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Far-infrared rays enhance mitochondrial biogenesis and GLUT3 expression under low glucose conditions in rat skeletal muscle cells

Far-infrared rays (FIR) are known to have various effects on atoms and molecular structures within cells owing to their radiation and vibration frequencies. The present study examined the effects of FIR on gene expression related to glucose transport through microarray analysis in rat skeletal muscl...

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Autores principales: Seo, Yelim, Kim, Young-Won, Lee, Donghee, Kim, Donghyeon, Kim, Kyoungseo, Kim, Taewoo, Baek, Changyeob, Lee, Yerim, Lee, Junhyeok, Lee, Hosung, Jang, Geonwoo, Jeong, Wonyeong, Choi, Junho, Hwang, Doegeun, Suh, Jung Soo, Kim, Sun-Woo, Kim, Hyoung Kyu, Han, Jin, Bang, Hyoweon, Kim, Jung-Ha, Zhou, Tong, Ko, Jae-Hong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Korean Physiological Society and The Korean Society of Pharmacology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7893496/
https://www.ncbi.nlm.nih.gov/pubmed/33602887
http://dx.doi.org/10.4196/kjpp.2021.25.2.167
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author Seo, Yelim
Kim, Young-Won
Lee, Donghee
Kim, Donghyeon
Kim, Kyoungseo
Kim, Taewoo
Baek, Changyeob
Lee, Yerim
Lee, Junhyeok
Lee, Hosung
Jang, Geonwoo
Jeong, Wonyeong
Choi, Junho
Hwang, Doegeun
Suh, Jung Soo
Kim, Sun-Woo
Kim, Hyoung Kyu
Han, Jin
Bang, Hyoweon
Kim, Jung-Ha
Zhou, Tong
Ko, Jae-Hong
author_facet Seo, Yelim
Kim, Young-Won
Lee, Donghee
Kim, Donghyeon
Kim, Kyoungseo
Kim, Taewoo
Baek, Changyeob
Lee, Yerim
Lee, Junhyeok
Lee, Hosung
Jang, Geonwoo
Jeong, Wonyeong
Choi, Junho
Hwang, Doegeun
Suh, Jung Soo
Kim, Sun-Woo
Kim, Hyoung Kyu
Han, Jin
Bang, Hyoweon
Kim, Jung-Ha
Zhou, Tong
Ko, Jae-Hong
author_sort Seo, Yelim
collection PubMed
description Far-infrared rays (FIR) are known to have various effects on atoms and molecular structures within cells owing to their radiation and vibration frequencies. The present study examined the effects of FIR on gene expression related to glucose transport through microarray analysis in rat skeletal muscle cells, as well as on mitochondrial biogenesis, at high and low glucose conditions. FIR were emitted from a bio-active material coated fabric (BMCF). L6 cells were treated with 30% BMCF for 24 h in medium containing 25 or 5.5 mM glucose, and changes in the expression of glucose transporter genes were determined. The expression of GLUT3 (Slc2a3) increased 2.0-fold (p < 0.05) under 5.5 mM glucose and 30% BMCF. In addition, mitochondrial oxygen consumption and membrane potential (ΔΨ(m)) increased 1.5- and 3.4-fold (p < 0.05 and p < 0.001), respectively, but no significant change in expression of Pgc-1a, a regulator of mitochondrial biogenesis, was observed in 24 h. To analyze the relationship between GLUT3 expression and mitochondrial biogenesis under FIR, GLUT3 was down-modulated by siRNA for 72 h. As a result, the ΔΨ(m) of the GLUT3 siRNA-treated cells increased 3.0-fold (p < 0.001), whereas that of the control group increased 4.6-fold (p < 0.001). Moreover, Pgc-1a expression increased upon 30% BMCF treatment for 72 h; an effect that was more pronounced in the presence of GLUT3. These results suggest that FIR may hold therapeutic potential for improving glucose metabolism and mitochondrial function in metabolic diseases associated with insufficient glucose supply, such as type 2 diabetes.
