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Your search keyword '"Drug–target interactions"' showing total 20 results

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20 results on '"Drug–target interactions"'

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1. DrugReAlign: a multisource prompt framework for drug repurposing based on large language models.

2. Heter-LP: A heterogeneous label propagation algorithm and its application in drug repositioning.

3. Identification of drug candidates and repurposing opportunities through compound-target interaction networks.

4. DrugReAlign: a multisource prompt framework for drug repurposing based on large language models

5. MIFAM-DTI: a drug-target interactions predicting model based on multi-source information fusion and attention mechanism.

6. MFA-DTI: Drug-target interaction prediction based on multi-feature fusion adopted framework.

7. Predicting drug–protein interactions by preserving the graph information of multi source data.

8. A Biological Feature and Heterogeneous Network Representation Learning-Based Framework for Drug–Target Interaction Prediction.

9. DeepStack-DTIs: Predicting Drug–Target Interactions Using LightGBM Feature Selection and Deep-Stacked Ensemble Classifier.

10. MSPEDTI: Prediction of Drug–Target Interactions via Molecular Structure with Protein Evolutionary Information.

11. Comparative analysis of network-based approaches and machine learning algorithms for predicting drug-target interactions.

12. Drug-Target Interaction Prediction in Drug Repositioning Based on Deep Semi-Supervised Learning

13. Drug-target interaction prediction: A Bayesian ranking approach.

14. Large-Scale Prediction of Drug-Target Interaction: a Data-Centric Review.

15. A Maximum Flow-Based Approach to Prioritize Drugs for Drug Repurposing of Chronic Diseases

16. Improved prediction of drug-target interactions using regularized least squares integrating with kernel fusion technique.

17. Uncovering new drug properties in target-based drug-drug similarity networks

18. A Maximum Flow-Based Approach to Prioritize Drugs for Drug Repurposing of Chronic Diseases.

20. Identification of drug candidates and repurposing opportunities through compound-target interaction networks

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