Concentration-time Profiles of Ethanol in Arterial and Venous Blood and End-expired Breath During and After Intravenous Infusion
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Ethanol (0.40 g/kg) was administered to 13 healthy men by intravenous (i.v.) infusion at a constant rate for 30 min. The concentrations of ethanol in arterial blood (ABAC), venous blood (VBAC), and end-expired breath (BrAC) were measured at 17 exactly timed intervals. Blood-ethanol was determined by headspace gas chromatography and breath-ethanol was measured with a quantitative infrared analyzer (DataMaster). BrAC was multiplied by 2300 to estimate the concentrations of alcohol in blood. During the infusion of ethanol, ABAC exceeded VBAC by about 10 mg/dL on the average and ABAC was also higher than BrAC x 2300 by about 4 mg/dL on average. When infusion of alcohol ended, ABAC, VBAC, and BrAC were 94.8 +/- 2.06 (+/- SE), 84.7 +/- 1.54, and 89.3 +/- 2.10 mg/dL, respectively. The concentrations of alcohol in blood (ABAC and VBAC) and breath decreased abruptly after the administration of alcohol stopped and by 5 min postinfusion, the A-V differences in concentration of ethanol were small or negligible. The mean apparent half-life of the distribution plunge was 7 to 8 min, being about the same for ABAC, VBAC, and BrAC. The disappearance rate of ethanol was 15.5 +/- 0.55 mg/ dL/h (mean +/- SE) for arterial blood, 15.2 +/- 0.49 mg/dL/h for venous blood, and 16.3 +/- 0.73 mg/230 L/h for breath; no significant differences were noted (p > 0.05). We conclude that A-V differences in the concentration of ethanol exist during the loading phase but are rapidly abolished when the administration of ethanol terminates. In the post-absorptive phase of ethanol kinetics, when alcohol has mixed with the total body water, VBAC exceeds ABAC by about 1-2 mg/100 mL on average.
Moore S, Radunskaya A, Zollinger E, Grant K, Gonzales S, Walter N Math Biosci. 2022; 345:108778.
PMID: 35033503 PMC: 8918017. DOI: 10.1016/j.mbs.2022.108778.
To Infuse or Ingest in Human Laboratory Alcohol Research.
Cyders M, Plawecki M, Corbin W, King A, McCarthy D, Ramchandani V Alcohol Clin Exp Res. 2020; 44(4):764-776.
PMID: 32056250 PMC: 7166191. DOI: 10.1111/acer.14305.
Kaisdotter Andersson A, Kron J, Castren M, Muntlin Athlin A, Hok B, Wiklund L Scand J Trauma Resusc Emerg Med. 2015; 23:11.
PMID: 25652597 PMC: 4332718. DOI: 10.1186/s13049-014-0082-y.
Marxen M, Gan G, Schwarz D, Mennigen E, Pilhatsch M, Zimmermann U J Cereb Blood Flow Metab. 2014; 34(3):472-9.
PMID: 24398943 PMC: 3948127. DOI: 10.1038/jcbfm.2013.223.
Alcohol exposure rate control through physiologically based pharmacokinetic modeling.
Plawecki M, Zimmermann U, Vitvitskiy V, Doerschuk P, Crabb D, OConnor S Alcohol Clin Exp Res. 2012; 36(6):1042-9.
PMID: 22486174 PMC: 3370150. DOI: 10.1111/j.1530-0277.2011.01706.x.