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July 30, 2025International Journal of Molecular Sciences20 citationsOpen Access

The Pathogenic Role of C-Reactive Protein in Diabetes-Linked Unstable Atherosclerosis

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MSMelania SibianuMSMark Slevin

Key Points

  • The review establishes mCRP as a crucial factor in unstable atherosclerosis related to diabetes.
  • Evidence shows mCRP promotes endothelial dysfunction and accelerates plaque destabilization.
  • The interaction between mCRP and AGEs aggravates inflammation and oxidative stress in diabetic patients.
  • Identifying mCRP's pathways could lead to novel interventions for cardiovascular risks in diabetes.

Abstract

C-reactive protein (CRP) has long been recognized as a biomarker of systemic inflammation and cardiovascular disease (CVD) risk. However, emerging evidence highlights the distinct and potent pro-inflammatory role of its monomeric form (mCRP), which is predominantly tissue-bound and directly implicated in vascular injury and plaque destabilization. This narrative review explores the interactions and overlapping pathways that converge within and modulate CRP, mCRP, the associated pathophysiology of diabetes mellitus, and cardiovascular disease. We examine how mCRP promotes endothelial dysfunction, leukocyte recruitment, platelet activation, and macrophage polarization, thereby contributing to the formation of unstable atherosclerotic plaques. Furthermore, we discuss the critical influence of diabetes in amplifying mCRP’s pathogenic effects through metabolic dysregulation, chronic hyperglycemia, and enhanced formation of advanced glycation end products (AGEs). The synergistic interaction of mCRP with the AGE-receptor for AGE (RAGE) axis exacerbates oxidative stress and vascular inflammation, accelerating atherosclerosis progression and increasing cardiovascular risk in diabetic patients. Understanding these mechanistic pathways implicates mCRP as both a biomarker and therapeutic target, particularly in the context of diabetes-associated CVD. This review highlights the need for further research into targeted interventions that disrupt the mCRP-AGE-RAGE inflammatory cycle to reduce plaque instability and improve cardiovascular outcomes in high-risk populations.

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Cite This Study

Sibianu et al. (2025) studied this question.

synapsesocial.com/papers/689a0945e6551bb0af8cedf2https://doi.org/10.3390/ijms26146855
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