Carlier Jérémy, Guitton Jérôme, Romeuf Ludovic, Bévalot Fabien, Boyer Baptiste, Fanton Laurent, Gaillard Yvan
Laboratoire LAT LUMTOX, 800 av. Marie Curie Z.I. Jean Jaurès, 07800 La Voulte-sur-Rhône, France; Ecole Doctorale Interdisciplinaire Sciences-Santé, Université Claude Bernard, Hôpital Louis Pradel, 28 av. du Doyen Lépine, 69677 Bron, France.
Laboratoire de toxicologie, Faculté de pharmacie de Lyon, 8 av. Rockefeller, 69373 Lyon, France; Laboratoire de pharmacologie-toxicologie, Centre Hospitalier Lyon Sud, Hospices Civils de Lyon, 165 chemin du Grand Revoyet, 69495 Pierre-Bénite, France.
J Chromatogr B Analyt Technol Biomed Life Sci. 2015 Jan 15;975:65-76. doi: 10.1016/j.jchromb.2014.10.028. Epub 2014 Nov 1.
Plant poisonings have left their mark on history and still cause many deaths, whether intentional or accidental. The means to show toxicological evidence of such poisonings should be implemented with great care. This article presents a technique for measuring thirty-nine toxic principles of plant origin in the blood, covering a large amount of toxins from local or exotic plants: α-lobeline, α-solanine, aconitine, ajmaline, atropine, brucine, cephalomannine, colchicine, convallatoxin, cymarine, cytisine, digitoxin, digoxin, emetine, gelsemine, ibogaine, jervine, kavain, lanatoside C, lupanine, mitragynine, neriifolin, oleandrin, ouabain, paclitaxel, physostigmine, pilocarpine, podophyllotoxin, proscillaridin A, reserpine, retrorsine, ricinine, scopolamine, senecionine, sparteine, strophanthidin, strychnine, veratridine and yohimbine. Analysis was carried out using an original ultra-high performance liquid chromatography separation coupled with tandem mass spectrometry detection. Extraction was a standard solid phase extraction performed on Oasis(®) HLB cartridge. Thirty-four of the thirty-nine compounds were put through a validation procedure. The assay was linear in the calibration curve range from 0.5 or 5 μg/L to 1000 μg/L according to the compounds. The method is sensitive (LOD from 0.1 to 1.6 μg/L). The within-day precision of the assay was less than 22.5% at the LLOQ, and the between-day precision was less than 21.5% for 10 μg/L for all the compounds included. The assay accuracy was in the range of 87.4 to 119.8% for the LLOQ. The extraction recovery and matrix effect ranged from 30 to 106% and from -30 to 14%, respectively. It has proven useful and effective in several difficult forensic cases.
植物中毒在历史上留下了印记,至今仍导致许多人死亡,无论是有意还是意外中毒。展示此类中毒毒理学证据的方法应谨慎实施。本文介绍了一种测量血液中39种植物源性有毒成分的技术,涵盖了大量本地或外来植物的毒素:α-洛贝林、α-茄碱、乌头碱、阿吗灵、阿托品、马钱子碱、头状曼陀罗碱、秋水仙碱、铃兰毒苷、海葱苷、野靛碱、洋地黄毒苷、地高辛、依米丁、钩吻素子、伊博格碱、介芬胺、卡瓦因、毛花苷C、羽扇豆碱、米托蒽醌、去乙酰毛花苷、夹竹桃苷、哇巴因、紫杉醇、毒扁豆碱、毛果芸香碱、鬼臼毒素、海葱次苷A、利血平、倒千里光碱、蓖麻碱、东莨菪碱、异叶千里光碱、鹰爪豆碱、毒毛旋花子苷元、士的宁、藜芦定和育亨宾。分析采用原创的超高效液相色谱分离结合串联质谱检测。提取采用在Oasis(®) HLB柱上进行的标准固相萃取。39种化合物中的34种经过了验证程序。根据化合物不同,校准曲线范围为0.5或5 μg/L至1000 μg/L时,该测定呈线性。该方法灵敏(检测限为0.1至1.6 μg/L)。在最低定量限(LLOQ)时,日内精密度小于22.5%,对于所有纳入的化合物,10 μg/L时的日间精密度小于21.5%。LLOQ时的测定准确度在87.4%至119.8%范围内。提取回收率和基质效应分别为30%至106%和 -30%至14%。在几起疑难法医案件中,该方法已证明是有用且有效的。