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Anxiolytic, Analgesic and Anti-Inflammatory Effects of Peptides Hmg 1b-2 and Hmg 1b-4 from the Sea Anemone Heteractis magnifica

Acid-sensing ion channels (ASICs) have been known as sensors of a local pH change within both physiological and pathological conditions. ASIC-targeting peptide toxins could be potent molecular tools for ASIC-manipulating in vitro, and for pathology treatment in animal test studies. Two sea anemone t...

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Autores principales: Gladkikh, Irina N., Klimovich, Anna A., Kalina, Rimma S., Kozhevnikova, Yulia V., Khasanov, Timur A., Osmakov, Dmitry I., Koshelev, Sergey G., Monastyrnaya, Margarita M., Andreev, Yaroslav A., Leychenko, Elena V., Kozlov, Sergey A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10221320/
https://www.ncbi.nlm.nih.gov/pubmed/37235375
http://dx.doi.org/10.3390/toxins15050341
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author Gladkikh, Irina N.
Klimovich, Anna A.
Kalina, Rimma S.
Kozhevnikova, Yulia V.
Khasanov, Timur A.
Osmakov, Dmitry I.
Koshelev, Sergey G.
Monastyrnaya, Margarita M.
Andreev, Yaroslav A.
Leychenko, Elena V.
Kozlov, Sergey A.
author_facet Gladkikh, Irina N.
Klimovich, Anna A.
Kalina, Rimma S.
Kozhevnikova, Yulia V.
Khasanov, Timur A.
Osmakov, Dmitry I.
Koshelev, Sergey G.
Monastyrnaya, Margarita M.
Andreev, Yaroslav A.
Leychenko, Elena V.
Kozlov, Sergey A.
author_sort Gladkikh, Irina N.
collection PubMed
description Acid-sensing ion channels (ASICs) have been known as sensors of a local pH change within both physiological and pathological conditions. ASIC-targeting peptide toxins could be potent molecular tools for ASIC-manipulating in vitro, and for pathology treatment in animal test studies. Two sea anemone toxins, native Hmg 1b-2 and recombinant Hmg 1b-4, both related to APETx-like peptides, inhibited the transient current component of human ASIC3-Δ20 expressed in Xenopus laevis oocytes, but only Hmg 1b-2 inhibited the rat ASIC3 transient current. The Hmg 1b-4 action on rASIC3 as a potentiator was confirmed once again. Both peptides are non-toxic molecules for rodents. In open field and elevated plus maze tests, Hmg 1b-2 had more of an excitatory effect and Hmg 1b-4 had more of an anxiolytic effect on mouse behavior. The analgesic activity of peptides was similar and comparable to diclofenac activity in an acid-induced muscle pain model. In models of acute local inflammation induced by λ-carrageenan or complete Freund’s adjuvant, Hmg 1b-4 had more pronounced and statistically significant anti-inflammatory effects than Hmg 1b-2. It exceeded the effect of diclofenac and, at a dose of 0.1 mg/kg, reduced the volume of the paw almost to the initial volume. Our data highlight the importance of a comprehensive study of novel ASIC-targeting ligands, and in particular, peptide toxins, and present the slightly different biological activity of the two similar toxins.
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spelling pubmed-102213202023-05-28 Anxiolytic, Analgesic and Anti-Inflammatory Effects of Peptides Hmg 1b-2 and Hmg 1b-4 from the Sea Anemone Heteractis magnifica Gladkikh, Irina N. Klimovich, Anna A. Kalina, Rimma S. Kozhevnikova, Yulia V. Khasanov, Timur A. Osmakov, Dmitry I. Koshelev, Sergey G. Monastyrnaya, Margarita M. Andreev, Yaroslav A. Leychenko, Elena V. Kozlov, Sergey A. Toxins (Basel) Article Acid-sensing ion channels (ASICs) have been known as sensors of a local pH change within both physiological and pathological conditions. ASIC-targeting peptide toxins could be potent molecular tools for ASIC-manipulating in vitro, and for pathology treatment in animal test studies. Two sea anemone toxins, native Hmg 1b-2 and recombinant Hmg 1b-4, both related to APETx-like peptides, inhibited the transient current component of human ASIC3-Δ20 expressed in Xenopus laevis oocytes, but only Hmg 1b-2 inhibited the rat ASIC3 transient current. The Hmg 1b-4 action on rASIC3 as a potentiator was confirmed once again. Both peptides are non-toxic molecules for rodents. In open field and elevated plus maze tests, Hmg 1b-2 had more of an excitatory effect and Hmg 1b-4 had more of an anxiolytic effect on mouse behavior. The analgesic activity of peptides was similar and comparable to diclofenac activity in an acid-induced muscle pain model. In models of acute local inflammation induced by λ-carrageenan or complete Freund’s adjuvant, Hmg 1b-4 had more pronounced and statistically significant anti-inflammatory effects than Hmg 1b-2. It exceeded the effect of diclofenac and, at a dose of 0.1 mg/kg, reduced the volume of the paw almost to the initial volume. Our data highlight the importance of a comprehensive study of novel ASIC-targeting ligands, and in particular, peptide toxins, and present the slightly different biological activity of the two similar toxins. MDPI 2023-05-15 /pmc/articles/PMC10221320/ /pubmed/37235375 http://dx.doi.org/10.3390/toxins15050341 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
Gladkikh, Irina N.
Klimovich, Anna A.
Kalina, Rimma S.
Kozhevnikova, Yulia V.
Khasanov, Timur A.
Osmakov, Dmitry I.
Koshelev, Sergey G.
Monastyrnaya, Margarita M.
Andreev, Yaroslav A.
Leychenko, Elena V.
Kozlov, Sergey A.
Anxiolytic, Analgesic and Anti-Inflammatory Effects of Peptides Hmg 1b-2 and Hmg 1b-4 from the Sea Anemone Heteractis magnifica
title Anxiolytic, Analgesic and Anti-Inflammatory Effects of Peptides Hmg 1b-2 and Hmg 1b-4 from the Sea Anemone Heteractis magnifica
title_full Anxiolytic, Analgesic and Anti-Inflammatory Effects of Peptides Hmg 1b-2 and Hmg 1b-4 from the Sea Anemone Heteractis magnifica
title_fullStr Anxiolytic, Analgesic and Anti-Inflammatory Effects of Peptides Hmg 1b-2 and Hmg 1b-4 from the Sea Anemone Heteractis magnifica
title_full_unstemmed Anxiolytic, Analgesic and Anti-Inflammatory Effects of Peptides Hmg 1b-2 and Hmg 1b-4 from the Sea Anemone Heteractis magnifica
title_short Anxiolytic, Analgesic and Anti-Inflammatory Effects of Peptides Hmg 1b-2 and Hmg 1b-4 from the Sea Anemone Heteractis magnifica
title_sort anxiolytic, analgesic and anti-inflammatory effects of peptides hmg 1b-2 and hmg 1b-4 from the sea anemone heteractis magnifica
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10221320/
https://www.ncbi.nlm.nih.gov/pubmed/37235375
http://dx.doi.org/10.3390/toxins15050341
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