Drug-target interactions (DTIs) prediction plays a vital role in drug discovery and design. Current studies typically use only standard drug similarity and target similarity, but the influence of known interactions has not been taken into account. In this paper, we propose an ensembled computational approach called multi-similarity fusion and sparse dual-graph regularized matrix factorization (MSDGRMF) for DTIs prediction. Specifically, different similarities are integrated to mine more useful information from the known interactions. The dual-graph regularized matrix factorization is used to predict the DTIs, in which the manifold learning is used for the low-dimensional representation of the drugs and targets data. In addition, not all the...
Background: Identifying possible drug-target interactions (DTIs) has become an important task in dru...
Accurate identification of Drug Target Interactions (DTIs) is of great significance for understandin...
Drug–target interaction is crucial in the discovery of new drugs. Computational methods can be used ...
Drug-target interactions provide useful information for biomedical drug discovery as well as drug de...
The discovery of drug-target interactions (DTIs) is a very promising area of research with great pot...
International audienceAbstract The discovery of drug–target interactions (DTIs) is a very promising ...
International audienceAbstract The discovery of drug–target interactions (DTIs) is a very promising ...
International audienceAbstract The discovery of drug–target interactions (DTIs) is a very promising ...
International audienceAbstract The discovery of drug–target interactions (DTIs) is a very promising ...
The identification of potential interactions between drugs and target proteins is crucial in pharmac...
Abstract Background Identifying drug–target interactions (DTIs) plays a key role in drug development...
Abstract Background Identifying drug–target interactions (DTIs) plays a key role in drug development...
When a drug is developed, it is designed so that it interacts with a specific target of interest in ...
In pharmaceutical sciences, a crucial step of the drug discovery process is the identification of dr...
In pharmaceutical sciences, a crucial step of the drug discovery process is the identification of dr...
Background: Identifying possible drug-target interactions (DTIs) has become an important task in dru...
Accurate identification of Drug Target Interactions (DTIs) is of great significance for understandin...
Drug–target interaction is crucial in the discovery of new drugs. Computational methods can be used ...
Drug-target interactions provide useful information for biomedical drug discovery as well as drug de...
The discovery of drug-target interactions (DTIs) is a very promising area of research with great pot...
International audienceAbstract The discovery of drug–target interactions (DTIs) is a very promising ...
International audienceAbstract The discovery of drug–target interactions (DTIs) is a very promising ...
International audienceAbstract The discovery of drug–target interactions (DTIs) is a very promising ...
International audienceAbstract The discovery of drug–target interactions (DTIs) is a very promising ...
The identification of potential interactions between drugs and target proteins is crucial in pharmac...
Abstract Background Identifying drug–target interactions (DTIs) plays a key role in drug development...
Abstract Background Identifying drug–target interactions (DTIs) plays a key role in drug development...
When a drug is developed, it is designed so that it interacts with a specific target of interest in ...
In pharmaceutical sciences, a crucial step of the drug discovery process is the identification of dr...
In pharmaceutical sciences, a crucial step of the drug discovery process is the identification of dr...
Background: Identifying possible drug-target interactions (DTIs) has become an important task in dru...
Accurate identification of Drug Target Interactions (DTIs) is of great significance for understandin...
Drug–target interaction is crucial in the discovery of new drugs. Computational methods can be used ...