Rapid determination of cordycepin in Cordyceps militaris by near-infrared spectroscopy
-
摘要: 应用近红外光谱(NIR)和偏最小二乘法(PLS),建立了北虫草中虫草素的定量分析校正模型。分别采集北虫草子实体的近红外光谱图,应用TQ化学计量学分析软件,对不同化学计量学处理方法进行了比较,并对光谱区域,光谱预处理方法,主成分因子数进行筛选。依据预测效果确定了最佳的校正模型,虫草素含量的预测结果与HPLC检测结果的相关系数为0.9919,校正模型的定标均方差(RMSEC)为102 mg/kg、预测均方差(RMSEP)为281 mg/kg。本方法操作简便,快速无损,可用于北虫草中虫草素含量的快速检测。
-
关键词:
- 近红外光谱 /
- 北虫草 /
- 虫草素 /
- 偏最小二乘法(PLS) /
- 主成分回归(PCR)
Abstract: The quantification model of determining the content of cordycepin in Cordyceps militaris was established by using near-infrared spectroscopy ( NIR) combined with a partial least square ( PLS) method. The comparison of principle component regression ( PCR) and PLS, selection of spectroscopy wavenumber region and principal component factor number were studied.The best model was selected according to the prediction effect.The correlation coefficients of prediction, the root mean square error of calibration ( RMSEC) and the root-mean-square error of prediction ( RMSEP) of the model were 0.9919, 102 mg/kg, 281 mg/kg respectively. The proposed methods are simple, convenient, fast, and can be applied for detection of cordycepin in Cordyceps militaris. -
[1] 万朋, 高俊涛, 吕世杰.蛹虫草化学成分及药理作用研究进展[J].上海中医药杂志, 2015, 49 (6) :95-97. [2] Hardeep S Tuli, Sardul S Sandhu, A K Sharma.Pharmacological and therapeutic potential of Cordyceps with special reference to Cordycepin[J].3 Biotech, 2014, 4 (4) :1-12.
[3] 余伯成, 唐永范, 唐亮, 等.虫草素的药理作用研究进展[J].现代药物与临床, 2011, 26 (5) :349-352. [4] 胡贤达, 岳颖, 武鹏, 等.虫草素药理作用研究及展望[J].中国生化药物杂志, 2015, 35 (12) :180-182. [5] 钟石, 李有贵, 陈诗, 等.人工培养蛹虫草与冬虫夏草的主要活性成分比较[J].蚕业科学, 2009, 35 (4) :831-836. [6] 李辰, 闫爱国, 蔡春燕, 等.蛹虫草及其培养残基中腺苷和虫草素含量的快速测定[J].色谱, 2012, 30 (7) :711-715. [7] 袁蜜, 乐昕, 徐鲁荣, 等.高效液相色谱法同时测定蛹虫草子实体中腺苷和虫草素含量[J].食品科学, 2013, 34 (14) :306-310. [8] F Q Yang, J Guan, S P Li.Fast simultaneous determination of14 nucleosides and nucleobases in cultured Cordyceps using ultra-performance liquid chromatography[J].Talanta, 2007, 73 (3) :269-273.
[9] F Q Yanga, L Geb, J W Hong Yongb, et al.Determination of nucleosides and nucleobases in different species of Cordyceps by capillary electrophoresis-mass spectrometry[J].Journal of Pharmaceutical and Biomedical Analysis, 2009, 50 (6) :307-314.
[10] 黄兰芳, 郭方遒, 梁逸曾, 等.HPLC-ESI-MS测定冬虫夏草和蚕蛹虫草中腺苷和虫草素含量[J].中国中药杂志, 2004, 8 (8) :49-51. [11] 李泳, 余潮彬, 张兆霞, 等.紫外可见分光光度法测定虫草素含量[J].广东化工, 2012, 39 (11) :186-187. [12] 王迪, 张嫒莉, 孟庆繁, 等.近红外光谱在快速测定蛹虫草有效成分含量中的应用[J].光学学报, 2009, 29 (10) :2795-2799. [13] 罗曦, 吴方喜, 谢鸿光, 等.近红外光谱的水稻抗性淀粉含量测定研究[J].光谱学与光谱分析, 2016, 36 (3) :697-701. [14] 徐文杰, 刘茹, 洪响声, 等.基于近红外光谱技术的淡水鱼品种快速鉴别[J].农业工程学报, 2014, 30 (1) :253-261. [15] 叶正良, 虞科, 程翼宇.一种基于小波变换的近红外化学指纹图谱分析方法[J].高等学校化学学报, 2007, 28 (3) :441-444. [16] 陆婉珍.现代近红外光谱分析技术[M].北京:中国石化出版社, 2007:14-26. [17] 蔡佳良, 郭念欣, 黄洁燕, 等.运用近红外光谱法建立广藿香中百秋李醇的定量模型[J].中国中药杂志, 2012, 37 (14) :2113-2116.
计量
- 文章访问数:
- HTML全文浏览量:
- PDF下载量: