modelM01BA02
Extends from Pharmacokinetic.Models.PK_1C_enteral.
Information
| name: | DipyrocetylAndCorticosteroids | |
| ATC code: | M01BA02 | route: | oral |
| compartments: | 1 | |
| dosage: | 500 | mg |
| volume of distribution: | 15 | L |
| clearance: | 1000 | mL/min |
| other parameters in model implementation | ||
Dipyrocetyl is an obscure or possibly obsolete analgesic/antipyretic compound; 'dipyrocetyl and corticosteroids' is a fixed-dose combination drug classified under ATC code M01BA02, indicated historically for inflammatory, rheumatic, and pain-related conditions. It is not widely approved or used in current clinical practice, and available data on its clinical use is extremely limited.
Pharmacokinetics
No published pharmacokinetic data found in literature or scientific databases for dipyrocetyl, or its combination with corticosteroids, for any population. The below parameters were estimated based on pharmacokinetic properties typical of non-steroidal anti-inflammatory drugs (such as salicylic acid derivatives) for reference adult individuals.
References
Krzyzanski, W, et al., & Jusko, WJ (2021). Population pharmacokinetic modeling of intramuscular and oral dexamethasone and betamethasone in Indian women. Journal of pharmacokinetics and pharmacodynamics 48(2) 261–272. DOI:10.1007/s10928-020-09730-z PUBMED:https://pubmed.ncbi.nlm.nih.gov/33389521
Hamitouche, N, et al., & Laviolle, B (2017). Population Pharmacokinetic-Pharmacodynamic Model of Oral Fludrocortisone and Intravenous Hydrocortisone in Healthy Volunteers. The AAPS journal 19(3) 727–735. DOI:10.1208/s12248-016-0041-9 PUBMED:https://pubmed.ncbi.nlm.nih.gov/28083797
Werumeus Buning, J, et al., & van Beek, AP (2017). Pharmacokinetics of oral hydrocortisone - Results and implications from a randomized controlled trial. Metabolism: clinical and experimental 71 7–16. DOI:10.1016/j.metabol.2017.02.005 PUBMED:https://pubmed.ncbi.nlm.nih.gov/28521880
Parameters
| Type | Name | Default | Description |
|---|---|---|---|
| Modelica.Units.SI.Mass | weight (from PK_1C) | 75 | patient weight (kg) |
| Modelica.Units.SI.SpecificVolume | VdPerKg (from PK_1C) | 0.9 | Volume of distribution (L/kg) |
| Modelica.Units.SI.MassFraction | F (from PK_1C) | 0.8 | bioavailiability (0-1) |
| Pharmacolibrary.Types.Clearance | Cl (from PK_1C) | 20 | clearance |
| Modelica.Units.SI.Time | adminTime (from PK_1C) | 60 | first administration time (s) |
| Modelica.Units.SI.Time | adminDuration (from PK_1C) | 600 | administration duration (s) |
| Modelica.Units.SI.Time | adminPeriod (from PK_1C) | 8*60*60 | period of administration (default 8 hours)(s) |
| Pharmacolibrary.Types.Mass | adminMass (from PK_1C) | 1000 | administration mass (mg) |
| Integer | adminCount (from PK_1C) | 8 | number of dose administered (1) |
| Pharmacolibrary.Types.Volume | Vd (from PK_1C) | VdPerKg*weight | Volume of distribution (m3) |
| Pharmacolibrary.Types.MassConcentration | Cmin (from PK_1C) | 0.004 | minimal therapeutic range |
| Pharmacolibrary.Types.MassConcentration | Cmax (from PK_1C) | 0.008 | minimal therapeutic range |
| Pharmacolibrary.Types.MassConcentration | Ctox_peak (from PK_1C) | 0.012 | toxicity peak level |
| Pharmacolibrary.Types.MassConcentration | Ctox_trough (from PK_1C) | 0.006 | toxicity trough level |
| Pharmacolibrary.Types.TransferRate | ka (from PK_1C_enteral) | 0.016666666666666666 | first order absorption rate |
| Modelica.Units.SI.Time | Tlag (from PK_1C_enteral) | 600 | delay between oral administration and absorption (default 10min) |
Connectors
| Type | Name | Default | Description |
|---|---|---|---|
| Types.ConcentrationOutput | C_central (from PK_1C) | ||
| Interfaces.ConcentrationPort_b | centralCPort (from PK_1C) |
Components
| Type | Name | Default | Description |
|---|---|---|---|
| Pharmacokinetic.NoPerfusedTissueCompartment | central (from PK_1C) | ||
| Pharmacokinetic.ClearanceDrivenElimination | elim (from PK_1C) | ||
| Sources.PeriodicDose | periodicDose (from PK_1C) | ||
| Modelica.Units.SI.Time | t1_2 (from PK_1C) | elimination half-life |
Revisions
- 06/2025 Tomas Kulhanek, generated model from data extracted from PUBMED, DrugBank and LLM(GPT4.1)