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含有大量4'-去甲基川陈皮素的发酵椪柑果实压榨残渣可预防MK801诱导的记忆损伤。

Fermented Citrus reticulata (ponkan) fruit squeezed draff that contains a large amount of 4'-demethylnobiletin prevents MK801-induced memory impairment.

作者信息

Kawahata Ichiro, Suzuki Tatsuya, Rico Evelyn Gutiérrez, Kusano Shuichi, Tamura Hiroshi, Mimaki Yoshihiro, Yamakuni Tohru

机构信息

Department of Pharmacology, Graduate School of Pharmaceutical Sciences, Tohoku University, 6-3 Aoba, Aramaki, Aoba-ku, Sendai, 980-8578, Japan.

Fuji Sangyo Co., Ltd. Research and Development Center, 1301 Tamura-cho, Marugame, 763-0071, Japan.

出版信息

J Nat Med. 2017 Oct;71(4):617-631. doi: 10.1007/s11418-017-1091-8. Epub 2017 May 9.

Abstract

A previous study reported biotransformation of a citrus peel polymethoxyflavone, nobiletin, by Aspergillus enabling production of 4'-demethylnobiletin, and the product's antimutagenic activity. However, the effects of fermented citrus peel on the basal forebrain-hippocampal system remain unidentified. Citrus reticulata (ponkan) fruit squeezed draffs are generated as mass waste in beverage factories. In this study using PC12D cells and cultured central nervous system neurons, we therefore examined whether Aspergillus kawachii-fermented citrus fruit squeezed draff could affect cAMP response element (CRE)- and choline acetyltransferase gene (ChAT) promoter region-mediated transcriptional activities relevant to memory formation and cholinergic function. Our current fermentation yielded approximately 80% nobiletin bioconversion, and a sample of hot-water extract of the fermented fruit squeezed draff was stronger than that of the unfermented one in facilitating CRE-mediated transcription in cultured hippocampal neurons as well as in PC12D cells. A sample of 0-80% ethanol-eluted fraction of Diaion HP-20 column-adsorbed components of the preparation obtained by the fermentation concentration-dependently and more strongly facilitated CRE-mediated transcription than did the fraction of the unfermented one in both cell culture systems. In a separate study, this polymethoxyflavone-rich fraction of the fermented fruit squeezed draff showed a potent ability to facilitate CRE-mediated and ChAT transcription in a co-culture of hippocampal neurons and basal forebrain neurons. Repeated oral gavage of mice with the fermented fraction sample prevented MK801-impaired memory formation in mice. These findings suggest that the 4'-demethylnobiletin-rich fraction prepared from the Aspergillus-fermented ponkan squeezed draff has a potential anti-dementia effect.

摘要

先前的一项研究报告称,曲霉可对柑橘皮多甲氧基黄酮川陈皮素进行生物转化,生成4'-去甲基川陈皮素及其产物的抗诱变活性。然而,发酵柑橘皮对基底前脑-海马系统的影响仍不明确。在饮料工厂中,椪柑果实榨汁后的残渣会大量产生。因此,在本研究中,我们使用PC12D细胞和培养的中枢神经系统神经元,研究了泡盛曲霉发酵的柑橘果实榨汁残渣是否会影响与记忆形成和胆碱能功能相关的环磷酸腺苷反应元件(CRE)及胆碱乙酰转移酶基因(ChAT)启动子区域介导的转录活性。我们目前的发酵使川陈皮素的生物转化率约为80%,发酵果实榨汁残渣的热水提取物样品在促进培养的海马神经元以及PC12D细胞中CRE介导的转录方面比未发酵的样品更强。在两种细胞培养系统中,发酵浓缩物经Diaion HP-20柱吸附的0-80%乙醇洗脱组分样品比未发酵组分更能浓度依赖性且更强地促进CRE介导的转录。在另一项研究中,发酵果实榨汁残渣中富含这种多甲氧基黄酮的组分在海马神经元和基底前脑神经元的共培养中显示出强大的促进CRE介导和ChAT转录的能力。用发酵组分样品反复经口灌胃小鼠可预防MK801引起的小鼠记忆形成受损。这些发现表明,从泡盛曲霉发酵的椪柑榨汁残渣中制备的富含4'-去甲基川陈皮素的组分具有潜在的抗痴呆作用。

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