Chinese Journal of Pharmacovigilance ›› 2022, Vol. 19 ›› Issue (3): 270-274.
DOI: 10.19803/j.1672-8629.2022.03.08

Previous Articles     Next Articles

VigiRank prediction model of Uppsala monitoring center

CHEN Chao1, ZHAO Yunfei2, WANG Changzhi1, GONG Lixiong1,#, LIU Wei2,*   

  1. 1Center for Drug Reevaluation of Henan, Zhengzhou Henan 450008, China;
    2School of Pharmaceutical Sciences, Zhengzhou University, Zhengzhou Henan 450001, China
  • Received:2021-07-16 Online:2022-03-15 Published:2022-03-16

Abstract: Objective To outline the principles, processes and applications of the vigiRank signal detection method in Uppsala Monitoring Centre (UMC) so as to provide reference for the establishment and improvement of pharmacovigilance signal detection statistics in China. Methods Scopus, Web of Science, PubMed and other databases were searched for the purpose of literature research, and the UMC official website was consulted to analyze the workflow and application of the vigiRank prediction model. Results VigiRank,a signal detection method developed by UMC, combined multiple strength-of-evidence aspects of adverse drug reaction (ADR) reports, including Informative reports (INF), Narrative (NAR), Dechallenge (DCH), Rechallenge (RCH), Causality assessment (CAU and CAU+), Time-to-onset (TTO), Sole reporting (SOL), Multiple reporting elements (MUL), Resultsreporting (REC), Disproportional reporting (DIS), Geographic spread (GEO), and Time trend (TRE). According to the lasso-logistic model, five predictive variables were included in the vigiRank score system and the vigiRank score of a drug-ADR pair was calculated. An expert team conducted a preliminary evaluation in the descending order of scores, and chose drug-ADR pairs that needed to be further analyzed before they conducted an in-depth evaluation and finally screened out risk signals. Conclusion VigiRank has taken into account the number and quality of ADR reports, and is able to identify early signs of harm from drugs, which is of great referential value for improving the detection methods of ADR signals in China.

Key words: adverse drug reaction, signal detection, Uppsala Monitoring Center, vigiRank

CLC Number: