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      Learn More about Bone & Joint Health

      How does aging affect bone health?

      Bone density is generally relatively stable in early and middle adulthood when bone formation and resorption are more closely balanced. With advancing age, bone resorption can exceed bone formation. In women, the fall in estrogen around menopause can accelerate this process. Over time, bone structure can also become more porous and less able to withstand stress. [1,2]

      If bone loss becomes substantial, osteoporosis can develop. Osteoporosis weakens bone and increases the chance of fractures, particularly at the hip, spine and wrist. It is often called a “silent” condition because many people do not know they have low bone strength until a fracture occurs. [1,5,7]

      What increases the risk of bone loss with age?

      • Low calcium or vitamin D intake, which can make it harder to maintain bone health. [1,5,7]
      • Physical inactivity or prolonged periods of immobility. [1,5,7]
      • Smoking and heavy alcohol use. [1,5,7]
      • Hormonal changes, particularly after menopause. [1,2]
      • Certain medicines or medical conditions that affect bone metabolism. [5,7]
      • A personal or family history of osteoporosis or fractures. [5,7]
      How does aging affect joint health?

      Osteoarthritis (OA) is the most common type of arthritis and becomes more common with age. However, it is more accurate to think of OA as a whole-joint disease rather than simply “wear and tear.” Changes can involve cartilage, bone, the joint lining, tendons, ligaments and surrounding muscles. [3,4,8]

      Common symptoms include pain with movement, short-lasting stiffness after rest, swelling and reduced range of motion. The knees, hips, hands and spine are commonly affected. [3,8]

      What can raise the risk of osteoarthritis?

      • Older age, although OA is not an unavoidable part of aging. [8]
      • Previous joint injury or surgery. [3,4,8]
      • Repetitive stress on a joint over time. [3,4,8]
      • Overweight or obesity, especially for weight-bearing joints such as the knees and hips. [3,4,8]
      • Family history or inherited joint characteristics. [3,8]
      Why does bone health matter for athletes?
      1. Strong bones help reduce bone stress injury risk

      Bone stress injuries, including stress fractures, develop when repeated loading exceeds the bone’s ability to recover and remodel. Nutritional factors such as inadequate energy intake, low vitamin D status and insufficient calcium intake can contribute to risk, especially when combined with high training loads.[9,10,12,13]

      2. Bone supports movement, force transfer and training consistency

      Bones form the structural framework that muscles pull against to create movement. Maintaining bone strength helps athletes tolerate repeated training and competition loads. Good bone health does not guarantee faster performance, but avoiding bone-related injury supports consistent training - a key part of long-term performance development.[11]

      3. Under-fuelling can affect more than body weight

      Athletes can develop low energy availability when food intake does not adequately cover exercise expenditure and normal body functions. The International Olympic Committee describes prolonged or severe low energy availability as the underlying cause of Relative Energy Deficiency in Sport (REDs), which can impair musculoskeletal health, recovery and performance.[13]

      References

      1. Johns Hopkins Medicine. Osteoporosis: What You Need to Know as You Age. Baltimore (MD): Johns Hopkins Medicine; 2025 Aug 29 [cited 2025 Oct 15]. Source

      2. Demontiero O, Vidal C, Duque G. Aging and bone loss: new insights for the clinician. Ther Adv Musculoskelet Dis. 2012;4(2):61-76. doi:10.1177/1759720X11430858. Source

      3. Anderson AS, Loeser RF. Why is osteoarthritis an age-related disease? Best Pract Res Clin Rheumatol. 2010;24(1):15-26. doi:10.1016/j.berh.2009.08.006. Source

      4. Loeser RF. The role of aging in the development of osteoarthritis. Trans Am Clin Climatol Assoc. 2017;128:44-54. Source

      5. National Institute on Aging. Osteoporosis. Reviewed November 15, 2022. Source

      6. Cosman F, de Beur SJ, LeBoff MS, et al. Clinician’s guide to prevention and treatment of osteoporosis. Osteoporos Int. 2014;25(10):2359-2381. doi:10.1007/s00198-014-2794-2. Source

      7. National Institute of Arthritis and Musculoskeletal and Skin Diseases (NIAMS). Bone Health and Osteoporosis. Last reviewed March 2025. Source

      8. NIAMS. Osteoarthritis: Overview, Symptoms, & Causes. Source

      9. Turnagol HH, Kosar SN, Guzel Y, Aktitiz S, Atakan MM. Nutritional considerations for injury prevention and recovery in combat sports. Nutrients. 2022;14(1):53. doi:10.3390/nu14010053.

      10. Sonneville KR, Gordon CM, Kocher MS, Pierce LM, Ramappa A, Field AE. Vitamin D, calcium, and dairy intakes and stress fractures among female adolescents. Arch Pediatr Adolesc Med. 2012;166(7):595-600. doi:10.1001/archpediatrics.2012.5.

      11 Ireland A, Rittweger J, Degens H. The influence of muscular action on bone strength via exercise. Clin Rev Bone Miner Metab. 2014;12(2):93-102.

      12 Knechtle B, Jastrzebski Z, Hill L, Nikolaidis PT. Vitamin D and stress fractures in sport: preventive and therapeutic measures - a narrative review. Medicina (Kaunas). 2021;57(3):223. doi:10.3390/medicina5703022

      13 Mountjoy M, Ackerman KE, Bailey DM, et al. 2023 International Olympic Committee's (IOC) consensus statement on Relative Energy Deficiency in Sport (REDs). Br J Sports Med. 2023;57:1073-1097. doi:10.1136/bjsports-2023-106994. Source

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