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Tangeretin enhances pancreatic beta-TC-6 function by ameliorating tunicamycin-induced cellular perturbations
Eveline M Anto1,2, P Jayamurthy3,4
1Agro-Processing & Technology Division, Department of Biochemistry, CSIR-National Institute for Interdisciplinary Science & Technology, Thiruvananthapuram, Kerala, 695019, India.
Background:
Pancreatic beta cell health and its insulin-secreting potential are severely compromised under the diabetic condition. One of the key mediators of beta cell dysfunction is endoplasmic reticulum (ER) stress. Pharmacological intervention of ER stress and associated complications in pancreatic beta cells may be an effective strategy for the management of diabetes. In the present study, we evaluated the efficacy of tangeretin, a citrus pentamethoxyflavone, in the alleviation of ER stress and associated perturbations in pancreatic Beta-TC-6 cell lines.
Methods And Results:
Tunicamycin (pharmacological ER stress inducer) at subtoxic levels was observed to induce beta cell dysfunction by upregulation of intracellular ROS levels, lowering mitochondrial number/biogenesis and membrane potential, elevation of UPR markers, XBP-1, GADD153, and ER resident chaperones. Treatment with tangeretin was successful in improving the beta cell function by lowering the ROS levels and improving the mitochondrial biogenesis and mitochondrial membrane potential. Tangeretin also downregulated the expression levels of XBP-1, GADD153, and ER resident chaperones. GLUT2 expression, however, did not undergo any significant change under ER stress. We also observed altered expression of Pdx-1, TRB3, and p-Akt under the ER stress condition. Tangeretin augmented the expression levels of Pdx-1, and p-Akt while curtailing the expression of TRB3 in beta cells. Tunicamycin treatment suppressed the insulin levels, however, co-treatment with tangeretin could only marginally improve the levels.
Conclusion:
Targeting ER stress and associated pathways in pancreatic Beta-TC-6 cell lines by tangeretin can be an effective strategy for improving beta cell function.
Insights
Tangeretin effectively alleviates endoplasmic reticulum (ER) stress in pancreatic beta cells, improving their function. This citrus flavonoid shows promise for managing diabetes by protecting beta cells from ER stress-induced damage.
Area of Science:
- Cell Biology
- Endocrinology
- Pharmacology
Background:
- Pancreatic beta cell dysfunction is a hallmark of diabetes, often mediated by endoplasmic reticulum (ER) stress.
- ER stress impairs insulin secretion and beta cell survival.
- Targeting ER stress presents a potential therapeutic strategy for diabetes management.
Purpose of the Study:
- To evaluate the efficacy of tangeretin, a citrus pentamethoxyflavone, in mitigating ER stress in pancreatic Beta-TC-6 cell lines.
- To investigate tangeretin's effects on ER stress markers and beta cell function.
Main Methods:
- Beta-TC-6 cells were subjected to tunicamycin-induced ER stress.
- Tangeretin treatment was administered to assess its protective effects.
- Key markers of ER stress, oxidative stress, mitochondrial function, and protein expression (XBP-1, GADD153, Pdx-1, TRB3, p-Akt) were analyzed.
Main Results:
- Tunicamycin induced beta cell dysfunction, increasing reactive oxygen species (ROS) and ER stress markers while decreasing mitochondrial function.
- Tangeretin treatment lowered ROS, improved mitochondrial biogenesis and membrane potential, and downregulated ER stress markers (XBP-1, GADD153).
- Tangeretin modulated the expression of Pdx-1, TRB3, and p-Akt, suggesting a role in regulating key beta cell pathways.
Conclusions:
- Tangeretin demonstrates significant potential in alleviating ER stress and improving pancreatic beta cell function.
- Targeting ER stress pathways with tangeretin offers a promising therapeutic avenue for diabetes management.
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