [Green Version]
- Wang, S.M.; Han, K.D.; Kim, N.Y.; Um, Y.H.; Kang, D.W.; Na, H.R.; Lee, C.U.; Lim, H.K. Association of alcohol intake and fracture risk in elderly varied by affected bones: A nationwide longitudinal study. Psychiatry Investig. 2020, 17, 1013–1020. [Google Scholar] [CrossRef] [PubMed]
- Berg, K.M.; Kunins, H.V.; Jackson, J.L.; Nahvi, S.; Chaudhry, A.; Harris, K.A., Jr.; Malik, R.; Arnsten, J.H. Association between alcohol consumption and both osteoporotic fracture and bone density. Am. J. Med. 2008, 121, 406–418. [Google Scholar] [CrossRef] [Green Version]
- Luo, Z.; Liu, Y.; Liu, Y.; Chen, H.; Shi, S.; Liu, Y. Cellular and molecular mechanisms of alcohol-induced osteopenia. Cell Mol. Life Sci. 2017, 74, 4443–4453. [Google Scholar] [CrossRef]
- Bikle, D.D.; Genant, H.K.; Cann, C.; Recker, R.R.; Halloran, B.P.; Strewler, G.J. Bone disease in alcohol abuse. Ann. Intern. Med. 1985, 103, 42–48. [Google Scholar] [CrossRef]
- World Health Organization. Global Status Report on Alcohol and Health; World Health Organization: Geneva, Switzerland, 2018. [Google Scholar]
- Maurel, D.B.; Boisseau, N.; Benhamou, C.L.; Jaffre, C. Alcohol and bone: Review of dose effects and mechanisms. Osteoporos. Int. 2012, 23, 1–16. [Google Scholar] [CrossRef]
- Coulson, C.E.; Williams, L.J.; Brennan, S.L.; Berk, M.; Kotowicz, M.A.; Lubman, D.I.; Pasco, J.A. Alcohol consumption and body composition in a population-based sample of elderly Australian men. Aging Clin. Exp. Res. 2013, 25, 183–192. [Google Scholar] [CrossRef] [Green Version]
- Malik, P.; Gasser, R.W.; Kemmler, G.; Moncayo, R.; Finkenstedt, G.; Kurz, M.; Fleischhacker, W.W. Low bone mineral density and impaired bone metabolism in young alcoholic patients without liver cirrhosis: A cross-sectional study. Alcohol Clin. Exp. Res. 2009, 33, 375–381. [Google Scholar] [CrossRef]
- Taylor, B.; Irving, H.M.; Kanteres, F.; Room, R.; Borges, G.; Cherpitel, C.; Greenfield, T.; Rehm, J. The more you drink, the harder you fall: A systematic review and meta-analysis of how acute alcohol consumption and injury or collision risk increase together. Drug Alcohol Depend. 2010, 110, 108–116. [Google Scholar] [CrossRef] [Green Version]
- Lucas, E.G. Alcohol in industry. Br. Med. J. 1987, 294, 460–461. [Google Scholar] [CrossRef] [Green Version]
- Lee, W.; Ko, K.R.; Kim, H.K.; Lee, D.S.; Nam, I.J.; Lim, S.; Kim, S. Dehydrodiconiferyl alcohol inhibits osteoclast differentiation and ovariectomy-induced bone loss through acting as an estrogen receptor agonist. J. Nat. Prod. 2018, 81, 1343–1356. [Google Scholar] [CrossRef]
- Pasco, J.A.; Nicholson, G.C.; Kotowicz, M.A. Cohort profile: Geelong Osteoporosis Study. Int. J. Epidemiol. 2012, 41, 1565–1575. [Google Scholar] [CrossRef]
