Polianna Delfino-Pereira, Poliana Berti Dutra, Jose Antonio Cortes de Oliveira, Izabel Cristina Casanova Turatti, Artur Fernandes, Norberto Peporine Lopes, Norberto Garcia-Cairasco
{"title":"捕食者气味(TMT)诱导的大鼠行为改变能抑制癫痫发作吗?","authors":"Polianna Delfino-Pereira, Poliana Berti Dutra, Jose Antonio Cortes de Oliveira, Izabel Cristina Casanova Turatti, Artur Fernandes, Norberto Peporine Lopes, Norberto Garcia-Cairasco","doi":"10.1093/chemse/bjaa023","DOIUrl":null,"url":null,"abstract":"<p><p>We aimed to evaluate the chemical and behavioral effects of 2,5-dihydro-2,4,5-trimethylthiazoline (TMT) after olfactory exposure and to verify their influence in the expression of acute audiogenic seizures in the Wistar Audiogenic Rat (WAR) strain. PROTOCOL 1: TMT gas chromatography was applied to define odor saturation in a chamber to different concentrations, time required for saturation and desaturation, and if saturation was homogeneous. Also, male Adult Wistar rats were exposed to saline (SAL) or to different TMT concentrations and their behaviors were evaluated (neuroethology). PROTOCOL 2: Male adult WARs were exposed for 15 s to SAL or TMT, followed by sound stimulation for 1 min or until tonic-clonic convulsion. Behavioral analysis included latencies (wild running and tonic-clonic convulsion), seizure severity indexes, and neuroethology. Gas chromatography established a saturation homogeneous to different concentrations of TMT, indicating that saturation and desaturation occurred in 30 min. TMT triggered fear-like or aversion-like reactions associated with reduction in motor activity and in grooming behavior, in the 2 highest concentrations. Pure TMT presented anticonvulsant properties, such as less-severe seizure phenotype, as well as a decrease in tonic-clonic convulsion expression. TMT elicited fear-like or aversion-like behaviors in Wistar and WAR and can be utilized in a quantifiable and controllable way. Our results suggested possible antagonism between \"fear-related\" or \"aversion-related\" and \"seizure-related\" networks.</p>","PeriodicalId":9771,"journal":{"name":"Chemical Senses","volume":"45 5","pages":"347-357"},"PeriodicalIF":2.8000,"publicationDate":"2020-05-29","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://sci-hub-pdf.com/10.1093/chemse/bjaa023","citationCount":"2","resultStr":"{\"title\":\"Are Predator Smell (TMT)-Induced Behavioral Alterations in Rats Able to Inhibit Seizures?\",\"authors\":\"Polianna Delfino-Pereira, Poliana Berti Dutra, Jose Antonio Cortes de Oliveira, Izabel Cristina Casanova Turatti, Artur Fernandes, Norberto Peporine Lopes, Norberto Garcia-Cairasco\",\"doi\":\"10.1093/chemse/bjaa023\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>We aimed to evaluate the chemical and behavioral effects of 2,5-dihydro-2,4,5-trimethylthiazoline (TMT) after olfactory exposure and to verify their influence in the expression of acute audiogenic seizures in the Wistar Audiogenic Rat (WAR) strain. PROTOCOL 1: TMT gas chromatography was applied to define odor saturation in a chamber to different concentrations, time required for saturation and desaturation, and if saturation was homogeneous. Also, male Adult Wistar rats were exposed to saline (SAL) or to different TMT concentrations and their behaviors were evaluated (neuroethology). PROTOCOL 2: Male adult WARs were exposed for 15 s to SAL or TMT, followed by sound stimulation for 1 min or until tonic-clonic convulsion. Behavioral analysis included latencies (wild running and tonic-clonic convulsion), seizure severity indexes, and neuroethology. Gas chromatography established a saturation homogeneous to different concentrations of TMT, indicating that saturation and desaturation occurred in 30 min. TMT triggered fear-like or aversion-like reactions associated with reduction in motor activity and in grooming behavior, in the 2 highest concentrations. Pure TMT presented anticonvulsant properties, such as less-severe seizure phenotype, as well as a decrease in tonic-clonic convulsion expression. TMT elicited fear-like or aversion-like behaviors in Wistar and WAR and can be utilized in a quantifiable and controllable way. 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Are Predator Smell (TMT)-Induced Behavioral Alterations in Rats Able to Inhibit Seizures?
We aimed to evaluate the chemical and behavioral effects of 2,5-dihydro-2,4,5-trimethylthiazoline (TMT) after olfactory exposure and to verify their influence in the expression of acute audiogenic seizures in the Wistar Audiogenic Rat (WAR) strain. PROTOCOL 1: TMT gas chromatography was applied to define odor saturation in a chamber to different concentrations, time required for saturation and desaturation, and if saturation was homogeneous. Also, male Adult Wistar rats were exposed to saline (SAL) or to different TMT concentrations and their behaviors were evaluated (neuroethology). PROTOCOL 2: Male adult WARs were exposed for 15 s to SAL or TMT, followed by sound stimulation for 1 min or until tonic-clonic convulsion. Behavioral analysis included latencies (wild running and tonic-clonic convulsion), seizure severity indexes, and neuroethology. Gas chromatography established a saturation homogeneous to different concentrations of TMT, indicating that saturation and desaturation occurred in 30 min. TMT triggered fear-like or aversion-like reactions associated with reduction in motor activity and in grooming behavior, in the 2 highest concentrations. Pure TMT presented anticonvulsant properties, such as less-severe seizure phenotype, as well as a decrease in tonic-clonic convulsion expression. TMT elicited fear-like or aversion-like behaviors in Wistar and WAR and can be utilized in a quantifiable and controllable way. Our results suggested possible antagonism between "fear-related" or "aversion-related" and "seizure-related" networks.
期刊介绍:
Chemical Senses publishes original research and review papers on all aspects of chemoreception in both humans and animals. An important part of the journal''s coverage is devoted to techniques and the development and application of new methods for investigating chemoreception and chemosensory structures.