AI Article Synopsis

  • - A new ultra-high-performance liquid chromatography (UHPLC) method has been created to accurately measure very small amounts of magnesium (in the picomole range) in biological samples, specifically renal tubular fluid.
  • - The method shows high sensitivity, specificity, and reproducibility, with low coefficients of variation and a strong linear relationship for magnesium concentrations.
  • - This technique has been effectively used to study magnesium transport across cell layers in kidney tissues, making it valuable for research on magnesium's role in biological processes.

Article Abstract

Key Points: An UHPLC method to measure picomole amounts of magnesium has been developed. The method is sensitive, specific, accurate and reproducible. The method is suitable for quantifying magnesium transport across intact epithelia.

Abstract: Magnesium is involved in many biological processes. Extracellular magnesium homeostasis mainly depends on the renal handling of magnesium, the study of which requires measurement of low concentrations of magnesium in renal tubular fluid. We developed an ultra-high-performance liquid chromatography method to measure millimolar concentrations of magnesium in nanolitre samples. Within-assay and between-assay coefficients of variation were lower than 5% and 6.6%, respectively. Measurement of magnesium concentration was linear (r  = 0.9998) over the range 0-4 mmol/l. Absolute bias ranged from -0.03 to 0.05 mmol/l. The lower limit of quantification was 0.2 mmol/l. Recovery was 97.5-100.3%. No significant interference with calcium, another divalent cation present in the same samples, was detected. The method was successfully applied to quantify transepithelial magnesium transport by medullary and cortical thick ascending limbs during ex vivo microperfusion experiments. In conclusion, ultra-high-performance liquid chromatography is suitable for measurement of picomole amounts of magnesium in renal tubular fluid. The method allows detailed studies of transepithelial magnesium transport across native epithelium.

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Source
http://dx.doi.org/10.1113/JP280304DOI Listing

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