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spelling pubmed-78934962021-03-01 Far-infrared rays enhance mitochondrial biogenesis and GLUT3 expression under low glucose conditions in rat skeletal muscle cells Seo, Yelim Kim, Young-Won Lee, Donghee Kim, Donghyeon Kim, Kyoungseo Kim, Taewoo Baek, Changyeob Lee, Yerim Lee, Junhyeok Lee, Hosung Jang, Geonwoo Jeong, Wonyeong Choi, Junho Hwang, Doegeun Suh, Jung Soo Kim, Sun-Woo Kim, Hyoung Kyu Han, Jin Bang, Hyoweon Kim, Jung-Ha Zhou, Tong Ko, Jae-Hong Korean J Physiol Pharmacol Original Article Far-infrared rays (FIR) are known to have various effects on atoms and molecular structures within cells owing to their radiation and vibration frequencies. The present study examined the effects of FIR on gene expression related to glucose transport through microarray analysis in rat skeletal muscle cells, as well as on mitochondrial biogenesis, at high and low glucose conditions. FIR were emitted from a bio-active material coated fabric (BMCF). L6 cells were treated with 30% BMCF for 24 h in medium containing 25 or 5.5 mM glucose, and changes in the expression of glucose transporter genes were determined. The expression of GLUT3 (Slc2a3) increased 2.0-fold (p < 0.05) under 5.5 mM glucose and 30% BMCF. In addition, mitochondrial oxygen consumption and membrane potential (ΔΨ(m)) increased 1.5- and 3.4-fold (p < 0.05 and p < 0.001), respectively, but no significant change in expression of Pgc-1a, a regulator of mitochondrial biogenesis, was observed in 24 h. To analyze the relationship between GLUT3 expression and mitochondrial biogenesis under FIR, GLUT3 was down-modulated by siRNA for 72 h. As a result, the ΔΨ(m) of the GLUT3 siRNA-treated cells increased 3.0-fold (p < 0.001), whereas that of the control group increased 4.6-fold (p < 0.001). Moreover, Pgc-1a expression increased upon 30% BMCF treatment for 72 h; an effect that was more pronounced in the presence of GLUT3. These results suggest that FIR may hold therapeutic potential for improving glucose metabolism and mitochondrial function in metabolic diseases associated with insufficient glucose supply, such as type 2 diabetes. The Korean Physiological Society and The Korean Society of Pharmacology 2021-03-01 2021-03-01 /pmc/articles/PMC7893496/ /pubmed/33602887 http://dx.doi.org/10.4196/kjpp.2021.25.2.167 Text en Copyright © Korean J Physiol Pharmacol This is an open-access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Seo, Yelim
Kim, Young-Won
Lee, Donghee
Kim, Donghyeon
Kim, Kyoungseo
Kim, Taewoo
Baek, Changyeob
Lee, Yerim
Lee, Junhyeok
Lee, Hosung
Jang, Geonwoo
Jeong, Wonyeong
Choi, Junho
Hwang, Doegeun
Suh, Jung Soo
Kim, Sun-Woo
Kim, Hyoung Kyu
Han, Jin
Bang, Hyoweon
Kim, Jung-Ha
Zhou, Tong
Ko, Jae-Hong
Far-infrared rays enhance mitochondrial biogenesis and GLUT3 expression under low glucose conditions in rat skeletal muscle cells
title Far-infrared rays enhance mitochondrial biogenesis and GLUT3 expression under low glucose conditions in rat skeletal muscle cells
title_full Far-infrared rays enhance mitochondrial biogenesis and GLUT3 expression under low glucose conditions in rat skeletal muscle cells
title_fullStr Far-infrared rays enhance mitochondrial biogenesis and GLUT3 expression under low glucose conditions in rat skeletal muscle cells
title_full_unstemmed Far-infrared rays enhance mitochondrial biogenesis and GLUT3 expression under low glucose conditions in rat skeletal muscle cells
title_short Far-infrared rays enhance mitochondrial biogenesis and GLUT3 expression under low glucose conditions in rat skeletal muscle cells
title_sort far-infrared rays enhance mitochondrial biogenesis and glut3 expression under low glucose conditions in rat skeletal muscle cells
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7893496/
https://www.ncbi.nlm.nih.gov/pubmed/33602887
http://dx.doi.org/10.4196/kjpp.2021.25.2.167
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