Prevention of Deficit in Neuropsychiatric Disorders through Monitoring of Arsenic and Its Derivatives as Well as Through Bioinformatics and Cheminformatics
Neuropsychiatric disorders are induced by various risk factors, including direct exposure to environmental chemicals. Arsenic exposure induces neurodegeneration and severe psychiatric disorders, but the molecular mechanisms by which brain damage is induced are not yet elucidated. Our aim is to bette...
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doaj-643bdc3e02e244ed8527e0ccc8d2ec392020-11-24T22:15:48ZengMDPI AGInternational Journal of Molecular Sciences1422-00672019-04-01208180410.3390/ijms20081804ijms20081804Prevention of Deficit in Neuropsychiatric Disorders through Monitoring of Arsenic and Its Derivatives as Well as Through Bioinformatics and CheminformaticsSperanta Avram0Ana Maria Udrea1Adina Negrea2Mihaela Ciopec3Narcis Duteanu4Carmen Postolache5Corina Duda-Seiman6Daniel Duda-Seiman7Sergey Shaposhnikov8Faculty of Biology, University of Bucharest, Splaiul Independentei 91-95, 050095 Bucharest, RomaniaNational Institute for Laser Plasma and Radiation Physics, Atomistilor Street 409, 077125 Magurele, RomaniaPolitehnica University of Timisoara, Faculty of Industrial Chemistry and Environmental Engineering, Piata Victoriei, 2, 300006 Timisoara, RomaniaPolitehnica University of Timisoara, Faculty of Industrial Chemistry and Environmental Engineering, Piata Victoriei, 2, 300006 Timisoara, RomaniaPolitehnica University of Timisoara, Faculty of Industrial Chemistry and Environmental Engineering, Piata Victoriei, 2, 300006 Timisoara, RomaniaFaculty of Biology, University of Bucharest, Splaiul Independentei 91-95, 050095 Bucharest, RomaniaFaculty of Chemistry, Biology, Geography, West University of Timișoara, I.H.Pestalozzi 16, 300115 Timisoara, RomaniaUniversity of Medicine and Pharmacy "Victor Babes, Timişoara, Eftimie Murgu Square 2, 300041 Timisoara, RomaniaNorgenotech AS, Gaustadalleen 21, 0349 Oslo, NorwayNeuropsychiatric disorders are induced by various risk factors, including direct exposure to environmental chemicals. Arsenic exposure induces neurodegeneration and severe psychiatric disorders, but the molecular mechanisms by which brain damage is induced are not yet elucidated. Our aim is to better understand the molecular mechanisms of arsenic toxicity in the brain and to elucidate possible ways to prevent arsenic neurotoxicity, by reviewing significant experimental, bioinformatics, and cheminformatics studies. Brain damage induced by arsenic exposure is discussed taking in account: the correlation between neuropsychiatric disorders and the presence of arsenic and its derivatives in the brain; possible molecular mechanisms by which arsenic induces disturbances of cognitive and behavioral human functions; and arsenic influence during psychiatric treatments. Additionally, we present bioinformatics and cheminformatics tools used for studying brain toxicity of arsenic and its derivatives, new nanoparticles used as arsenic delivery systems into the human body, and experimental ways to prevent arsenic contamination by its removal from water. The main aim of the present paper is to correlate bioinformatics, cheminformatics, and experimental information on the molecular mechanism of cerebral damage induced by exposure to arsenic, and to elucidate more efficient methods used to reduce its toxicity in real groundwater.https://www.mdpi.com/1422-0067/20/8/1804arsenicbrainbioinformaticscheminformaticsnanoparticles |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Speranta Avram Ana Maria Udrea Adina Negrea Mihaela Ciopec Narcis Duteanu Carmen Postolache Corina Duda-Seiman Daniel Duda-Seiman Sergey Shaposhnikov |
spellingShingle |
Speranta Avram Ana Maria Udrea Adina Negrea Mihaela Ciopec Narcis Duteanu Carmen Postolache Corina Duda-Seiman Daniel Duda-Seiman Sergey Shaposhnikov Prevention of Deficit in Neuropsychiatric Disorders through Monitoring of Arsenic and Its Derivatives as Well as Through Bioinformatics and Cheminformatics International Journal of Molecular Sciences arsenic brain bioinformatics cheminformatics nanoparticles |
author_facet |
Speranta Avram Ana Maria Udrea Adina Negrea Mihaela Ciopec Narcis Duteanu Carmen Postolache Corina Duda-Seiman Daniel Duda-Seiman Sergey Shaposhnikov |
author_sort |
Speranta Avram |
title |
Prevention of Deficit in Neuropsychiatric Disorders through Monitoring of Arsenic and Its Derivatives as Well as Through Bioinformatics and Cheminformatics |
title_short |
Prevention of Deficit in Neuropsychiatric Disorders through Monitoring of Arsenic and Its Derivatives as Well as Through Bioinformatics and Cheminformatics |
title_full |
Prevention of Deficit in Neuropsychiatric Disorders through Monitoring of Arsenic and Its Derivatives as Well as Through Bioinformatics and Cheminformatics |
title_fullStr |
Prevention of Deficit in Neuropsychiatric Disorders through Monitoring of Arsenic and Its Derivatives as Well as Through Bioinformatics and Cheminformatics |
title_full_unstemmed |
Prevention of Deficit in Neuropsychiatric Disorders through Monitoring of Arsenic and Its Derivatives as Well as Through Bioinformatics and Cheminformatics |
title_sort |
prevention of deficit in neuropsychiatric disorders through monitoring of arsenic and its derivatives as well as through bioinformatics and cheminformatics |
publisher |
MDPI AG |
series |
International Journal of Molecular Sciences |
issn |
1422-0067 |
publishDate |
2019-04-01 |
description |
Neuropsychiatric disorders are induced by various risk factors, including direct exposure to environmental chemicals. Arsenic exposure induces neurodegeneration and severe psychiatric disorders, but the molecular mechanisms by which brain damage is induced are not yet elucidated. Our aim is to better understand the molecular mechanisms of arsenic toxicity in the brain and to elucidate possible ways to prevent arsenic neurotoxicity, by reviewing significant experimental, bioinformatics, and cheminformatics studies. Brain damage induced by arsenic exposure is discussed taking in account: the correlation between neuropsychiatric disorders and the presence of arsenic and its derivatives in the brain; possible molecular mechanisms by which arsenic induces disturbances of cognitive and behavioral human functions; and arsenic influence during psychiatric treatments. Additionally, we present bioinformatics and cheminformatics tools used for studying brain toxicity of arsenic and its derivatives, new nanoparticles used as arsenic delivery systems into the human body, and experimental ways to prevent arsenic contamination by its removal from water. The main aim of the present paper is to correlate bioinformatics, cheminformatics, and experimental information on the molecular mechanism of cerebral damage induced by exposure to arsenic, and to elucidate more efficient methods used to reduce its toxicity in real groundwater. |
topic |
arsenic brain bioinformatics cheminformatics nanoparticles |
url |
https://www.mdpi.com/1422-0067/20/8/1804 |
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