modelMitoxantrone
Extends from Pharmacolibrary.Drugs.ATC.L.L01DB07.
Information
| name: | Mitoxantrone | |
| ATC code: | L01DB07 | route: | intravenous |
| compartments: | 3 | |
| dosage: | 12 | mg |
| volume of distribution: | 21.4 | L |
| clearance: | 18 | L/h |
| other parameters in model implementation | ||
Mitoxantrone is an antineoplastic agent in the class of anthracenediones, used for the treatment of certain types of cancer (including breast cancer, non-Hodgkin's lymphoma, and acute myeloid leukemia), and also for secondary progressive multiple sclerosis. It is an approved drug, although its use is limited by potential cardiac toxicity.
Pharmacokinetics
Pharmacokinetic parameters reported for adult cancer patients (various tumor types), predominantly female, with intravenous administration.
References
Launay, MC, et al., & Richard, B (1989). Population pharmacokinetics of mitoxantrone performed by a NONMEM method. Journal of pharmaceutical sciences 78(10) 877–880. DOI:10.1002/jps.2600781020 PUBMED:https://pubmed.ncbi.nlm.nih.gov/2600798
Feldman, EJ, et al., & Plezia, P (1993). Phase I clinical and pharmacokinetic evaluation of high-dose mitoxantrone in combination with cytarabine in patients with acute leukemia. Journal of clinical oncology : official journal of the American Society of Clinical Oncology 11(10) 2002–2009. DOI:10.1200/JCO.1993.11.10.2002 PUBMED:https://pubmed.ncbi.nlm.nih.gov/8410125
Rago, RP, et al., & Dalton, WS (2003). Safety and efficacy of the MDR inhibitor Incel (biricodar, VX-710) in combination with mitoxantrone and prednisone in hormone-refractory prostate cancer. Cancer chemotherapy and pharmacology 51(4) 297–305. DOI:10.1007/s00280-003-0573-4 PUBMED:https://pubmed.ncbi.nlm.nih.gov/12721757
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.Volume | Vdp (from PK_2C) | VdpPerKg*weight | Volume of distribution (m3) |
| Modelica.Units.SI.SpecificVolume | VdpPerKg (from PK_2C) | 0.9 | Volume of distribution peripheral(l/kg) |
| Pharmacolibrary.Types.Clearance | k12 (from PK_2C) | 1 | intercompartmental C-P clearance |
| Pharmacolibrary.Types.Clearance | k21 (from PK_2C) | 1 | intercompartmental P-C clearance |
| Pharmacolibrary.Types.Volume | Vdp2 (from PK_3C) | Vdp2PerKg*weight | Volume of distribution (m3) |
| Modelica.Units.SI.SpecificVolume | Vdp2PerKg (from PK_3C) | 0.9 | Volume of distribution peripheral 2 (l/kg) |
| Pharmacolibrary.Types.VolumeFlowRate | k13 (from PK_3C) | 1 | intercompartmental 1-3 clearance (l/min) |
| Pharmacolibrary.Types.VolumeFlowRate | k31 (from PK_3C) | 1 | intercompartmental 3-1 clearance (l/min) |
Connectors
| Type | Name | Default | Description |
|---|---|---|---|
| Types.ConcentrationOutput | C_central (from PK_1C) | ||
| Interfaces.ConcentrationPort_b | centralCPort (from PK_1C) | ||
| Interfaces.ConcentrationPort_b | peripheralCPort (from PK_2C) | ||
| Pharmacolibrary.Types.ConcentrationOutput | C_peripheral1 (from PK_2C) | ||
| Interfaces.ConcentrationPort_b | perihperal2Cport (from PK_3C) | ||
| Pharmacolibrary.Types.ConcentrationOutput | C_peripheral2 (from PK_3C) |
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 | |
| Pharmacolibrary.Pharmacokinetic.TransferFirstOrderNonSym | transfer (from PK_2C) | ||
| Pharmacolibrary.Pharmacokinetic.NoPerfusedTissueCompartment | peripheral (from PK_2C) | ||
| Pharmacolibrary.Pharmacokinetic.NoPerfusedTissueCompartment | peripheral1 (from PK_3C) | ||
| Pharmacolibrary.Pharmacokinetic.TransferFirstOrderNonSym | transfer1 (from PK_3C) |
Revisions
- 06/2025 Tomas Kulhanek, generated model from data extracted from PUBMED, DrugBank and LLM(GPT4.1)