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Updated: Mar 15, 2026

High-resolution Respirometry to Measure Mitochondrial Function of Intact Beta Cells in the Presence of Natural Compounds
Published on: January 23, 2018
Thrombospondin 1 protects pancreatic β-cells from lipotoxicity via the PERK-NRF2 pathway
Daniel A Cunha1, Monia Cito1, Per-Ola Carlsson2
1ULB Center for Diabetes Research, Université Libre de Bruxelles, 1070 Brussels, Belgium.
Abstract:
The failure of β-cells has a central role in the pathogenesis of type 2 diabetes, and the identification of novel approaches to improve functional β-cell mass is essential to prevent/revert the disease. Here we show a critical novel role for thrombospondin 1 (THBS1) in β-cell survival during lipotoxic stress in rat, mouse and human models. THBS1 acts from within the endoplasmic reticulum to activate PERK and NRF2 and induce a protective antioxidant defense response against palmitate. Prolonged palmitate exposure causes THBS1 degradation, oxidative stress, activation of JNK and upregulation of PUMA, culminating in β-cell death. These findings shed light on the mechanisms leading to β-cell failure during metabolic stress and point to THBS1 as an interesting therapeutic target to prevent oxidative stress in type 2 diabetes.
Insights
Thrombospondin 1 (THBS1) protects pancreatic beta cells from damage caused by fatty acids. Maintaining THBS1 levels may prevent beta-cell failure and treat type 2 diabetes.
Area of Science:
- Endocrinology
- Molecular Biology
- Metabolic Diseases
Background:
- Beta-cell failure is central to type 2 diabetes pathogenesis.
- Improving functional beta-cell mass is crucial for disease management.
- Understanding mechanisms of beta-cell death under metabolic stress is needed.
Purpose of the Study:
- To investigate the role of thrombospondin 1 (THBS1) in beta-cell survival during lipotoxic stress.
- To elucidate the molecular pathways involving THBS1 in protecting beta cells.
Main Methods:
- Utilized rat, mouse, and human beta-cell models.
- Exposed cells to palmitate to induce lipotoxic stress.
- Analyzed the activation of endoplasmic reticulum stress pathways (PERK, NRF2) and cell death markers (JNK, PUMA).
Main Results:
- THBS1 was identified as a critical factor for beta-cell survival under lipotoxic conditions.
- THBS1 activates PERK and NRF2 within the endoplasmic reticulum, initiating an antioxidant response.
- Prolonged lipotoxicity led to THBS1 degradation, increased oxidative stress, and beta-cell death via JNK/PUMA activation.
Conclusions:
- THBS1 plays a protective role against lipotoxicity-induced beta-cell failure.
- THBS1-mediated antioxidant defense is a key mechanism for beta-cell survival.
- Targeting THBS1 may offer a novel therapeutic strategy for type 2 diabetes by mitigating oxidative stress.
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