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Author Spotlight: Evaluating the Adjuvant Efficacy and Safety of Angong Niuhuang Pill in Viral Encephalitis Treatment
Published on: April 19, 2024
A response adaptive randomization platform trial for efficient evaluation of Ebola virus treatments: A model for
Scott M Berry1, Elizabeth A Petzold2, Peter Dull3
1Berry Consultants LLC, Austin, TX, USA University of Kansas Medical Center, Kansas City, KS, USA.
Abstract:
The outbreak of Ebola virus disease in West Africa is the largest ever recorded. Numerous treatment alternatives for Ebola have been considered, including widely available repurposed drugs, but initiation of enrollment into clinical trials has been limited. The proposed trial is an adaptive platform design. Multiple agents and combinations will be investigated simultaneously. Additionally, new agents may enter the trial as they become available, and failing agents may be removed. In order to accommodate the many possible agents and combinations, a critical feature of this design is the use of response adaptive randomization to assign treatment regimens. As the trial progresses, the randomization ratio evolves to favor the arms that are performing better, making the design also suitable for all-cause pandemic preparedness planning. The study was approved by US and Sierra Leone ethics committees, and reviewed by the US Food and Drug Administration. Additionally, data management, drug supply lines, and local sites were prepared. However, in response to the declining epidemic seen in February 2015, the trial was not initiated. Sierra Leone remains ready to rapidly activate the protocol as an emergency response trial in the event of a resurgence of Ebola. (ClinicalTrials.gov Identifier: NCT02380625.) In summary, we have designed a single controlled trial capable of efficiently identifying highly effective or failing regimens among a rapidly evolving list of proposed therapeutic alternatives for Ebola virus disease and to treat the patients within the trial effectively based on accruing data. Provision of these regimens, if found safe and effective, would have a major impact on future epidemics by providing effective treatment options.
Insights
This study designed an adaptive clinical trial for Ebola virus disease treatments. The trial efficiently identifies effective therapies, offering preparedness for future epidemics.
Area of Science:
- Infectious Diseases
- Clinical Trials
- Epidemiology
Background:
- The West African Ebola virus disease outbreak was the largest recorded.
- Limited clinical trial enrollment hindered the evaluation of numerous potential Ebola treatments.
Purpose of the Study:
- To design a single, controlled adaptive platform trial for evaluating multiple Ebola virus disease therapeutic alternatives.
- To efficiently identify highly effective or failing treatment regimens using response adaptive randomization.
Main Methods:
- An adaptive platform trial design was proposed to investigate multiple agents and combinations simultaneously.
- Response adaptive randomization was utilized to dynamically assign patients to treatment regimens based on accruing data.
- The trial design accommodated new agent entry and removal of failing agents.
Main Results:
- The trial protocol was approved by ethics committees and regulatory bodies, with logistical preparations completed.
- Despite readiness, the trial was not initiated due to a decline in the Ebola epidemic in February 2015.
- Sierra Leone remains prepared for rapid trial activation in case of an Ebola resurgence.
Conclusions:
- The designed trial efficiently identifies effective Ebola virus disease treatments and supports pandemic preparedness.
- Successful identification and provision of safe and effective regimens would significantly impact future epidemic responses.
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