23 Factorial Design and Optimization of Effervescent Floating Matrix Tablet of Neratinib

IF 2.7 4区 医学 Q2 PHARMACOLOGY & PHARMACY
Mohamed Rahamathulla, Umme Hani, Ali Alqahtani, Gangadharappa. H.V, Yasmin Begum M, Mohammed Jafar, Riyaz Ali M. Osmani, Kumarappan Chidambaram, Afrasim Moin, S. J. Shankar
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引用次数: 6

Abstract

Purpose

The main objective of the research was to formulate an effervescent floating matrix tablet (EFMT) of a potential anticancer drug neratinib employed in breast cancer therapy. The drug shows poor aqueous solubility at higher pH leading to reduce therapeutic efficacy, thereby resulting in poor bioavailability. Hence, an EFMT is designed to extend the gastric residence time (GRT) of drugs, which can remain several hours in the gastric region and enhance bioavailability. Further 23 factorial design employed.

Methods

The EFMT of neratinib are prepared by direct compression using hydroxyl propyl methylcellulose, Carbopol 940, microcrystalline cellulose, sodium bicarbonate, talc, and lactose. Polymer concentrations were selected as independent variables, whereas hardness, percentage swelling, floating, and percentage drug release were the dependent variables. Pre- and post-compression measurements, swelling studies, in vitro buoyancy, FTIR, scanning electron microscopy (SEM), in vitro release, kinetic, and mechanism of drug release studies have been characterized for preparing floating matrix tablets

Results

The results showed that pre-and post-compression parameters are within the limit of USP. The buoyancy lag time and total buoyancy time are less than 2 min and > 12 h, respectively, with good swelling characteristics. Fourier transform infrared (FTIR) spectrum showed that no interaction was found between drug and polymers. The optimized formulation (F9) showed 100% drug release at 8 h, which shows a Fickian diffusion.

Conclusion

The developed novel neratinib floating matrix tablet could enhance the solubility and residence time of neratinib at upper GIT because of the combined effect of the polymers.

Abstract Image

23纳拉替尼泡腾漂浮基质片的析因设计与优化
目的研制一种具有抗癌潜力的药物纳拉替尼的泡腾漂浮基质片(EFMT),用于乳腺癌治疗。该药物在较高的pH下水溶性较差,导致治疗效果降低,从而导致生物利用度差。因此,EFMT的设计是为了延长药物的胃停留时间(GRT),它可以在胃区停留数小时,提高生物利用度。进一步采用23个因子设计。方法采用羟丙基甲基纤维素、卡波波尔940、微晶纤维素、碳酸氢钠、滑石粉和乳糖直接压缩法制备奈拉替尼的EFMT。以聚合物浓度为自变量,硬度、溶胀率、漂浮率、释药率为因变量。对制备的漂浮基质片进行了压缩前后的测量、溶胀研究、体外浮力、FTIR、扫描电镜(SEM)、体外释放、动力学和释药机理研究。结果表明,压缩前后的各项参数均在USP规定的范围内。浮力滞后时间小于2 min,总浮力时间小于12 h,具有良好的浮力特性。傅里叶变换红外光谱(FTIR)表明,药物与聚合物之间没有相互作用。优化后的配方(F9) 8 h释药100%,为菲克式扩散。结论新型奈拉替尼漂浮基质片在聚合物的共同作用下,可提高奈拉替尼在胃肠道上段的溶解度和停留时间。
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来源期刊
Journal of Pharmaceutical Innovation
Journal of Pharmaceutical Innovation PHARMACOLOGY & PHARMACY-
CiteScore
3.70
自引率
3.80%
发文量
90
审稿时长
>12 weeks
期刊介绍: The Journal of Pharmaceutical Innovation (JPI), is an international, multidisciplinary peer-reviewed scientific journal dedicated to publishing high quality papers emphasizing innovative research and applied technologies within the pharmaceutical and biotechnology industries. JPI''s goal is to be the premier communication vehicle for the critical body of knowledge that is needed for scientific evolution and technical innovation, from R&D to market. Topics will fall under the following categories: Materials science, Product design, Process design, optimization, automation and control, Facilities; Information management, Regulatory policy and strategy, Supply chain developments , Education and professional development, Journal of Pharmaceutical Innovation publishes four issues a year.
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