Development of Corn Starch-Neusilin UFL2 Conjugate as Tablet Superdisintegrant: Formulation and Evaluation of Fast Disintegrating Tablets.

Journal of drug delivery Pub Date : 2014-01-01 Epub Date: 2014-09-23 DOI:10.1155/2014/827035
Prateek Juneja, Birender Kaur, Oluwatoyin A Odeku, Inderbir Singh
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引用次数: 17

Abstract

In the present study, corn Starch-Neusilin UFL2 conjugates were prepared by physical, chemical, and microwave methods with the aim of using the conjugates as tablet superdisintegrant. Various powder tests, namely, angle of repose, bulk density, tapped density, Hausner's ratio, Carr's index, swelling index, and powder porosity were conducted on the samples. The conjugates were characterized by ATR-FTIR, XRD, DSC, and SEM techniques. Heckel and Kawakita models were applied to carry out compression studies for the prepared conjugates. Fast disintegrating tablets of domperidone were prepared using corn starch and corn Starch-Neusilin UFL2 conjugates as tablet superdisintegrants in different concentrations. Conjugates were found to possess good powder flow and tabletting properties. Heckel analysis indicated that the conjugates prepared by microwave method showed the slowest onset of plastic deformation while Kawakita analysis indicated that the conjugates prepared by microwave method exhibited the highest amount of total plastic deformation. The study revealed that the corn Starch-Neusilin UFL2 conjugates possess improved powder flow properties and could be a promising superdisintegrant for preparing fast disintegrating tablet. Also, the results sugessted that the microwave method was found to be most effective for the preparation of corn Starch-Neusilin UFL2 conjugates.

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玉米淀粉- neusilin UFL2偶联片超崩解剂的研制:快速崩解片的配方及评价。
本文采用物理、化学、微波等方法制备了玉米淀粉- neusilin UFL2偶联物,目的是将其作为片剂超崩解剂。对试样进行休止角、容重、攻丝密度、豪斯纳比、卡尔指数、膨胀指数、粉末孔隙率等粉体测试。通过ATR-FTIR、XRD、DSC和SEM等技术对共轭物进行了表征。采用Heckel和Kawakita模型对制备的共轭物进行压缩研究。以不同浓度的玉米淀粉和玉米淀粉- neusilin UFL2偶联物为片剂的超崩解剂,制备了多潘立酮快速崩解片。偶联物具有良好的粉末流动和压片性能。Heckel分析表明,微波法制备的共轭物的塑性变形起始最慢,Kawakita分析表明,微波法制备的共轭物的总塑性变形量最大。研究表明,玉米淀粉- neusilin UFL2偶联物具有较好的粉末流动性能,是一种很有前途的制备快速崩解片的超崩解剂。结果表明,微波法制备玉米淀粉- neusilin UFL2偶联物最为有效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Journal of drug delivery
Journal of drug delivery PHARMACOLOGY & PHARMACY-
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