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February 11, 2026Nutrients2 citationsOpen Access

Sulforaphane Against the Metabolic Consequences of a High-Glycemic-Index Diet: Protective and Therapeutic Mechanisms Associated with Obesity and Insulin Resistance

MÇMihrican ÇubukAAA. AçıkgözBSBahadır Süleyman

Key Points

  • The central aim is to assess how sulforaphane supplementation affects obesity and insulin resistance caused by a high-glycemic-index diet.
  • Administered varying doses of sulforaphane to C57BL/6 mice for 15 weeks
  • Compared effects of control, high-glycemic-index diet, and sulforaphane treatments
  • Measured body weight, serum glucose, insulin tolerance, and gene expression levels
  • Analysed lipid profiles and adiponectin levels in serum
  • Sulforaphane reduced body weight gain and serum glucose levels
  • Improved glucose and insulin tolerance was observed in sulforaphane-treated groups
  • Lower HbA1c levels were found in control and low-dose sulforaphane groups
  • Mice on the high-glycemic-index diet had impaired glucose clearance and insulin sensitivity

Abstract

Objective: This study investigated the effects of different doses and timing of sulforaphane (SFN) supplementation on reducing obesity induced by a high-glycemic-index diet (HGID) and on correcting poor glycemic control and dyslipidemia in C57BL/6 mice. Method: For 15 weeks, mice were administered a control diet (control), HGID, HGID + oral 5 mg/kg/day SFN (HGID + LSFN), or HGID + 20 mg/kg/day SFN (HGID + HSFN), and following 15 weeks of HGID, mice were treated with 5 mg/kg/day SFN (PO-HGID + LSFN) or 20 mg/kg/day SFN (PO-HGID + HSFN) for 5 weeks. Results: SFN reduced body weight gain and serum glucose. The lowest levels of HbA1c were observed in the control and HGID + LSFN groups. Mice in the HGID group exhibited impaired glucose clearance and were less sensitive to insulin compared to the control. A remarkable improvement in glucose and insulin tolerance was observed in both PO-HGID + SFN and HGID + SFN groups. Lipid profile parameters and serum insulin levels were found to be lower in the control and HGID + SFN groups compared to the HGID group. SFN increased serum adiponectin levels when administered concurrently with HGID. IRS1 and IRS2 levels were highest in the control and HGID + LSFN groups, and high-dose SFN supplementation suppressed IRS1 independently of timing. Exposure to HGID downregulated the expression of PGC-1α and sirtuins. SIRT1 and SIRT3 gene expressions showed a significant increase at both doses, whereas SIRT2 gene expression increased significantly only at 5 mg/kg/day SFN. FASN expression was upregulated in all HGID-fed groups with or without SFN intervention. Conclusions: SFN may reverse the adverse effects of HGID in a time- and dose-dependent manner by regulating postprandial insulin, inhibiting gluconeogenesis, and enhancing fatty acid oxidation through the activation of sirtuins and PGC-1α.

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Cite This Study

Çubuk et al. (2026) studied this question.

synapsesocial.com/papers/698c1c8e267fb587c655f16chttps://doi.org/10.3390/nu18040574
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