Virtual screening (VS) is an outstanding cornerstone in the drug discovery pipeline. A variety of computational approaches, which are generally classified as ligand-based (LB) and structure-based (SB) techniques, exploit key structural and physicochemical properties of ligands and targets to enable the screening of virtual libraries in the search of active compounds. Though LB and SB methods have found widespread application in the discovery of novel drug-like candidates, their complementary natures have stimulated continued e orts toward the development of hybrid strategies that combine LB and SB techniques, integrating them in a holistic computational framework that exploits the available information of both ligand and target to enhance the success of drug discovery projects. In this review, we analyze the main strategies and concepts that have emerged in the last years for defining hybrid LB + SB computational schemes in VS studies. Particularly, attention is focused on the combination of molecular similarity and docking, illustrating them with selected applications taken from the literature.
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Disseny de medicaments; Lligands (Bioquímica); Compostos heterocíclics; Química farmacèutica; Drug design; Ligands (Biochemistry); Heterocyclic compounds; Pharmaceutical chemistry
MDPI
Reproducció del document publicat a: https://doi.org/10.3390/molecules25204723
Molecules, 2020, vol. 25, p. 4723
https://doi.org/10.3390/molecules25204723
cc-by (c) Vázquez, Javier et al., 2020
http://creativecommons.org/licenses/by/3.0/es