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Effect of a mitochondrial‐targeted coenzyme Q analog on pancreatic β‐cell function and energetics in high fat fed obese mice

We recently reported that mitoquinone (mitoQ, 500 μmol/L) added to drinking water of C57BL/6J mice attenuated weight gain and reduced oxidative stress when administered to high‐fat (HF) fed mice. Here, we examined the effects of mitoQ administered to HF fed mice on pancreatic islet morphology, dynam...

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Autores principales: Imai, Yumi, Fink, Brian D., Promes, Joseph A., Kulkarni, Chaitanya A., Kerns, Robert J., Sivitz, William I.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5980123/
https://www.ncbi.nlm.nih.gov/pubmed/29864244
http://dx.doi.org/10.1002/prp2.393
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author Imai, Yumi
Fink, Brian D.
Promes, Joseph A.
Kulkarni, Chaitanya A.
Kerns, Robert J.
Sivitz, William I.
author_facet Imai, Yumi
Fink, Brian D.
Promes, Joseph A.
Kulkarni, Chaitanya A.
Kerns, Robert J.
Sivitz, William I.
author_sort Imai, Yumi
collection PubMed
description We recently reported that mitoquinone (mitoQ, 500 μmol/L) added to drinking water of C57BL/6J mice attenuated weight gain and reduced oxidative stress when administered to high‐fat (HF) fed mice. Here, we examined the effects of mitoQ administered to HF fed mice on pancreatic islet morphology, dynamics of insulin secretion, and islet mitochondrial metabolism. C57BL/6J mice were fed HF for 130 days while we administered vehicle (cyclodextrin [CD]) or mitoQ added to the drinking water at up to 500 μmol/L. MitoQ‐treated mice vs vehicle gained significantly less weight, expended significantly more energy as determined by indirect calorimetry, and trended to consume less (nonsignificant) food. As we and others reported before, mitoQ‐treated mice drank less water but showed no difference in percent body fluid by nuclear magnetic resonance. Circulating insulin and glucose‐stimulated insulin secretion by isolated islets were decreased in mitoQ‐treated mice while insulin sensitivity (plasma insulin x glucose) was greater. Islet respiration as basal oxygen consumption (OCR), OCR directed at ATP synthesis, and maximal uncoupled OCR were also reduced in mitoQ‐treated mice. Quantitative morphologic studies revealed that islet size was reduced in the mitoQ‐treated mice while visual inspection of histochemically stained sections suggested that mitoQ reduced islet lipid peroxides. MitoQ markedly improved liver function as determined by plasma alanine aminotransferase. In summary, mitoQ treatment reduced the demand for insulin and reduced islet size, likely consequent to the action of mitoQ to mitigate weight gain and improve liver function.
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spelling pubmed-59801232018-06-06 Effect of a mitochondrial‐targeted coenzyme Q analog on pancreatic β‐cell function and energetics in high fat fed obese mice Imai, Yumi Fink, Brian D. Promes, Joseph A. Kulkarni, Chaitanya A. Kerns, Robert J. Sivitz, William I. Pharmacol Res Perspect Original Articles We recently reported that mitoquinone (mitoQ, 500 μmol/L) added to drinking water of C57BL/6J mice attenuated weight gain and reduced oxidative stress when administered to high‐fat (HF) fed mice. Here, we examined the effects of mitoQ administered to HF fed mice on pancreatic islet morphology, dynamics of insulin secretion, and islet mitochondrial metabolism. C57BL/6J mice were fed HF for 130 days while we administered vehicle (cyclodextrin [CD]) or mitoQ added to the drinking water at up to 500 μmol/L. MitoQ‐treated mice vs vehicle gained significantly less weight, expended significantly more energy as determined by indirect calorimetry, and trended to consume less (nonsignificant) food. As we and others reported before, mitoQ‐treated mice drank less water but showed no difference in percent body fluid by nuclear magnetic resonance. Circulating insulin and glucose‐stimulated insulin secretion by isolated islets were decreased in mitoQ‐treated mice while insulin sensitivity (plasma insulin x glucose) was greater. Islet respiration as basal oxygen consumption (OCR), OCR directed at ATP synthesis, and maximal uncoupled OCR were also reduced in mitoQ‐treated mice. Quantitative morphologic studies revealed that islet size was reduced in the mitoQ‐treated mice while visual inspection of histochemically stained sections suggested that mitoQ reduced islet lipid peroxides. MitoQ markedly improved liver function as determined by plasma alanine aminotransferase. In summary, mitoQ treatment reduced the demand for insulin and reduced islet size, likely consequent to the action of mitoQ to mitigate weight gain and improve liver function. John Wiley and Sons Inc. 2018-06-01 /pmc/articles/PMC5980123/ /pubmed/29864244 http://dx.doi.org/10.1002/prp2.393 Text en This article has been contributed to by US Government employees and their work is in the public domain in the USA This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Imai, Yumi
Fink, Brian D.
Promes, Joseph A.
Kulkarni, Chaitanya A.
Kerns, Robert J.
Sivitz, William I.
Effect of a mitochondrial‐targeted coenzyme Q analog on pancreatic β‐cell function and energetics in high fat fed obese mice
title Effect of a mitochondrial‐targeted coenzyme Q analog on pancreatic β‐cell function and energetics in high fat fed obese mice
title_full Effect of a mitochondrial‐targeted coenzyme Q analog on pancreatic β‐cell function and energetics in high fat fed obese mice
title_fullStr Effect of a mitochondrial‐targeted coenzyme Q analog on pancreatic β‐cell function and energetics in high fat fed obese mice
title_full_unstemmed Effect of a mitochondrial‐targeted coenzyme Q analog on pancreatic β‐cell function and energetics in high fat fed obese mice
title_short Effect of a mitochondrial‐targeted coenzyme Q analog on pancreatic β‐cell function and energetics in high fat fed obese mice
title_sort effect of a mitochondrial‐targeted coenzyme q analog on pancreatic β‐cell function and energetics in high fat fed obese mice
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5980123/
https://www.ncbi.nlm.nih.gov/pubmed/29864244
http://dx.doi.org/10.1002/prp2.393
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