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Erschienen in: Cancer Chemotherapy and Pharmacology 4/2019

08.07.2019 | Original Article

Population pharmacokinetics of trabectedin in adolescent patients with cancer

verfasst von: Italo Poggesi, Belén Valenzuela, Daniele Ouellet, Martha Gonzalez, Vera Hillewaert, Sylvain Baruchel, Elizabeth Fox, Juan Jose Perez-Ruixo

Erschienen in: Cancer Chemotherapy and Pharmacology | Ausgabe 4/2019

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Abstract

Purpose

To characterize the trabectedin population pharmacokinetics in children and adolescent patients with cancer and compare it with the trabectedin pharmacokinetics in adults.

Methods

Plasma concentrations from ten adolescent and three children with cancer (age range 4.0–17.0 years) treated with trabectedin at doses ranging from 1.1 to 1.7 mg/m2, administered as a 24-h continuous intravenous infusion every 3 weeks, were available for the analysis. An external model evaluation was performed to verify whether a previously developed adult population pharmacokinetic model was predictive of the pediatric plasma concentrations of trabectedin. The maximum a posteriori estimation of the individual pharmacokinetic parameters for pediatric patients was conducted, after successful completion of the external evaluation step. The relationships between pharmacokinetic parameters and body size were evaluated.

Results

External evaluation methods showed no major differences between the adult population and children and adolescent patients of this study. The mean ± standard deviation (SD) of the individual estimated clearance and central volume of distribution in these children/adolescent patients was 36.4 ± 16.1 L/h and 13.2 ± 6.54 L, respectively. These values were similar to the typical values reported for adult patients—37.6 L/h and 13.9 L (for females) and 16.1 L (for males). The median area under the plasma concentration versus time curve (AUC) in children/adolescent patients was 55.1 µg h/L, while in the adult population the median AUC was 61.3 µg h/L, both administered a 1.5 mg/m2 dose regimen with mean (range) BSA for adults = 1.86 (0.90–2.80) vs children/adolescent patients = 1.49 (0.66–2.54).

