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SSCMDA:Spy And Super Cluster Strategy For MiRNA-disease Association Prediction

Posted on:2019-09-17Degree:MasterType:Thesis
Country:ChinaCandidate:D XieFull Text:PDF
GTID:2428330545960672Subject:Applied Mathematics
Abstract/Summary:PDF Full Text Request
In the biological field,the identification of the associations between microRNAs(miRNAs)and diseases has been paid increasing attention as an extremely meaningful study for the clinical medicine.However,it is expensive and time-consuming to confirm miRNA-disease associations by experimental methods.Therefore,in recent years,several effective computational models for predicting the potential miRNA-disease associations have been developed.In this paper,we proposed the Spy and Super Cluster strategy for MiRNA-Disease Association prediction(SSCMDA)based on known miRNA-disease associations,integrated disease similarity and integrated miRNA similarity.SSCMDA adopted spy strategy to identify reliable negative samples from the miRNA-disease pairs without known associations for solving the problems that the mixed unknown miRNA-disease pairs containing potential associations and real negative associations will lead to inaccurate prediction results.Moreover,the super-cluster strategy could gather as many positive samples as possible to improve the accuracy of the prediction by overcoming the shortage of lacking sufficient positive training samples.As a result,the AUCs of global leave-one-out cross validation(LOOCV),local LOOCV and 5-fold cross validation were 0.9007,0.8747 and 0.8806+/-0.0025,respectively.According to the AUC results,SSCMDA has shown a significant improvement compared with some previous models.We further carried out case studies based on various version of HMDD database to test the prediction performance robustness of SSCMDA.We also implemented case study to examine whether SSCMDA was effective for new diseases without any known associated miRNAs.As a result,a large proportion of the predicted miRNAs have been verified by experimental reports.
Keywords/Search Tags:microRNA, disease, association prediction, spy strategy, super cluster strategy
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