Adverse drug reaction signal detection methods in spontaneous reporting system: A systematic review

Author:

Jiao Xue‐Feng1234,Pu Libin5,Lan Shan6,Li Hailong1234,Zeng Linan1234,Wang Huiqing7,Zhang Lingli12348ORCID

Affiliation:

1. Department of Pharmacy, West China Second University Hospital Sichuan University Chengdu China

2. Evidence‐Based Pharmacy Center, West China Second University Hospital Sichuan University Chengdu China

3. National Medical Products Administration (NMPA) Key Laboratory for Technical Research on Drug Products In Vitro and In Vivo Correlation Chengdu China

4. Key Laboratory of Birth Defects and Related Diseases of Women and Children Sichuan University, Ministry of Education Chengdu China

5. School of Pharmacy Lanzhou University Lanzhou China

6. Sichuan Center for Food and Drug Evaluation, Inspection & Monitoring, SCFDA Adverse Drug Reaction Monitoring Center Medical Device Technology Review and Evaluation Center Chengdu China

7. Medical Simulation Centre, West China Second University Hospital Sichuan University Chengdu China

8. Chinese Evidence‐based Medicine Center, West China Hospital Sichuan University Chengdu China

Abstract

AbstractBackgroundA series of signal detection methods have been developed to detect adverse drug reaction (ADR) signals in spontaneous reporting system. However, different signal detection methods yield quite different signal detection results, and we do not know which method has the best detection performance. How to choose the most suitable signal detection method is an urgent problem to be solved. In this study, we systematically reviewed the characteristics and application scopes of current signal detection methods, with the goal of providing references for the optimization selection of signal detection methods in spontaneous reporting system.MethodsWe searched six databases from inception to January 2023. The search strategy targeted literatures regarding signal detection methods in spontaneous reporting system. We used thematic analysis approach to summarize the advantages, disadvantages, and application scope of each signal detection method.ResultsA total of 93 literatures were included, including 27 reviews and 66 methodological studies. Moreover, 31 signal detection methods were identified in these literatures. Each signal detection method has its inherent advantages and disadvantages, resulting in different application scopes of these methods.ConclusionOur systematic review finds that there are variabilities in the advantages, disadvantages, and application scopes of different signal detection methods. This finding indicates that the most suitable signal detection method varies across different drug safety scenarios. Moreover, when selecting signal detection method in a particular drug safety scenario, the following factors need to be considered: purpose of research, database size, drug characteristics, adverse event characteristics, and characteristics of the relations between drugs and adverse events.

Publisher

Wiley

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