Ojeda-Montes_2019_Future.Med.Chem_11_1387

Reference

Title : Mining large databases to find new leads with low similarity to known actives: application to find new DPP-IV inhibitors - Ojeda-Montes_2019_Future.Med.Chem_11_1387
Author(s) : Ojeda-Montes MJ , Casanova-Marti , Gimeno A , Tomas-Hernandez S , Cereto-Massague A , Wolber G , Beltran-Debon R , Valls C , Mulero M , Pinent M , Pujadas G , Garcia-Vallve S
Ref : Future Med Chem , 11 :1387 , 2019
Abstract :

Aim: Fragment-based drug design or bioisosteric replacement is used to find new actives with low (or no) similarity to existing ones but requires the synthesis of nonexisting compounds to prove their predicted bioactivity. Protein-ligand docking or pharmacophore screening are alternatives but they can become computationally expensive when applied to very large databases such as ZINC. Therefore, fast strategies are necessary to find new leads in such databases. Materials & methods: We designed a computational strategy to find lead molecules with very low (or no) similarity to existing actives and applied it to DPP-IV. Results: The bioactivity assays confirm that this strategy finds new leads for DPP-IV inhibitors. Conclusion: This computational strategy reduces the time of finding new lead molecules.

PubMedSearch : Ojeda-Montes_2019_Future.Med.Chem_11_1387
PubMedID: 31298576

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Citations formats

Ojeda-Montes MJ, Casanova-Marti, Gimeno A, Tomas-Hernandez S, Cereto-Massague A, Wolber G, Beltran-Debon R, Valls C, Mulero M, Pinent M, Pujadas G, Garcia-Vallve S (2019)
Mining large databases to find new leads with low similarity to known actives: application to find new DPP-IV inhibitors
Future Med Chem 11 :1387

Ojeda-Montes MJ, Casanova-Marti, Gimeno A, Tomas-Hernandez S, Cereto-Massague A, Wolber G, Beltran-Debon R, Valls C, Mulero M, Pinent M, Pujadas G, Garcia-Vallve S (2019)
Future Med Chem 11 :1387