- Pasco, J.A.; Lane, S.E.; Brennan-Olsen, S.L.; Holloway, K.L.; Timney, E.N.; Bucki-Smith, G.; Morse, A.G.; Dobbins, A.G.; Williams, L.J.; Kotowicz, M.A. The epidemiology of incident fracture from cradle to senescence. Calcif. Tissue Int. 2015, 97, 568–576. [Google Scholar] [CrossRef]
- Holloway, K.L.; Kotowicz, M.A.; Lane, S.E.; Brennan, S.L.; Pasco, J.A. FRAX (Aus) and falls risk: Association in men and women. Bone 2015, 76, 1–4. [Google Scholar] [CrossRef]
- Holloway, K.L.; Mohebbi, M.; Betson, A.G.; Hans, D.; Hyde, N.K.; Brennan-Olsen, S.L.; Kotowicz, M.A.; Pasco, J.A. Prediction of major osteoporotic and hip fractures in Australian men using FRAX scores adjusted with trabecular bone score. Osteoporos. Int. 2018, 29, 101–108. [Google Scholar] [CrossRef]
- Holloway-Kew, K.L.; Zhang, Y.; Betson, A.G.; Anderson, K.B.; Hans, D.; Hyde, N.K.; Nicholson, G.C.; Pocock, N.A.; Kotowicz, M.A.; Pasco, J.A. How well do the FRAX (Australia) and Garvan calculators predict incident fractures? Data from the geelong osteoporosis study. Osteoporos. Int. 2019, 30, 2129–2139. [Google Scholar] [CrossRef]
- Giles, G.G.; Ireland, P.D. Dietary Questionnaire for Epidemiological Studies (Version 2); The Cancer Council: Melbourne, VIC, Australia, 1996. [Google Scholar]
- Unnanuntana, A.; Gladnick, B.P.; Donnelly, E.; Lane, J.M. The assessment of fracture risk. J. Bone Joint Surg. Am. 2010, 92, 743–753. [Google Scholar] [CrossRef] [Green Version]
- Cheraghi, Z.; Doosti-Irani, A.; Almasi-Hashiani, A.; Baigi, V.; Mansournia, N.; Etminan, M.; Mansournia, M.A. The effect of alcohol on osteoporosis: A systematic review and meta-analysis. Drug Alcohol Depend. 2019, 197, 197–202. [Google Scholar] [CrossRef]
- Kanis, J.A.; Johansson, H.; Johnell, O.; Oden, A.; De Laet, C.; Eisman, J.A.; Pols, H.; Tenenhouse, A. Alcohol intake as a risk factor for fracture. Osteoporos. Int. 2005, 16, 737–742. [Google Scholar] [CrossRef]
- Tucker, K.L.; Jugdaohsingh, R.; Powell, J.J.; Qiao, N.; Hannan, M.T.; Sripanyakorn, S.; Cupples, L.A.; Kiel, D.P. Effects of beer, wine, and liquor intakes on bone mineral density in older men and women. Am. J. Clin. Nutr. 2009, 89, 1188–1196. [Google Scholar] [CrossRef]
All | Drinkers | |||
---|---|---|---|---|
n = 262 | Yes (n = 46) | No (n = 216) | p | |
Age (y) | 72.4 (65.8–79.3) | 72.2 (63.8–78.7) | 72.4 (65.9–79.5) | 0.588 |
Alcohol (g/d) | 11 (1–25) | 45 (36–61) | 7 (0–17) | <0.001 |
Weight (kg) | 82.9 (±13.3) | 83.3 (±14.0) | 82.8 (±13.2) | 0.846 |
Height (m) | 1.73 (±0.07) | 1.74 (±0.08) | 1.73 (±0.06) | 0.381 |
BMI (kg/m2) | 27.7 (±4.0) | 27.6 (±4.3) | 27.7 (±4.0) | 0.800 |
BMD * (g/cm2) | 0.943 (±0.134) | 0.939 (±0.155) | 0.944 (±0.129) | 0.856 |
