modelElectrolyteSolutionsComb

Diagram of ElectrolyteSolutionsComb

Extends from Pharmacolibrary.Drugs.ATC.B.B05BA10.

Information

name:ElectrolyteSolutionsCombinations
ATC code:B05BA10
route:intravenous
compartments:1
dosage:500mg
volume of distribution:1L
clearance:0L/h
other parameters in model implementation

Combinations of electrolyte solutions are used for intravenous fluid replacement in cases of dehydration, electrolyte imbalances, and as carriers for other medications. These solutions typically contain sodium, potassium, chloride, calcium, and sometimes glucose, and are widely approved for use in hospitals and emergency medicine today.

Pharmacokinetics

Pharmacokinetic parameters for intravenous electrolyte combinations are generally not reported for healthy adults as these solutions are primarily used for fluid and electrolyte homeostasis and are not absorbed, distributed, or eliminated via standard pharmacokinetic models. Hence, classic PK parameters such as volume of distribution and clearance are not applicable.

References

  1. Bateman, RM, et al., & Prandi, E (2016). 36th International Symposium on Intensive Care and Emergency Medicine : Brussels, Belgium. 15-18 March 2016. Critical care (London, England) 20(Suppl 2) 94–None. DOI:10.1186/s13054-016-1208-6 PUBMED:https://pubmed.ncbi.nlm.nih.gov/27885969

  2. Levitskaia, TG, et al., & Thrall, KD (2010). Biomaterials for the decorporation of (85)Sr in the rat. Health physics 99(3) 394–400. DOI:10.1097/HP.0b013e3181c4717d PUBMED:https://pubmed.ncbi.nlm.nih.gov/20699703

  3. el-Mougi, M, et al., & Pierce, NF (1996). Efficacy of standard glucose-based and reduced-osmolarity maltodextrin-based oral rehydration solutions: effect of sugar malabsorption. Bulletin of the World Health Organization 74(5) 471–477. PUBMED:https://pubmed.ncbi.nlm.nih.gov/9002327

Parameters

TypeNameDefaultDescription
Modelica.Units.SI.Massweight (from PK_1C)75patient weight (kg)
Modelica.Units.SI.SpecificVolumeVdPerKg (from PK_1C)0.9Volume of distribution (L/kg)
Modelica.Units.SI.MassFractionF (from PK_1C)0.8bioavailiability (0-1)
Pharmacolibrary.Types.ClearanceCl (from PK_1C)20clearance
Modelica.Units.SI.TimeadminTime (from PK_1C)60first administration time (s)
Modelica.Units.SI.TimeadminDuration (from PK_1C)600administration duration (s)
Modelica.Units.SI.TimeadminPeriod (from PK_1C)8*60*60period of administration (default 8 hours)(s)
Pharmacolibrary.Types.MassadminMass (from PK_1C)1000administration mass (mg)
IntegeradminCount (from PK_1C)8number of dose administered (1)
Pharmacolibrary.Types.VolumeVd (from PK_1C)VdPerKg*weightVolume of distribution (m3)
Pharmacolibrary.Types.MassConcentrationCmin (from PK_1C)0.004minimal therapeutic range
Pharmacolibrary.Types.MassConcentrationCmax (from PK_1C)0.008minimal therapeutic range
Pharmacolibrary.Types.MassConcentrationCtox_peak (from PK_1C)0.012toxicity peak level
Pharmacolibrary.Types.MassConcentrationCtox_trough (from PK_1C)0.006toxicity trough level

Connectors

TypeNameDefaultDescription
Types.ConcentrationOutputC_central (from PK_1C)
Interfaces.ConcentrationPort_bcentralCPort (from PK_1C)

Components

TypeNameDefaultDescription
Pharmacokinetic.NoPerfusedTissueCompartmentcentral (from PK_1C)
Pharmacokinetic.ClearanceDrivenEliminationelim (from PK_1C)
Sources.PeriodicDoseperiodicDose (from PK_1C)
Modelica.Units.SI.Timet1_2 (from PK_1C)elimination half-life

Revisions

  • 06/2025 Tomas Kulhanek, generated model from data extracted from PUBMED, DrugBank and LLM(GPT4.1)