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Bioanalytical LC-QTOF/MS Method for a N-phenylpiperazine Derivate (LQFM05): An Anxiolytic- and Antidepressant-like Prototype Drug Applied to Pharmacokinetic and Biodistribution Studies

The LQFM05 is a prototype drug designed for treatment of psychiatric disorders, such as schizophrenia, exhibiting anxiolytic- and antidepressant-like (12 or 24 µmol/kg) effects in classical behavioral tests. In order to evaluate its pharmacokinetic properties, a liquid chromatography method coupled...

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Autores principales: Ramos, Ana Cláudia M., Rezende, Kênnia R., Teixeira, Carolina M., Fernandes, Aline R., Santos, Heloa, Machado, Rúbia Darc, Menegatti, Ricardo, Vaz, Boniek G., Chaves, Andréa R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10383682/
https://www.ncbi.nlm.nih.gov/pubmed/37513842
http://dx.doi.org/10.3390/ph16070930
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author Ramos, Ana Cláudia M.
Rezende, Kênnia R.
Teixeira, Carolina M.
Fernandes, Aline R.
Santos, Heloa
Machado, Rúbia Darc
Menegatti, Ricardo
Vaz, Boniek G.
Chaves, Andréa R.
author_facet Ramos, Ana Cláudia M.
Rezende, Kênnia R.
Teixeira, Carolina M.
Fernandes, Aline R.
Santos, Heloa
Machado, Rúbia Darc
Menegatti, Ricardo
Vaz, Boniek G.
Chaves, Andréa R.
author_sort Ramos, Ana Cláudia M.
collection PubMed
description The LQFM05 is a prototype drug designed for treatment of psychiatric disorders, such as schizophrenia, exhibiting anxiolytic- and antidepressant-like (12 or 24 µmol/kg) effects in classical behavioral tests. In order to evaluate its pharmacokinetic properties, a liquid chromatography method coupled to a quadrupole time of flight mass spectrometry system (LC-QTOF/MS) was developed and fully validated for LQFM05 analysis in rat plasma and tissue samples (brain, heart, liver, and kidneys). Liquid–liquid extraction, solid phase extraction and protein precipitation were assessed as clean-up procedures for biological samples and analyte enrichment. Plasma and tissue samples underwent protein precipitation as a preliminary step, using acetonitrile. Linearity was fully demonstrated for the dynamic range (10.0 to 900.0 ng/mL), with r(2) values higher than 0.99 (RSD(slope) ≤ 2%, F(cal) < F(tab), C(cal) < C(tab)). Biodistribution studies in rats revealed high brain tissue concentrations (12.4 µg/g), suggesting elevated drug affinity to the main therapeutic target tissue, showing a blood partition coefficient of 1.9. Kidneys also showed great exposure and tissue affinity, suggesting a potential extrahepatic clearance. Likewise, all examined tissues exhibited satisfactory LQFMF05 distribution. The mass fragmentation spectrum indicated the presence of its main metabolite, LQFM235, yielded by high hepatic hydroxylation route, an equally bioactive derivative. Lastly, the developed LC-QTOF/MS method was shown to be sensitive (LOQ = 10 ng/mL), precise and accurate for LQFM05 determination in tissue homogenates and plasma samples.
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spelling pubmed-103836822023-07-30 Bioanalytical LC-QTOF/MS Method for a N-phenylpiperazine Derivate (LQFM05): An Anxiolytic- and Antidepressant-like Prototype Drug Applied to Pharmacokinetic and Biodistribution Studies Ramos, Ana Cláudia M. Rezende, Kênnia R. Teixeira, Carolina M. Fernandes, Aline R. Santos, Heloa Machado, Rúbia Darc Menegatti, Ricardo Vaz, Boniek G. Chaves, Andréa R. Pharmaceuticals (Basel) Article The LQFM05 is a prototype drug designed for treatment of psychiatric disorders, such as schizophrenia, exhibiting anxiolytic- and antidepressant-like (12 or 24 µmol/kg) effects in classical behavioral tests. In order to evaluate its pharmacokinetic properties, a liquid chromatography method coupled to a quadrupole time of flight mass spectrometry system (LC-QTOF/MS) was developed and fully validated for LQFM05 analysis in rat plasma and tissue samples (brain, heart, liver, and kidneys). Liquid–liquid extraction, solid phase extraction and protein precipitation were assessed as clean-up procedures for biological samples and analyte enrichment. Plasma and tissue samples underwent protein precipitation as a preliminary step, using acetonitrile. Linearity was fully demonstrated for the dynamic range (10.0 to 900.0 ng/mL), with r(2) values higher than 0.99 (RSD(slope) ≤ 2%, F(cal) < F(tab), C(cal) < C(tab)). Biodistribution studies in rats revealed high brain tissue concentrations (12.4 µg/g), suggesting elevated drug affinity to the main therapeutic target tissue, showing a blood partition coefficient of 1.9. Kidneys also showed great exposure and tissue affinity, suggesting a potential extrahepatic clearance. Likewise, all examined tissues exhibited satisfactory LQFMF05 distribution. The mass fragmentation spectrum indicated the presence of its main metabolite, LQFM235, yielded by high hepatic hydroxylation route, an equally bioactive derivative. Lastly, the developed LC-QTOF/MS method was shown to be sensitive (LOQ = 10 ng/mL), precise and accurate for LQFM05 determination in tissue homogenates and plasma samples. MDPI 2023-06-26 /pmc/articles/PMC10383682/ /pubmed/37513842 http://dx.doi.org/10.3390/ph16070930 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ramos, Ana Cláudia M.
Rezende, Kênnia R.
Teixeira, Carolina M.
Fernandes, Aline R.
Santos, Heloa
Machado, Rúbia Darc
Menegatti, Ricardo
Vaz, Boniek G.
Chaves, Andréa R.
Bioanalytical LC-QTOF/MS Method for a N-phenylpiperazine Derivate (LQFM05): An Anxiolytic- and Antidepressant-like Prototype Drug Applied to Pharmacokinetic and Biodistribution Studies
title Bioanalytical LC-QTOF/MS Method for a N-phenylpiperazine Derivate (LQFM05): An Anxiolytic- and Antidepressant-like Prototype Drug Applied to Pharmacokinetic and Biodistribution Studies
title_full Bioanalytical LC-QTOF/MS Method for a N-phenylpiperazine Derivate (LQFM05): An Anxiolytic- and Antidepressant-like Prototype Drug Applied to Pharmacokinetic and Biodistribution Studies
title_fullStr Bioanalytical LC-QTOF/MS Method for a N-phenylpiperazine Derivate (LQFM05): An Anxiolytic- and Antidepressant-like Prototype Drug Applied to Pharmacokinetic and Biodistribution Studies
title_full_unstemmed Bioanalytical LC-QTOF/MS Method for a N-phenylpiperazine Derivate (LQFM05): An Anxiolytic- and Antidepressant-like Prototype Drug Applied to Pharmacokinetic and Biodistribution Studies
title_short Bioanalytical LC-QTOF/MS Method for a N-phenylpiperazine Derivate (LQFM05): An Anxiolytic- and Antidepressant-like Prototype Drug Applied to Pharmacokinetic and Biodistribution Studies
title_sort bioanalytical lc-qtof/ms method for a n-phenylpiperazine derivate (lqfm05): an anxiolytic- and antidepressant-like prototype drug applied to pharmacokinetic and biodistribution studies
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10383682/
https://www.ncbi.nlm.nih.gov/pubmed/37513842
http://dx.doi.org/10.3390/ph16070930
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