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Macrophage-derived secretome is sufficient to confer olanzapine-mediated insulin resistance in human adipocytes

OBJECTIVE: Olanzapine and Aripiprazole are widely used second-generation antipsychotic drugs. Olanzapine, more than Aripiprazole, leads to considerable metabolic side effects including obesity and diabetes. While the underlying mechanisms are not fully understood, these side effects are likely assoc...

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Autores principales: Dipta, Priya, Sarsenbayeva, Assel, Shmuel, Miriam, Forno, Francesca, Eriksson, Jan W., Pereira, Maria J., Abalo, Xesús M., Wabitsch, Martin, Thaysen-Andersen, Morten, Tirosh, Boaz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9216267/
https://www.ncbi.nlm.nih.gov/pubmed/35757056
http://dx.doi.org/10.1016/j.cpnec.2021.100073
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author Dipta, Priya
Sarsenbayeva, Assel
Shmuel, Miriam
Forno, Francesca
Eriksson, Jan W.
Pereira, Maria J.
Abalo, Xesús M.
Wabitsch, Martin
Thaysen-Andersen, Morten
Tirosh, Boaz
author_facet Dipta, Priya
Sarsenbayeva, Assel
Shmuel, Miriam
Forno, Francesca
Eriksson, Jan W.
Pereira, Maria J.
Abalo, Xesús M.
Wabitsch, Martin
Thaysen-Andersen, Morten
Tirosh, Boaz
author_sort Dipta, Priya
collection PubMed
description OBJECTIVE: Olanzapine and Aripiprazole are widely used second-generation antipsychotic drugs. Olanzapine, more than Aripiprazole, leads to considerable metabolic side effects including obesity and diabetes. While the underlying mechanisms are not fully understood, these side effects are likely associated with mild inflammation in the metabolic organs. An in vitro model that accurately recapitulates the metabolic impact of olanzapine and aripiprazole should be useful to elucidate the underlying mechanisms. METHODS: We established co-cultures of matured adipocytes derived from the human SGBS cell line and the THP-1 human monocytic cell-derived or primary macrophages to explore the effects of both drugs on the response to insulin. RESULTS: Olanzapine, but not aripiprazole induced insulin resistance in SGBS adipocytes only when co-cultured with THP-1 or primary macrophages, polarized either into M0, M1 or M2. Noteworthy, M2 macrophages induced olanzapine-dependent insulin resistance in the absence of induction of pro-inflammatory cytokines. Insulin resistance by olanzapine was stronger than induced by high concentration of pro-inflammatory cytokines even in combinations, suggesting the contribution of factors other than the classical inflammatory cytokines to promote insulin resistance in adipocytes by olanzapine. CONCLUSION: Macrophage/adipocyte co-cultures recapitulate the features of olanzapine-induced insulin resistance and implicate the existence of yet unknown factors in mediating this effect.
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spelling pubmed-92162672022-06-24 Macrophage-derived secretome is sufficient to confer olanzapine-mediated insulin resistance in human adipocytes Dipta, Priya Sarsenbayeva, Assel Shmuel, Miriam Forno, Francesca Eriksson, Jan W. Pereira, Maria J. Abalo, Xesús M. Wabitsch, Martin Thaysen-Andersen, Morten Tirosh, Boaz Compr Psychoneuroendocrinol Preclinical Study OBJECTIVE: Olanzapine and Aripiprazole are widely used second-generation antipsychotic drugs. Olanzapine, more than Aripiprazole, leads to considerable metabolic side effects including obesity and diabetes. While the underlying mechanisms are not fully understood, these side effects are likely associated with mild inflammation in the metabolic organs. An in vitro model that accurately recapitulates the metabolic impact of olanzapine and aripiprazole should be useful to elucidate the underlying mechanisms. METHODS: We established co-cultures of matured adipocytes derived from the human SGBS cell line and the THP-1 human monocytic cell-derived or primary macrophages to explore the effects of both drugs on the response to insulin. RESULTS: Olanzapine, but not aripiprazole induced insulin resistance in SGBS adipocytes only when co-cultured with THP-1 or primary macrophages, polarized either into M0, M1 or M2. Noteworthy, M2 macrophages induced olanzapine-dependent insulin resistance in the absence of induction of pro-inflammatory cytokines. Insulin resistance by olanzapine was stronger than induced by high concentration of pro-inflammatory cytokines even in combinations, suggesting the contribution of factors other than the classical inflammatory cytokines to promote insulin resistance in adipocytes by olanzapine. CONCLUSION: Macrophage/adipocyte co-cultures recapitulate the features of olanzapine-induced insulin resistance and implicate the existence of yet unknown factors in mediating this effect. Elsevier 2021-07-27 /pmc/articles/PMC9216267/ /pubmed/35757056 http://dx.doi.org/10.1016/j.cpnec.2021.100073 Text en © 2021 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Preclinical Study
Dipta, Priya
Sarsenbayeva, Assel
Shmuel, Miriam
Forno, Francesca
Eriksson, Jan W.
Pereira, Maria J.
Abalo, Xesús M.
Wabitsch, Martin
Thaysen-Andersen, Morten
Tirosh, Boaz
Macrophage-derived secretome is sufficient to confer olanzapine-mediated insulin resistance in human adipocytes
title Macrophage-derived secretome is sufficient to confer olanzapine-mediated insulin resistance in human adipocytes
title_full Macrophage-derived secretome is sufficient to confer olanzapine-mediated insulin resistance in human adipocytes
title_fullStr Macrophage-derived secretome is sufficient to confer olanzapine-mediated insulin resistance in human adipocytes
title_full_unstemmed Macrophage-derived secretome is sufficient to confer olanzapine-mediated insulin resistance in human adipocytes
title_short Macrophage-derived secretome is sufficient to confer olanzapine-mediated insulin resistance in human adipocytes
title_sort macrophage-derived secretome is sufficient to confer olanzapine-mediated insulin resistance in human adipocytes
topic Preclinical Study
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9216267/
https://www.ncbi.nlm.nih.gov/pubmed/35757056
http://dx.doi.org/10.1016/j.cpnec.2021.100073
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