Anti-obesity effects of dark tea extracts by down-regulation of C/EBPα and PPARγ

HJ Lim, TJ Lim, JH Lee, JH Lee, MO Kim, JY Park… - in vivo, 2022 - iv.iiarjournals.org
HJ Lim, TJ Lim, JH Lee, JH Lee, MO Kim, JY Park, JT Kim, MJ Kim, SH Jang, SH Choi
in vivo, 2022iv.iiarjournals.org
Background/Aim: Dark tea, made by fermentation of tea leaves using microorganisms, is
well known for its antiobesity effect; however, studies to identify this effect have not been
sufficiently conducted. Herein, the anti-obesity effects of post-fermented dark tea were
studied in high-fat diet mouse. Materials and Methods: Obesity was induced through a high-
fat diet in C57BL/6 mice, and then dark tea extract powder (DTP) was orally administered
daily for 12 weeks to evaluate the body and organ weights. Changes in the biochemical …
Background/Aim
Dark tea, made by fermentation of tea leaves using microorganisms, is well known for its antiobesity effect; however, studies to identify this effect have not been sufficiently conducted. Herein, the anti-obesity effects of post-fermented dark tea were studied in high-fat diet mouse.
Materials and Methods
Obesity was induced through a high-fat diet in C57BL/6 mice, and then dark tea extract powder (DTP) was orally administered daily for 12 weeks to evaluate the body and organ weights. Changes in the biochemical markers of obesity were evaluated to study the mechanism of the anti-obesity effects of DTP.
Results
When DTP was administered to obesity mice, the weight and food intake reduced, blood aspartate aminotransferase (AST), alanine aminotransferase (ALT), triglyceride (TG), low-density lipoprotein-cholesterol (LDL-C) decreased, whereas high-density lipoprotein cholesterol (HDL-C) increased. Histopathology showed that steatosis and inflammation scores were reduced within the liver and adipocyte sizes were reduced within epididymal adipocyte. In addition, a significant decrease in blood insulin and hepatic TG and a significant increase in blood adiponectin were also confirmed. The results of western blot and qPCR in week 12, showed a significant decrease in the mRNA and protein levels of C/EBPα, and the mRNA levels of PPARγ in the liver.
Conclusion
Dark tea extracts are thought to have an anti-obesity effect by reducing the levels of the main transcription factors that promote adipocyte differentiation, such as C/EBPα, and PPARγ. Therefore, diet products using dark tea extracts could be developed.
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