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Alzheimer: A Decade of Drug Design. Why Molecular Topology can be an Extra Edge

Background: The last decade was characterized by a growing awareness about the severity of dementia in the field of age-related and no age-related diseases and about the importance to invest resources in the research of new, effective treatments. Among the dementias, Alzheimer's plays a substan...

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Autores principales: Zanni, Riccardo, Garcia-Domenech, Ramon, Galvez-Llompart, Maria, Galvez, Jorge
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Bentham Science Publishers 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6080094/
https://www.ncbi.nlm.nih.gov/pubmed/29189164
http://dx.doi.org/10.2174/1570159X15666171129102042
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author Zanni, Riccardo
Garcia-Domenech, Ramon
Galvez-Llompart, Maria
Galvez, Jorge
author_facet Zanni, Riccardo
Garcia-Domenech, Ramon
Galvez-Llompart, Maria
Galvez, Jorge
author_sort Zanni, Riccardo
collection PubMed
description Background: The last decade was characterized by a growing awareness about the severity of dementia in the field of age-related and no age-related diseases and about the importance to invest resources in the research of new, effective treatments. Among the dementias, Alzheimer's plays a substantial role because of its extremely high incidence and fatality. Several pharmacological strategies have been tried but still now, Alzheimer keeps being an untreatable disease. In literature, the number of QSAR related drug design attempts about new treatments for Alzheimer is huge, but only few results can be considered noteworthy. Providing a detailed analysis of the actual situation and reporting the most notable results in the field of drug design and discovery, the current review focuses on the potential of molecular topology as a reliable tool in finding new anti-Alzheimer lead compounds. Methods: Published works on QSAR applied to the search of anti-Alzheimer's drugs during the last 10 years has been tracked. 2D and 3D-QSAR, HQSAR, topological indexes, etc. have been analyzed, as well as different mechanisms of action, such as MAO, AchE, etc. An example of topological indexes’ application to the search of potential anti-Alzheimer drugs is reported. Results: Results show that QSAR methods during the last decade represented an excellent approach to the search of new effective drugs against Alzheimer's. In particular, QSAR based on molecular topology allows the establishment of a direct structure-property link that results in the identification of new hits and leads. Conclusion: Molecular topology is a powerful tool for the discovery of new anti-Alzheimer drugs covering simultaneously different mechanisms of action, what may help to find a definitive cure for the disease.
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spelling pubmed-60800942019-01-01 Alzheimer: A Decade of Drug Design. Why Molecular Topology can be an Extra Edge Zanni, Riccardo Garcia-Domenech, Ramon Galvez-Llompart, Maria Galvez, Jorge Curr Neuropharmacol Article Background: The last decade was characterized by a growing awareness about the severity of dementia in the field of age-related and no age-related diseases and about the importance to invest resources in the research of new, effective treatments. Among the dementias, Alzheimer's plays a substantial role because of its extremely high incidence and fatality. Several pharmacological strategies have been tried but still now, Alzheimer keeps being an untreatable disease. In literature, the number of QSAR related drug design attempts about new treatments for Alzheimer is huge, but only few results can be considered noteworthy. Providing a detailed analysis of the actual situation and reporting the most notable results in the field of drug design and discovery, the current review focuses on the potential of molecular topology as a reliable tool in finding new anti-Alzheimer lead compounds. Methods: Published works on QSAR applied to the search of anti-Alzheimer's drugs during the last 10 years has been tracked. 2D and 3D-QSAR, HQSAR, topological indexes, etc. have been analyzed, as well as different mechanisms of action, such as MAO, AchE, etc. An example of topological indexes’ application to the search of potential anti-Alzheimer drugs is reported. Results: Results show that QSAR methods during the last decade represented an excellent approach to the search of new effective drugs against Alzheimer's. In particular, QSAR based on molecular topology allows the establishment of a direct structure-property link that results in the identification of new hits and leads. Conclusion: Molecular topology is a powerful tool for the discovery of new anti-Alzheimer drugs covering simultaneously different mechanisms of action, what may help to find a definitive cure for the disease. Bentham Science Publishers 2018-07 2018-07 /pmc/articles/PMC6080094/ /pubmed/29189164 http://dx.doi.org/10.2174/1570159X15666171129102042 Text en © 2018 Bentham Science Publishers https://creativecommons.org/licenses/by-nc/4.0/This is an open access article licensed under the terms of the Creative Commons Attribution-Non-Commercial 4.0 International Public License (CC BY-NC 4.0) (https://creativecommons.org/licenses/by-nc/4.0/legalcode), which permits unrestricted, non-commercial use, distribution and reproduction in any medium, provided the work is properly cited.
spellingShingle Article
Zanni, Riccardo
Garcia-Domenech, Ramon
Galvez-Llompart, Maria
Galvez, Jorge
Alzheimer: A Decade of Drug Design. Why Molecular Topology can be an Extra Edge
title Alzheimer: A Decade of Drug Design. Why Molecular Topology can be an Extra Edge
title_full Alzheimer: A Decade of Drug Design. Why Molecular Topology can be an Extra Edge
title_fullStr Alzheimer: A Decade of Drug Design. Why Molecular Topology can be an Extra Edge
title_full_unstemmed Alzheimer: A Decade of Drug Design. Why Molecular Topology can be an Extra Edge
title_short Alzheimer: A Decade of Drug Design. Why Molecular Topology can be an Extra Edge
title_sort alzheimer: a decade of drug design. why molecular topology can be an extra edge
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6080094/
https://www.ncbi.nlm.nih.gov/pubmed/29189164
http://dx.doi.org/10.2174/1570159X15666171129102042
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