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May 6, 2026Diagnostics0 citationsOpen Access

Variation in the Circulating Levels of Retinoic Acid and Type 2 Diabetes: Relationships with Glycemic Control Indices, Disease Treatment and Complications

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AAAseel A. AlsaidanBABasil M. AlomairAAAbdulrahman H. Almaeen

Key Points

  • To investigate the relationship between retinoic acid levels and type 2 diabetes and its clinical outcomes.
  • Cross-sectional study of 292 adult T2-DM patients and 64 healthy controls.
  • Plasma retinoic acid levels measured using ELISA.
  • Data analyzed for correlations with fasting blood glucose, HbA1c, and insulin resistance.
  • Plasma retinoic acid significantly lower in T2-DM patients compared to controls (mean 2.63 ng/mL vs. 5.21 ng/mL; p < 0.001).
  • Inversely correlated with glycemic dysregulation indices and insulin resistance.
  • Discriminatory performance of retinoic acid for T2-DM established with AUC of 0.870 (p < 0.0001).

Abstract

Background/Objectives: Type 2 diabetes mellitus (T2-DM) is a continuing national and global health challenge. Retinoic acid (RA), the major transcription-regulating ligand, plays a critical role in energy metabolism, and pancreatic β-cell homeostasis. However, human data linking circulating RA levels to T2-DM and its clinical outcomes are sparse and inconsistent. In this ethically approved cross-sectional study of consented hospital-diagnosed adult T2-DM patients (n = 292) and matched healthy controls (n = 64), variation in plasma RA levels and its relationship with disease and patient characteristics were investigated. Methods: RA concentrations assayed via specific ELISA were related to glycemic control indices fasting blood glucose (FBG) and HbA1c, the triglyceride–glucose ratio for insulin resistance (TyG-IR), treatment modalities, and complications derived from patients’ medical records. Results: RA concentrations were substantially lower in patients with T2-DM (mean ± SD 2.63 ± 1.54 ng/mL) than in controls (5.21 ± 4.3 ng/mL; p < 0.001). Within the diabetic cohort, RA was inversely correlated with indices of glycemic dysregulation and insulin resistance. Plasma RA exhibited strong discriminatory performance for distinguishing diabetic patients from healthy adults. Its AUC is 0.870 (p < 0.0001 and 95% CI = 0.832–0.902) with a sensitivity of 79.7% and a specificity of 81.3%, at an optimal cutoff of ≤3.061 ng/mL. Conclusions: Circulating RA is associated with metabolic perturbations that define T2-DM, and therefore is promising as a clinically useful biomarker. It may reflect pathophysiological processes linking nutrient signaling, energy handling and β-cell function in T2-DM that merit further evaluation.

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Cite This Study

Alsaidan et al. (2026) studied this question.

synapsesocial.com/papers/69faa28f04f884e66b533297https://doi.org/10.3390/diagnostics16091359
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