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February 19, 2026Diabetes2 citations

Adipose Tissue Resistance to the Antilipolytic Effect of Insulin and Niacin in Humans With Obesity

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SLShuhao LinKLKelli A. LytleNFNicola Fink

Key Points

  • The aim was to compare how insulin and niacin affect lipolysis in adipose tissue among individuals with obesity and type 2 diabetes.
  • Conducted two study visits with overnight intravenous infusions of niacin or saline
  • Performed hyperinsulinemic-euglycemic clamp studies
  • Measured free fatty acid release and phosphorylation levels of key proteins in adipose tissue
  • FFA-palmitate release suppression by insulin and niacin were highly correlated (r = -0.93, P < 0.001)
  • Phosphorylation of AT Akt and perilipin 1 was lower during niacin infusion compared to saline control
  • Findings suggest dysfunction in distal lipolysis proteins contributes to dysregulated lipolysis in obesity and type 2 diabetes.

Abstract

Adipose tissue (AT) lipolysis insulin resistance results in excess free fatty acid (FFA) release. We tested the hypothesis that the ability of insulin to suppress AT lipolysis is unrelated to the ability of niacin to suppress lipolysis, because niacin acts through a different proximal signaling pathway. Ten volunteers (5 women/5 men) with upper body obesity and/or type 2 diabetes mellitus (T2DM) underwent two study visits with overnight intravenous infusions of niacin (1.4 mg/min) or saline, followed by a hyperinsulinemic-euglycemic clamp. FFA-palmitate Ra was measured using U-13C and 2H9palmitate infusions; abdominal AT biopsies were performed before and during the insulin clamp. The suppression of FFA-palmitate Ra by insulin on the saline control day and by niacin after an overnight infusion were highly correlated (r = −0.93, P 0.001). Fasting AT Akt (pAktS473/474-to-panAkt ratio, P = 0.01) and perilipin 1 (PLN 1) (pPLN1S552-to-panPLN1 ratio, P = 0.02) phosphorylation were less during niacin than the saline control study. Because the suppression of lipolysis by insulin and niacin are highly correlated within individuals and because niacin and insulin act through different proximal signaling pathways, we propose dysregulated AT lipolysis in obesity/T2DM is due to dysfunction(s) in distal lipolysis proteins rather than isolated “insulin resistance.” Article Highlights We undertook this study to compare adipose tissue lipolysis responses to insulin and niacin in humans. We tested the hypothesis that adipose tissue insulin resistance would be unrelated to adipose tissue niacin resistance. The suppression of lipolysis by insulin and niacin were highly correlated. Dysregulated adipose tissue lipolysis in obesity/type 2 diabetes is due to dysfunction(s) in distal lipolysis proteins rather than isolated “insulin resistance.”

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Cite This Study

Lin et al. (2026) studied this question.

synapsesocial.com/papers/6996a83eecb39a600b3eebdchttps://doi.org/10.2337/db25-0979
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Also Consider

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