| Literature DB >> 31438499 |
Dominic Palazzolo1, John M Nelson2,3, Zuri Hudson2.
Abstract
E-liquid manufacturers are under scrutiny concerning the purity and concentration accuracy of nicotine and the minor nicotine-related alkaloids (NRAs) packaged in their products. In this communication we report concentrations of nicotine and five NRAs (nornicotine, cotinine, anabasine, anatabine, myosmine) from locally purchased E-liquids.Entities:
Keywords: E-liquids; ECIGs; HPLC; aerosol; cigarettes; nicotine; nicotine-related alkaloids; smoke
Mesh:
Substances:
Year: 2019 PMID: 31438499 PMCID: PMC6747407 DOI: 10.3390/ijerph16173015
Source DB: PubMed Journal: Int J Environ Res Public Health ISSN: 1660-4601 Impact factor: 3.390
Description of E-liquids used in study.
| E-Liquid | Date | Batch | Expiration Date | Ratio of PG/VG | Stated | Additional |
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| Brand | Purchased or Acquired | Identification | Level of Nicotine | Ingredients | ||
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| Bottle 1 | Jul 18, 2016 | Not Available | Not Available | 80/20 | 24 mg/mL | Tobacco Flavoring |
| Bottle 2 | Jul 25, 2016 | |||||
| Bottle 3 | Aug 1, 2016 | |||||
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| Bottle 1 | Jul 18, 2016 | 16TB30E5801 | Apr 2018 | 70/30 | 24 mg/mL | Tobacco Flavoring |
| Bottle 2 | Jul 25, 2016 | 16TB30E9401 | Jul 2018 | |||
| Bottle 3 | Aug 1, 2016 | 16TB30E9401 | Jul 2018 | |||
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| Bottle 1 | Jul 18, 2016 | 6036CBY24 | Not Available | 50/50 | 24 mg/mL | Tobacco Flavoring |
| Bottle 2 | Jul 25, 2016 | 6036CBY24 | ||||
| Bottle 3 | Aug 1, 2016 | 6036CBY24 | ||||
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| Bottle 1 Bottle 2 Bottle 3 | Jul 18, 2016 Jul 25, 2016 Aug 1, 2016 | Not Available | Not Available | 60/30 | 24 mg/mL | Tobacco flavoring |
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| Bottle 1 | Jul 18, 2016 | VSEJ | Nov 2017 | 70/30 | 18 mg/mL | Tobacco Flavoring |
| Bottle 2 | Jul 25, 2016 | VSEJ | Nov 2017 | |||
| Bottle 3 | Aug 1, 2016 | VSEJ | Nov 2017 | |||
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| Bottle 1 | Aug 11, 2016 | Batch 1 | Not Available | 50/50 | 20 mg/mL | No Flavorings |
| Bottle 2 | Aug 11, 2016 | Batch 2 | ||||
| Bottle 3 | Aug 11, 2016 | Batch 3 |
PG = propylene glycol; VG = vegetable glycerin (i.e., glycerol).
Figure 1Representative chromatograms of standards and reference E-liquid and E-liquid aerosol.
Standard curve statistics.
| Compound | Injected Concentration (ng/mL) | Retention Time (min) | Measured Concentration (ng/mL) | Area Under Peak | Straight Line Equation | LOD and LOQ (ng/mL) * | Lowest X Value Used (ng/mL) ** | R2 | % RSD |
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| Nicotine | 1400.00 ng/mL | 13 | 1409 | 45,034 | Y = 32X − 560 | 122 and 369 | 150,203 | 1 | 6.7 |
| 700.00 ng/mL | 13.1 | 658 | 20,573 | ||||||
| 140.00 ng/mL | 13.1 | 164 | 4695 | ||||||
| Nornicotine | 1400.00 ng/mL | 8 | 1403 | 29,386 | Y = 21X − 332 | 18 and 54 | 410 | 1 | 4.2 |
| 700.00 ng/mL | 8.1 | 694 | 14,368 | ||||||
| 140.00 ng/mL | 8.1 | 143 | 2706 | ||||||
| Cotinine | 1400.00 ng/mL | 8.8 | 1393 | 97,916 | Y = 70X + 478 | 46 and 139 | 227 | 1 | 2.4 |
| 700.00 ng/mL | 8.8 | 716 | 50,563 | ||||||
| 140.00 ng/mL | 8.8 | 131 | 9651 | ||||||
| Anabasine | 1400.00 ng/mL | 10 | 1385 | 48,629 | Y = 35X + 753 | 94 and 286 | 322 | 1 | 3.7 |
| 700.00 ng/mL | 10 | 733 | 26,100 | ||||||
| 140.00 ng/mL | 10.1 | 121 | 4951 | ||||||
| Anatabine | 1400.00 ng/mL | 10.6 | 1389 | 18,417 | Y = 13X + 193 | 69 and 208 | 416 | 1 | 2.7 |
| 700.00 ng/mL | 10.6 | 724 | 9685 | ||||||
| 140.00 ng/mL | 10.6 | 127 | 1856 | ||||||
| .Myosmine | 1400.00 ng/mL | 11.7 | 1392 | 109,515 | Y = 78X + 971 | 50 and 153 | 674 | 1 | 1.96 |
| 700.00 ng/mL | 11.7 | 718 | 56,923 | ||||||
| 140.00 ng/mL | 11.7 | 1308 | 11,123 |
* Limit of detection (LOD) and limit of quantitation (LOQ) were determined based on the calibration curve. ** Lowest X value used from all sample chromatograms. RSD = relative standard deviation (i.e., Coefficient of variation).
