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Updated: Jun 10, 2025

Author Spotlight: Studying the Impact of Maternal Dietary Deficiencies on Long-Term Offspring Health Outcomes
Published on: June 28, 2024
Circulating levels of micronutrients and risk of osteomyelitis: a Mendelian randomization study
Xu Zhang1,2, Jiaxing Wang2,3, Zhimeng Wu2,3
1Department of Gastroenterology, the First Affiliated Hospital of Xi'an Jiaotong University, Xi'an, China.
Background:
Few observational studies have investigated the effect of micronutrients on osteomyelitis, and these findings are limited by confounding and conflicting results. Therefore, we conducted Mendelian randomization (MR) analyses to evaluate the association between blood levels of eight micronutrients (copper, selenium, zinc, vitamin B12, vitamin C, and vitamin D, vitamin B6, vitamin E) and the risk of osteomyelitis.
Methods:
We performed the two-sample and multivariable Mendelian randomization (MVMR) to investigate causation, where instrument variables for the predictor (micronutrients) were derived from the summary data of micronutrients from independent cohorts of European ancestry. The outcome instrumental variables were used from the summary data of European-ancestry individuals (n = 486,484). The threshold of statistical significance was set at p < 0.00625.
Results:
We found a significant causal association that elevated zinc heightens the risk of developing osteomyelitis in European ancestry individuals OR = 1.23 [95% confidence interval (CI) [1.07, 1.43]; p = 4.26E-03]. Similarly, vitamin B6 showed a similar significant causal effect on osteomyelitis as a risk factor OR = 2.78 (95% CI [1.34, 5.76]; p = 6.04E-03; in the secondary analysis). Post-hoc analysis suggested this result (vitamin B6). However, the multivariable Mendelian randomization (MVMR) provides evidence against the causal association between zinc and osteomyelitis OR = 0.98(95% CI [-0.11, 0.07]; p = 7.20E-1). After searching in PhenoScanner, no SNP with confounding factors was found in the analysis of vitamin B6. There was no evidence of a reverse causal impact of osteomyelitis on zinc and vitamin B6.
Conclusion:
This study supported a strong causal association between vitamin B6 and osteomyelitis while reporting a dubious causal association between zinc and osteomyelitis.
Insights
This study found a causal link between vitamin B6 and osteomyelitis risk. However, the association between zinc and osteomyelitis was not supported by the evidence.
Area of Science:
- Nutritional Epidemiology
- Genetic Epidemiology
- Bone Metabolism
Background:
- Observational studies on micronutrients and osteomyelitis are limited by confounding factors and conflicting results.
- Mendelian randomization (MR) offers a robust approach to investigate causal relationships.
- Eight key micronutrients were assessed for their potential impact on osteomyelitis risk.
Purpose of the Study:
- To evaluate the causal association between blood levels of eight micronutrients and osteomyelitis risk using Mendelian randomization.
- To differentiate true causal effects from observational biases in micronutrient-osteomyelitis associations.
Main Methods:
- Two-sample and multivariable Mendelian randomization (MVMR) analyses were employed.
- Instrumental variables for micronutrients were derived from large-scale genome-wide association studies (GWAS) of European ancestry.
- Outcome data for osteomyelitis was obtained from a substantial cohort (n=486,484) of European ancestry individuals.
Main Results:
- A significant causal association was found between elevated vitamin B6 levels and increased osteomyelitis risk (OR=2.78, p=6.04E-03).
- Initial analysis suggested a causal link between higher zinc levels and osteomyelitis risk (OR=1.23, p=4.26E-03).
- Multivariable MR analysis provided no evidence for a causal association between zinc and osteomyelitis (OR=0.98, p=7.20E-1), and no reverse causation was detected.
Conclusions:
- Vitamin B6 is strongly associated with an increased risk of developing osteomyelitis.
- The causal association between zinc and osteomyelitis is questionable and not supported by multivariable MR analysis.
- These findings highlight the importance of specific micronutrients in bone infection pathogenesis.
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