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Steric Effect of Antioxidant Diels-Alder-Type Adducts: A Comparison of Sanggenon C with Sanggenon D

机译:抗氧化剂Diels-Alder型加合物的立体效应:Sanggenon C与Sanggenon D的比较

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摘要

Sanggenons C and D are two Diels-Alder-type adducts from Chinese crude drug Sang-bai-pi. Structurally, both sanggenons construct stereoisomers. In the study, they were comparatively determined using four antioxidant assays, including ferric ion reducing antioxidant power (FRAP) assay, Cu2+-reducing assay, 1,1-diphenyl-2-picryl-hydrazl (DPPH•)-scavenging assay, and 2,2′-azino-bis (3-ethylbenzo-thiazoline-6-sulfonic acid radical (ABTS•+)-scavenging assay. Their Fe2+-binding reactions were explored using UV-Vis spectra. Finally, their cytoprotective effects were evaluated using flow cytometry. In electron transfer (ET)-based FRAP and Cu2+-reducing assays, sanggenon D was found to have lower IC50 values than sanggenon C; however, in multi-pathway-based DPPH•-scavenging and ABTS•+-scavenging assays, sanggenon C possessed lower IC50 values than sanggenon D. UV-Vis spectra suggested that sanggenon C generated a bathochromic-shift (286 nm → 302 nm) and displayed stronger UV absorption than sanggenon D. In flow cytometry, sanggenon C and sanggenon D, respectively, exhibited 31.1% and 42.0% early apoptosis-percentages towards oxidative-stressed mesenchymal stem cells (MSCs). In conclusion, both sanggenons may undergo multiple pathways (e.g., ET and Fe2+-binding) to protect MSCs against oxidative stress. In the mere ET aspect, sanggenon D possesses a higher level than sanggenon C, while in multi-pathway-based radical-scavenging, Fe2+-binding, and cytoprotection aspects, sanggenon C is more active than sanggenon D. These discrepancies can conclusively be attributed to the steric effect.
机译:Sanggenons C和D是中药Sang-bai-pi的两种Diels-Alder型加合物。在结构上,两个桑琴子均构建立体异构体。在这项研究中,使用四种抗氧化剂测定法(包括三价铁离子还原抗氧化剂能力(FRAP)测定,Cu 2 + -还原测定,1,1-二苯基-2-picryl-hydrazl(清除DPPH•)和清除2,2'-叠氮基双(3-乙基苯并噻唑啉-6-磺酸自由基(ABTS• + )),它们的Fe 2利用UV-Vis光谱研究了+ -结合反应,最后通过流式细胞术评估了它们的细胞保护作用,在基于电子转移(ET)的FRAP和Cu 2 + 还原实验中,发现Sanggenon D的IC50值低于Sanggenon C;但是,在基于多路径的DPPH•-清除和ABTS• + -清除试验中,Sanggenon C的IC50值低于Sanggenon D UV-Vis光谱表明,Sanggenon C产生了红移(286 nm→302 nm),并且比Sanggenon D表现出更强的紫外线吸收;在流式细胞仪中,sanggenon C和sanggenon D分别表现出31.1%a nd 42.0%的早期凋亡百分比对氧化应激的间充质干细胞(MSCs)。总之,这两个sanggenon可能经历多种途径(例如ET和Fe 2 + -结合)来保护MSC免受氧化应激。在仅ET方面,Sanggenon D具有比Sanggenon C更高的水平,而在基于多途径的自由基清除,Fe 2 + 结合和细胞保护方面,Sanggenon C比这些差异可以最终归因于空间效应。

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