Formulation and Evaluation of Teneligliptin Nanosuspension

Q3 Pharmacology, Toxicology and Pharmaceutics
Sreekala. Mg, C. Reichal, M. S
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引用次数: 0

Abstract

In this present study, the drug Teneligliptin is selected for the management of Type-2 Diabetes mellitus. The drug-excipient compatibility study results showed that there is no chemical change occur between the drug and the excipients and there was no functional group change observed. Teneligliptin is poorly water-soluble drug and it was fabricated as nanosuspension of Nine formulations by using nano precipitation technique. In this method, nano size particle size of Teneligliptin was obtained by using different type of various proportions of stabilizers along with other ingredient at different stirring speed. For the prepared formulation (F1-F9) the particle size, polydispersibility index and zeta potential were done. Among nine formulations, formulation 8(F8) results revealed that the values are desirable and stable. The total drug content of all the formulation ranges from 81% to 99%, The average particle size of F1 to F9 batches was found to be in the range of 0.211 nm to 0.486 nm The scanning electron microspore study stated that the nano size particles were spherical in shape. Among all the formulations (F8) was optimized which showed maximum highest percentage of drug release at 24 hours. The cumulative percentage of drug release of formulation 8 (F8) increase with the optimum concentration of stabilizers and tween 80. The release rate of optimized formulation 8(F8) was fitted with various release kinetic studies and the selected formulation followed zero order kinetics. The results of stability study was confirmed that the prepared Teneligliptin nanosuspension is stable during the stability study. Thus, it can be concluded that the nanosuspension method was commercially feasible and cost effective.
替尼列汀纳米悬浮剂的制备与评估
本研究选择替尼列汀作为治疗 2 型糖尿病的药物。药物与辅料的相容性研究结果表明,药物与辅料之间没有发生化学变化,也没有观察到官能团的变化。替格列汀是一种水溶性较差的药物,因此采用纳米沉淀技术将其制成了九种制剂的纳米悬浮液。在这种方法中,通过使用不同类型、不同比例的稳定剂和其他成分,并以不同的搅拌速度,获得了纳米级粒度的替尼列汀。对制备的制剂(F1-F9)进行了粒度、多分散指数和 Zeta 电位测定。在九种配方中,配方 8(F8)的结果显示其数值理想且稳定。F1 至 F9 批次的平均粒径在 0.211 纳米至 0.486 纳米之间。在所有配方中,经过优化的配方(F8)在 24 小时内的药物释放率最高。配方 8(F8)的累积药物释放百分比随着稳定剂和吐温 80 的最佳浓度而增加。对优化配方 8(F8)的释放速率进行了各种释放动力学研究,结果表明所选配方遵循零阶动力学。稳定性研究结果证实,所制备的替尼列汀纳米悬浮剂在稳定性研究期间是稳定的。因此,可以得出结论,该纳米悬浮剂方法具有商业可行性和成本效益。
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来源期刊
Research Journal of Pharmacy and Technology
Research Journal of Pharmacy and Technology Pharmacology, Toxicology and Pharmaceutics-Pharmacology, Toxicology and Pharmaceutics (miscellaneous)
CiteScore
1.40
自引率
0.00%
发文量
0
期刊介绍: Research Journal of Pharmacy and Technology (RJPT) is an international, peer-reviewed, multidisciplinary journal, devoted to pharmaceutical sciences. The aim of RJPT is to increase the impact of pharmaceutical research both in academia and industry, with strong emphasis on quality and originality. RJPT publishes Original Research Articles, Short Communications, Review Articles in all areas of pharmaceutical sciences from the discovery of a drug up to clinical evaluation. Topics covered are: Pharmaceutics and Pharmacokinetics; Pharmaceutical chemistry including medicinal and analytical chemistry; Pharmacognosy including herbal products standardization and Phytochemistry; Pharmacology: Allied sciences including drug regulatory affairs, Pharmaceutical Marketing, Pharmaceutical Microbiology, Pharmaceutical biochemistry, Pharmaceutical Education and Hospital Pharmacy.
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