首页> 外文期刊>Saudi Pharmaceutical Journal >The pharmaceutical applications of a biopolymer isolated from Trigonella foenum-graecum seeds: Focus on the freeze-dried matrix forming capacity
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The pharmaceutical applications of a biopolymer isolated from Trigonella foenum-graecum seeds: Focus on the freeze-dried matrix forming capacity

机译:分离自胡芦巴种子的生物聚合物的药物应用:着眼于冻干基质的形成能力

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摘要

The aim of the present study was to evaluate the funtion of fenugreek seed mucilage (FSM) as potential matrix forming agent for orodispersible pharmaceutical lyophilisates. The FSM was isolated and characterized. FSM colloidal dispersions were prepared and the rheological evaluation was performed. Oral lyophilisates (OLs) with different FSM concentrations, containing meloxicam as model drug were prepared by freeze drying method. The OLs were characterized and compared to gelatin containing tablets, prepared under the same conditions.The FSM dispersions revealed shear thinning flow type. Based on colloidal dispersions' rheological properties, five FSM concentrations were taken forward to the lyophilization step. Completely dry and elegant tablets were obtained. Texture analysis indicated highly porous structures, confirmed by SEM analysis, which explain the fast disintegration properties. All the prepared tablets disintegrated in less than 47 s. The disintegration process was prolonged by the increase in FSM content, due to the high viscosity the polymer creates in aqueous media. FSM tablets presented longer disintegration times, as compared to gelatin tablets, but also higher crushing strength. Considering the fast disintegration and the high crushing strength, FSM is a good candidate as matrix forming agent for fast disintegrating dosage forms or other freeze-dried preparations.
机译:本研究的目的是评估胡芦巴种子黏液(FSM)作为可口分散的药物冻干物的潜在基质形成剂的功能。分离并鉴定了FSM。制备FSM胶体分散体并进行流变评价。采用冷冻干燥法制备了含美洛昔康为模型药物的不同FSM浓度的冻干剂。对OLs进行了表征,并与在相同条件下制备的含明胶的片剂进行了比较.FSM分散液显示出剪切稀化流动类型。根据胶体分散体的流变特性,将五个FSM浓度用于冻干步骤。获得完全干燥和优雅的片剂。织构分析表明高度多孔的结构,通过SEM分析证实,其解释了快速崩解性质。所有制备的片剂在不到47 s内崩解。由于聚合物在水性介质中产生的高粘度,FSM含量的增加延长了崩解过程。与明胶片剂相比,FSM片剂崩解时间更长,但抗碎强度更高。考虑到快速崩解和高抗碎强度,FSM是快速崩解剂型或其他冻干制剂的基质形成剂的良好候选者。

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