Bodyweight-adjusted rivaroxaban for children with venous thromboembolism (EINSTEIN-Jr): results from three multicentre, single-arm, phase 2 studies.


Journal

The Lancet. Haematology
ISSN: 2352-3026
Titre abrégé: Lancet Haematol
Pays: England
ID NLM: 101643584

Informations de publication

Date de publication:
Oct 2019
Historique:
received: 22 03 2019
revised: 10 06 2019
accepted: 13 06 2019
pubmed: 20 8 2019
medline: 31 10 2019
entrez: 18 8 2019
Statut: ppublish

Résumé

Rivaroxaban has been shown to be efficacious for treatment of venous thromboembolism in adults, and has a reduced risk of bleeding compared with standard anticoagulants. We aimed to develop paediatric rivaroxaban regimens for the treatment of venous thromboembolism in children and adolescents. In this phase 2 programme, we did three studies to evaluate rivaroxaban treatment in children younger than 6 months, aged 6 months to 5 years, and aged 6-17 years. Our studies used a multicentre, single-arm design at 54 sites in Australia, Europe, Israel, Japan, and north America. We included children with objectively confirmed venous thromboembolism previously treated with low-molecular weight heparin, fondaparinux, or a vitamin K antagonist for at least 2 months or, in children who had catheter-related venous thromboembolism for at least 6 weeks. We administered rivaroxaban orally in a bodyweight-adjusted 20 mg-equivalent dose, based on physiologically-based pharmacokinetic modelling predictions and EINSTEIN-Jr phase 1 data in young adults, in either a once-daily (tablets; for those aged 6-17 years), twice-daily (in suspension; for those aged 6 months to 11 years), or three times-daily (in suspension; for those younger than 6 months) dosing regimen for 30 days (or 7 days for those younger than 6 months). The primary aim was to define rivaroxaban treatment regimens that match the target adult exposure range. The principal safety outcome was major bleeding and clinically relevant non-major bleeding. Analyses were per-protocol. The predefined efficacy outcomes were symptomatic recurrent venous thromboembolism, asymptomatic deterioration on repeat imaging at the end of the study treatment period. These trials are registered at ClinicalTrials.gov, numbers NCT02564718, NCT02309411, and NCT02234843. Between Feb 11, 2013, and Dec 20, 2017, we enrolled 93 children (ten children younger than 6 months; 15 children aged 6 months to 1 year; 25 children aged 2-5 years; 32 children aged 6-11 years; and 11 children aged 12-17 years) into our study. 89 (96%) children completed study treatment (30 days of treatment, or 7 days in those younger than 6 months), and 93 (100%) children received at least one dose of study treatment and were evaluable for the primary endpoints. None of the children had a major bleed, and four (4%, 95% CI 1·2-10·6) of these children had a clinically relevant non-major bleed (three children aged 12-17 years with menorrhagia and one child aged 6-11 years with gingival bleeding). We found no symptomatic recurrent venous thromboembolism in any patients (0%, 0·0-3·9). 24 (32%) of 75 patients with repeat imaging had their thrombotic burden resolved, 43 (57%) patients improved, and eight (11%) patients were unchanged. No patient deteriorated. We confirmed therapeutic rivaroxaban exposures with once-daily dosing in children with bodyweights of at least 30 kg and with twice-daily dosing in children with bodyweights of at least 20 kg and less than 30 kg. Children with low bodyweights (<20 kg, particularly <12 kg) showed low exposures so, for future studies, rivaroxaban dosages were revised for these weight categories, to match the target adult exposure range. 61 (66%) of 93 children had adverse events during the study. Pyrexia was the most common adverse event (ten [11%] events), and anaemia and neutropenia or febrile neutropenia were the most frequent grade 3 or worse events (four [4%] events each). No children died or were discontinued from rivaroxaban because of adverse events. Treatment with bodyweight-adjusted rivaroxaban appears to be safe in children. The treatment regimens that we confirmed in children with bodyweights of at least 20 kg and the revised treatment regimens that we predicted in those with bodyweights less than 20 kg will be evaluated in the EINSTEIN-Jr phase 3 trial in children with acute venous thromboembolism. Bayer AG, Janssen Research and Development.

