首页> 外文期刊>International Journal of Pharmaceutics >Preparation and characterization of directly compactible layer-by-layer nanocoated cellulose.
【24h】

Preparation and characterization of directly compactible layer-by-layer nanocoated cellulose.

机译:可直接压实的逐层纳米涂层纤维素的制备和表征。

获取原文
获取原文并翻译 | 示例
       

摘要

Microcrystalline cellulose is a commonly used direct compression tablet diluent and binder. It is derived from purified alpha-cellulose in an environmentally unfriendly process that involves mineral acid catalysed hydrolysis. In this study Kraft softwood fibers was nanocoated using a layer-by-layer self-assembling process. Powder flow and compactibility results showed that the application of nano-thin polymer layers on the fibers turned non-flowing, non-compacting cellulose into powders that can be used in the direct compression of tablets. The powder flow properties and tableting indices of compacts compressed from these nanocoated microfibers were similar or better than that of directly compactible microcrystalline cellulose powders. Cellulose microfibers coated with four PSS/PVP bilayers had the best compaction properties while still producing tablets that were able to absorb water and disintegrate and did not retard the dissolution of a model drug acetaminophen. The advantages of nanocoating rather than traditional pharmaceutical coating are that it add less than 1% to the weight of the fibers and allows control of the molecular properties of the surface and the thickness of the coat to within a few nanometers. This process is potentially friendlier to the environment because of the type and quantity of materials used. Also, it does not involve acid-catalyzed hydrolysis and neutralization of depolymerized cellulose.
机译:微晶纤维素是常用的直接压片稀释剂和粘合剂。它是在涉及矿物酸催化水解的对环境不利的过程中从纯化的α-纤维素衍生而来的。在这项研究中,牛皮纸软木纤维使用逐层自组装工艺进行了纳米涂层。粉末流动性和致密性结果表明,纳米薄聚合物层在纤维上的应用使不流动,不致密的纤维素变成粉末,可直接压片。由这些纳米涂层微纤维压制的压块的粉末流动性和压片指数与可直接压实的微晶纤维素粉末相似或更好。涂有四个PSS / PVP双层膜的纤维素微纤维具有最佳的压实性能,同时仍能生产能够吸收水和崩解且不会阻碍模型药物对乙酰氨基酚溶解的片剂。纳米涂层而不是传统的药物涂层的优点是,它增加了纤维重量的不到1%,并允许将表面的分子特性和涂层厚度控制在几纳米之内。由于所用材料的类型和数量,该过程可能对环境更友好。而且,它不涉及酸催化的水解和解聚的纤维素的中和。

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