Comparison of nicotine and nicotine-related alkaloids from various brands of E-liquid.
| Compound | E-liquid 1 | E-liquid 2 | E-liquid 3 | E-liquid 4 | E-liquid 5 | Reference |
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| Stated level of nicotine (mg/mL) on label | 24 | 24 | 24 | 24 | 18 | 20 |
| Percent of stated nicotine on label | 74% | 97% | 100% | 104% | 110% | 102% |
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| Bottle 1 (n = 3) | 22 ± 2 b | 25 ± 1 | 25 ± 1 | 25 ± 1 | 20 ± 1 | 20 ± 0 |
| Bottle 2 (n = 3) | 10 ± 0 a,c | 22 ± 0 | 25 ± 0 | 25 ± 0 | 19 ± 0 | 20 ± 0 |
| Bottle 3 (n = 3) | 22 ± 1 b | 22 ± 2 | 22 ± 2 | 25 ± 1 | 19 ± 2 | 21 ± 0 |
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| Bottle 1 (n = 3) | 14 ± 3 | 5 ± 0 | 18 ± 0 | 13 ± 1 | 21 ± 0 | 18 ± 0 |
| Bottle 2 (n = 3) | 11 ± 0 | 5 ± 0 | 16 ± 0 | 15 ± 0 | 22 ± 0 | 17 ± 0 |
| Bottle 3 (n = 3) | 15 ± 2 | 6 ±1 | 20 ±1 | 12 ± 1 | 19 ± 2 | 17 ± 1 |
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| 3 ± 1 | undetectable | undetectable | |||
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| undetectable | 1 ± 0 | 4 ± 1 | 2 ± 0 | 2 ± 0 | 15 ± 0 |
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| 3 ± 1 | undetectable | 2 ± 0 | 1 ± 1 | 1 ± 1 | 15 ± 0 |
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| undetectable | 2 ± 1 | 16 ± 0 | |||
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| Bottle 1 (n = 3) | undetectable | 3 ± 0 | undetectable | undetectable | 69 ± 5 | 7 ± 1 |
| Bottle 2 (n = 3) | undetectable | 2 ± 0 | undetectable | undetectable | 70 ± 1 | 8 ± 0 |
| Bottle 3 (n = 3) | undetectable | 2 ± 0 | 2 ± 0 | 2 ± 0 | 58 ± 5 | 8 ± 0 |
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| Bottle 1 (n = 3) | 286 ± 39 e,f | 1 ± 0 | undetectable | 288 ± 13 | 817 ± 37 | 15 ± 0 |
| Bottle 2 (n = 3) | 138 ± 3 d | undetectable | undetectable | 286 ± 3 | 841 ± 21 | 15 ± 0 |
| Bottle 3 (n = 3) | 176 ± 8 d | undetectable | undetectable | 268 ± 15 | 847 ± 118 | 14 ± 0 |
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| 30 ± 3 g,h | 4 ± 0 | 3 ± 0 | 40 ± 2 | 14 ± 0 | 14 ± 0 |
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| 2 ± 0 i | 4 ± 0 | 3 ± 0 | 38 ± 0 | 14 ± 0 | 14 ± 0 |
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| 7 ± 0 i | 3 ± 1 | 2 ± 1 | 33 ± 3 | 14 ± 2 | 15 ± 1 |
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*= Mean ± SEM for each bottle. # = Mean ± SEM for three bottles. @ = Coeffiecient of variation for all nine bottles a = Significant (p < 0.001) from bottle 1; b = Significant (p < 0.001) from bottle 2; c = Significant (p < 0.001) from bottle 3. d = Significant (p < 0.05) from bottle 1; e = Significant (p < 0.05) from bottle 2; f = Significant (p < 0.05) from bottle 3. g = Significant (p < 0.001) from bottle 1; h = Significant (p < 0.001) from bottle 2; i = Significant (p < 0.001) from bottle 3. RSD = relative standard deviation (i.e., coefficient of variation). Bold section represents the take home values of Mean± SEM and the % RSD for each E-liquid.
