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Article

Mori Cortex Radicis Attenuates High Fat Diet-Induced Cognitive Impairment via an IRS/Akt Signaling Pathway

1
Department of Health Functional Materials, Duksung Women’s University, Seoul 01369, Korea
2
Department of Food Science, Purdue University, West Lafayette, IN 47906, USA
3
Department of Food and Nutrition, Duksung Women’s University, Seoul 01369, Korea
*
Author to whom correspondence should be addressed.
Nutrients 2020, 12(6), 1851; https://doi.org/10.3390/nu12061851
Submission received: 31 March 2020 / Revised: 18 June 2020 / Accepted: 18 June 2020 / Published: 21 June 2020
(This article belongs to the Section Phytochemicals and Human Health)

Abstract

Present study was conducted to investigate ameliorating effects of Mori Cortex radicis on cognitive impair and neuronal defects in HFD-induced (High Fat Diet-Induced) obese mice. To induce obesity, C57BL/6 mice were fed an HFD for 8 weeks, and then mice were fed the HFD plus Mori Cortex radicis extract (MCR) (100 or 200 mg/kg/day) for 6 weeks. Prior to sacrifice, body weights were measured, and Y-maze test and oral glucose tolerance test were performed. Serum lipid metabolic biomarkers (TG, LDL, and HDL/total cholesterol ratio) and antioxidant enzymes (glutathione, superoxide dismutase, and catalase), malondialdehyde (MDA), and acetylcholinesterase (AChE) levels were measured in brain tissues. The expressions of proteins related to insulin signaling (p-IRS, PI3K, p-Akt, and GLUT4) and neuronal protection (p-Tau, Bcl-2, and Bax) were examined. MCR suppressed weight gain, improved serum lipid metabolic biomarker and glucose tolerance, inhibited AChE levels and MDA production, and restored antioxidant enzyme levels in brain tissue. In addition, MCR induced neuronal protective effects by inhibiting p-Tau expression and increasing Bcl-2/Bax ratio, which was attributed to insulin-induced increases in the expressions p-IRS, PI3K, p-Akt, and GLUT4. These indicate MCR may reduce HFD-induced insulin dysfunction and neuronal damage and suggest MCR be considered a functional material for the prevention of T2DM-associated neuronal disease.
Keywords: Mori Cortex radicis; high-fat diet; obesity; cognitive impairment Mori Cortex radicis; high-fat diet; obesity; cognitive impairment

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MDPI and ACS Style

You, S.; Jang, M.; Kim, G.-H. Mori Cortex Radicis Attenuates High Fat Diet-Induced Cognitive Impairment via an IRS/Akt Signaling Pathway. Nutrients 2020, 12, 1851. https://doi.org/10.3390/nu12061851

AMA Style

You S, Jang M, Kim G-H. Mori Cortex Radicis Attenuates High Fat Diet-Induced Cognitive Impairment via an IRS/Akt Signaling Pathway. Nutrients. 2020; 12(6):1851. https://doi.org/10.3390/nu12061851

Chicago/Turabian Style

You, SoHyeon, Miran Jang, and Gun-Hee Kim. 2020. "Mori Cortex Radicis Attenuates High Fat Diet-Induced Cognitive Impairment via an IRS/Akt Signaling Pathway" Nutrients 12, no. 6: 1851. https://doi.org/10.3390/nu12061851

APA Style

You, S., Jang, M., & Kim, G.-H. (2020). Mori Cortex Radicis Attenuates High Fat Diet-Induced Cognitive Impairment via an IRS/Akt Signaling Pathway. Nutrients, 12(6), 1851. https://doi.org/10.3390/nu12061851

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