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Pentacyclic Triterpenoid-rich Fraction of the Hardy Kiwi (Actinidia Arguta) Improves Brain Dysfunction in High Fat Diet-induced Obese Mice

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Journal Sci Rep
Specialty Science
Date 2020 Apr 3
PMID 32238886
Citations 3
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Abstract

This study was performed to investigate the effect of the chloroform fraction from Actinidia arguta (CFAA) on cognitive dysfunction in a C57BL/6 mouse model fed a high-fat diet (HFD) for 12 weeks. The CFAA has the protective effect on high glucose-induced neurotoxicity in MC-IXC cell (neuroblastoma cell line). In a C57BL/6 mouse model fed a HFD for 12 weeks, the improved glucose tolerance and cognitive dysfunction were observed in a group ingesting CFAA. In the brain tissue analysis, the impaired cholinergic, antioxidant system and mitochondria functions were improved in the CFAA group. In addition, in a molecular biology study, it was observed that CFAA improves HFD-induced abnormal insulin signaling such as increase of IRS phosphorylation at serine residues and reduction of Akt phosphorylation caused by the increase of JNK phosphorylation and then inhibited apoptosis. In the UPLC Q-TOF/MS analysis, pentacyclic triterpenoids such as asiatic acid (AA), madecassic acid (MA) were identified in CFAA as main compounds. Therefore, these results propose that Actinidia arguta rich in pentacyclic triterpenoids may be effective as preventive matter a therapeutic strategy to improve neurodegenerative disease caused by HFD.

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References
1.
Furukawa S, Fujita T, Shimabukuro M, Iwaki M, Yamada Y, Nakajima Y . Increased oxidative stress in obesity and its impact on metabolic syndrome. J Clin Invest. 2004; 114(12):1752-61. PMC: 535065. DOI: 10.1172/JCI21625. View

2.
Shah S, Iqbal M, Karam J, Salifu M, McFarlane S . Oxidative stress, glucose metabolism, and the prevention of type 2 diabetes: pathophysiological insights. Antioxid Redox Signal. 2007; 9(7):911-29. DOI: 10.1089/ars.2007.1629. View

3.
Li X, Song D, Leng S . Link between type 2 diabetes and Alzheimer's disease: from epidemiology to mechanism and treatment. Clin Interv Aging. 2015; 10:549-60. PMC: 4360697. DOI: 10.2147/CIA.S74042. View

4.
Ramirez-Bermudez J . Alzheimer's disease: critical notes on the history of a medical concept. Arch Med Res. 2012; 43(8):595-9. DOI: 10.1016/j.arcmed.2012.11.008. View

5.
Hooper C, Killick R, Lovestone S . The GSK3 hypothesis of Alzheimer's disease. J Neurochem. 2007; 104(6):1433-9. PMC: 3073119. DOI: 10.1111/j.1471-4159.2007.05194.x. View