Department of Immunology & Microbiology, Dasman Diabetes Institute, Dasman 15462, Kuwait.
Department of Genetics and Bioinformatics, Dasman Diabetes Institute, Dasman 15462, Kuwait.
Cells. 2024 May 30;13(11):949. doi: 10.3390/cells13110949.
This study unveils verapamil's compelling cytoprotective and proliferative effects on pancreatic β-cells amidst diabetic stressors, spotlighting its unforeseen role in augmenting cholecystokinin (CCK) expression. Through rigorous investigations employing MIN6 β-cells and zebrafish models under type 1 and type 2 diabetic conditions, we demonstrate verapamil's capacity to significantly boost β-cell proliferation, enhance glucose-stimulated insulin secretion, and fortify cellular resilience. A pivotal revelation of our research is verapamil's induction of CCK, a peptide hormone known for its role in nutrient digestion and insulin secretion, which signifies a novel pathway through which verapamil exerts its therapeutic effects. Furthermore, our mechanistic insights reveal that verapamil orchestrates a broad spectrum of gene and protein expressions pivotal for β-cell survival and adaptation to immune-metabolic challenges. In vivo validation in a zebrafish larvae model confirms verapamil's efficacy in fostering β-cell recovery post-metronidazole infliction. Collectively, our findings advocate for verapamil's reevaluation as a multifaceted agent in diabetes therapy, highlighting its novel function in CCK upregulation alongside enhancing β-cell proliferation, glucose sensing, and oxidative respiration. This research enriches the therapeutic landscape, proposing verapamil not only as a cytoprotector but also as a promoter of β-cell regeneration, thereby offering fresh avenues for diabetes management strategies aimed at preserving and augmenting β-cell functionality.
本研究揭示了维拉帕米在糖尿病应激条件下对胰腺β细胞具有强大的细胞保护和增殖作用,强调了其在增强胆囊收缩素(CCK)表达方面的意外作用。通过在 1 型和 2 型糖尿病条件下使用 MIN6 β细胞和斑马鱼模型进行的严格研究,我们证明了维拉帕米能够显著促进β细胞增殖、增强葡萄糖刺激的胰岛素分泌,并增强细胞活力。我们研究的一个重要发现是维拉帕米诱导了 CCK,CCK 是一种已知在营养消化和胰岛素分泌中发挥作用的肽激素,这表明维拉帕米通过一种新的途径发挥其治疗作用。此外,我们的机制研究揭示了维拉帕米协调了一系列关键的基因和蛋白质表达,这些表达对于β细胞的存活和适应免疫代谢挑战至关重要。在斑马鱼幼虫模型中的体内验证证实了维拉帕米在甲硝唑损伤后促进β细胞恢复的功效。总之,我们的发现主张重新评估维拉帕米作为糖尿病治疗的多效性药物,强调其在 CCK 上调以及增强β细胞增殖、葡萄糖感应和氧化呼吸方面的新功能。这项研究丰富了治疗领域,提出维拉帕米不仅是一种细胞保护剂,还是β细胞再生的促进剂,从而为旨在保护和增强β细胞功能的糖尿病管理策略提供了新的途径。