Literature DB >> 20348004

The costs and cost-effectiveness of allogeneic peripheral blood stem cell transplantation versus bone marrow transplantation in pediatric patients with acute leukemia.

Yu-Feng Lin1, David R Lairson, Wenyaw Chan, Xianglin L Du, Kathryn S Leung, Alana A Kennedy-Nasser, Caridad A Martinez, Stephen M Gottschalk, Catherine M Bollard, Helen E Heslop, Malcolm K Brenner, Robert A Krance.   

Abstract

In a retrospective study, we evaluated the cost and cost-effectiveness of allogeneic peripheral blood stem cell transplantation (PBSCT) (n = 30) compared with bone marrow transplantation (BMT) (n = 110) in children with acute leukemia after 1 year of follow-up. Treatment success was defined as disease-free survival at 1 year posttransplantation. For patients at standard risk for disease, the treatment success rate was 57.1% for PBSCT recipients and 80.3% for BMT recipients (P = not significant [NS]). The average total cost per treatment success at 1 year in the standard-risk disease group was $512,294 for PBSCT recipients and $352,885 for BMT recipients (P = NS). For patients with high-risk disease, the treatment success rate was 18.8% for PBSCT recipients and 23.5% for BMT recipients (P = NS). The cumulative average cost was $457,078 in BMT recipients and $377,316 in PBSCT recipients (P = NS). Point estimates of the incremental cost-effectiveness ratio (ICER) indicate that in patients with standard-risk disease, allogeneic BMT had lower costs and greater effectiveness than PBSCT (ICER, -$687,108; 95% confidence interval [CI], $2.4 million to dominated). For patients with high-risk disease, BMT was more effective and more costly, and it had an ICER of $1.69 million (95% CI, $29.7 million to dominated) per additional treatment success. The comparative economic evaluation provides support for BMT in standard-risk patients, but much uncertainty precludes a clear advantage of either treatment option in patients with high-risk disease. More studies using larger and randomized controlled trials are needed to confirm the long-term cost-effectiveness of each procedure. Copyright (c) 2010 American Society for Blood and Marrow Transplantation. Published by Elsevier Inc. All rights reserved.

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Year:  2010        PMID: 20348004      PMCID: PMC2919628          DOI: 10.1016/j.bbmt.2010.03.016

Source DB:  PubMed          Journal:  Biol Blood Marrow Transplant        ISSN: 1083-8791            Impact factor:   5.742


  32 in total

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Journal:  N Z Med J       Date:  1991-07-24

2.  Clinical and economic analysis of allogeneic peripheral blood progenitor cell transplants: a Canadian perspective.

Authors:  S Couban; G Dranitsaris; P Andreou; S Price; L Tinker; R Foley; I R Walker; S Jamal; N Jamal; D Spaner; J Lipton; J Meharchand; H A Messner
Journal:  Bone Marrow Transplant       Date:  1998-12       Impact factor: 5.483

3.  Outcomes of transplantation with matched-sibling and unrelated-donor bone marrow in children with leukaemia.

Authors:  S Hongeng; R A Krance; L C Bowman; D K Srivastava; J M Cunningham; E M Horwitz; M K Brenner; H E Heslop
Journal:  Lancet       Date:  1997-09-13       Impact factor: 79.321

4.  Probabilistic sensitivity analysis methods for general decision models.

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Journal:  Comput Biomed Res       Date:  1986-06

5.  Economic evaluation of allogeneic bone marrow transplantation: a rudimentary model to generate estimates for the timely formulation of clinical policy.

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Journal:  J Clin Oncol       Date:  1996-05       Impact factor: 44.544

6.  Probabilistic sensitivity analysis using Monte Carlo simulation. A practical approach.

Authors:  P Doubilet; C B Begg; M C Weinstein; P Braun; B J McNeil
Journal:  Med Decis Making       Date:  1985       Impact factor: 2.583

7.  Cost effectiveness of bone marrow transplantation in acute nonlymphocytic leukemia.

Authors:  H G Welch; E B Larson
Journal:  N Engl J Med       Date:  1989-09-21       Impact factor: 91.245

8.  Clinical and economic comparison of allogeneic peripheral blood progenitor cell and bone marrow transplantation for acute lymphoblastic leukemia in children.

