Cong Yue, Zhou Yu-Bo, Chen Jing, Zeng Yi-Mei, Wang Jin-Hui
School of Traditional Chinese Materia Medica, Shenyang Pharmaceutical University, Shenyang, PR China.
J Pharm Biomed Anal. 2008 Nov 4;48(3):573-8. doi: 10.1016/j.jpba.2008.05.023. Epub 2008 May 28.
Veratrum nigrum L., a traditional Chinese herb, has been used for treatment of hypertension, blood-stroke, excessive phlegm, epilepsy, etc. Steroidal alkaloids were well-known as both bioactive and toxic constituents of Veratrum species, the toxicity of which the traditional processing procedure can reduce. To reveal the mechanism of processing V. nigrum L., a high performance liquid chromatography (HPLC) with evaporative light scattering detector (ELSD) method was developed for the simultaneous determination of ten steroidal alkaloids in crude and processed V. nigrum L., comparison with ultrasound extract of crude V. nigrum L. With a Venusil XBP-C(18) analytical column, the analytes were separated efficiently using the mobile phase consisted of (A) 0.03% aqueous triethylamine (TEA) and (B) acetonitrile in a gradient program. The parameters for ELSD were set: S.C. (Spray Chamber)=35 degrees C, D.T. (Drift Tube)=70 degrees C, GAS=50 psi. All calibration curves showed good linear regression (gamma>or=0.9990) within the tested range. Additionally, reproducibility for the quantification of ten alkaloids in V. nigrum L. with intra- and inter-day variations of less than 5.0% was observed. The obtained alkaloid profiles performed by this newly established method, provided valuable information for the differentiation of crude and processed V. nigrum L. and for the explanation of the different toxicity.
藜芦,一种传统的中草药,已被用于治疗高血压、中风、痰多、癫痫等。甾体生物碱是藜芦属植物中既具有生物活性又有毒性的成分,传统炮制方法可以降低其毒性。为揭示藜芦炮制的机制,建立了一种高效液相色谱(HPLC)-蒸发光散射检测器(ELSD)法,用于同时测定生品和炮制品藜芦中的十种甾体生物碱,并与生品藜芦的超声提取物进行比较。采用Venusil XBP-C(18)分析柱,以由(A)0.03%三乙胺水溶液和(B)乙腈组成的流动相通过梯度洗脱程序有效分离分析物。ELSD的参数设置为:喷雾室(S.C.)=35℃,漂移管(D.T.)=70℃,气体(GAS)=50 psi。所有校准曲线在测试范围内均显示出良好的线性回归(γ≥0.9990)。此外,观察到藜芦中十种生物碱定量的重现性,日内和日间变化均小于5.0%。通过这种新建立的方法获得的生物碱图谱,为生品和炮制品藜芦的鉴别以及不同毒性的解释提供了有价值的信息。