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阴离子交换树脂与双氯芬酸钠的交换反应特性

吴静, 杨丽, 刘宏飞, 王超, 曹国良, 潘卫三*   

  1. 沈阳药科大学, 辽宁 沈阳 110016
  • 收稿日期:2006-07-28 修回日期:2006-11-10 出版日期:2006-12-15 发布日期:2006-12-15
  • 通讯作者: 潘卫三*

Exchange Reaction Characteristics of Anion Exchange Resin for Diclofenac Sodium

WU Jing, YANG Li, LIU Hong-fei, WANG Chao, CAO Guo-liang, PAN Wei-san*   

  1. Department of Pharmacy, Shenyang Pharmaceutical University, Shenyang 110016, China
  • Received:2006-07-28 Revised:2006-11-10 Online:2006-12-15 Published:2006-12-15
  • Contact: PAN Wei-san*

摘要: 目的 研究阴离子交换树脂与双氯芬酸钠的交换反应特性。方法 以双氯芬酸钠为模型药物, 以强碱性阴离子交换树脂(201 × 7)为载体, 采用静态法制备药物树脂, 考察了阴离子交换树脂不同类型(OH-Cl-)、树脂粒径以及反应温度对交换过程的影响, 并对交换动力学曲线进行了拟合, 考察了离子交换反应速率常数、活化能和选择性系数, 同时考察了交换反应热力学参数吉布斯自由能变化, 反应焓变化和反应熵变化。结果 Cl-OH-型阴离子交换树脂对双氯芬酸钠的载药能力相同。树脂粒径越小, 反应温度越高, 则反应速率越快。药物树脂间的交换反应符合一级动力学反应, 反应活化能约为60.68 kJ·mol-1。在303K313K323K三种温度下得到的热力学参数都满足于ΔrGθm<0, ΔrHθm>0ΔrSθm>0结论 药物与树脂的交换过程主要受树脂粒径和反应温度的影响, 而且该离子交换反应是吸热反应, 即升高温度有助于反应正向自发进行。

关键词: 双氯芬酸钠, 双氯芬酸钠, 双氯芬酸钠, 阴离子交换树脂, 阴离子交换树脂, 阴离子交换树脂, 交换动力学, 交换动力学, 交换动力学, 交换热力学, 交换热力学, 交换热力学

Abstract: Aim To study the exchange reaction characteristics of anion exchange resin for diclofenac sodium. Methods The drug-resin complexes were prepared by a batch method with diclofenac sodium as the model drug and the strong anion exchange resin (201 × 7) as the carrier. The effects of different forms (OH- and Cl-) of the strong anion exchange resin, the particle size of the resin, and the reaction temperature on the exchange behavior were described. The exchange kinetic profiles were fitted. The related exchange reaction rate constants, exchange activation energy, and selectivity coefficients were determined. The exchange thermodynamic parameters, such as ΔrGθm, ΔrHθm andΔrSθm, were evaluated. Results The anion exchange resin in the Cl- and OH- form had the same exchange capacity of diclofenac sodium. When the size of resin particle decreased or the temperature increased, the rate of exchange reaction increased. The exchange reaction between the drug and resin was accorded with first order kinetics. The exchange activation energy was about 60.68 kJ·mol-1. The exchange thermodynamics parameters achieved at 303K, 313K and 323K were all satisfied with the following results: ΔrGθm<0, ΔrHθm>0 and ΔrSθm>0. Conclusion The exchange process of drug-resin complexes was mainly influenced by the size of the resin and the reaction temperature. The exchange reaction was an endothermic and spontaneous reaction as the temperature increased.

Key words: diclofenac sodium, diclofenac sodium, anion exchange resin, anion exchange resin, exchange kinetics, exchange kinetics, exchange thermodynamics, exchange thermodynamics

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*Corresponding author. Tel.: 86-24-23986313; fax: 86-24-23953241