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Distinct Synaptic Vesicle Proteomic Signatures Associated with Pre- and Post-Natal Oxycodone-Exposure

The current opioid crisis, which has ravaged all segments of society, continues to pose a rising public health concern. Importantly, dependency on prescription opioids such as oxycodone (oxy) during and after pregnancy can significantly impact the overall brain development of the exposed offspring,...

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Autores principales: Odegaard, Katherine E., Gallegos, Gabriel, Koul, Sneh, Schaal, Victoria L., Vellichirammal, Neetha N., Guda, Chittibabu, Dutoit, Andrea P., Lisco, Steven J., Yelamanchili, Sowmya V., Pendyala, Gurudutt
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9179517/
https://www.ncbi.nlm.nih.gov/pubmed/35681434
http://dx.doi.org/10.3390/cells11111740
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author Odegaard, Katherine E.
Gallegos, Gabriel
Koul, Sneh
Schaal, Victoria L.
Vellichirammal, Neetha N.
Guda, Chittibabu
Dutoit, Andrea P.
Lisco, Steven J.
Yelamanchili, Sowmya V.
Pendyala, Gurudutt
author_facet Odegaard, Katherine E.
Gallegos, Gabriel
Koul, Sneh
Schaal, Victoria L.
Vellichirammal, Neetha N.
Guda, Chittibabu
Dutoit, Andrea P.
Lisco, Steven J.
Yelamanchili, Sowmya V.
Pendyala, Gurudutt
author_sort Odegaard, Katherine E.
collection PubMed
description The current opioid crisis, which has ravaged all segments of society, continues to pose a rising public health concern. Importantly, dependency on prescription opioids such as oxycodone (oxy) during and after pregnancy can significantly impact the overall brain development of the exposed offspring, especially at the synapse. A significant knowledge gap that remains is identifying distinct synaptic signatures associated with these exposed offspring. Accordingly, the overall goal of this current study was to identify distinct synaptic vesicle (SV) proteins as signatures for offspring exposed to oxy in utero (IUO) and postnatally (PNO). Using a preclinical animal model that imitates oxycodone exposure in utero (IUO) and postnatally (PNO), we used a quantitative mass spectrometry-based proteomics platform to examine changes in the synaptic vesicle proteome on post-natal day 14 (P14) IUO and PNO offspring. We identified MEGF8, associated with carpenter syndrome, to be downregulated in the IUO offspring while LAMTOR4, associated with the regulator complex involved in lysosomal signaling and trafficking, was found to be upregulated in the PNO groups, respectively. Their respective differential expression was further validated by Western blot. In summary, our current study shows exposure to oxy in utero and postnatally can impact the SV proteome in the exposed offspring and the identification of these distinct SV signatures could further pave the way to further elucidate their downstream mechanisms including developing them as potential therapeutic targets.
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spelling pubmed-91795172022-06-10 Distinct Synaptic Vesicle Proteomic Signatures Associated with Pre- and Post-Natal Oxycodone-Exposure Odegaard, Katherine E. Gallegos, Gabriel Koul, Sneh Schaal, Victoria L. Vellichirammal, Neetha N. Guda, Chittibabu Dutoit, Andrea P. Lisco, Steven J. Yelamanchili, Sowmya V. Pendyala, Gurudutt Cells Article The current opioid crisis, which has ravaged all segments of society, continues to pose a rising public health concern. Importantly, dependency on prescription opioids such as oxycodone (oxy) during and after pregnancy can significantly impact the overall brain development of the exposed offspring, especially at the synapse. A significant knowledge gap that remains is identifying distinct synaptic signatures associated with these exposed offspring. Accordingly, the overall goal of this current study was to identify distinct synaptic vesicle (SV) proteins as signatures for offspring exposed to oxy in utero (IUO) and postnatally (PNO). Using a preclinical animal model that imitates oxycodone exposure in utero (IUO) and postnatally (PNO), we used a quantitative mass spectrometry-based proteomics platform to examine changes in the synaptic vesicle proteome on post-natal day 14 (P14) IUO and PNO offspring. We identified MEGF8, associated with carpenter syndrome, to be downregulated in the IUO offspring while LAMTOR4, associated with the regulator complex involved in lysosomal signaling and trafficking, was found to be upregulated in the PNO groups, respectively. Their respective differential expression was further validated by Western blot. In summary, our current study shows exposure to oxy in utero and postnatally can impact the SV proteome in the exposed offspring and the identification of these distinct SV signatures could further pave the way to further elucidate their downstream mechanisms including developing them as potential therapeutic targets. MDPI 2022-05-25 /pmc/articles/PMC9179517/ /pubmed/35681434 http://dx.doi.org/10.3390/cells11111740 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
Odegaard, Katherine E.
Gallegos, Gabriel
Koul, Sneh
Schaal, Victoria L.
Vellichirammal, Neetha N.
Guda, Chittibabu
Dutoit, Andrea P.
Lisco, Steven J.
Yelamanchili, Sowmya V.
Pendyala, Gurudutt
Distinct Synaptic Vesicle Proteomic Signatures Associated with Pre- and Post-Natal Oxycodone-Exposure
title Distinct Synaptic Vesicle Proteomic Signatures Associated with Pre- and Post-Natal Oxycodone-Exposure
title_full Distinct Synaptic Vesicle Proteomic Signatures Associated with Pre- and Post-Natal Oxycodone-Exposure
title_fullStr Distinct Synaptic Vesicle Proteomic Signatures Associated with Pre- and Post-Natal Oxycodone-Exposure
title_full_unstemmed Distinct Synaptic Vesicle Proteomic Signatures Associated with Pre- and Post-Natal Oxycodone-Exposure
title_short Distinct Synaptic Vesicle Proteomic Signatures Associated with Pre- and Post-Natal Oxycodone-Exposure
title_sort distinct synaptic vesicle proteomic signatures associated with pre- and post-natal oxycodone-exposure
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9179517/
https://www.ncbi.nlm.nih.gov/pubmed/35681434
http://dx.doi.org/10.3390/cells11111740
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