Estimated Costs of Pivotal Trials for Novel Therapeutic Agents Approved by the US Food and Drug Administration, 2015-2016

被引:242
作者
Moore, Thomas J. [1 ,2 ]
Zhang, Hanzhe [3 ,4 ]
Anderson, Gerard [3 ,5 ]
Alexander, G. Caleb [3 ,4 ,6 ]
机构
[1] Inst Safe Medicat Practices, 815 King St,Ste 302, Alexandria, VA 22214 USA
[2] George Washington Univ, Milken Inst Publ Hlth, Dept Epidemiol & Biostat, Washington, DC USA
[3] Johns Hopkins Bloomberg Sch Publ Hlth, Ctr Drug Safety & Effectiveness, Baltimore, MD USA
[4] Johns Hopkins Bloomberg Sch Publ Hlth, Dept Epidemiol, Baltimore, MD USA
[5] Johns Hopkins Bloomberg Sch Publ Hlth, Dept Hlth Policy & Management, Baltimore, MD USA
[6] Johns Hopkins Med, Div Gen Internal Med, Baltimore, MD USA
关键词
CLINICAL-TRIALS;
D O I
10.1001/jamainternmed.2018.3931
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
IMPORTANCE A critical question in health care is the extent of scientific evidence that should be required to establish that a new therapeutic agent has benefits that outweigh its risks. Estimating the costs of this evidence of efficacy provides an important perspective. OBJECTIVE To estimate costs and assess scientific characteristics of pivotal efficacy trials that supported the approval of new therapeutic agents by the US Food and Drug Administration (FDA) from 2015 to 2016. DESIGN AND SETTING This study identified 59 novel therapeutic drugs using the annual summary reports from the FDA Center for Drug Evaluation and Research. ClinicalTrials.gov, FDA reviews, and peer-reviewed publications that were publicly available in 2017 were used to identify 52 characteristics of each efficacy trial. Costs were calculated with a global clinical trial cost assessment tool available to contract research organizations and pharmaceutical sponsors. MAIN OUTCOMES AND MEASURES Estimated mean cost and 95% CIs based on industry benchmark data from 60 countries. Measures of trials' scientific characteristics included trial design (no control group, placebo, and active drug), end point (surrogate outcome, clinical scale, and clinical outcome), patient enrollment, and treatment duration. RESULTS A total of 138 pivotal clinical trials provided the basis for approval of 59 new therapeutic agents by the FDA from 2015 to 2016, with a median estimated cost of $19.0 million (interquartile range, $12.2 million-$33.1 million). Estimated costs ranged from less than $5 million for trials without a control group for 3 orphan drugs with fewer than 15 patients each to $346.8 million (95% CI, $252.0 million-$441.5 million) for a noninferiority trial with end points assessing clinical benefit. Twenty-six of 138 trials (18.8%) were uncontrolled, with a mean estimated cost of $13.5 million (95% CI, $10.1 million-$16.9 million). Trials designed with placebo or active drug comparators had an estimated mean cost of $35.1 million (95% CI, $25.4 million-$44.8 million). Costs also varied by trial end point, treatment duration, patient enrollment, and therapeutic area. CONCLUSIONS AND RELEVANCE The highest-cost trials were those in which the new agent had to be proved to be noninferior with clinical benefit end points compared with an agent already available or those that required larger patient populations to achieve statistical power to document smaller treatment effects or accrue infrequently occurring end points.
引用
收藏
页码:1451 / 1457
页数:7
相关论文
共 15 条
[1]  
[Anonymous], GUID IND PROV CLIN E
[2]   Innovation in the pharmaceutical industry: New estimates of R&D costs [J].
DiMasi, Joseph A. ;
Grabowski, Henry G. ;
Hansen, Ronald W. .
JOURNAL OF HEALTH ECONOMICS, 2016, 47 :20-33
[3]   Clinical Trial Evidence Supporting FDA Approval of Novel Therapeutic Agents, 2005-2012 [J].
Downing, Nicholas S. ;
Aminawung, Jenerius A. ;
Shah, Nilay D. ;
Krumholz, Harlan M. ;
Ross, Joseph S. .
JAMA-JOURNAL OF THE AMERICAN MEDICAL ASSOCIATION, 2014, 311 (04) :368-377
[4]   Reducing the costs of phase III cardiovascular clinical trials [J].
Eisenstein, EL ;
Lemons, PW ;
Tardiff, BE ;
Schulman, KA ;
Jolly, MK ;
Califf, RM .
AMERICAN HEART JOURNAL, 2005, 149 (03) :482-488
[5]  
Friedberg MW, 2017, JAMA INTERN MED, V177, P1058, DOI 10.1001/jamainternmed.2017.2142
[6]  
IQVIA, CLIN TRIAL OPT SOL
[7]  
R Foundation, The R Project for Statistical Computing
[8]  
Schwartz LM, 2017, NEW ENGL J MED, V377, P2405
[9]   Key cost drivers of pharmaceutical clinical trials in the United States [J].
Sertkaya, Aylin ;
Wong, Hui-Hsing ;
Jessup, Amber ;
Beleche, Trinidad .
CLINICAL TRIALS, 2016, 13 (02) :117-126
[10]  
US Department of Health and Human Services, GUID IND EXP PROGR S