漆树(盐肤木)单宁在高血糖条件下对晚期糖基化终末产物形成的抑制作用、抗氧化及细胞保护活性:分子与细胞研究

Inhibition of AGEs formation, antioxidative, and cytoprotective activity of Sumac (Rhus typhina L.) tannin under hyperglycemia: molecular and cellular study.

作者信息

Sekowski Szymon, Olchowik-Grabarek Ewa, Dubis Alina T, Sharan Lokesh, Kumar Ashutosh, Abdulladjanova Nodira, Markiewicz Paula, Zamaraeva Maria

机构信息

Department of Microbiology and Biotechnology, Laboratory of Molecular Biophysics, Faculty of Biology, University of Bialystok, Ciołkowskiego 1J, 15-245, Białystok, Poland.

Department of Organic Chemistry, Faculty of Chemistry, University of Bialystok, Ciołkowskiego 1K, 15-245, Białystok, Poland.

出版信息

Mol Cell Biochem. 2023 Mar;478(3):443-457. doi: 10.1007/s11010-022-04522-0. Epub 2022 Jul 21.

Abstract

It is well known that accumulation of advanced glycation ends products (AGEs) lead to various diseases such as diabetes and diabetic complications. In this study we showed that hydrolysable tannin from Sumac (Rhus typhina L.)-3,6-bis-O-di-O-galloyl-1,2,4-tri-O-galloyl-β-D-glucose (CHO) inhibited generation of glycation markers in bovine serum albumin such as AGEs, dityrosine, N'-formylkynurenine and kynurenine under high glucose treatment. This effect was accompanied by stabilization of the protein structure, as was shown using ATR-FT-IR spectroscopy and fluorescence methods. CHO exhibited also a neuroprotective effect in high glucose-exposed Neuro2A cells suppressing ROS formation and expression of phospho NF-κβ and iNOS. At the same time CHO increased expression of heme oxygenase-1 and NAD(P)H: quinone oxidoreductase and mitochondrial complex I and V activities. Results from this study demonstrates a potent antiglycation activity of CHO in vitro and indicates its possible therapeutic application in glycation related diseases.

摘要

众所周知,晚期糖基化终产物(AGEs)的积累会导致多种疾病,如糖尿病及糖尿病并发症。在本研究中,我们发现来自盐肤木(Rhus typhina L.)的可水解单宁——3,6-双-O-二-O-没食子酰基-1,2,4-三-O-没食子酰基-β-D-葡萄糖(CHO),在高糖处理下可抑制牛血清白蛋白中糖化标志物的生成,如AGEs、二酪氨酸、N'-甲酰犬尿氨酸和犬尿氨酸。使用衰减全反射傅里叶变换红外光谱(ATR-FT-IR)和荧光方法表明,这种作用伴随着蛋白质结构的稳定。CHO在高糖处理的Neuro2A细胞中还表现出神经保护作用,可抑制活性氧(ROS)的形成以及磷酸化核因子κB(phospho NF-κβ)和诱导型一氧化氮合酶(iNOS)的表达。同时,CHO增加了血红素加氧酶-1和NAD(P)H:醌氧化还原酶的表达以及线粒体复合物I和V的活性。本研究结果证明了CHO在体外具有强大的抗糖化活性,并表明其在糖化相关疾病中可能具有治疗应用价值。

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