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Targeting Oxidative Stress with Antioxidant Duotherapy after Experimental Traumatic Brain Injury

We assessed the effect of antioxidant therapy using the Food and Drug Administration-approved respiratory drug N-acetylcysteine (NAC) or sulforaphane (SFN) as monotherapies or duotherapy in vitro in neuron-BV2 microglial co-cultures and validated the results in a lateral fluid-percussion model of TB...

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Autores principales: Kyyriäinen, Jenni, Kajevu, Natallie, Bañuelos, Ivette, Lara, Leonardo, Lipponen, Anssi, Balosso, Silvia, Hämäläinen, Elina, Das Gupta, Shalini, Puhakka, Noora, Natunen, Teemu, Ravizza, Teresa, Vezzani, Annamaria, Hiltunen, Mikko, Pitkänen, Asla
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8508668/
https://www.ncbi.nlm.nih.gov/pubmed/34638900
http://dx.doi.org/10.3390/ijms221910555
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author Kyyriäinen, Jenni
Kajevu, Natallie
Bañuelos, Ivette
Lara, Leonardo
Lipponen, Anssi
Balosso, Silvia
Hämäläinen, Elina
Das Gupta, Shalini
Puhakka, Noora
Natunen, Teemu
Ravizza, Teresa
Vezzani, Annamaria
Hiltunen, Mikko
Pitkänen, Asla
author_facet Kyyriäinen, Jenni
Kajevu, Natallie
Bañuelos, Ivette
Lara, Leonardo
Lipponen, Anssi
Balosso, Silvia
Hämäläinen, Elina
Das Gupta, Shalini
Puhakka, Noora
Natunen, Teemu
Ravizza, Teresa
Vezzani, Annamaria
Hiltunen, Mikko
Pitkänen, Asla
author_sort Kyyriäinen, Jenni
collection PubMed
description We assessed the effect of antioxidant therapy using the Food and Drug Administration-approved respiratory drug N-acetylcysteine (NAC) or sulforaphane (SFN) as monotherapies or duotherapy in vitro in neuron-BV2 microglial co-cultures and validated the results in a lateral fluid-percussion model of TBI in rats. As in vitro measures, we assessed neuronal viability by microtubule-associated-protein 2 immunostaining, neuroinflammation by monitoring tumor necrosis factor (TNF) levels, and neurotoxicity by measuring nitrite levels. In vitro, duotherapy with NAC and SFN reduced nitrite levels to 40% (p < 0.001) and neuroinflammation to –29% (p < 0.001) compared with untreated culture. The treatment also improved neuronal viability up to 72% of that in a positive control (p < 0.001). The effect of NAC was negligible, however, compared with SFN. In vivo, antioxidant duotherapy slightly improved performance in the beam walking test. Interestingly, duotherapy treatment decreased the plasma interleukin-6 and TNF levels in sham-operated controls (p < 0.05). After TBI, no treatment effect on HMGB1 or plasma cytokine levels was detected. Also, no treatment effects on the composite neuroscore or cortical lesion area were detected. The robust favorable effect of duotherapy on neuroprotection, neuroinflammation, and oxidative stress in neuron-BV2 microglial co-cultures translated to modest favorable in vivo effects in a severe TBI model.
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spelling pubmed-85086682021-10-13 Targeting Oxidative Stress with Antioxidant Duotherapy after Experimental Traumatic Brain Injury Kyyriäinen, Jenni Kajevu, Natallie Bañuelos, Ivette Lara, Leonardo Lipponen, Anssi Balosso, Silvia Hämäläinen, Elina Das Gupta, Shalini Puhakka, Noora Natunen, Teemu Ravizza, Teresa Vezzani, Annamaria Hiltunen, Mikko Pitkänen, Asla Int J Mol Sci Article We assessed the effect of antioxidant therapy using the Food and Drug Administration-approved respiratory drug N-acetylcysteine (NAC) or sulforaphane (SFN) as monotherapies or duotherapy in vitro in neuron-BV2 microglial co-cultures and validated the results in a lateral fluid-percussion model of TBI in rats. As in vitro measures, we assessed neuronal viability by microtubule-associated-protein 2 immunostaining, neuroinflammation by monitoring tumor necrosis factor (TNF) levels, and neurotoxicity by measuring nitrite levels. In vitro, duotherapy with NAC and SFN reduced nitrite levels to 40% (p < 0.001) and neuroinflammation to –29% (p < 0.001) compared with untreated culture. The treatment also improved neuronal viability up to 72% of that in a positive control (p < 0.001). The effect of NAC was negligible, however, compared with SFN. In vivo, antioxidant duotherapy slightly improved performance in the beam walking test. Interestingly, duotherapy treatment decreased the plasma interleukin-6 and TNF levels in sham-operated controls (p < 0.05). After TBI, no treatment effect on HMGB1 or plasma cytokine levels was detected. Also, no treatment effects on the composite neuroscore or cortical lesion area were detected. The robust favorable effect of duotherapy on neuroprotection, neuroinflammation, and oxidative stress in neuron-BV2 microglial co-cultures translated to modest favorable in vivo effects in a severe TBI model. MDPI 2021-09-29 /pmc/articles/PMC8508668/ /pubmed/34638900 http://dx.doi.org/10.3390/ijms221910555 Text en © 2021 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
Kyyriäinen, Jenni
Kajevu, Natallie
Bañuelos, Ivette
Lara, Leonardo
Lipponen, Anssi
Balosso, Silvia
Hämäläinen, Elina
Das Gupta, Shalini
Puhakka, Noora
Natunen, Teemu
Ravizza, Teresa
Vezzani, Annamaria
Hiltunen, Mikko
Pitkänen, Asla
Targeting Oxidative Stress with Antioxidant Duotherapy after Experimental Traumatic Brain Injury
title Targeting Oxidative Stress with Antioxidant Duotherapy after Experimental Traumatic Brain Injury
title_full Targeting Oxidative Stress with Antioxidant Duotherapy after Experimental Traumatic Brain Injury
title_fullStr Targeting Oxidative Stress with Antioxidant Duotherapy after Experimental Traumatic Brain Injury
title_full_unstemmed Targeting Oxidative Stress with Antioxidant Duotherapy after Experimental Traumatic Brain Injury
title_short Targeting Oxidative Stress with Antioxidant Duotherapy after Experimental Traumatic Brain Injury
title_sort targeting oxidative stress with antioxidant duotherapy after experimental traumatic brain injury
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8508668/
https://www.ncbi.nlm.nih.gov/pubmed/34638900
http://dx.doi.org/10.3390/ijms221910555
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