Conclusions

The adult population pharmacokinetic model adequately described the trabectedin plasma concentrations and its variability in the pediatric population of patients involved in this assessment that mostly comprised adolescents. The trabectedin systemic exposure achieved in this population was comparable (within 12%) to the exposure obtained in adult population when the same dose, expressed in mg/m2, was administered.
Literatur
3.
Zurück zum Zitat Pommier Y, Kohlhagen G, Bailly C, Waring M, Mazumder A, Kohn KW (1996) DNA sequence- and structure-selective alkylation of guanine N2 in the DNA minor groove by ecteinascidin 743, a potent antitumor compound from the Caribbean tunicate Ecteinascidia turbinata. Biochemistry 35(41):13303–13309. https://doi.org/10.1021/bi960306b CrossRefPubMed Pommier Y, Kohlhagen G, Bailly C, Waring M, Mazumder A, Kohn KW (1996) DNA sequence- and structure-selective alkylation of guanine N2 in the DNA minor groove by ecteinascidin 743, a potent antitumor compound from the Caribbean tunicate Ecteinascidia turbinata. Biochemistry 35(41):13303–13309. https://​doi.​org/​10.​1021/​bi960306b CrossRefPubMed
4.
Zurück zum Zitat Germano G, Frapolli R, Belgiovine C, Anselmo A, Pesce S, Liguori M, Erba E, Uboldi S, Zucchetti M, Pasqualini F, Nebuloni M, van Rooijen N, Mortarini R, Beltrame L, Marchini S, Fuso Nerini I, Sanfilippo R, Casali PG, Pilotti S, Galmarini CM, Anichini A, Mantovani A, D’Incalci M, Allavena P (2013) Role of macrophage targeting in the antitumor activity of trabectedin. Cancer Cell 23(2):249–262. https://doi.org/10.1016/j.ccr.2013.01.008 CrossRefPubMed Germano G, Frapolli R, Belgiovine C, Anselmo A, Pesce S, Liguori M, Erba E, Uboldi S, Zucchetti M, Pasqualini F, Nebuloni M, van Rooijen N, Mortarini R, Beltrame L, Marchini S, Fuso Nerini I, Sanfilippo R, Casali PG, Pilotti S, Galmarini CM, Anichini A, Mantovani A, D’Incalci M, Allavena P (2013) Role of macrophage targeting in the antitumor activity of trabectedin. Cancer Cell 23(2):249–262. https://​doi.​org/​10.​1016/​j.​ccr.​2013.​01.​008 CrossRefPubMed
5.
Zurück zum Zitat Demetri GD, von Mehren M, Jones RL, Hensley ML, Schuetze SM, Staddon A, Milhem M, Elias A, Ganjoo K, Tawbi H, Van Tine BA, Spira A, Dean A, Khokhar NZ, Park YC, Knoblauch RE, Parekh TV, Maki RG, Patel SR (2016) Efficacy and safety of trabectedin or dacarbazine for metastatic liposarcoma or leiomyosarcoma after failure of conventional chemotherapy: results of a phase III randomized multicenter clinical trial. J Clin Oncol 34(8):786–793. https://doi.org/10.1200/JCO.2015.62.4734 CrossRefPubMed Demetri GD, von Mehren M, Jones RL, Hensley ML, Schuetze SM, Staddon A, Milhem M, Elias A, Ganjoo K, Tawbi H, Van Tine BA, Spira A, Dean A, Khokhar NZ, Park YC, Knoblauch RE, Parekh TV, Maki RG, Patel SR (2016) Efficacy and safety of trabectedin or dacarbazine for metastatic liposarcoma or leiomyosarcoma after failure of conventional chemotherapy: results of a phase III randomized multicenter clinical trial. J Clin Oncol 34(8):786–793. https://​doi.​org/​10.​1200/​JCO.​2015.​62.​4734 CrossRefPubMed
9.
Zurück zum Zitat Beumer JH, Lopez-Lazaro L, Schellens JH, Beijnen JH, van Tellingen O (2009) Evaluation of human plasma protein binding of trabectedin (Yondelis, ET-743). Curr Clin Pharmacol 4(1):38–42CrossRef Beumer JH, Lopez-Lazaro L, Schellens JH, Beijnen JH, van Tellingen O (2009) Evaluation of human plasma protein binding of trabectedin (Yondelis, ET-743). Curr Clin Pharmacol 4(1):38–42CrossRef
12.
Zurück zum Zitat Perez-Ruixo JJ, Zannikos P, Hirankarn S, Stuyckens K, Ludwig EA, Soto-Matos A, Lopez-Lazaro L, Owen JS (2007) Population pharmacokinetic meta-analysis of trabectedin (ET-743, Yondelis) in cancer patients. Clin Pharmacokinet 46(10):867–884CrossRef Perez-Ruixo JJ, Zannikos P, Hirankarn S, Stuyckens K, Ludwig EA, Soto-Matos A, Lopez-Lazaro L, Owen JS (2007) Population pharmacokinetic meta-analysis of trabectedin (ET-743, Yondelis) in cancer patients. Clin Pharmacokinet 46(10):867–884CrossRef
