| Literature DB >> 27406128 |
Boris Duffau1, Cristian Camargo2, Marcelo Kogan2, Edwar Fuentes2, Bruce Kennedy Cassels3.
Abstract
Use of unauthorized synthetic drugs is a serious, forensic, regulatory and public health issue. In this scenario, consumption of drug-impregnated blotters is very frequent. For decades, blotters have been generally impregnated with the potent hallucinogen known as lysergic acid diethylamide (LSD); however, since 2013 blotter stamps with N-2 methoxybenzyl-substituted phenylethylamine hallucinogen designated as "NBOMes" have been seized in Chile. To address this issue with readily accessible laboratory equipment, we have developed and validated a new HPTLC method for the identification and quantitation of 25-C-NBOMe in seized blotters and its confirmation by GC-MS. The proposed method was validated according to SWGTOX recommendations and is suitable for routine analysis of seized blotters containing 25-C-NBOMe. With the validated method, we analyzed 15 real samples, in all cases finding 25-C-NBOMe in a wide dosage range (701.0-1943.5 µg per blotter). In this situation, we can assume that NBOMes are replacing LSD as the main hallucinogenic drug consumed in blotters in Chile.Entities:
Mesh:
Substances:
Year: 2016 PMID: 27406128 PMCID: PMC4941995 DOI: 10.1093/chromsci/bmw095
Source DB: PubMed Journal: J Chromatogr Sci ISSN: 0021-9665 Impact factor: 1.618
Figure 1.Structure of 25-C-NBOMe.
Figure 2.TIC and mass spectrum of standard of 25-C-NBOMe. This figure is available in black and white in print and in color at JCS online.
Figure 3.Results of purity and spectrum comparison of real samples and reference material of 25-C-NBOMe. This figure is available in black and white in print and in color at JCS online.
Figure 4.Densitogram with 25-C-NBOMe, LSD and DMT as an example of selectivity and separation capability of the proposed method. This figure is available in black and white in print and in color at JCS online.
Figure 5.The calibration plot.
Summary of Validation Parameters for Analysis of 25-C-NBOMe by HPTLC
| Parameter | Results |
|---|---|
| 0.37 | |
| Linearity and range | 19.72–118.28 µg per band; |
| LOD and LOQ | 7.1 µg per band, and 21.63 µg per band |
| Repeatability (50.2 µg) | CV% = 5,459 |
| Intermediate precision | CV% = 6,071 |
| Amount of 25-C-NBOMe (µg/mL) | Recovery (%) |
| 18,825 | 95,635 ± 0.389 |
| 31,375 | 97,098 ± 1,166 |
| 43,925 | 102,213 ± 2,507 |
| 56,475 | 105,111 ± 1,404 |
| 69,025 | 100,971 ± 1,295 |
| 81,575 | 94,541 ± 0.430 |
| Mean: 99.26%; SD: 4.14 | |
| Relative uncertainty | 3.63% |
Analysis of 15 Real Samples of Blotters Seized in Chile
| Sample | Results by HPTLC | Confirmation by GC–MS | Amount of 25 C NBOMe by HPTLC (µg/blotter) | Design |
|---|---|---|---|---|
| 1 | 25-C-NBOMe | 25-C-NBOMe | 1,943.50 | |
| 2 | 25-C-NBOMe | 25-C-NBOMe | 772.94 | |
| 3 | 25-C-NBOMe | 25-C-NBOMe | 977.63 | |
| 4 | 25-C-NBOMe | 25-C-NBOMe | 1,315.25 | |
| 5 | 25-C-NBOMe | 25-C-NBOMe | 1,908.45 | |
| 6 | 25-C-NBOMe | 25-C-NBOMe | 820.63 | |
| 7 | 25-C-NBOMe | 25-C-NBOMe | 843.44 | |
| 8 | 25-C-NBOMe | 25-C-NBOMe | 701.00 | |
| 9 | 25-C-NBOMe | 25-C-NBOMe | 1,458.35 | |
| 10 | 25-C-NBOMe | 25-C-NBOMe | 781.25 | |
| 11 | 25-C-NBOMe | 25-C-NBOMe | 1,943.14 | |
| 12 | 25-C-NBOMe | 25-C-NBOMe | 958.20 | |
| 13 | 25-C-NBOMe | 25-C-NBOMe | 1,396.80 | |
| 14 | 25-C-NBOMe | 25-C-NBOMe | 1,026.69 | |
| 15 | 25-C-NBOMe | 25-C-NBOMe | 1,987.75 |