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Energy Metabolism and Intracellular pH Alteration in Neural Spheroids Carrying Down Syndrome

Brain diseases including Down syndrome (DS/TS21) are known to be characterized by changes in cellular metabolism. To adequately assess such metabolic changes during pathological processes and to test drugs, methods are needed that allow monitoring of these changes in real time with minimally invasiv...

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Autores principales: Kashirina, Alena, Gavrina, Alena, Kryukov, Emil, Elagin, Vadim, Kolesova, Yuliya, Artyuhov, Alexander, Momotyuk, Ekaterina, Abdyyev, Vepa, Meshcheryakova, Natalia, Zagaynova, Elena, Dashinimaev, Erdem, Kashina, Aleksandra
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8615730/
https://www.ncbi.nlm.nih.gov/pubmed/34829971
http://dx.doi.org/10.3390/biomedicines9111741
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author Kashirina, Alena
Gavrina, Alena
Kryukov, Emil
Elagin, Vadim
Kolesova, Yuliya
Artyuhov, Alexander
Momotyuk, Ekaterina
Abdyyev, Vepa
Meshcheryakova, Natalia
Zagaynova, Elena
Dashinimaev, Erdem
Kashina, Aleksandra
author_facet Kashirina, Alena
Gavrina, Alena
Kryukov, Emil
Elagin, Vadim
Kolesova, Yuliya
Artyuhov, Alexander
Momotyuk, Ekaterina
Abdyyev, Vepa
Meshcheryakova, Natalia
Zagaynova, Elena
Dashinimaev, Erdem
Kashina, Aleksandra
author_sort Kashirina, Alena
collection PubMed
description Brain diseases including Down syndrome (DS/TS21) are known to be characterized by changes in cellular metabolism. To adequately assess such metabolic changes during pathological processes and to test drugs, methods are needed that allow monitoring of these changes in real time with minimally invasive effects. Thus, the aim of our work was to study the metabolic status and intracellular pH of spheroids carrying DS using fluorescence microscopy and FLIM. For metabolic analysis we measured the fluorescence intensities, fluorescence lifetimes and the contributions of the free and bound forms of NAD(P)H. For intracellular pH assay we measured the fluorescence intensities of SypHer-2 and BCECF. Data were processed with SPCImage and Fiji-ImageJ. We demonstrated the predominance of glycolysis in TS21 spheroids compared with normal karyotype (NK) spheroids. Assessment of the intracellular pH indicated a more alkaline intracellular pH in the TS21 spheroids compared to NK spheroids. Using fluorescence imaging, we performed a comprehensive comparative analysis of the metabolism and intracellular pH of TS21 spheroids and showed that fluorescence microscopy and FLIM make it possible to study living cells in 3D models in real time with minimally invasive effects.
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spelling pubmed-86157302021-11-26 Energy Metabolism and Intracellular pH Alteration in Neural Spheroids Carrying Down Syndrome Kashirina, Alena Gavrina, Alena Kryukov, Emil Elagin, Vadim Kolesova, Yuliya Artyuhov, Alexander Momotyuk, Ekaterina Abdyyev, Vepa Meshcheryakova, Natalia Zagaynova, Elena Dashinimaev, Erdem Kashina, Aleksandra Biomedicines Article Brain diseases including Down syndrome (DS/TS21) are known to be characterized by changes in cellular metabolism. To adequately assess such metabolic changes during pathological processes and to test drugs, methods are needed that allow monitoring of these changes in real time with minimally invasive effects. Thus, the aim of our work was to study the metabolic status and intracellular pH of spheroids carrying DS using fluorescence microscopy and FLIM. For metabolic analysis we measured the fluorescence intensities, fluorescence lifetimes and the contributions of the free and bound forms of NAD(P)H. For intracellular pH assay we measured the fluorescence intensities of SypHer-2 and BCECF. Data were processed with SPCImage and Fiji-ImageJ. We demonstrated the predominance of glycolysis in TS21 spheroids compared with normal karyotype (NK) spheroids. Assessment of the intracellular pH indicated a more alkaline intracellular pH in the TS21 spheroids compared to NK spheroids. Using fluorescence imaging, we performed a comprehensive comparative analysis of the metabolism and intracellular pH of TS21 spheroids and showed that fluorescence microscopy and FLIM make it possible to study living cells in 3D models in real time with minimally invasive effects. MDPI 2021-11-22 /pmc/articles/PMC8615730/ /pubmed/34829971 http://dx.doi.org/10.3390/biomedicines9111741 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
Kashirina, Alena
Gavrina, Alena
Kryukov, Emil
Elagin, Vadim
Kolesova, Yuliya
Artyuhov, Alexander
Momotyuk, Ekaterina
Abdyyev, Vepa
Meshcheryakova, Natalia
Zagaynova, Elena
Dashinimaev, Erdem
Kashina, Aleksandra
Energy Metabolism and Intracellular pH Alteration in Neural Spheroids Carrying Down Syndrome
title Energy Metabolism and Intracellular pH Alteration in Neural Spheroids Carrying Down Syndrome
title_full Energy Metabolism and Intracellular pH Alteration in Neural Spheroids Carrying Down Syndrome
title_fullStr Energy Metabolism and Intracellular pH Alteration in Neural Spheroids Carrying Down Syndrome
title_full_unstemmed Energy Metabolism and Intracellular pH Alteration in Neural Spheroids Carrying Down Syndrome
title_short Energy Metabolism and Intracellular pH Alteration in Neural Spheroids Carrying Down Syndrome
title_sort energy metabolism and intracellular ph alteration in neural spheroids carrying down syndrome
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8615730/
https://www.ncbi.nlm.nih.gov/pubmed/34829971
http://dx.doi.org/10.3390/biomedicines9111741
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