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Caspase-1 and Cathepsin B Inhibitors from Marine Invertebrates, Aiming at a Reduction in Neuroinflammation

Neuroinflammation is a condition associated with several types of dementia, such as Alzheimer’s disease (AD), mainly caused by an inflammatory response to amyloid peptides that induce microglial activation, with subsequent cytokine release. Neuronal caspase-1 from inflammasome and cathepsin B are ke...

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Autores principales: Moreno, Rafaela Indalecio, Zambelli, Vanessa O., Picolo, Gisele, Cury, Yara, Morandini, André C., Marques, Antonio Carlos, Sciani, Juliana Mozer
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9604745/
https://www.ncbi.nlm.nih.gov/pubmed/36286438
http://dx.doi.org/10.3390/md20100614
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author Moreno, Rafaela Indalecio
Zambelli, Vanessa O.
Picolo, Gisele
Cury, Yara
Morandini, André C.
Marques, Antonio Carlos
Sciani, Juliana Mozer
author_facet Moreno, Rafaela Indalecio
Zambelli, Vanessa O.
Picolo, Gisele
Cury, Yara
Morandini, André C.
Marques, Antonio Carlos
Sciani, Juliana Mozer
author_sort Moreno, Rafaela Indalecio
collection PubMed
description Neuroinflammation is a condition associated with several types of dementia, such as Alzheimer’s disease (AD), mainly caused by an inflammatory response to amyloid peptides that induce microglial activation, with subsequent cytokine release. Neuronal caspase-1 from inflammasome and cathepsin B are key enzymes mediating neuroinflammation in AD, therefore, revealing new molecules to modulate these enzymes may be an interesting approach to treat neurodegenerative diseases. In this study, we searched for new caspase-1 and cathepsin B inhibitors from five species of Brazilian marine invertebrates (four cnidarians and one echinoderm). The results show that the extract of the box jellyfish Chiropsalmus quadrumanus inhibits caspase-1. This extract was fractionated, and the products monitored for their inhibitory activity, until the obtention of a pure molecule, which was identified as trigonelline by mass spectrometry. Moreover, four extracts inhibit cathepsin B, and Exaiptasia diaphana was selected for subsequent fractionation and characterization, resulting in the identification of betaine as being responsible for the inhibitory action. Both molecules are already found in marine organisms, however, this is the first study showing a potent inhibitory effect on caspase-1 and cathepsin B activities. Therefore, these new prototypes can be considered for the enzyme inhibition and subsequent control of the neuroinflammation.
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spelling pubmed-96047452022-10-27 Caspase-1 and Cathepsin B Inhibitors from Marine Invertebrates, Aiming at a Reduction in Neuroinflammation Moreno, Rafaela Indalecio Zambelli, Vanessa O. Picolo, Gisele Cury, Yara Morandini, André C. Marques, Antonio Carlos Sciani, Juliana Mozer Mar Drugs Article Neuroinflammation is a condition associated with several types of dementia, such as Alzheimer’s disease (AD), mainly caused by an inflammatory response to amyloid peptides that induce microglial activation, with subsequent cytokine release. Neuronal caspase-1 from inflammasome and cathepsin B are key enzymes mediating neuroinflammation in AD, therefore, revealing new molecules to modulate these enzymes may be an interesting approach to treat neurodegenerative diseases. In this study, we searched for new caspase-1 and cathepsin B inhibitors from five species of Brazilian marine invertebrates (four cnidarians and one echinoderm). The results show that the extract of the box jellyfish Chiropsalmus quadrumanus inhibits caspase-1. This extract was fractionated, and the products monitored for their inhibitory activity, until the obtention of a pure molecule, which was identified as trigonelline by mass spectrometry. Moreover, four extracts inhibit cathepsin B, and Exaiptasia diaphana was selected for subsequent fractionation and characterization, resulting in the identification of betaine as being responsible for the inhibitory action. Both molecules are already found in marine organisms, however, this is the first study showing a potent inhibitory effect on caspase-1 and cathepsin B activities. Therefore, these new prototypes can be considered for the enzyme inhibition and subsequent control of the neuroinflammation. MDPI 2022-09-29 /pmc/articles/PMC9604745/ /pubmed/36286438 http://dx.doi.org/10.3390/md20100614 Text en © 2022 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
Moreno, Rafaela Indalecio
Zambelli, Vanessa O.
Picolo, Gisele
Cury, Yara
Morandini, André C.
Marques, Antonio Carlos
Sciani, Juliana Mozer
Caspase-1 and Cathepsin B Inhibitors from Marine Invertebrates, Aiming at a Reduction in Neuroinflammation
title Caspase-1 and Cathepsin B Inhibitors from Marine Invertebrates, Aiming at a Reduction in Neuroinflammation
title_full Caspase-1 and Cathepsin B Inhibitors from Marine Invertebrates, Aiming at a Reduction in Neuroinflammation
title_fullStr Caspase-1 and Cathepsin B Inhibitors from Marine Invertebrates, Aiming at a Reduction in Neuroinflammation
title_full_unstemmed Caspase-1 and Cathepsin B Inhibitors from Marine Invertebrates, Aiming at a Reduction in Neuroinflammation
title_short Caspase-1 and Cathepsin B Inhibitors from Marine Invertebrates, Aiming at a Reduction in Neuroinflammation
title_sort caspase-1 and cathepsin b inhibitors from marine invertebrates, aiming at a reduction in neuroinflammation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9604745/
https://www.ncbi.nlm.nih.gov/pubmed/36286438
http://dx.doi.org/10.3390/md20100614
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