Diabetes/metabolism research and reviews

Overlapping Molecular Processes in Heart Disease and Diabetes: New Roles of Inflammation and Treatments

Updated

Abstract

Diabetes mellitus (DM) and cardiovascular diseases (CVD) significantly contribute to global morbidity and mortality.

  • Chronic low-grade inflammation and oxidative stress are key pathways linking DM and CVD.
  • Persistent high blood sugar levels in DM may accelerate vascular injury and increase cardiovascular risk.
  • New antidiabetic medications like SGLT-2 inhibitors and GLP-1 receptor agonists may provide cardiovascular protection alongside glycaemic control.
  • These medications may improve endothelial function and reduce systemic inflammation.
  • , or changes in gut microbiota composition, may be associated with increased inflammation and metabolic imbalance in DM and CVD.
  • Understanding the gut microbiome's role could inform new preventive and therapeutic strategies targeting both diabetes and cardiovascular health.

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Full Text

What this is

  • Diabetes mellitus (DM) and cardiovascular diseases (CVD) are major global health challenges linked by shared inflammatory and metabolic pathways.
  • This review examines the molecular mechanisms connecting DM and CVD, highlighting the roles of inflammation, metabolic dysregulation, and the gut microbiome.
  • It discusses therapeutic strategies that target both conditions, emphasizing the potential of novel agents like SGLT-2 inhibitors and GLP-1 receptor agonists.

Essence

  • DM and CVD are interconnected through complex inflammatory and metabolic pathways. Targeting these shared mechanisms with specific therapies may improve outcomes in both conditions.

Key takeaways

  • Chronic low-grade inflammation and oxidative stress are central to the pathophysiology of both DM and CVD. These factors contribute to vascular injury and increased cardiovascular risk.
  • Novel antidiabetic agents, such as SGLT-2 inhibitors and GLP-1 receptor agonists, provide cardiovascular protection beyond glycaemic control, reducing major adverse cardiovascular events and improving overall patient outcomes.
  • The gut microbiome plays a significant role in the relationship between DM and CVD, with linked to systemic inflammation and metabolic disturbances, suggesting new therapeutic avenues.

Caveats

  • The review is narrative and may not include all empirical data, limiting the strength of some conclusions. Further empirical studies are needed to validate the proposed mechanisms and therapeutic strategies.
  • The complex interplay between DM, CVD, and the gut microbiome requires more research to fully understand causative relationships and effective interventions.

Definitions

  • dysbiosis: Alterations in microbial composition and diversity associated with systemic inflammation and metabolic dysfunction.

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Funding

Competing interests

The authors declare no conflicts of interest.
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