Sections du résumé

BACKGROUND BACKGROUND
Rivaroxaban has been shown to be efficacious for treatment of venous thromboembolism in adults, and has a reduced risk of bleeding compared with standard anticoagulants. We aimed to develop paediatric rivaroxaban regimens for the treatment of venous thromboembolism in children and adolescents.
METHODS METHODS
In this phase 2 programme, we did three studies to evaluate rivaroxaban treatment in children younger than 6 months, aged 6 months to 5 years, and aged 6-17 years. Our studies used a multicentre, single-arm design at 54 sites in Australia, Europe, Israel, Japan, and north America. We included children with objectively confirmed venous thromboembolism previously treated with low-molecular weight heparin, fondaparinux, or a vitamin K antagonist for at least 2 months or, in children who had catheter-related venous thromboembolism for at least 6 weeks. We administered rivaroxaban orally in a bodyweight-adjusted 20 mg-equivalent dose, based on physiologically-based pharmacokinetic modelling predictions and EINSTEIN-Jr phase 1 data in young adults, in either a once-daily (tablets; for those aged 6-17 years), twice-daily (in suspension; for those aged 6 months to 11 years), or three times-daily (in suspension; for those younger than 6 months) dosing regimen for 30 days (or 7 days for those younger than 6 months). The primary aim was to define rivaroxaban treatment regimens that match the target adult exposure range. The principal safety outcome was major bleeding and clinically relevant non-major bleeding. Analyses were per-protocol. The predefined efficacy outcomes were symptomatic recurrent venous thromboembolism, asymptomatic deterioration on repeat imaging at the end of the study treatment period. These trials are registered at ClinicalTrials.gov, numbers NCT02564718, NCT02309411, and NCT02234843.
FINDINGS RESULTS
Between Feb 11, 2013, and Dec 20, 2017, we enrolled 93 children (ten children younger than 6 months; 15 children aged 6 months to 1 year; 25 children aged 2-5 years; 32 children aged 6-11 years; and 11 children aged 12-17 years) into our study. 89 (96%) children completed study treatment (30 days of treatment, or 7 days in those younger than 6 months), and 93 (100%) children received at least one dose of study treatment and were evaluable for the primary endpoints. None of the children had a major bleed, and four (4%, 95% CI 1·2-10·6) of these children had a clinically relevant non-major bleed (three children aged 12-17 years with menorrhagia and one child aged 6-11 years with gingival bleeding). We found no symptomatic recurrent venous thromboembolism in any patients (0%, 0·0-3·9). 24 (32%) of 75 patients with repeat imaging had their thrombotic burden resolved, 43 (57%) patients improved, and eight (11%) patients were unchanged. No patient deteriorated. We confirmed therapeutic rivaroxaban exposures with once-daily dosing in children with bodyweights of at least 30 kg and with twice-daily dosing in children with bodyweights of at least 20 kg and less than 30 kg. Children with low bodyweights (<20 kg, particularly <12 kg) showed low exposures so, for future studies, rivaroxaban dosages were revised for these weight categories, to match the target adult exposure range. 61 (66%) of 93 children had adverse events during the study. Pyrexia was the most common adverse event (ten [11%] events), and anaemia and neutropenia or febrile neutropenia were the most frequent grade 3 or worse events (four [4%] events each). No children died or were discontinued from rivaroxaban because of adverse events.
INTERPRETATION CONCLUSIONS
Treatment with bodyweight-adjusted rivaroxaban appears to be safe in children. The treatment regimens that we confirmed in children with bodyweights of at least 20 kg and the revised treatment regimens that we predicted in those with bodyweights less than 20 kg will be evaluated in the EINSTEIN-Jr phase 3 trial in children with acute venous thromboembolism.
FUNDING BACKGROUND
Bayer AG, Janssen Research and Development.

Identifiants

pubmed: 31420317
pii: S2352-3026(19)30161-9
doi: 10.1016/S2352-3026(19)30161-9
pii:
doi:

Substances chimiques

Anticoagulants 0
Rivaroxaban 9NDF7JZ4M3
Factor Xa EC 3.4.21.6

Banques de données

ClinicalTrials.gov
['NCT02564718', 'NCT02309411', 'NCT02234843']

Types de publication

Clinical Trial, Phase II Journal Article Multicenter Study

Langues

eng

Sous-ensembles de citation

IM

Pagination

e500-e509

Investigateurs

Paul Monagle (P)
Jeremy Robertson (J)
Gernot Grangl (G)
Christoph Male (C)
Werner Streif (W)
Jorge Carniero (J)
Sandra Logetto (S)
Leonardo Brandao (L)
Jacqueline Halton (J)
Pascal Amedro (P)
Damien Bonnet (D)
Jan Beyer-Westendorf (J)
Sven Dietrich (S)
Susanne Holzhauer (S)
Ulrike Nowak-Göttl (U)
Krisztian Kallay (K)
Gili Kenet (G)
Shoshana Revel-Vilk (S)
Hannah Tamary (H)
Paola Giordano (P)
Maria Abbattista (M)
Andrea Artoni (A)
Angelo C Molinari (AC)
Paola Saracco (P)
Paolo Simioni (P)
Daniela Tormene (D)
Hiroshi Ono (H)
Maroeska Wm Te Loo (MW)
Heleen Van Ommen (H)
Margreet A Veening (MA)
Monique H Suiker (MH)
Marjolein Peters (M)
Elena Samochatova (E)
Anastasia Shamardina (A)
Nizhny Novgorod (N)
Lyudmila Zubarovskaya (L)
Maria A Dasi (MA)
Maria Elorza (M)
Amparo Santamaria (A)
Manuel Sánchez-Luna (M)
Manuela Albisetti (M)
Sebastian Grunt (S)
Kaan Kavakli (K)
Tina Biss (T)
Philip Connor (P)
Mike Williams (M)
Suchitra Acharya (S)
Rumi Bhat (R)
Susan Kearney (S)
Riten Kumar (R)
Kavita Patel (K)
Madvi Rajpukar (M)
Jeffrey H Schwartz (JH)
Terry Vik (T)
Tung Wynn (T)
Donald L Yee (DL)
Guy Young (G)

