DEVELOPMENT, CHARACTERIZATION AND PHARMACOKINETIC EVALUATION OF OPTIMIZED VILDAGLIPTIN SUSTAINED RELEASE MATRIX TABLET USING BOX-BEHNKEN DESIGN

Q2 Pharmacology, Toxicology and Pharmaceutics International Journal of Applied Pharmaceutics Pub Date : 2024-01-07 DOI:10.22159/ijap.2024v16i1.48052
Sanjay Kumar Gupta, S. Patra
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Abstract

Objective: The principal objective of this research was to develop and optimize cost-effective sustained-release Vildagliptin (VLN) tablets using the wet granulation method. Methods: The tablets were prepared by the non-aqueous wet granulation method. A Box-Behnken design was used to study the effect of the independent variables, i.e., HPMC K100 M, Eudragit RSPO and PVP K30, on the dependent variables swelling index, in vitro drug release at 8 and 12 h. The drug's physiochemical properties were investigated using ultraviolet (UV), Fourier transform infrared (FTIR) and differential scanning calorimetry (DSC). The hardness, thickness, weight variation, content uniformity, swelling index, and in vitro drug release study of the formulated tablets were all evaluated. The optimized formulation Opt-VLD-SR was evaluated for pharmacokinetic parameters like AUC, Cmax, tmax and MRT. Results: The FTIR and DSC studies confirmed that no interaction occurred between the drug, polymers and excipients. The crystalline nature of VLN remained unchanged in the optimised formulation tablet, according to DSC studies. With the optimal concentration of both polymers, formulation Opt-VLN delayed drug release for up to 12 h. The formulated Optimized Sustained-release tablets (Opt-VLD-SR) showed significantly lower Cmax±3.01ng/ml) than conventional IR tablets (256.17±8.02ng/ml). In the pharmacokinetic study, the MRT for Optimized-VLD-SR is (7.40h) showed a better result than the Vildagliptin IR marketed product (3.70 h.), which leads to higher bioavailability of Vildagliptin.  Conclusion: Sustained release tablets of VLN with a combination of diffusion and erosion-controlled drug release mechanisms have been successfully developed.
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采用盒-贝肯设计法开发、表征和评价最佳维达列汀缓释基质片剂的药代动力学特性
研究目的本研究的主要目的是采用湿法制粒法开发和优化具有成本效益的维达列汀(VLN)缓释片:方法:采用非水湿法制粒法制备片剂。采用 Box-Behnken 设计研究了自变量(即 HPMC K100 M、Eudragit RSPO 和 PVP K30)对因变量溶胀指数、8 小时和 12 小时体外药物释放的影响,并使用紫外线(UV)、傅立叶变换红外(FTIR)和差示扫描量热法(DSC)研究了药物的理化性质。对配制片剂的硬度、厚度、重量变化、含量均匀性、膨胀指数和体外药物释放研究进行了评估。对优化制剂 Opt-VLD-SR 的药代动力学参数进行了评估,如 AUC、Cmax、tmax 和 MRT:结果:傅立叶变换红外光谱(FTIR)和电导率扫描光谱(DSC)研究证实,药物、聚合物和辅料之间没有发生相互作用。根据 DSC 研究,VLN 在优化配方片剂中的结晶性质保持不变。优化缓释片(Opt-VLD-SR)的 Cmax±3.01ng/ml 明显低于传统红外片(256.17±8.02ng/ml)。在药代动力学研究中,Optimized-VLD-SR 的 MRT(7.40 小时)优于维达列汀 IR 上市产品(3.70 小时),从而提高了维达列汀的生物利用度。结论结合了扩散和侵蚀控制药物释放机制的维达列汀缓释片已研制成功。
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来源期刊
International Journal of Applied Pharmaceutics
International Journal of Applied Pharmaceutics Pharmacology, Toxicology and Pharmaceutics-Pharmacology, Toxicology and Pharmaceutics (miscellaneous)
CiteScore
1.40
自引率
0.00%
发文量
219
期刊介绍: International Journal of Applied Pharmaceutics (Int J App Pharm) is a peer-reviewed, bimonthly (onward March 2017) open access journal devoted to the excellence and research in the pure pharmaceutics. This Journal publishes original research work that contributes significantly to further the scientific knowledge in conventional dosage forms, formulation development and characterization, controlled and novel drug delivery, biopharmaceutics, pharmacokinetics, molecular drug design, polymer-based drug delivery, nanotechnology, nanocarrier based drug delivery, novel routes and modes of delivery; responsive delivery systems, prodrug design, development and characterization of the targeted drug delivery systems, ligand carrier interactions etc. However, the other areas which are related to the pharmaceutics are also entertained includes physical pharmacy and API (active pharmaceutical ingredients) analysis. The Journal publishes original research work either as a Original Article or as a Short Communication. Review Articles on a current topic in the said fields are also considered for publication in the Journal.
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