...
首页> 外文期刊>Journal of Advances in Medical and Pharmaceutical Sciences >Evaluation of the Suspending Properties of a Novel Hydrophilic Biopolymer Derived from the Tubers of Ipomoea batatas on Sulphamethoxazole Suspension
【24h】

Evaluation of the Suspending Properties of a Novel Hydrophilic Biopolymer Derived from the Tubers of Ipomoea batatas on Sulphamethoxazole Suspension

机译:新型番薯块茎亲水生物聚合物在磺胺甲恶唑悬浮液中的悬浮性能评价

获取原文

摘要

Aims: This work examines a novel hydrophilic biopolymer, I-polygel derived from Ipomoea batatas tubers (Convolvulaceae) as a suspending agent in sulphamethoxazole suspension using acacia and tragacanth respectively as comparing standards. Methods: Aqueous suspensions of sulphamethoxazole containing 1, 2, 4 or 5% w/v of I-polygel , acacia or tragacanth respectively were prepared and evaluated using sedimentation volume, rheology, viscosity, free-thaw cycle and redispersibility tests. Results: Sedimentation volume was proportional to the concentrations of suspending agents across the preparations with the suspensions containing I-polygel exhibiting more consistency: I-polygel > acacia > tragacanth > control ( P = 0.000). The flow rates were inversely proportional to the concentrations of the respective suspending agents whereas the reverse was the case with viscosity. There was no impediment to the flow of the suspensions at the concentrations of the suspending agents employed. The suspensions containing I-polygel indicated higher viscosities in all the concentrations : I-polygel > acacia > tragacanth > control ( P = 0.000). There was no significant particle size increase before and after the freeze-thaw cycle test, showing that sulphamethoxazole may be stable in the presence I-polygel , acacia and tragacanth. All the preparations containing I-polygel was redispersed with the minimal shear stress : I-polygel < acacia < tragacanth < control ( P = 0.000). Conclusion: The application of a newly developed hydrophilic polymer, I-polygel as a suspending agent in comparison to acacia and tragacanth in the formulation of sulphamethoxazole suspensions yielded a more consistent and stable suspension with statistically proven higher sedimentation volume, better rheological properties, higher viscosities and ease of redispersion of suspension with minimal shear stress.
机译:目的:这项工作研究了一种新型的亲水性生物聚合物,一种源自番薯(Ipomoea batatas tuber(Convolvulaceae))的I-凝胶,作为磺胺甲恶唑悬浮液中的悬浮剂,分别使用阿拉伯胶和黄aga胶作为比较标准。方法:制备分别含有1、2、4或5%w / v I-polygel,阿拉伯胶或黄aga胶的磺胺甲基异恶唑水悬浮液,并通过沉降量,流变学,粘度,自由融化循环和可再分散性测试进行评估。结果:沉积物体积与整个制剂中悬浮剂的浓度成正比,其中含I-凝胶的悬浮液表现出更高的稠度:I-凝胶>金合欢>黄芪胶>对照(P = 0.000)。流速与各个悬浮剂的浓度成反比,而粘度则相反。在所用悬浮剂的浓度下,悬浮液的流动没有障碍。含有I-凝胶的悬浮液在所有浓度下均具有较高的粘度:I-凝胶>阿拉伯胶>黄tr胶>对照(P = 0.000)。冻融循环试验前后,粒径没有明显增加,表明磺胺甲恶唑在I-聚凝胶,阿拉伯胶和黄aga胶存在下可能是稳定的。用最小的剪切应力将所有含有I-凝胶的制剂重新分散:I-凝胶<金合欢<黄aga胶<对照(P = 0.000)。结论:与阿拉伯胶和黄aga胶相比,新开发的亲水性聚合物I-polygel作为悬浮剂在磺胺甲恶唑悬浮液配方中的应用产生了更一致和稳定的悬浮液,经统计证明具有更高的沉降体积,更好的流变性能,更高的粘度悬浮液的再分散容易,剪切应力最小。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号