Authors:  L Madero; M González Vincent; M Ramirez; V Quintero; A Benito; M A Díaz
Journal:  Bone Marrow Transplant       Date:  2000-08       Impact factor: 5.483

9.  Comparison of haematological recovery times and supportive care requirements of autologous recovery phase peripheral blood stem cell transplants, autologous bone marrow transplants and allogeneic bone marrow transplants.

Authors:  L B To; M M Roberts; D N Haylock; P G Dyson; A L Branford; D Thorp; J Q Ho; G W Dart; N Horvath; M L Davy
Journal:  Bone Marrow Transplant       Date:  1992-04       Impact factor: 5.483

10.  The outcome of matched unrelated donor bone marrow transplantation in patients with hematologic malignancies using molecular typing for donor selection and graft-versus-host disease prophylaxis regimen of cyclosporine, methotrexate, and prednisone.

Authors:  A Nademanee; G M Schmidt; P Parker; A C Dagis; A Stein; D S Snyder; M O'Donnell; E P Smith; D E Stepan; A Molina
Journal:  Blood       Date:  1995-08-01       Impact factor: 22.113

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  15 in total

1.  Costs of hematopoietic stem cell transplantation in a developing country.

Authors:  Monica M Rivera-Franco; Eucario Leon-Rodriguez; Haydee L Castro-Saldaña
Journal:  Int J Hematol       Date:  2017-06-14       Impact factor: 2.490

2.  Association of hematopoietic cell transplantation-specific comorbidity index with resource utilization after allogeneic transplantation.

Authors:  L Decook; Y-H Chang; J Slack; D Gastineau; J Leis; P Noel; J Palmer; L Sproat; M Sorror; N Khera
Journal:  Bone Marrow Transplant       Date:  2017-04-24       Impact factor: 5.483

3.  Cost saving associated with implementing a stepwise approach to HLA typing of related donors before hematopoietic SCT.

Authors:  H Frangoul; D Crowe
Journal:  Bone Marrow Transplant       Date:  2014-02-24       Impact factor: 5.483

4.  How I treat childhood CML.

Authors:  Jeffrey R Andolina; Steven M Neudorf; Seth J Corey
Journal:  Blood       Date:  2011-12-30       Impact factor: 22.113

5.  Cost-Effectiveness of Chimeric Antigen Receptor T-Cell Therapy in Pediatric Relapsed/Refractory B-Cell Acute Lymphoblastic Leukemia.

Authors:  Reith R Sarkar; Nicholas J Gloude; Deborah Schiff; James D Murphy
Journal:  J Natl Cancer Inst       Date:  2019-07-01       Impact factor: 13.506

6.  Comparison of in-patient costs for children treated on the AAML0531 clinical trial: A report from the Children's Oncology Group.

Authors:  Kelly D Getz; Yimei Li; Todd A Alonzo; Matthew Hall; Robert B Gerbing; Lillian Sung; Yuan-Shung Huang; Staci Arnold; Alix E Seif; Tamara P Miller; Rochelle Bagatell; Brian T Fisher; Peter C Adamson; Alan Gamis; Ron Keren; Richard Aplenc
Journal:  Pediatr Blood Cancer       Date:  2015-05-06       Impact factor: 3.167

7.  Earlier Pediatric Psychology Consultation Predicts Lower Stem Cell Transplantation Hospital Costs.

Authors:  Meghan E McGrady; Naomi E Joffe; Ahna L H Pai
Journal:  J Pediatr Psychol       Date:  2018-05-01

Review 8.  Costs and cost-effectiveness of hematopoietic cell transplantation.

Authors:  Jaime M Preussler; Ellen M Denzen; Navneet S Majhail
Journal:  Biol Blood Marrow Transplant       Date:  2012-04-03       Impact factor: 5.742

Review 9.  Minimal Residual Disease Evaluation in Childhood Acute Lymphoblastic Leukemia: An Economic Analysis.

Authors: 
Journal:  Ont Health Technol Assess Ser       Date:  2016-03-08

10.  Cost-Effectiveness Analysis of an Adherence-Promotion Intervention for Children With Leukemia: A Markov Model-Based Simulation.

Authors:  Meghan E McGrady; Mark H Eckman; Maureen M O'Brien; Ahna L H Pai
Journal:  J Pediatr Psychol       Date:  2018-08-01
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