Background <p>Dysglycaemia accelerates atherosclerosis, but the extent to which carotid plaque burden and morphology differ across the full glycaemic spectrum, and which cardiometabolic factors are most strongly associated with this burden, remain incompletely characterised. This study aimed to evaluate carotid plaque burden and morphology across the glycaemic spectrum, from normoglycaemia to type 2 diabetes mellitus (T2D).</p> Methods <p>This cross-sectional study included 169 participants: 24 normoglycaemic controls, 28 with prediabetes, and 117 with T2D stratified by glycaemic control. All underwent clinical, laboratory, and carotid ultrasonographic assessment. Plaque presence, morphology, and stenosis severity were evaluated. Multivariable logistic regression and receiver operating characteristic analyses were performed.</p> Results <p>Carotid plaque was present in 50.9% of participants (0% in normoglycaemia, with 8.3% showing isolated intima–media thickness [IMT] increase); a combined outcome of carotid plaque or isolated IMT increase was present in 60.4% overall. Carotid plaque prevalence increased markedly from normoglycaemia (0%) to prediabetes (42.9%) and ranged from 58.6% to 72.4% across the HbA1c-defined T2D subgroups, without a consistent further increase within this range (<i>p</i> &lt; 0.001). Plaque morphology also differed across glycaemic categories, with echolucent plaques proportionally more frequent in prediabetes and echogenic plaques predominating in T2D. In the multivariable model, age, urinary albumin-to-creatinine ratio (UACR), and total cholesterol were independent predictors of carotid plaque, whereas diabetes duration, HOMA-IR, and glycated haemoglobin (HbA1c) were not (AUC 0.821).</p> Conclusions <p>Carotid plaque burden is markedly higher across the dysglycaemic spectrum than in normoglycaemia, and is already substantial in prediabetes, suggesting early subclinical vascular involvement. Age, UACR, and total cholesterol, rather than HbA1c alone, showed the strongest associations with carotid atherosclerosis. Carotid ultrasonography, including assessment of plaque morphology, may provide additional information for cardiovascular risk stratification beyond glycaemic status alone. This potential role merits evaluation in future prospective studies.</p> Graphical Abstract <p></p>

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Carotid plaque burden across the glycaemic spectrum: a cross-sectional study

  • İhsan Boyacı

摘要

Background

Dysglycaemia accelerates atherosclerosis, but the extent to which carotid plaque burden and morphology differ across the full glycaemic spectrum, and which cardiometabolic factors are most strongly associated with this burden, remain incompletely characterised. This study aimed to evaluate carotid plaque burden and morphology across the glycaemic spectrum, from normoglycaemia to type 2 diabetes mellitus (T2D).

Methods

This cross-sectional study included 169 participants: 24 normoglycaemic controls, 28 with prediabetes, and 117 with T2D stratified by glycaemic control. All underwent clinical, laboratory, and carotid ultrasonographic assessment. Plaque presence, morphology, and stenosis severity were evaluated. Multivariable logistic regression and receiver operating characteristic analyses were performed.

Results

Carotid plaque was present in 50.9% of participants (0% in normoglycaemia, with 8.3% showing isolated intima–media thickness [IMT] increase); a combined outcome of carotid plaque or isolated IMT increase was present in 60.4% overall. Carotid plaque prevalence increased markedly from normoglycaemia (0%) to prediabetes (42.9%) and ranged from 58.6% to 72.4% across the HbA1c-defined T2D subgroups, without a consistent further increase within this range (p < 0.001). Plaque morphology also differed across glycaemic categories, with echolucent plaques proportionally more frequent in prediabetes and echogenic plaques predominating in T2D. In the multivariable model, age, urinary albumin-to-creatinine ratio (UACR), and total cholesterol were independent predictors of carotid plaque, whereas diabetes duration, HOMA-IR, and glycated haemoglobin (HbA1c) were not (AUC 0.821).

Conclusions

Carotid plaque burden is markedly higher across the dysglycaemic spectrum than in normoglycaemia, and is already substantial in prediabetes, suggesting early subclinical vascular involvement. Age, UACR, and total cholesterol, rather than HbA1c alone, showed the strongest associations with carotid atherosclerosis. Carotid ultrasonography, including assessment of plaque morphology, may provide additional information for cardiovascular risk stratification beyond glycaemic status alone. This potential role merits evaluation in future prospective studies.

Graphical Abstract