Çukurova University, Faculty of Pharmacy, Department of Pharmaceutical Technology, Adana, Turkey.
Atatürk University, Faculty of Pharmacy, Department of Pharmaceutical Technology, Erzurum, Turkey.
Eur J Pharm Sci. 2024 Sep 1;200:106844. doi: 10.1016/j.ejps.2024.106844. Epub 2024 Jul 6.
Repaglinide (RPG) belongs to the class of drugs known as meglitinides and is used for improving and maintaining glycemic control in the treatment of patients with Type 2 diabetes. RPG is a Class II drug (BCS) because of its high permeability and low water solubility. It also undergoes hepatic first-pass metabolism. The oral bioavailability of RPG is low (about 56 %) due to these drawbacks. Our aim in this study is to prepare two different nano-sized drug carrier systems containing RPG (nanoparticle: RPG-PLGA-Zein-NPs or nanoemulsion: RPG-NE) and to carry out a pharmacokinetic study for these formulations. We prepared NPs using PLGA and Zein. In addition, a single NE formulation was developed using Tween 80 and Pluronic F68 as surfactants and Labrasol as co-surfactant. The droplet size values of the blank-NE and RPG-NE formulations were found to be less than 120 nm. The mean particle sizes of blank-Zein-PLGA-NPs and RPG-Zein-PLGA-NPs were less than 260 nm. The C and t values of RPG-Zein-PLGA-NPs and RPG-NE (523 ± 65 ng/mL and 770 ± 91 ng/mL; 1.41 ± 0.46 h and 1.61 ± 0.37 h, respectively) were meaningfully higher than those of free RPG (280 ± 33 ng/mL; 0.72 ± 0.28 h) (p < 0.05). The AUC values calculated for RPG-Zein-PLGA-NPs and RPG-NE were approximately 4.04 and 5.05 times higher than that calculated for free RPG. These nanosized drug delivery systems were useful in increasing the oral bioavailability of RPG. Moreover, the NE formulation was more effective than the NP formulation in improving the oral bioavailability of RPG (p < 0.05).
瑞格列奈(RPG)属于称为“那格列奈类”的药物类别,用于改善和维持 2 型糖尿病患者的血糖控制。由于其高通透性和低水溶性,RPG 属于 2 类药物(BCS)。它还经历肝首过代谢。由于这些缺点,RPG 的口服生物利用度低(约 56%)。我们在这项研究中的目的是制备两种不同的载有 RPG 的纳米药物载体系统(纳米粒:RPG-PLGA-Zein-NPs 或纳米乳:RPG-NE),并对这些制剂进行药代动力学研究。我们使用 PLGA 和 Zein 制备 NPs。此外,还开发了一种含有 Tween 80 和 Pluronic F68 作为表面活性剂和 Labrasol 作为助表面活性剂的单一 NE 制剂。空白-NE 和 RPG-NE 制剂的粒径值均小于 120nm。空白-Zein-PLGA-NPs 和 RPG-Zein-PLGA-NPs 的平均粒径均小于 260nm。RPG-Zein-PLGA-NPs 和 RPG-NE 的 C 和 t 值(523±65ng/mL 和 770±91ng/mL;1.41±0.46h 和 1.61±0.37h)显著高于游离 RPG(280±33ng/mL;0.72±0.28h)(p<0.05)。RPG-Zein-PLGA-NPs 和 RPG-NE 的 AUC 值分别约为游离 RPG 的 4.04 倍和 5.05 倍。这些纳米药物传递系统有助于提高 RPG 的口服生物利用度。此外,与 NP 制剂相比,NE 制剂在提高 RPG 的口服生物利用度方面更有效(p<0.05)。