首页> 外文期刊>PDA journal of pharmaceutical science and technology >Novel buccal adhesive tablets using Aloe vera L and Sinapis alba--a promising option for improved bioavailability of diltiazem hydrochloride.
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Novel buccal adhesive tablets using Aloe vera L and Sinapis alba--a promising option for improved bioavailability of diltiazem hydrochloride.

机译:使用芦荟和西那皮的新型颊黏附片-一种改善盐酸地尔硫卓生物利用度的有前途的选择。

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摘要

In the current investigation, white mustard mucilage from whole seeds of Sinapis alba was evaluated for its physical properties and compared with the other mucoadhesive polymers such as hydroxy propyl methylcellulose 5Cps and Carbopol 934P. Further, methanol precipitable solids from whole leaves of Aloe Vera L were used as permeation enhancer. To achieve improved bioavailability of diltiazem, novel buccal adhesive tablets (NBATs) in cup and core fashion designed to achieve unidirectional release towards mucosa were prepared in a three-stage process using specially fabricated punches. The adhesive cups were studied for its shear, tensile, and peel strengths by specially designed apparatus using excised ruminant and porcine buccal mucosa as model substrates. Ex vivo permeation studies in a Franz diffusion cell were conducted through porcine buccal mucosa. Fourier transform infrared spectroscopy studies and differential scanning calorimetry thermographs showed no remarkable interactions. Histopathologicalstudies showed no remarkable damage of buccal mucosa by the NBATs. In vivo studies were conducted on anaesthetized male New Zealand albino rabbits, estimated by reversed-phase high-performance liquid chromatography, and the pharmacokinetics were compared with the oral and intravenous bolus injection. NBATs exhibited a Cmax 74.6 ng/mL, Tmax 3.5 h, t(1/2) 4.36 h. The NBATs prevented salivary scavenging effect and exhibited 82.1% bioavailability.
机译:在当前的调查中,对白芥子全种子的白芥末粘液进行了物理性能评估,并将其与其他粘膜粘附性聚合物(例如羟丙基甲基纤维素5Cps和Carbopol 934P)进行了比较。此外,将芦荟全叶中甲醇可沉淀的固体用作渗透促进剂。为了提高地尔硫卓的生物利用度,使用特制的打孔器在三个阶段的过程中制备了新型的杯状和核心型颊黏性片剂(NBAT),旨在实现向粘膜的单向释放。通过专门设计的设备,使用切下的反刍动物和猪颊粘膜作为模型基质,研究了胶杯的剪切,拉伸和剥离强度。通过猪颊粘膜在Franz扩散池中进行离体渗透研究。傅里叶变换红外光谱研究和差示扫描量热法热像仪显示没有明显的相互作用。组织病理学研究表明,NBAT对颊粘膜没有明显的损害。通过反相高效液相色谱法对麻醉的雄性新西兰白化兔子进行了体内研究,并比较了口服和静脉推注的药代动力学。 NBATs的Cmax为74.6 ng / mL,Tmax为3.5 h,t(1/2)为4.36 h。 NBATs防止唾液清除作用,并具有82.1%的生物利用度。

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