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April 30, 2019European Cardiology Review1,404 citationsOpen Access

The Role of Inflammation in Diabetes: Current Concepts and Future Perspectives

STSotirios TsalamandrisPreventive CardiologyAAAlexios S. AntonopoulosCardiac ImagingEOEvangelos OikonomouCardiac Imaging

Key Points

  • To synthesize current mechanisms linking chronic inflammation to the pathogenesis and vascular complications of type 1 and type 2 diabetes.
  • Reviewed mechanistic and clinical evidence examining the roles of obesity, adipose tissue, gut microbiota, and pancreatic beta-cell dysfunction in diabetes-associated inflammation.
  • Identified persistent inflammatory signaling as a central driver connecting chronic hyperglycemia to atherosclerotic cardiovascular disease and end-organ failure.
  • Highlighted the therapeutic potential of transitioning from single-target therapies to models that achieve combined suppression across multiple inflammatory response pathways.

Abstract

Diabetes is a complex metabolic disorder affecting the glucose status of the human body. Chronic hyperglycaemia related to diabetes is associated with end organ failure. The clinical relationship between diabetes and atherosclerotic cardiovascular disease is well established. This makes therapeutic approaches that simultaneously target diabetes and atherosclerotic disease an attractive area for research. The majority of people with diabetes fall into two broad pathogenetic categories, type 1 or type 2 diabetes. The role of obesity, adipose tissue, gut microbiota and pancreatic beta cell function in diabetes are under intensive scrutiny with several clinical trials to have been completed while more are in development. The emerging role of inflammation in both type 1 and type 2 diabetes (T1D and T1D) pathophysiology and associated metabolic disorders, has generated increasing interest in targeting inflammation to improve prevention and control of the disease. After an extensive review of the possible mechanisms that drive the metabolic pattern in T1D and T2D and the inflammatory pathways that are involved, it becomes ever clearer that future research should focus on a model of combined suppression for various inflammatory response pathways.

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Cite This Study

Tsalamandris et al. (2019) studied this question.

synapsesocial.com/papers/69d75c9df182769aa8b8aac1https://doi.org/10.15420/ecr.2018.33.1
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