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Circulating microRNA expression underlying the association of opioid use with low bone mineral density
Zannatun Nayema1, Jennifer Spillane1, Katherine J Motyl2
1Roux Institute at Northeastern University, Bouve College of Health Sciences, Portland, ME, 04101, United States.
Abstract:
Opioid drugs, prescribed for pain management or opioid use disorder, have been associated with decreased BMD and increased fracture risk. Changes in circulating microRNA (miRNA) levels have been observed in opioid-treated patients, and miRNAs are crucial regulators of bone metabolism, but the effects of circulating miRNAs on BMD in the context of opioid use remains unexplored. This study aims to identify circulating miRNAs differentially expressed with opioid use that may explain opioid use effects on BMD. We conducted a cross-sectional analysis of 5692 participants from the Framingham Heart Study Offspring and Third Generation cohorts for which 412 miRNA profiles were obtained via qRT-PCR. BMD measurements were obtained using DXA for most participants, among whom opioid use was reported in 62 (1.1%). We modeled miRNA as a function of opioid use and/or BMD, adjusting for age, sex, and BMI, in linear or logistic regression models. Significant miRNAs associated with both opioid use and BMD were then analyzed using a novel strategy for pathway enrichment to identify biological functions impacted by these miRNAs. We found a significant inverse association between opioid use and BMD after adjusting for covariates (β = -.042, 95% CI = -0.075, -0.007, p = .017). We identified 64 miRNAs associated with BMD and 28 miRNAs associated with opioid use (p < .05). Ten miRNAs were significantly (p < .05) associated with both opioid use and BMD, 9 with opposing effects. Pathway enrichment analysis revealed the involvement of thyrotropin-releasing hormones, phosphatidylserine, vascular endothelial growth factors, integrins, and modulation of calcium and potassium ions. Our study has found preliminary evidence for miRNA-mediated mechanisms by which opioid use impacts bone health, which may guide future translational applications to prevent bone loss in opioid users.
Insights
Opioid use is linked to lower bone density and increased fracture risk. This study identified specific microRNAs (miRNAs) that may explain how opioids affect bone health, offering potential targets for preventing bone loss.
Area of Science:
- Endocrinology and Metabolism
- Molecular Biology
- Bone Biology
Background:
- Opioid medications are associated with reduced bone mineral density (BMD) and higher fracture incidence.
- Circulating microRNAs (miRNAs) are implicated in bone metabolism regulation, but their role in opioid-induced bone changes is unclear.
Purpose of the Study:
- To identify circulating miRNAs differentially expressed in individuals using opioids.
- To explore the association between these miRNAs, opioid use, and BMD.
- To elucidate potential miRNA-mediated mechanisms underlying opioid effects on bone health.
Main Methods:
- Cross-sectional analysis of 5692 participants from the Framingham Heart Study (Offspring and Third Generation cohorts).
- Quantification of 412 circulating miRNAs using qRT-PCR and BMD measurement via DXA.
- Statistical modeling (linear/logistic regression) to assess associations between opioid use, miRNAs, and BMD, adjusting for covariates.
Main Results:
- Opioid use showed a significant inverse association with BMD (β = -0.042, p = 0.017).
- 64 miRNAs were associated with BMD, and 28 with opioid use (p < 0.05).
- Ten miRNAs were significantly associated with both opioid use and BMD, with nine showing opposing effects; pathway analysis implicated hormonal and ion signaling.
Conclusions:
- Preliminary evidence suggests miRNA-mediated pathways contribute to opioid-induced bone loss.
- Identified miRNAs may serve as biomarkers or therapeutic targets for mitigating adverse bone effects of opioids.
- Further research is warranted to validate these findings and explore translational applications.
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