Previous fracture | 109 (41.6%) | 25 (54.4%) | 84 (38.9%) | 0.053 |
Parental hip fracture | 23 (8.8%) | 8 (17.4%) | 15 (6.9%) | 0.039 |
Current smoker | 14 (5.3%) | 4 (8.7%) | 10 (4.6%) | 0.278 |
Glucocorticoid user | 16 (6.1%) | 4 (8.7%) | 12 (5.6%) | 0.494 |
Rheumatoid arthritis | 10 (3.8%) | 1 (2.2%) | 9 (4.2%) | 0.999 |
Secondary osteoporosis ** | 33 (12.6%) | 5 (10.9%) | 28 (13.0%) | 0.698 |
Socioeconomic status *** | 0.520 | |||
Quintile 1 | 44 (16.8) | 6 (13.0%) | 38 (17.6%) | |
Quintile 2 | 58 (22.1%) | 14 (30.4%) | 44 (20.4%) | |
Quintile 3 | 53 (20.2%) | 7 (15.2%) | 46 (21.3%) | |
Quintile 4 | 55 (21.0) | 11 (23.9%) | 44 (20.4%) | |
Quintile 5 | 52 (19.9%) | 8 (17.4%) | 44 (20.4%) | |
MOF-FRAXwithoutBMD | 5.3 (3.0–10.0) | 9.1 (3.8–15.0) | 5.1 (2.8–9.0) | 0.001 |
HF-FRAXwithoutBMD | 2.4 (0.9–5.6) | 4.9 (1.2–8.7) | 2.0 (0.8–5.0) | 0.002 |
MOF-FRAXwithBMD | 4.1 (2.7–6.5) | 5.5 (3.6–9.1) | 3.8 (2.5–5.8) | 0.001 |
HF-FRAXwithBMD | 1.3 (0.5–2.6) | 1.9 (0.9–4.3) | 1.2 (0.5–2.2) | 0.002 |
MOF-FRAXwithoutBMD ≥ 20% | 7 (2.7%) | 3 (6.5%) | 4 (1.9%) | 0.106 |
HF-FRAXwithoutBMD ≥ 3% | 113 (43.1%) | 28 (60.9%) | 85 (39.4%) | 0.007 |
MOF-FRAXwithBMD ≥ 20% | 2 (0.8%) | 1 (2.2%) | 1 (0.5%) | 0.321 |
HF-FRAXwithBMD ≥ 3% | 55 (21.0%) | 17 (37.0%) | 38 (17.6%) | 0.003 |
OR (95%CI) | p | ||
---|---|---|---|
Age category | 60–69 y | Reference | - |
70–79 y | 11.1 (3.6, 33.7) | <0.001 | |
80+ y | 22.2 (7.0, 70.1) | <0.001 | |
Alcohol consumption | <3 units/d | Reference | - |
>3 units/d | 3.48 (1.56, 7.77) | 0.002 |
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Pasco, J.A.; Anderson, K.B.; Hyde, N.K.; Williams, L.J.; Rufus-Membere, P.; Holloway-Kew, K.L. High Alcohol Intake in Older Men and the Probability of Osteoporotic Fracture According to the FRAX Algorithm. Nutrients 2021, 13, 2955. https://doi.org/10.3390/nu13092955
Pasco JA, Anderson KB, Hyde NK, Williams LJ, Rufus-Membere P, Holloway-Kew KL. High Alcohol Intake in Older Men and the Probability of Osteoporotic Fracture According to the FRAX Algorithm. Nutrients. 2021; 13(9):2955. https://doi.org/10.3390/nu13092955
Chicago/Turabian StylePasco, Julie A., Kara B. Anderson, Natalie K. Hyde, Lana J. Williams, Pamela Rufus-Membere, and Kara L. Holloway-Kew. 2021. "High Alcohol Intake in Older Men and the Probability of Osteoporotic Fracture According to the FRAX Algorithm" Nutrients 13, no. 9: 2955. https://doi.org/10.3390/nu13092955
APA StylePasco, J. A., Anderson, K. B., Hyde, N. K., Williams, L. J., Rufus-Membere, P., & Holloway-Kew, K. L. (2021). High Alcohol Intake in Older Men and the Probability of Osteoporotic Fracture According to the FRAX Algorithm. Nutrients, 13(9), 2955. https://doi.org/10.3390/nu13092955