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作 者:张继稳[1] 陈立兵[2] 顾景凯[3] 葛卫红[2]
机构地区:[1]中国科学院上海药物研究所,上海201203 [2]浙江中医药大学,浙江杭州310053 [3]吉林大学,吉林长春130021
出 处:《药学学报》2008年第6期647-651,共5页Acta Pharmaceutica Sinica
基 金:国家高技术研究发展计划(863计划)资助项目(2006AA02Z336);国家科技支撑计划项目(2006BAI098B08-08);中国科学院上海药物研究所新药基础研究项目资助(O7G603F015).
摘 要:中药剂型中所含各组分的理化性质不同,其释放特征往往存在差异。目前尚无定量评价此种差异的方法。基于Kalman滤波法原理,定义了化合物组异步性特征参数"化合物组相对误差(relative chemomic error,ε)",并据此建立同步性参数"同步性因子(synchronization factor,SF)"和反映化合物组释放同步性的参数"平均同步因子(average synchronization factor,SFav)"等评价参数。采用随机产生的模拟数据,示例化合物组释放同步性评价的计算过程和方法学意义。结果显示,模拟数据的化合物组相对误差与各组分释放度变异系数呈高度线性相关(r=0.996 8);多组分中药化合物组的释放特征不同步是中药制剂的基本特征,而化合物组释放同步性评价可能成为中药制剂质量评价的重要内容,本文建立的量化评价化合物组同步特征的方法能直接定量地反映多组分中药释放的异步性和同步性特征。Due to the diversity of components within the traditional Chinese medicines (TCMs), the release profiles of the components in the TCM dosage forms vary dramatically and no quantification method is available to determine the variance yet. Based upon the principles of Kalman filter method, the authors defined a new parameter, relative chemomic error (ε), to evaluate the asynchronous nature of the components in TCMs, and a derivative parameter as synchronization factor (SF) to quantify the synchronicity of the chemome of the TCMs. The average synchronization factor ( SFav ) was accordingly derived to simultaneously quantify the release/dissolution profiles of the multi-components in TCMs. Randomly generated simulation data were processed to demonstrate the chemomic data processing and the methodology. The results indicated that the novel parameter ε was well correlated (r = 0. 996 8) with the coefficient of variation from the conventional release profiles of all the components. As the asynchronicity was the intrinsic characteristics of the multi-component TCMs, the synchronicity might be a new target of quality control of TCMs. The methods established by this report can be used a quantitative tool for the evaluation of the chemomic release synchronization of TCMs.
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