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February 8, 2026AJP Endocrinology and Metabolism0 citations

Impact of obesity on aromatic amino acids and brain glucose during acute hyperglycemia

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JBJesica D. BaranFGFelona GunawanDRDouglas L. Rothman

Key Points

  • To investigate the relationship between plasma amino acids and brain glucose levels during acute hyperglycemia in individuals with obesity.
  • Conducted a secondary analysis of a previous study
  • Utilized mass spectrometry-based metabolomics to analyze plasma samples
  • Measured brain glucose using magnetic resonance spectroscopy during acute hyperglycemia
  • Higher plasma concentrations of aromatic amino acids and other metabolites observed in obesity during hyperglycemia
  • Significant correlation between plasma aromatic amino acids and lower brain glucose levels
  • Plasma glucagon levels were elevated in obesity during acute hyperglycemia

Abstract

Hyperaminoacidemia is an early hallmark of insulin resistance, with aromatic and branched chain amino acids particularly associated with insulin resistance and type 2 diabetes. We previously showed that healthy adults with obesity exposed to acute hyperglycemia have lower brain glucose levels measured by magnetic resonance spectroscopy (MRS) than lean controls, suggesting that a blunted brain response to hyperglycemia may be an early marker of insulin resistance. Here, in a secondary analysis of our prior study, we used targeted mass spectrometry-based metabolomics to measure plasma amino acids in participants with and without obesity to determine if changes in peripheral metabolites associated with early insulin resistance such as amino acids were associated with changes in brain glucose levels during hyperglycemia. There were few differences in baseline amino acids between groups, but acute hyperglycemia unveiled higher plasma concentrations of amino acids including cysteine, cystine, glutamic acid, glutamine, methionine, and aromatic amino acids in obesity. Plasma glucagon levels were also higher in obesity during acute hyperglycemia. Higher plasma concentrations of aromatic amino acids and glucagon were significantly correlated with lower brain glucose levels, illustrating parallel development of central and peripheral metabolic changes in obesity.

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Cite This Study

Baran et al. (2026) studied this question.

synapsesocial.com/papers/6988291e0fc35cd7a8849217https://doi.org/10.1152/ajpendo.00463.2025
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