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Miconazole Nitrate Oral Disintegrating Tablets: In Vivo Performance and Stability Study

机译:硝酸咪康唑口服崩解片:体内性能和稳定性研究

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摘要

The interest in and need for formulating miconazole nitrate (MN), a broad-spectrum antifungal, as an oral disintegrating tablet for treatment of some forms of candidiasis have increased. Formulation of MN in this dosage form will be more advantageous, producing dual effect: local in the buccal cavity and systemic with rapid absorption. Four formulations were prepared utilizing the foam granulation technique. The prepared tablets were characterized by measuring the weight uniformity, thickness, tensile strength, friability, and drug content. In addition, tablet disintegration time, in vitro dissolution, and in vivo disintegration time were also evaluated. Stability testing for the prepared tablets under stress and accelerated conditions in two different packs were investigated. Each pack was incubated at two different elevated temperature and relative humidity (RH), namely 40 ± 2°C/75 ± 5% RH and 50 ± 2°C/75 ± 5% RH. The purpose of the study is to monitor any degradation reactions which will help to predict the shelf life of the product under the defined storage conditions. Finally, in vivo study was performed on the most stable formula to determine its pharmacokinetic parameters. The results revealed that all the prepared tablets showed acceptable tablet characteristics and were stable under the tested conditions. The most stable formula was that containing magnesium stearate as lubricant, hydrophobic Aerosil R972 as glidant, low urea content, mannitol/microcrystalline cellulose ratio 2:1, and 9% Plasdone XL100 as superdisintegrant. The in vivo results revealed that the tested formula showed rapid absorption compared to the physical blend (tmax were 1 and 4 h, respectively), while the extent of absorption was almost the same.
机译:作为治疗某些形式的念珠菌病的口腔崩解片,人们对配制广谱抗真菌药硝酸咪康唑(MN)的兴趣和需求都增加了。 MN以这种剂型配制将更具优势,产生双重作用:局部存在于颊腔内,全身吸收迅速。利用泡沫造粒技术制备了四种制剂。通过测量重量均匀性,厚度,拉伸强度,脆性和药物含量来表征所制备的片剂。此外,还评估了片剂的崩解时间,体外溶出度和体内崩解时间。研究了两种不同包装在压力和加速条件下制备的片剂的稳定性测试。将每个包装在两种不同的升高的高温和相对湿度(RH)下孵育,即40±±2°C / 75±±5%RH和50±±2℃/ 75±±5%RH。该研究的目的是监视任何降解反应,这将有助于预测在规定的存储条件下产品的货架期。最后,对最稳定的配方进行了体内研究,以确定其药代动力学参数。结果表明,所有制备的片剂均显示出可接受的片剂特性,并且在测试条件下稳定。最稳定的配方是含有硬脂酸镁作为润滑剂,疏水性Aerosil R972作为助流剂,低尿素含量,甘露醇/微晶纤维素比为2:1,以及9%的Plasdone XL100作为超级崩解剂。体内结果显示,与物理混合物相比,测试配方显示出快速吸收(tmax分别为1和4小时),而吸收程度几乎相同。

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