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Severe hypercalcemia and hypernatremia in a patient treated with canagliflozin
Arshpreet Kaur1, Stephen J Winters1
1Division of Endocrinology Metabolism and Diabetes, University of Louisville , 550 South Jackson Street, ACB A3G11, Louisville, Kentucky, 40202 , USA.
Unlabelled:
Drugs that inhibit the sodium-glucose co-transporter-2 (SGLT2) are an exciting novel, insulin-independent treatment for diabetes that block glucose reabsorption from the proximal tubules of the kidney, leading to increased glucose excretion and lower blood glucose levels. Inhibition of SGLT2 activity also reduces sodium reabsorption, which together with glycosuria produces a mild diuretic effect with the potential for dehydration and hyperkalemia. We report on a 60-year-old man with uncontrolled type 2 diabetes treated with insulin, glimepiride, metformin and canagliflozin, who was admitted with altered mental status after a syncopal episode. He had a 1-week history of ingestion of Tums for heartburn followed by poor appetite and lethargy. Laboratory work-up showed acute kidney injury, diabetic ketoacidosis (DKA), and parathyroid hormone-independent severe hypercalcemia of 17.4 mg/dl. DKA resolved with insulin treatment, and saline hydration led to improvement in hypercalcemia and renal function over 48 h, but was accompanied by a rapid increase in the serum sodium concentration from 129 to 162 mmol/l despite changing fluids to 0.45% saline. Urine studies were consistent with osmotic diuresis. Hypernatremia was slowly corrected with hypotonic fluids, with improvement in his mental status over the next 2 days. This is the first report of hypercalcemia associated with the use of a SLGT2 inhibitor. Although the exact mechanism is unknown, canagliflozin may predispose to hypercalcemia in patients ingesting excessive calcium because of dehydration from osmotic diuresis, with reduced calcium excretion and possible increased intestinal calcium absorption. Saline therapy and osmotic diuresis may lead to hypernatremia from electrolyte-free water loss.
Learning Points:
Canagliflozin, an SGLT2 inhibitor, may cause hypercalcemia in susceptible patients.Although the exact mechanisms are unknown, dehydration from osmotic diuresis and increased intestinal calcium absorption play a role.Close monitoring of serum calcium levels is recommended in patients treated with SGLT2 inhibitors who are elderly, have established hypercalcemia, or take oral calcium supplements.Saline therapy and osmotic diuresis may lead to hypernatremia from electrolyte-free water loss in susceptible patients.
Insights
Sodium-glucose co-transporter-2 (SGLT2) inhibitors like canagliflozin may cause hypercalcemia and hypernatremia, particularly in elderly patients or those on calcium supplements. Close monitoring of calcium and sodium levels is advised.
Area of Science:
- Endocrinology
- Nephrology
- Pharmacology
Background:
- Sodium-glucose co-transporter-2 (SGLT2) inhibitors offer novel, insulin-independent treatment for diabetes by blocking renal glucose reabsorption.
- SGLT2 inhibition also reduces sodium reabsorption, leading to a mild diuretic effect, potential dehydration, and hyperkalemia.
Purpose of the Study:
- To report the first case of hypercalcemia associated with SGLT2 inhibitor use.
- To explore potential mechanisms linking SGLT2 inhibitors, hypercalcemia, and hypernatremia.
Main Methods:
- Case report of a 60-year-old male with uncontrolled type 2 diabetes on multiple medications including canagliflozin.
- Analysis of clinical presentation, laboratory work-up (including electrolytes and renal function), and treatment response.
Main Results:
- The patient presented with altered mental status, syncope, acute kidney injury, diabetic ketoacidosis, and severe hypercalcemia (17.4 mg/dL).
- Treatment with insulin and saline hydration improved renal function and hypercalcemia but led to severe hypernatremia (162 mmol/L) due to osmotic diuresis.
- Hypernatremia was corrected with hypotonic fluids, resolving mental status changes.
Conclusions:
- Canagliflozin may predispose susceptible patients to hypercalcemia, potentially due to dehydration from osmotic diuresis and increased intestinal calcium absorption.
- Saline therapy and osmotic diuresis can precipitate hypernatremia from electrolyte-free water loss.
- Close monitoring of serum calcium and sodium is recommended for patients on SGLT2 inhibitors, especially the elderly or those on calcium supplements.
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