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一种药用阳离子交换树脂对以羟丙甲纤维素K4M或乙基纤维素7cP为基质形成剂的盐酸苯海拉明控释基质性质的影响。

Effect of a pharmaceutical cationic exchange resin on the properties of controlled release diphenhydramine hydrochloride matrices using Methocel K4M or Ethocel 7cP as matrix formers.

作者信息

Akkaramongkolporn Prasert, Ngawhirunpat Tanasait, Nunthanid Jurairat, Opanasopit Praneet

机构信息

Department of Pharmaceutical Technology, Faculty of Pharmacy, Silpakorn University, Nakhon Pathom 73000, Thailand.

出版信息

AAPS PharmSciTech. 2008;9(3):899-908. doi: 10.1208/s12249-008-9129-6. Epub 2008 Jul 31.

Abstract

This work was aimed at evaluating the effect of a pharmaceutical cationic exchange resin (Amberlite IRP-69) on the properties of controlled release matrices using Methocel K4M (HPMC) or Ethocel 7cP (EC) as matrix formers. Diphenhydramine hydrochloride (DPH), which was cationic and water soluble, was chosen as a model drug. HPMC- and EC-based matrices with varying amounts (0-40%w/w) of resin incorporation were prepared by a direct compression. Matrix properties including diameter, thickness, hardness, friability, surface morphology and drug release were evaluated. The obtained matrices were comparable in diameter and thickness regardless of the amount of resin incorporation. Increasing the incorporated resin decreased the hardness of HPMC- and EC-based matrices, correlating with the degree of rupturing on the matrix surfaces. The friability of HPMC-based matrices increased with increasing the incorporated resin, corresponding to their decreased hardness. In contrast, the EC-based matrices showed no significant change in friability in spite of decreasing hardness. The incorporated resin differently influenced DPH release from HPMC- and EC-based matrices in deionized water. The resin further retarded DPH release from HPMC-based matrices due to the gelling property of HPMC and the ion exchange property of the resin. In contrast, the release from EC-based matrices initially increased because of the disintegrating property of the resin, but thereafter declined due to the complex formation between released drug and dispersed resin via the ion exchange process. The release in ionic solutions was also described. In conclusion, the incorporated resin could alter the release and physical properties of matrices.

摘要

本研究旨在评估药用阳离子交换树脂(Amberlite IRP - 69)对以羟丙甲纤维素(Methocel K4M,HPMC)或乙基纤维素(Ethocel 7cP,EC)为基质形成剂的控释基质性质的影响。选择具有阳离子性且水溶性的盐酸苯海拉明(DPH)作为模型药物。通过直接压片法制备了含有不同量(0 - 40%w/w)树脂的基于HPMC和EC的基质。对基质的直径、厚度、硬度、脆碎度、表面形态和药物释放等性质进行了评估。无论树脂加入量如何,所获得的基质在直径和厚度方面具有可比性。增加树脂加入量会降低基于HPMC和EC的基质的硬度,这与基质表面的破裂程度相关。基于HPMC的基质的脆碎度随树脂加入量的增加而增加,与其硬度降低相对应。相比之下,基于EC的基质尽管硬度降低,但脆碎度没有显著变化。加入的树脂对去离子水中基于HPMC和EC的基质中DPH的释放有不同影响。由于HPMC的胶凝性质和树脂的离子交换性质,树脂进一步延缓了基于HPMC的基质中DPH的释放。相比之下,基于EC的基质的释放最初因树脂的崩解性质而增加,但随后由于释放的药物与分散的树脂通过离子交换过程形成复合物而下降。还描述了在离子溶液中的释放情况。总之,加入的树脂可改变基质的释放和物理性质。

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