Deficits in brain glucose transport among younger adults with obesity.
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- Record sourced from PubMed, PMID 38764181.
- Also identified by DOI 10.1002/oby.24034 and PMC identifier 11966602.
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Abstract
Obesity is associated with alterations in eating behavior and neurocognitive function. In this study, we investigate the effect of obesity on brain energy utilization, including brain glucose transport and metabolism. A total of 11 lean participants and 7 young healthy participants with obesity (mean age, 27 years) underwent magnetic resonance spectroscopy scanning coupled with a hyperglycemic clamp (target, ~180 mg/dL) using [1-<sup>13</sup>C] glucose to measure brain glucose uptake and metabolism, as well as peripheral markers of insulin resistance. Individuals with obesity demonstrated an ~20% lower ratio of brain glucose uptake to cerebral glucose metabolic rate (T<sub>max</sub>/CMR<sub>glucose</sub>) than lean participants (2.12 ± 0.51 vs. 2.67 ± 0.51; p = 0.04). The cerebral tricarboxylic acid cycle flux (V<sub>TCA</sub>) was similar between the two groups (p = 0.64). There was a negative correlation between total nonesterified fatty acids and T<sub>max</sub>/CMR<sub>glucose</sub> (r = -0.477; p = 0.045). We conclude that CMR<sub>glucose</sub> is unlikely to differ between groups due to similar V<sub>TCA</sub>, and, therefore, the glucose transport T<sub>max</sub> is lower in individuals with obesity. These human findings suggest that obesity is associated with reduced cerebral glucose transport capacity even at a young age and in the absence of other cardiometabolic comorbidities, which may have implications for long-term brain function and health.
Medical subject headings
- Obesity
- Glucose
- Brain
- Insulin Resistance