Calcium in biology Created 2026-10-05 Updated 2026-10-06
Calcium has roles in cell signalling and skeletal structure. Dietary calcium intake and serum calcium are distinct quantities: physiological regulation means a change in one need not correspond to an equivalent change in the other.
The supplementary excerpt uses an adjusted observational study and a two-sample Mendelian randomization analysis.
The observational study examines co-occurrence of hypercalcaemia and migraine diagnoses in electronic health records, adjusting for age, sex, and ancestry. Its adjusted odds ratio is 1.58, with .
The two-sample Mendelian randomization analysis combines the associations of eight genetic variants with serum calcium and with migraine, using a weighted genetic risk score. It estimates an odds ratio of 1.80 per genetically predicted 1 mg/dL higher serum calcium, with 95% confidence interval . The weighted-median Mendelian randomization estimator and MR-Egger regression provide sensitivity analyses.
The measured and instrumented exposure is serum calcium, rather than dietary calcium intake itself. Calcium intake and serum calcium are not interchangeable interventions, and an odds ratio of 1.80 is an odds contrast rather than necessarily an 80% increase in probability. The shortened excerpt supplies two approaches; a further analysis in the full research paper is outside this excerpt.
For the electronic-record observational study, three strengths are:
Three weaknesses are:
For two-sample Mendelian randomization, three strengths are:
Three weaknesses are:
Thus the agreement supports the hypothesis, but does not establish the effect of a dietary intervention.
Two useful ways to strengthen the causal inference are:
These are complementary: the first changes the proposed exposure experimentally, and the second probes the validity and reproducibility of its genetic evidence.
Serum calcium 2026-10-05
Serum calcium is the concentration of calcium in blood serum. It can be an exposure in an observational study or Mendelian randomization, but genetically changing it need not reproduce the effect of changing dietary calcium intake.