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March 10, 2009Diabetes174 citationsOpen Access

Exogenous Glucose–Dependent Insulinotropic Polypeptide Worsens Post prandial Hyperglycemia in T ype 2 Diabetes

CCChee W. ChiaOCOlga D. CarlsonWKWook Kim

Key Points

  • To elucidate the pathophysiological mechanisms underlying why glucose-dependent insulinotropic polypeptide (GIP) fails to exert glucose-lowering effects in type 2 diabetes.
  • Infused synthetic human GIP (20 ng·kg⁻¹·min⁻¹) or normal saline placebo over 180 minutes during a mixed meal in 22 insulin-naïve participants with type 2 diabetes across two separate occasions.
  • Sampled blood over 6 hours to measure plasma GIP, GLP-1, glucose, insulin, glucagon, resistin, and acetaminophen.
  • Assessed GIP receptor presence on mouse and human alpha-cells and evaluated cAMP accumulation and glucagon release in alphaTC1 cells.
  • Compared with placebo, GIP induced an early postprandial rise in insulin alongside an early increase in glucagon, leading to significantly higher late postprandial glucose and suppressed late GLP-1 levels.
  • GIP receptors were localized to human and mouse alpha-cells, with GIP directly stimulating intracellular cAMP elevation and glucagon secretion in alphaTC1 cells.

Abstract

OBJECTIVE: Glucose-dependent insulinotropic polypeptide (GIP), unlike glucagon-like peptide (GLP)-1, lacks glucose-lowering properties in patients with type 2 diabetes. We designed this study to elucidate the underlying pathophysiology. RESEARCH DESIGN AND METHODS: Twenty-two insulin-naïve subjects with type 2 diabetes were given either synthetic human GIP (20 ng x kg(-1) x min(-1)) or placebo (normal saline) over 180 min, starting with the first bite of a mixed meal (plus 1 g of acetaminophen) on two separate occasions. Frequent blood samples were obtained over 6 h to determine plasma GIP, GLP-1, glucose, insulin, glucagon, resistin, and acetaminophen levels. RESULTS: Compared with placebo, GIP induced an early postprandial increase in insulin levels. Intriguingly, GIP also induced an early postprandial augmentation in glucagon, a significant elevation in late postprandial glucose, and a decrease in late postprandial GLP-1 levels. Resistin and acetaminophen levels were comparable in both interventions. By immunocytochemistry, GIP receptors were present on human and mouse alpha-cells. In alphaTC1 cell line, GIP induced an increase in intracellular cAMP and glucagon secretion. CONCLUSIONS; GIP, given to achieve supraphysiological plasma levels, still had an early, short-lived insulinotropic effect in type 2 diabetes. However, with a concomitant increase in glucagon, the glucose-lowering effect was lost. GIP infusion further worsened hyperglycemia postprandially, most likely through its suppressive effect on GLP-1. These findings make it unlikely that GIP or GIP receptor agonists will be useful in treating the hyperglycemia of patients with type 2 diabetes.

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Cite This Study

Chia et al. (2009) studied this question.

synapsesocial.com/papers/6a17747e4f2b3115b01291edhttps://doi.org/10.2337/db08-0958
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