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Bone health in HIV and hepatitis B or C infections
Emmanuel Biver1, Alexandra Calmy2, René Rizzoli3
1Division of Bone Diseases, Department of Internal Medicine Specialties, Geneva University Hospitals and Faculty of Medicine, Rue Gabrielle-Perret-Gentil 4, 1211 Geneva 14, Switzerland.
Insights
Chronic viral infections like HIV, HBV, and HCV accelerate bone loss and increase fracture risk, especially in the elderly. Antiviral therapies can also impact bone metabolism and strength.
Area of Science:
- Bone biology and virology
- Geriatric medicine
- Pharmacology
Background:
- Chronic infections with human immunodeficiency virus (HIV), hepatitis B virus (HBV), and hepatitis C virus (HCV) exacerbate age-related bone loss.
- These viral infections increase the risk of bone fragility and fractures, particularly in elderly populations.
Approach:
- This review synthesizes recent findings on the epidemiology and pathophysiology of bone fragility in chronic viral infections.
- It examines the impact of antiviral therapies on bone metabolism and strength.
Key Points:
- Bone loss in HIV patients is linked to viral activity and the initiation of antiretroviral therapy (ART).
- Bone resorption increases due to virus-host interactions affecting the RANKL/OPG pathway.
- Certain antiviral drugs, like tenofovir and protease inhibitors, may exhibit bone toxicity.
Conclusions:
- Long-term ART in HIV patients shows bone microstructure changes not fully detected by DXA.
- The newer tenofovir alafenamide (TAF) may reduce bone mineral density loss, but its long-term fracture risk reduction is unproven.
- The skeletal effects of new direct-acting agents for HCV require further investigation.
Abstract:
Chronic infections with human immunodeficiency virus (HIV), hepatitis B virus (HBV) or hepatitis C virus (HCV) add to age-dependent bone loss and may contribute to lower bone strength in the elderly. In this review, we report recent highlights on the epidemiology of bone fragility in chronic viral infections with HIV, HCV and HBV, its physiopathology and discuss the interference of antiviral therapies with bone metabolism. Chronic infections influence bone through the interactions between risk factors for bone fragility and falls (which are highly prevalent in infected patients), virus activity and antiviral drugs. HIV-infected patients are at increased risk of fracture and the risk is higher in cases of co-infection with HIV and untreated chronic viral hepatitis. In HIV patients, the majority of bone loss occurs during virus activity and at initiation of antiretroviral therapy (ART). However, long-term elderly HIV-infected patients on successful ART display bone microstructure alterations only partially captured by dual energy X-ray absorptiometry (DXA). Bone loss is associated with an increase of bone resorption, reflecting the upregulation of the receptor activator of nuclear factor-kappaB ligand (RANKL) and osteoprotegerin (OPG) pathways via a crosstalk between virus activity, inflammation and the immune system. The use of some antiviral drugs, such as tenofovir (controlling both HBV and HIV infections) or protease inhibitors, may be associated with higher bone toxicity. The reduction of tenofovir plasma concentrations with the implementation of tenofovir alafenamide (TAF) attenuates bone mineral density (BMD) loss but it remains unknown whether it will contribute to reducing fracture risk in long-term HIV-treated patients. Moreover, to what extent the new direct-acting agents for treatment of HCV, including nucleotide inhibitors and protease inhibitors, may affect bone health similarly as ART in HIV should be investigated.
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