Nicotine and nicotine-related alkaloids generated from E-liquid aerosol and tobacco smoke.
| Reference E-liquid | Marlboro® Red Cigarette | ||||||
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| Compound | µg/mL of 420 µL of E-liquid (3 cigarette equivalent) (n = 3) * | µg/mL of 420 µL of E-liquid (3 cigarette equivalent) on disk (n = 3) @ | µg/mL of 45 puffs of E-liquid (3 cigarette equivalent) on disk (n = 3) # | % Recovery ^ | µg per 3 cigarette equivalent from the primary literature ! | µg in 45 puffs (3 cigarette equivalent) on disk (n = 8) # | Estimated % Recovery ^ |
| Nicotine | 21227 ± 37 | 20144 ± 1397 | 1414 ± 66 | 6.7 | 39480 [ | 4719 ± 637 | 13.0 to 14.7% |
| 36435 [ | |||||||
| 32700 [ | |||||||
| 36210 [ | |||||||
| 35160 [ | |||||||
| 32025 [ | |||||||
| Nornicotine | 11.5 ± 0.5 | 5.6 ± 0.9 | Undetectable | 0.0 | 1509 [ | 68.3 ± 9.1 (1.45%) | 4.5 to 8.9% |
| 768 [ | |||||||
| 1526 [ | |||||||
| Cotinine | 15.5 ± 0.2 | 14.2 ± 0.7 | 1.0 ± 0.1 | 6.6 | not available | 55.9 ± 8.2 | not determinable |
| Anabasine | 7.8 ± 0.2 | 6.4 ± 0.9 | 0.5 ± 0.0 | 6.0 | 143 [ | 17.9 ± 2.1 | 6.0 to 29.8% |
| 60 [ | |||||||
| 296 [ | |||||||
| Anatabine | 16.7 ± 0.6 | 14.3 ± 0.9 | 1.2 ± 0.2 | 7.0 | 1107 [ | 46.2 ± 6.0 | 2.1 to 8.5% |
| 546 [ | |||||||
| 2214 [ | |||||||
| Myosmine | 14.1 ± 0 | 13.2 ± 1.0 | 1.1 ± 0.1 | 7.6 | 28 [ | 40.8 ± 5.4 | >100% |
Values given as Mean ± SEM determined from triplicates of three bottles of E-liquid or from Marlboro® Red cigarette. Values of in parenthesis represent alkaloid as a percent of nicotine. * = 420 µL of E-liquid is equivalent to amount vaporized in 45 puffs (i.e., 3 cigarette equivalent). @ = 420 µL is placed on a glass fiber disk and extracted in10 ml of methanol. # = 45 puffs aerosol or smoke extracted from glass fiber disks in 10 ml of methanol. ^ = percent of aerosol or smoke (based on total content) recovered from glass fiber disks. ! = Values found in the literature and adjusted to reflect the content in three cigarettes using 0.671 ± 0.005 g as the weight of tobacco in a Marlboro® Red cigarette.
Comparison of methodologies and concentrations for nicotine-related alkaloids in (A) E-liquids and (B) electronic cigarette (ECIG)-generated aerosol of the current study compared with other studies.
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| Current Study | Various refill solutions | 420 µL of E-liquid diluted in 10 mL of methanol | HPLC-PDA | 5-21 | BDL-15 | µg/mL BDL-66 | 15-835 | 3-37 | |||
| Trehy et al. [ | Various cartridges | Cartridge pad diluted in 50 mL of Methanol | HPLC-PDA | NA | BDL | µg/cartridge BDL | BDL-0.8 | <LOQ-0.1 | |||
| Etter et al. [ | Various refill solutions | Dilution with 1 M ammonia | GC-MS or GC-flame ionization | BDL-15 | BDL-39 | µg/mLBDL-83 | BDL-374 | BDL-77 | |||
| Liu et al. [ | Laboratory Reference E-liquid | 1 to 10 dilution in 100 mM ammonium acetate | LC-MS/MS | 5 | 31 | µg/g BDL | 23 | 6 | |||
| Flora et al. [ | Various Cartridges and refill Solutions | Dilution with 70% Methanol | LC-MS | <48 | <48 | µg/mL #<48 | <144 | <48 | |||
| B. NRAs in ECIG-generated aerosol | |||||||||||
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| Current Study | 33.6 | 45 | 5/10 | 5.7 | Methanol extraction from a glass fiber disk | HPLC-PDA | BDL | 16 | µg/mL @ 8 | 17 | 14 |
| Trehy et al. [ | 100 | 30 | ?/60 | ? | 10% acetonitrile in water using an impinge | HPLC-PDA | NA | BDL | µg/cartridge BDL | <LOQ | BDL |
| Margham et al. [ | 55 | 200 | 3/30 | 4.5 | ammonium acetate extraction from glass fiber disk * | HPLC-MS/MS | BDL | 1 | µg/collection <LOQ | <LOQ | 3 |
| Liu et al. [ | 55 | 50 | 3/30 | 5 | ammonium acetate extraction from glass fiber disk * | HPLC-MS/MS | 0.9 | NA | µg/collection 2.1 | 6.0 | <LOQ |
| Flora et al. [ | 55 | 100 | 4/30 | ? | extraction from glass fiber disk | LC-MS | <45-53 | <49 | µg/mL ! <38-44 | 128-138 | <47 |
NA = not available; BDL = below detection limit or