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3080 Ensuring Quality in Investigator-Initiated Clinical Trials through Monitoring Concepts Training

机译:3080通过监测概念培训确保研究者发起的临床试验的质量

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摘要

OBJECTIVES/SPECIFIC AIMS: Because clinical trial results are instrumental in the approval of a new drug or changes to the practice of medicine, ensuring the accuracy and validity of collected data is critical in the clinical trial process. This function, routinely carried out by clinical trial monitors in industry-sponsored trials, is often lacking in investigator-initiated trials (IITs) conducted in academia. To address this challenge, we have developed a self-study module that can be used to cross-train academic researchers in essential concepts and practical approaches to monitoring. Furthermore, we are applying a framework drawn from implementation science in the development and launch of this initiative. This framework, as used in other educational programs, is employed here to close the gap between initiative and practice, thereby effectively disseminating this training would improve the quality of clinical trials in academia. METHODS/STUDY POPULATION: This research project applied exploration, installation and implementation stages of the implementation science process by 1) exploring the need for a new initiative, 2) disseminating results, 3) engaging stakeholders, 4) creating standard operating procedures (SOPs) for installation and implementation, 5) studying user satisfaction and effectiveness, 6) addressing feedback and 7) conducting implementation. RESULTS/ANTICIPATED RESULTS: From literature review and internet searches we determined that although numerous GCP training resources exist, most are too broad and lack the practical approaches to meet the complex requirements of monitoring. Moreover, most of the offerings identified are costly or inaccessible. With only about 65% of IITs reported as being monitored (Figures 1 and 2), it appears that there is a clear need for training tools that are easily available to a broader audience. And because monitoring skills are substantially different from those associated with research coordination, it is not surprising that research professionals believed that they would need additional training to become proficient. To address this need, we began developing a monitoring module. We engaged key stakeholders from academia and industry to gain insights into their needs. The results indicated that although our training module was effective, supplementary information on the fundamentals of clinical trials should be included for those new to the field. After incorporating suggested changes and completing the module, we conducted user testing to determine if our module is ready to be broadly disseminated (Figures 3 and 4). Following positive feedback from the group, we are currently in the process of disseminating our module and studying its impact. DISCUSSION/SIGNIFICANCE OF IMPACT: IITs are instrumental in translating academic research into product development. Deficiencies in the quality control of these trials can lead to inadequacies in data accuracy and validity that could lead to significant delays in bringing innovative therapies to patients. Recent NIH policies require data and safety monitoring for all of the trials it supports. The latest addendum to ICH GCP, E6(R2), discusses a need for quality management across the clinical trial lifecycle. As we continue to disseminate and share information during the development of our self-study monitoring module, we are engaging key stakeholders from academia, government, and private institutions to understand and address quality challenges in conducting clinical trials. Finally, this research informs dissemination and implementation research, specifically for creating training for academic research professionals.
机译:目标/特定目的:由于临床试验结果对批准新药或改变药物实践具有帮助作用,因此确保收集数据的准确性和有效性对于临床试验过程至关重要。这种功能通常由临床试验监测人员在行业赞助的试验中常规执行,但在学术界进行的研究者发起的试验(IIT)中通常缺乏。为了应对这一挑战,我们开发了一个自学模块,可用于对学术研究人员进行基本概念和实际监测方法的交叉培训。此外,我们正在从实施科学中汲取框架,以开发和启动该计划。如在其他教育计划中所使用的,此框架用于缩小主动性与实践之间的差距,从而有效地传播这种培训将提高学术界临床试验的质量。方法/研究人群:该研究项目通过以下步骤应用了实施科学过程的探索,安装和实施阶段:1)探索对新计划的需求; 2)传播结果; 3)吸引利益相关者; 4)创建标准操作程序(SOP)进行安装和实施; 5)研究用户的满意度和有效性; 6)解决反馈问题; 7)进行实施。结果/预期结果:通过文献综述和互联网搜索,我们确定,尽管存在大量的GCP培训资源,但大多数培训资源过于广泛,缺乏满足监控复杂要求的实用方法。此外,大多数确定的产品价格昂贵或无法获得。据报告,只有约65%的IIT受监视(图1和2),似乎显然需要易于广泛使用的培训工具。而且,由于监控技能与研究协调相关的技能有很大不同,因此研究专业人员认为他们需要更多的培训才能熟练,这不足为奇。为了满足这一需求,我们开始开发监视模块。我们邀请了来自学术界和行业的关键利益相关者,以深入了解他们的需求。结果表明,尽管我们的培训模块是有效的,但对于那些刚接触该领域的人,应包括有关临床试验基础知识的补充信息。纳入建议的更改并完成模块后,我们进行了用户测试,以确定我们的模块是否已准备好广泛传播(图3和4)。在小组获得积极反馈之后,我们目前正在传播我们的模块并研究其影响。讨论/意义:IIT在将学术研究转化为产品开发中发挥了作用。这些试验的质量控制方面的缺陷可能导致数据准确性和有效性不足,从而可能严重延迟向患者提供创新疗法的过程。 NIH最新政策要求对其支持的所有试验都进行数据和安全监控。 ICH GCP的最新附录E6(R2)讨论了整个临床试验生命周期中对质量管理的需求。随着我们在自学监测模块的开发过程中继续传播和共享信息,我们正在吸引学术界,政府和私人机构的主要利益相关者参与,以了解和应对进行临床试验中的质量挑战。最后,本研究为传播和实施研究提供了信息,特别是为学术研究专业人员提供培训。

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