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Development and characterization of seed gums from Tamarindus indica and Cassia fistula as disintegrating agent for fast disintegrating Thai cordial tablet

机译:罗望子和决明子种子胶的研制与表征作为泰国崩解片的崩解剂

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摘要

Crude seed gum and their carboxymethyl derivatives from and seeds were developed and characterized to apply as the pharmaceutical disintegrant in fast disintegrating Thai cordial tablet. The chemical structure of crude gum was chemically modified via carboxymethylation. Degree of substitution (DS) of carboxymethylated gums was determined. Carboxymethylated gums with minimum and maximum DS values were chosen for further application. IR absorption spectra of gum samples were observed to verify their chemical structure changes. In physical properties, the intrinsic viscosity and swelling property of all gum samples were evaluated. The results showed that carboxymethylated gums had higher intrinsic viscosity than those of crude gum. Moreover, they could swell and be soluble in cold water better than those of crude gums. In conclusion, the modified gums from both plants could provide higher hardness and be better used than that crude gums for fast disintegrating Thai cordial tablet. However, this is a preliminary assessment to expressing pharmaceutical application possibility of these gums as disintegrants, diluents and drug release controlling agents.
机译:开发了粗制的种子胶及其来自种子和种子的羧甲基衍生物,并将其表征为在快速崩解泰式亲和片中用作药物崩解剂。粗胶的化学结构通过羧甲基化进行了化学修饰。确定羧甲基化胶的取代度(DS)。选择具有最小和最大DS值的羧甲基化胶用于进一步的应用。观察口香糖样品的红外吸收光谱以验证其化学结构变化。在物理性质上,评估了所有胶基糖样品的特性粘度和溶胀性质。结果表明,羧甲基化胶具有比粗胶更高的特性粘度。而且,它们比普通胶更能溶胀并更好地溶于冷水中。总之,两种植物胶的改性口香糖可提供比硬质胶更高的硬度,并更好地用于快速崩解泰式亲和片。但是,这只是初步评估,以表明这些口香糖作为崩解剂,稀释剂和药物释放控制剂的药物应用可能性。

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