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Novel chalcones derivatives with potential antineoplastic activity investigated by docking and molecular dynamics simulations
- Source :
- Repositório Digital do Instituto Evandro Chagas (Patuá), Instituto Evandro Chagas (IEC), instacron:IEC
- Publication Year :
- 2020
- Publisher :
- Taylor & Francis, 2020.
-
Abstract
- Universidade Federal do Amap?. Departamento de Ci?ncias Biol?gicas e da Sa?de. Macap?, AP, Brasil. Universidade Federal do Amap?. Departamento de Ci?ncias Biol?gicas e da Sa?de. Macap?, AP, Brasil. Universidade Federal do Amap?. Departamento de Ci?ncias Biol?gicas e da Sa?de. Macap?, AP, Brasil. Universidade Federal do Amap?. Departamento de Ci?ncias Biol?gicas e da Sa?de. Macap?, AP, Brasil. Universidade de S?o Paulo. Faculdade de Ci?ncias Farmac?uticas de Ribeir?o Preto. Ribeir?o Preto, SP, Brasil. Universidade de S?o Paulo. Faculdade de Ci?ncias Farmac?uticas de Ribeir?o Preto. Ribeir?o Preto, SP, Brasil. Minist?rio da Sa?de. Secretaria de Vigil?ncia em Sa?de. Instituto Evandro Chagas. Ananindeua, PA, Brasil. Minist?rio da Sa?de. Secretaria de Vigil?ncia em Sa?de. Instituto Evandro Chagas. Ananindeua, PA, Brasil. Universidade Federal do Amap?. Colegiado de Qu?mica. Macap?, AP, Brasil. Centro Brasileiro de Pesquisas F?sicas. Urca, RJ, Brasil. Universidade Federal do Amap?. Colegiado de Qu?mica. Macap?, AP, Brasil. Universidade Federal do Amap?. Departamento de Ci?ncias Biol?gicas e da Sa?de. Macap?, AP, Brasil. Glioblastoma is an aggressive primary tumor of the central nervous system (CNS). Is the most aggressive among infiltrative gliomas arising from the CNS. This tumor has low patient survival rate and several studies aiming at developing new drugs have increased. Patients with this cancer type face significant morbidity and mortality. This study evaluated the antineoplastic activity of synthetic chalcones (3a-3f) using in vitro glioblastoma models and molecular modeling. Cytotoxicity assay showed that Astrocitoma Hospital Ofir Loyola No 1 (AHOL1) and Uppsala 87 neoplastic glioblastoma lines (U87) cellular viability were significantly reduced compared to Healthy human fibroblasts cell lines (AN27) when exposed to chalcones. Interaction with the serine amino acid was present in the most promising and the reference binder docking, suggesting its importance inhibiting cell growth. Comparative analysis between the reference ligands and the molecules showed that the amino acid LYS352 present in all fittings, suggesting that this is the main amino acid for interaction with tubulin and are consistent with those in cytotoxicity assay, suggesting antineoplastic potential in glioblastoma. Long trajectory molecular dynamics studies were also carried out in order to investigate stability and conformations amongst the chalcones bound tubulin as well, in comparison to doxorubicin (here used as control), however future studies are needed to further assess the mechanism of inhibition of chalcones used in this investigation.
- Subjects :
- Sistema Nervoso Central
Antineoplastic Agents
Molecular Dynamics Simulation
Serine
Simula??o de Din?mica Molecular
Structure-Activity Relationship
Chalcones
Structural Biology
Cell Line, Tumor
Humans
U87
Cytotoxicity
Molecular Biology
Chalconas
chemistry.chemical_classification
biology
Molecular Structure
Cell growth
Chemistry
Simula??o de Acoplamento Molecular
General Medicine
In vitro
Amino acid
Molecular Docking Simulation
Tubulin
Docking (molecular)
Cancer research
biology.protein
Glioblastoma
Neoplasias do Sistema Nervoso Central
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- Repositório Digital do Instituto Evandro Chagas (Patuá), Instituto Evandro Chagas (IEC), instacron:IEC
- Accession number :
- edsair.doi.dedup.....7f87db37d5e63bac5bffe10fd2ee8d0e