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车前子壳多糖的分离、表征及作为超级崩解剂的研究。

Isolation, characterization and investigation of Plantago ovata husk polysaccharide as superdisintegrant.

机构信息

Assistant Professor and Head of Department (Quality Assurance), Dr. L. H. Hiranandani College of Pharmacy, Ulhasnagar 421003, Maharashtra, India.

Research Scholar, Department of Quality Assurance, Dr. L. H. Hiranandani College of Pharmacy, Ulhasnagar 421003, Maharashtra, India.

出版信息

Int J Biol Macromol. 2014 Aug;69:52-8. doi: 10.1016/j.ijbiomac.2014.05.019. Epub 2014 May 19.

Abstract

Psyllium husk (Plantago ovata, Family: Plantaginaceae) contains a high proportion of hemicellulose, composed of a xylan backbone linked with arabinose, rhamnose, and galacturonic acid units (arabinoxylans). Polysaccharide was isolated from Psyllium husk using solvent precipitation method. The isolated polysaccharide was evaluated for various physicochemical parameters. The rheological behavior of polysaccharide (1% w/v in water) was studied using Brookfield viscometer. Polysaccharide derived from the husk of P. ovata was investigated as superdisintegrant in the fast dissolving tablets. Valsartan, an antihypertensive drug, was selected as a model drug. The tablets of Valsartan were prepared separately using different concentrations (1, 2.5, 5, 7.5% w/w) of isolated Plantago ovata (P. ovata) husk polysaccharide (Natural) and crospovidone as a synthetic superdisintegrant by direct compression method. The prepared tablets were evaluated for various pre-compression and post-compression parameters. The drug excipient interactions were characterized by FTIR studies. The formulation F4 containing7.5% polysaccharide showed rapid wetting time and disintegration time as compared to formulation prepared using synthetic superdisintegrant at the same concentration level. Hence batch F4 was considered as optimized formulation. The stability studies were performed on formulation F4. The disintegration time and in vitro drug release of the optimized formulation was compared with the marketed formulation (Conventional tablets).

摘要

洋车前子壳(车前科 Plantaginaceae)含有大量半纤维素,由木聚糖主链与阿拉伯糖、鼠李糖和半乳糖酸单元(阿拉伯木聚糖)相连组成。采用溶剂沉淀法从洋车前子壳中分离多糖。对分离得到的多糖进行了各种物理化学参数的评价。使用 Brookfield 粘度计研究了多糖(在水中 1%w/v)的流变行为。研究了洋车前子壳多糖(天然)作为超崩解剂在速溶片中的应用。缬沙坦是一种降压药,被选为模型药物。采用直接压片法,分别用不同浓度(1、2.5、5、7.5%w/w)的分离洋车前子(Plantago ovata)壳多糖(天然)和交联聚维酮(合成超崩解剂)作为不同浓度的处方,制备了缬沙坦片。对制备的片剂进行了各种预压和后压参数的评价。通过傅里叶变换红外光谱(FTIR)研究了药物赋形剂的相互作用。与相同浓度的合成超崩解剂相比,含有 7.5%多糖的配方 F4 表现出更快的润湿时间和崩解时间。因此,批 F4 被认为是优化的配方。对配方 F4 进行了稳定性研究。与市售制剂(常规片剂)相比,优化配方的崩解时间和体外药物释放。

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