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Current Opinion in Clinical Nutrition & Metabolic Care· 2026Q1

Evolution of zinc biomarkers and impact on clinical nutrition and public health

Murielle Bochud, Mette M. Berger

Short summary

A combined assessment of serum/plasma zinc concentration and urinary zinc excretion offers the most sensitive and specific approach for evaluating human zinc status, with urinary zinc levels potentially providing complementary information to serum/plasma levels.

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Key points

  • Plasma/serum and urinary zinc excretion respond to changes in human zinc intake.
  • Plasma/serum zinc remains a useful indicator of zinc status, even with inflammation.
  • Genetic variants in SLC30A2 influence urinary zinc excretion, showing geographic variation.
  • The urinary-to-plasma zinc ratio is proposed as a novel, complementary biomarker for human zinc status.

AI-generated from the title and abstract; the full text is not read.

Abstract

Purpose of review Zinc deficiency is a major modifiable nutritional and public health burden worldwide. Because zinc participates in a wide range of biochemical functions, the physiological consequences of deficiency are diverse and nonspecific, complicating the identification of reliable biomarkers of zinc status. The present review summarizes recent evidence regarding zinc status biomarkers, while integrating the impact of novel findings on the genetics of zinc homeostasis. Recent findings Updated assessment of available zinc biomarkers shows that plasma/serum and urinary zinc excretion respond to changes in zinc intake in humans. Despite the impact of inflammation, plasma/serum zinc remains a good indicator of status. Numerous other putative biomarkers do not meet biomarker efficiency criteria. Zinc homeostasis is tightly controlled through the action of more than 20 membrane transporters belonging to two large families (SLC30 and SLC39). SLC30A2 genetic variants play a key role in controlling urinary zinc excretion, with high geographic variation in allele frequency. The observation from genetic studies that urinary and blood zinc levels are regulated through largely distinct biological pathways suggests that urinary zinc levels may provide relevant complementary information to serum/plasma levels pointing towards urinary-to-plasma ratio as a novel biomarker of human zinc status. Summary The combined assessment of serum (or plasma) zinc concentration and urinary zinc excretion appears to be the most sensitive and specific approach for evaluating zinc status in humans.

The authors' abstract, as published at the source. Current Opinion in Clinical Nutrition & Metabolic Care, 2026 · DOI ↗

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Nutrition and DieteticsNursing