14.
Zurück zum Zitat Lau L, Supko JG, Blaney S, Hershon L, Seibel N, Krailo M, Qu W, Malkin D, Jimeno J, Bernstein M, Baruchel S (2005) A phase I and pharmacokinetic study of ecteinascidin-743 (Yondelis) in children with refractory solid tumors. A Children’s Oncology Group study. Clin Cancer Res 11(2 Pt 1):672–677PubMed Lau L, Supko JG, Blaney S, Hershon L, Seibel N, Krailo M, Qu W, Malkin D, Jimeno J, Bernstein M, Baruchel S (2005) A phase I and pharmacokinetic study of ecteinascidin-743 (Yondelis) in children with refractory solid tumors. A Children’s Oncology Group study. Clin Cancer Res 11(2 Pt 1):672–677PubMed
16.
Zurück zum Zitat Baruchel S, Pappo A, Krailo M, Baker KS, Wu B, Villaluna D, Lee-Scott M, Adamson PC, Blaney SM (2012) A phase 2 trial of trabectedin in children with recurrent rhabdomyosarcoma, Ewing sarcoma and non-rhabdomyosarcoma soft tissue sarcomas: a report from the Children’s Oncology Group. Eur J Cancer 48(4):579–585. https://doi.org/10.1016/j.ejca.2011.09.027 CrossRefPubMed Baruchel S, Pappo A, Krailo M, Baker KS, Wu B, Villaluna D, Lee-Scott M, Adamson PC, Blaney SM (2012) A phase 2 trial of trabectedin in children with recurrent rhabdomyosarcoma, Ewing sarcoma and non-rhabdomyosarcoma soft tissue sarcomas: a report from the Children’s Oncology Group. Eur J Cancer 48(4):579–585. https://​doi.​org/​10.​1016/​j.​ejca.​2011.​09.​027 CrossRefPubMed
17.
Zurück zum Zitat NONMEM Users Guides (1989–2011). Icon Development Solutions, Ellicott City NONMEM Users Guides (1989–2011). Icon Development Solutions, Ellicott City
18.
Zurück zum Zitat R Development Core Team (2007) R: a language and environment for statistical computing. R Foundation for Statistical Computing, Vienna. ISBN 3-900051-07-0. http://www.R-project.org R Development Core Team (2007) R: a language and environment for statistical computing. R Foundation for Statistical Computing, Vienna. ISBN 3-900051-07-0. http://​www.​R-project.​org
20.
Zurück zum Zitat Yano Y, Beal SL, Sheiner LB (2001) Evaluating pharmacokinetic/pharmacodynamic models using the posterior predictive check. J Pharmacokinet Pharmacodyn 28(2):171–192CrossRef Yano Y, Beal SL, Sheiner LB (2001) Evaluating pharmacokinetic/pharmacodynamic models using the posterior predictive check. J Pharmacokinet Pharmacodyn 28(2):171–192CrossRef
26.
Zurück zum Zitat van Kesteren C, Cvitkovic E, Taamma A, Lopez-Lazaro L, Jimeno JM, Guzman C, Math t RA, Schellens JH, Misset JL, Brain E, Hillebrand MJ, Rosing H, Beijnen JH (2000) Pharmacokinetics and pharmacodynamics of the novel marine-derived anticancer agent ecteinascidin 743 in a phase I dose-finding study. Clin Cancer Res 6(12):4725–4732PubMed van Kesteren C, Cvitkovic E, Taamma A, Lopez-Lazaro L, Jimeno JM, Guzman C, Math t RA, Schellens JH, Misset JL, Brain E, Hillebrand MJ, Rosing H, Beijnen JH (2000) Pharmacokinetics and pharmacodynamics of the novel marine-derived anticancer agent ecteinascidin 743 in a phase I dose-finding study. Clin Cancer Res 6(12):4725–4732PubMed
Metadaten
Titel
Population pharmacokinetics of trabectedin in adolescent patients with cancer
verfasst von
Italo Poggesi
Belén Valenzuela
Daniele Ouellet
Martha Gonzalez
Vera Hillewaert
Sylvain Baruchel
Elizabeth Fox
Juan Jose Perez-Ruixo
Publikationsdatum
08.07.2019
Verlag
Springer Berlin Heidelberg
Erschienen in
Cancer Chemotherapy and Pharmacology / Ausgabe 4/2019
Print ISSN: 0344-5704
Elektronische ISSN: 1432-0843
DOI
https://doi.org/10.1007/s00280-019-03899-y

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