Commentaires et corrections

Type : CommentIn

Informations de copyright

Copyright © 2019 Elsevier Ltd. All rights reserved.

Auteurs

Paul Monagle (P)

Department of Clinical Haematology, Royal Children's Hospital, Haematology Research Murdoch Children's Research Institute, and Department of Paediatrics, University of Melbourne, VIC, Australia.

Anthonie W A Lensing (AWA)

Bayer AG, Wuppertal, Germany. Electronic address: anthonie.lensing@bayer.com.

Kirstin Thelen (K)

Bayer AG, Wuppertal, Germany.

Ida Martinelli (I)

Angelo Bianchi Bonomi Haemophilia and Thrombosis Centre, Fondazione IRCCS Ca' Granda Ospedale Maggiore Policlinico, Milan, Italy.

Christoph Male (C)

Department of Paediatrics, Medical University of Vienna, Vienna, Austria.

Amparo Santamaría (A)

Department of Thrombosis and Haemostasis, University Hospital Vall d'Hebron, Barcelona, Spain.

Elena Samochatova (E)

Federal Research and Clinical Centre of Paediatric Haematology, Oncology and Immunology, Moscow, Russia.

Riten Kumar (R)

Division of Pediatric Hematology and Oncology, Nationwide Children's Hospital, The Ohio State University, Columbus, OH, USA.

Susanne Holzhauer (S)

Department of Paediatric Haematology and Oncology, Charité-Universitätsmedizin, Berlin, Germany.

Paola Saracco (P)

Department of Paediatrics, Haematology Unit, Azienda Ospedaliero-Universitaria Città della Salute e della Scienza Torino, Turin, Italy.

Paolo Simioni (P)

Thrombotic and Haemorrhagic Diseases Unit, Department of Medicine, Padova University Hospital, Padova, Italy.

Jeremy Robertson (J)

Haematology Service, Division of Medicine, Queensland Children's Hospital, South Brisbane, QLD, Australia.

Gernot Grangl (G)

Department of Paediatrics and Adolescence Medicine, Division of Paediatric Cardiology, Medical University of Graz, Graz, Austria.

Jacqueline Halton (J)

Children's Hospital of Eastern Ontario, University of Ottawa, Ottawa, ON, Canada.

Phillip Connor (P)

The Noah's Ark Children's Hospital for Wales, Cardiff, UK.

Guy Young (G)

Keck School of Medicine, University of Southern California, Children's Hospital Los Angeles, Los Angeles, CA, USA.

Angelo C Molinari (AC)

Thrombosis and Haemostasis Unit, Giannina Gaslini Children's Hospital, Genoa, Italy.

Ulrike Nowak-Göttl (U)

Thrombosis and Haemostasis Treatment Centre, Institute of Clinical Chemistry, University Hospital Schleswig-Holstein, Kiel, Germany.

Gili Kenet (G)

Sackler Faculty of Medicine, Tel Aviv University, Tel Aviv, Israel; Israeli National Haemophilia Centre and Thrombosis Unit and The Amalia Biron Thrombosis Research Institute, Sheba Medical Centre, Tel Hashomer, Israel.

Stefanie Kapsa (S)

Bayer AG, Wuppertal, Germany.

Stefan Willmann (S)

Bayer AG, Wuppertal, Germany.

Akos F Pap (AF)

Bayer AG, Wuppertal, Germany.

Michael Becka (M)

Bayer AG, Wuppertal, Germany.

Teresa Twomey (T)

Bayer US, Whippany, NJ, USA.

Jan Beyer-Westendorf (J)

Department of Medicine I, Division of Haematology and Haemostaseology, University Hospital Carl Gustav Carus, Dresden, Germany; King's Thrombosis Service, Department of Haematology, King's College London, London, UK.

Martin H Prins (MH)

Department of Clinical Epidemiology and Medical Technology Assessment, Maastricht University Medical Centre, Maastricht, The Netherlands.

Dagmar Kubitza (D)

Bayer AG, Wuppertal, Germany.

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