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两种野生品种(var. 和 subsp. )的全面化学成分分析和多向生物学研究:聚焦神经保护作用。

Comprehensive Chemical Profiling and Multidirectional Biological Investigation of Two Wild Species ( var. and subsp. : Focus on Neuroprotective Effects.

机构信息

Department of Pharmacy, University "G. d'Annunzio" of Chieti-Pescara, 66100 Chieti, Italy.

Department of Biology, Faculty of Science, Selcuk University, Konya 42130, Turkey.

出版信息

Molecules. 2019 Jul 16;24(14):2582. doi: 10.3390/molecules24142582.

Abstract

Ethyl acetate (EA), methanol (MeOH), and aqueous extracts of aerial parts of var. (ATP) and subsp. (ACT) were investigated for their phenol and flavonoid content, antioxidant, and key enzyme inhibitory potentials. All extracts displayed antiradical effects, with MeOH and aqueous extracts being a superior source of antioxidants. On the other hand, EA and MeOH extracts were potent against AChE and BChE. Enzyme inhibitory effects against tyrosinase and α-glucosidase were observed, as well. We also studied extracts in an ex vivo experimental neurotoxicity paradigm. We assayed extract influence on oxidative stress and neurotransmission biomarkers, including lactate dehydrogenase (LDH) and serotonin (5-HT), in isolated rat cortex challenged with K 60 mM Krebs-Ringer buffer (excitotoxicity stimulus). An untargeted proteomic analysis was finally performed in order to explore the putative mechanism in the brain. The pharmacological study highlighted the capability of ACT water extract to blunt K 60 mM increase in LDH level and 5-HT turnover, and restore physiological activity of specific proteins involved in neuron morphology and neurotransmission, including NEFMs, VAMP-2, and PKCγ, thus further supporting the neuroprotective role of ACT water extract.

摘要

乙酸乙酯(EA)、甲醇(MeOH)和 var. (ATP)和 subsp. (ACT)地上部分的水提物和醇提物的酚类和类黄酮含量、抗氧化和关键酶抑制潜力进行了研究。所有提取物均显示出抗自由基作用,其中 MeOH 和水提物是抗氧化剂的良好来源。另一方面,EA 和 MeOH 提取物对 AChE 和 BChE 具有很强的抑制作用。对酪氨酸酶和 α-葡萄糖苷酶也观察到了酶抑制作用。我们还在体外实验性神经毒性模型中研究了 提取物。我们检测了提取物对氧化应激和神经递质生物标志物(包括乳酸脱氢酶(LDH)和 5-羟色胺(5-HT))的影响,这些标志物在 K 60 mM Krebs-Ringer 缓冲液(兴奋性毒性刺激)中分离的大鼠皮质中受到挑战。最后进行了非靶向蛋白质组学分析,以探索大脑中的潜在机制。药理研究强调了 ACT 水提物的能力,可减轻 K 60 mM 对 LDH 水平和 5-HT 周转率的升高,并恢复参与神经元形态和神经传递的特定蛋白质的生理活性,包括 NEFMs、VAMP-2 和 PKCγ,从而进一步支持 ACT 水提物的神经保护作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2bb3/6680454/c33d9196f09d/molecules-24-02582-g001.jpg

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