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Updated: May 15, 2026

Characterization of Metabolic Status in Nonhuman Primates with the Intravenous Glucose Tolerance Test
Published on: November 13, 2016
Urinary chromium excretion in response to an insulin challenge is not a biomarker for chromium status
Sharifa T Love1, Kristin R Di Bona, Sarmistha Halder Sinha
1Department of Chemistry, The University of Alabama, Tuscaloosa, AL 35487-0336, USA.
Insights
Chromium (Cr) supplementation effects are pharmacological, not nutritional. Insulin-stimulated urinary Cr excretion was tested as a biomarker but was not dependent on dietary Cr intake in rats, failing as a status indicator.
Area of Science:
- Nutritional Science
- Trace Element Metabolism
- Biomarker Discovery
Background:
- Chromium (Cr) was historically considered an essential trace element.
- Recent evidence suggests Cr's effects are pharmacological, not nutritional, complicating status assessment.
- A reliable biomarker for Cr status remains elusive.
Purpose of the Study:
- To investigate insulin-stimulated urinary Cr excretion as a potential biomarker for Cr status.
- To determine if urinary Cr loss magnitude correlates with dietary Cr intake.
- To assess the impact of dietary Cr on iron status in rats.
Main Methods:
- Zucker lean rats were fed diets with varying Cr content (16–2,000 μg/kg) for 23 weeks under metal-free conditions.
- Urine samples were collected pre- and post-insulin/glucose challenges (0–12 h).
- Urinary Cr was analyzed using graphite furnace atomic absorption; blood iron was also measured.
Main Results:
- Urinary Cr excretion following insulin or glucose challenge was independent of dietary Cr levels.
- Dietary Cr content did not affect the blood iron levels of the rats.
- The study found no correlation between dietary Cr intake and urinary Cr excretion post-challenge.
Conclusions:
- Insulin-stimulated urinary chromium excretion cannot serve as a reliable biomarker for chromium status.
- The pharmacological effects of chromium may explain the lack of a nutritional biomarker.
- Further research is needed to understand chromium's role and metabolism.
Abstract:
Over 50 years ago, chromium (Cr) was proposed to be an essential trace element; however, recent studies indicate that this status should be removed as the effects of Cr supplementation appear to be pharmacological rather than nutritional. The pharmacological basis for Cr's effects can explain the inability of investigators to discover a biomarker for Cr status. One potential biomarker has not been examined to date. Cr is known to be mobilized in the body in response to insulin (or insulin release in response to a glucose challenge), resulting in an increase in urinary Cr excretion. The magnitude of increase in urinary Cr loss as a function of dietary Cr intake was tested as a potential biomarker for Cr. Zucker lean rats housed in carefully controlled metal-free conditions were provided a series of purified diets containing variable Cr contents (from 16 μg/kg diet to 2,000 μg/kg) for 23 weeks. The 16 μg/kg diet contained less Cr than any diet examined to date. Urine samples were collected before and after insulin and glucose challenges (0, 2, 6, and 12 h postinjection). Urinary Cr levels were analyzed by the standard method of addition using graphite furnace atomic absorption. The rate of urinary Cr loss after a glucose or insulin challenge was found to not be dependent on the Cr content of the rats' diets. Blood iron levels of the rats were also measured to determine if the addition of Cr to the diet altered iron status. The Cr content of the diet was found to have no affect on blood iron levels. Overall, the study demonstrated that insulin-stimulated urinary Cr excretion cannot be used as a biomarker for Cr status.
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