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Published on: October 28, 2014
Serum calcium concentration in hyperthyroidism at diagnosis and after treatment
Insights
Hyperthyroid patients exhibit higher serum calcium levels, which normalize after treatment. Conventional methods may overestimate corrected calcium in hyperthyroidism due to altered calcium-albumin relationships.
Area of Science:
- Endocrinology
- Clinical Chemistry
Background:
- Hyperthyroidism is associated with altered mineral metabolism.
- The relationship between serum calcium and albumin levels can be complex in endocrine disorders.
Purpose of the Study:
- To investigate serum calcium and albumin levels in hyperthyroid patients.
- To assess the impact of hyperthyroidism on calcium-albumin dynamics and corrected calcium calculations.
- To evaluate the influence of thyroid hormone levels on serum calcium.
Main Methods:
- Serum calcium and albumin concentrations were measured in hyperthyroid patients before and after treatment.
- Comparison with a control group of unselected out-patients.
- Analysis of the correlation between thyroid hormone levels (T3, T4) and serum calcium.
Main Results:
- Hyperthyroid patients had significantly higher pretreatment serum calcium levels compared to post-treatment levels.
- Serum albumin levels increased significantly as patients became euthyroid.
- Conventional corrected calcium calculations overestimated hypercalcemia in hyperthyroid patients.
- Higher initial T3 concentrations correlated significantly with increased serum calcium.
Conclusions:
- Hyperthyroidism affects calcium-albumin relationships, potentially leading to overestimated corrected calcium values.
- Thyroid hormone replacement normalizes these parameters, restoring the typical calcium-albumin relationship.
- Significant hypercalcemia is rare in hyperthyroidism, with symptomatic cases being uncommon.
Abstract:
In a large, mainly outpatient, series of hyperthyroid patients who attended a district general hospital the serum concentrations of calcium and albumin were measured before and in many cases after treatment. The calcium level (mean +/- SD) before treatment (2.41 +/- 0.21 mmol/l, n = 437) was significantly higher (P less than 0.01) than afterwards (2.36 +/- 0.15 mmol/l, n = 232) and the albumin level rose when the patients became euthyroid (from 40.5 +/- 3.1 g/l to 44.0 +/- 2.4 g/l; P less than 0.01). After treatment neither value differed from those of an unselected group of out-patients. The usual relation between the serum concentrations of calcium and albumin did not hold in the hyperthyroid subjects but reverted to normal on treatment; the variation, probably due to an increase in ionized calcium, leads to an overestimate of the 'corrected calcium' when conventional methods are used to calculate this figure. Thus, using a conventional formula 8.5% of our hyperthyroid patients would appear to have a calcium greater than 2.65 mmol/l (normal mean plus 2 standard deviations) whereas using a correction factor specific for the hyperthyroid situation the figure is reduced to 5.7% which is only twice the expected proportion. The calcium level was significantly greater (P less than 0.001) in those patients in whom initial T3 concentration was high (greater than 7.2 nmol/l). There was no effect of T4 upon serum calcium which could not be accounted for by the action of T3. In this series of 437 patients there was no case of symptomatic hypercalcaemia. The maximum value was 2.80 mmol/l in a patient with coincident primary hyperparathyroidism. Significant hypercalcaemia is rare in hyperthyroidism.
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