| Literature DB >> 35341124 |
Di Wen1, Yan Shi2, Xiaoguang Zhang3, Bing Xie1, Wenqiao Liu1, Feng Yu1, Ping Xiang2, Bin Cong1, Chunling Ma1.
Abstract
In recent years, benzodiazepines and benzodiazepine-like drugs are the most common substances associated with drug-facilitated sexual assaults (DFSA); however, barbiturates are also detected occasionally. Segmental hair analysis provides useful information on the historic pattern of drug use, enabling differentiation between single exposure in DFSA cases and chronic use. However, sensitive and specific methods for barbiturate analysis in hair samples are needed. Herein, we present an ultra-high-performance liquid chromatography coupled with high-resolution mass spectrometry (UHPLC-HRMS) method for qualitative and quantitative determination of seven barbiturates in hair samples. Firstly, a hair strand was decontaminated and then freeze-milled in liquid nitrogen. Next, 50 mg of powdered hair was extracted with methanol in an ultrasonic bath for 10 min in the presence of 10 ng phenobarbital-d5. The supernatant was dried under nitrogen gas, and the pellet was dissolved in 100 µL mobile phase. Afterwards, 10 µL of the suspension was injected into the UHPLC-HRMS system. The present method involved two UHPLC conditions for determination of barbiturates (I) and identification of the structural isomers amobarbital and pentobarbital (II). This method showed satisfactory linearity in a range of 0.02-20.00 ng/mg for UHPLC conditions I and II, both with a high determination coefficient (0.9991-0.9999). The selectivity, intra- and interday precision, accuracy and matrix effect of the method were acceptable. Next, the validated method was applied to investigate an authentic DFSA case. Hair samples (black, approximate 25 cm long) were collected 3 months after the assault, and the proximal segments (0-5 cm from the root; each segment was 1 cm long) were analyzed. Amobarbital was detected at a concentration of < LOQ (limit of quantification) and 0.09 ng/mg in the second and third 1 cm hair segment but not in the other segments. Thus, our method was successful in determining barbiturate concentration in human hair after a single-dose exposure, showing its potential for application in the investigation of DFSA cases.Entities:
Keywords: Forensic sciences; UHPLC-HRMS; barbiturates; drug-facilitated sexual assault; forensic toxicology; segmental hair analysis
Year: 2019 PMID: 35341124 PMCID: PMC8942540 DOI: 10.1080/20961790.2019.1659474
Source DB: PubMed Journal: Forensic Sci Res ISSN: 2471-1411
Figure 1.Extracted ionic chromatogram obtained from UHPLC-HRMS analysis of 0.2 ng/mg barbiturates in spiked blank hair samples. A mixture of barbital, phenobarbital, amobarbital, pentobarbital, secobarbital, butalbital and thiopental sodium (10 ng each) was spiked into 50 mg of blank hair sample.
Figure 2.Extracted ionic chromatogram obtained from UHPLC-HRMS analysis of 0.2 ng/mg amobarbital and pentobarbital in spiked blank hair samples. A mixture of amobarbital and pentobarbital (10 ng each) was spiked into 50 mg of blank hair sample. The efficiency of gradient elution (A) and isocratic elution (B) was evaluated on Thermo Hypersil GOLDTM C-18 column, Waters ACQUITY® BEH C-18 column and Phenomenex Kinetex® EVO column. The mobile phases for isocratic elution were 80% 10 mmol/L ammonium acetate (B-a) or pure water (B-b) and 20% acetonitrile.
UHPLC-HRMS parameters for barbiturate analysis.
| Compound | Chemical formula | Retention time (min) | Ionization form | MS1 ( | MS2 ( | |
|---|---|---|---|---|---|---|
| UHPLC condition I | Barbital | C18H12N2O3 | 4.50 | [M-H] | 183.07752 | 140.07207 |
| Phenobarbital | C12H12N2O3 | 5.65 | [M-H] | 231.07797 | 188.07214 | |
| Amobarbital/Pentobabital | C11H18N2O3 | 6.37 | [M-H] | 225.12511 | 182.11923 | |
| Secobarbital | C12H18N2O3 | 6.63 | [M-H] | 237.12515 | 194.11917 | |
| Butalbital | C11H16N2O3 | 5.98 | [M-H] | 223.10882 | 180.10294 | |
| Thiopental sodium | C11H17NaN2O3 | 7.12 | [M-Na] | 241.10162 | 57.97557 | |
| Phenobarbita-d5 | C12H17N2O3 | 5.65 | [M-H] | 236.07728 | 193.10257 | |
| UHPLC condition II | Pentobabital | C11H18N2O3 | 11.28 | [M-H] | 225.12511 | 182.11923 |
| Amobarbital | C11H18N2O3 | 12.05 | [M-H] | 225.12511 | 182.11923 | |
| Phenobarbita-d5 | C12H17N2O3 | 4.60 | [M-H] | 236.07728 | 193.10257 |
Linearity, limit of detection (LOD) and limit of quantification (LOQ) of barbiturates.
