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pH 调节剂和 HPMC 黏度级别的影响对尼古丁-镁铝硅酸盐复合物负载的颊腔基质片。

Influence of pH modifiers and HPMC viscosity grades on nicotine-magnesium aluminum silicate complex-loaded buccal matrix tablets.

机构信息

Faculty of Pharmaceutical Sciences, Khon Kaen University, Khon Kaen, 40002, Thailand.

出版信息

AAPS PharmSciTech. 2012 Jun;13(2):674-85. doi: 10.1208/s12249-012-9790-7. Epub 2012 May 3.

Abstract

Hydroxypropyl methylcellulose (HPMC) tablets containing nicotine-magnesium aluminum silicate (NCT-MAS) complex particles and pH modifiers, namely, sodium chloride, citric acid, and magnesium hydroxide, were prepared using the direct compression method. The effects of HPMC viscosity grades and pH modifiers on NCT release and permeation of the matrix tablets were examined. The results showed that the higher the viscosity grade of HPMC that was used in the tablets, the lower was the unidirectional NCT release rate found. The unidirectional NCT permeation was not affected by the viscosity grade of HPMC because the NCT diffusion through the mucosal membrane was the rate-limiting step of the permeation. Incorporation of magnesium hydroxide could retard NCT release, whereas the enhancement of unidirectional NCT release was found in the tablets containing citric acid. Citric acid could inhibit NCT permeation due to the formation of protonated NCT in the swollen tablets at an acidic pH. Conversely, the NCT permeation rate increased with the use of magnesium hydroxide as a result of the neutral NCT that formed at a basic microenvironmental pH. The swollen HPMC tablets, with or without pH modifiers, gave sufficient adhesion to the mucosal membrane. Furthermore, the addition of magnesium hydroxide to the matrix tablets was the major factor in controlling buccal delivery of NCT. This study suggests that the NCT-MAS complex-loaded HPMC tablets, which contained magnesium hydroxide, are potential buccal delivery systems of NCT.

摘要

采用直接压片法制备了含有尼古丁-镁铝硅酸盐(NCT-MAS)复合物颗粒和 pH 调节剂(即氯化钠、柠檬酸和氢氧化镁)的羟丙基甲基纤维素(HPMC)片剂。考察了 HPMC 粘度等级和 pH 调节剂对基质片 NCT 释放和渗透的影响。结果表明,片剂中 HPMC 的粘度等级越高,单向 NCT 释放率越低。HPMC 的粘度等级对单向 NCT 渗透没有影响,因为 NCT 通过黏膜的扩散是渗透的限速步骤。加入氢氧化镁可以延缓 NCT 的释放,而含有柠檬酸的片剂中发现单向 NCT 释放增强。柠檬酸可以抑制 NCT 的渗透,因为在酸性 pH 下,膨胀的片剂中形成质子化的 NCT。相反,由于在碱性微环境 pH 下形成中性 NCT,使用氢氧化镁会增加 NCT 的渗透速率。有或没有 pH 调节剂的膨胀 HPMC 片剂对黏膜具有足够的附着力。此外,将氢氧化镁添加到基质片中是控制 NCT 颊部递送的主要因素。本研究表明,含有氢氧化镁的 NCT-MAS 复合物负载 HPMC 片剂是 NCT 的潜在颊部递送系统。

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