| Compound | Linearity |
| LOQ (ng/mg) | LOD (ng/mg) | |
|---|---|---|---|---|---|
| UHPLC condition I | Barbital | 0.9997 | 0.02 | 0.01 | |
| Phenobarbital | 0.9998 | 0.02 | 0.01 | ||
| Amobarbital | 0.9991 | 0.02 | 0.01 | ||
| Pentobarbital | 0.9991 | 0.02 | 0.01 | ||
| Secobarbital | 0.9993 | 0.02 | 0.01 | ||
| Butalbital | 0.9999 | 0.02 | 0.01 | ||
| Thiopental sodium | 0.9995 | 0.02 | 0.01 | ||
| UHPLC condition II | Amobarbital | 0.9999 | 0.02 | 0.01 | |
| Pentobarbital | 0.9998 | 0.02 | 0.01 |
Recovery, intra- and interday precision and matrix effect (ME) for barbiturates.
| Compound | Concentration (ng/mg) | Average recovery (%) | CV (%) | Precision (CV, %) | ME (%) | ||
|---|---|---|---|---|---|---|---|
| Intraday ( | Interday ( | ||||||
| UHPLC condition I | Barbital | 0.02 | 101.9 | 2.38 | 2.06 | 2.72 | −1.29 |
| 0.04 | 91.0 | 5.10 | 2.30 | 3.80 | |||
| 0.20 | 99.2 | 4.96 | 1.36 | 4.56 | |||
| Phenobarbital | 0.02 | 108.0 | 1.90 | 1.24 | 2.46 | −4.12 | |
| 0.04 | 99.3 | 1.14 | 0.77 | 1.29 | |||
| 0.20 | 99.8 | 0.27 | 1.20 | 2.46 | |||
| Amobarbital | 0.02 | 95.5 | 5.57 | 3.39 | 2.44 | −2.83 | |
| 0.04 | 102.8 | 1.90 | 3.39 | 1.97 | |||
| 0.20 | 92.6 | 2.46 | 2.33 | 3.16 | |||
| Pentobarbital | 0.02 | 95.6 | 5.31 | 1.01 | 4.00 | −2.67 | |
| 0.04 | 99.7 | 4.61 | 1.89 | 0.99 | |||
| 0.20 | 101.5 | 1.03 | 1.24 | 1.02 | |||
| Secobarbital | 0.02 | 117.2 | 2.21 | 1.36 | 3.58 | −8.43 | |
| 0.04 | 101.4 | 2.90 | 2.56 | 4.71 | |||
| 0.20 | 103.4 | 3.34 | 4.75 | 3.54 | |||
| Butalbital | 0.02 | 119.7 | 2.52 | 3.42 | 1.62 | −9.05 | |
| 0.04 | 101.3 | 4.70 | 2.28 | 2.02 | |||
| 0.20 | 101.3 | 1.98 | 2.24 | 6.07 | |||
| Thiopental sodium | 0.02 | 93.7 | 3.82 | 3.73 | 5.21 | −4.61 | |
| 0.04 | 106.8 | 3.91 | 5.86 | 1.96 | |||
| 0.20 | 107.1 | 1.69 | 4.89 | 2.20 | |||
| UHPLC condition II | Amobarbital | 0.02 | 101.8 | 3.44 | 3.01 | 1.78 | −2.21 |
| 0.04 | 98.6 | 2.08 | 3.46 | 4.41 | |||
| 0.20 | 99.7 | 1.56 | 1.05 | 2.87 | |||
| Pentobarbital | 0.02 | 98.5 | 2.17 | 2.89 | 3.09 | −3.36 | |
| 0.04 | 96.6 | 3.39 | 2.60 | 2.54 | |||
| 0.20 | 102.1 | 1.65 | 1.09 | 2.90 | |||
CV: coefficient of variance.
Figure 3.Extracted ionic chromatogram obtained from the optimized UHPLC-HRMS analysis of amobarbital in authentic hair samples (A: 1–2 cm segment; B: 2–3 cm segment).