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Solid and liquid state characterization of tetrahydrocurcumin using XRPD FT-IR DSC TGA LC-MS GC-MS and NMR and its biological activities

机译:使用XRPDFT-IRDSCTGALC-MSGC-MS和NMR及其生物活性的四氢胶质蛋白的固态和液态表征

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摘要

Tetrahydrocurcumin (THC) is one of the major metabolites of curcumin (CUR), an ancient bioactive natural polyphenolic compound. This research article describes both the solid and liquid state characterization of THC using advanced spectroscopic and thermo-analytical techniques. Anti-inflammatory, anti-oxidant, and neuroprotective activities of THC were investigated using cell lines. Liquid chromatography-mass spectrometry analysis revealed that our sample comprised 95.15% THC, 0.51% tetrahydrodemethoxycurcumin (THDC), 3.40% hexahydrocurcumin, and 0.94% octahydrocurcumin. Gas chromatography-mass spectrometry analysis indicated the presence of 96.68% THC and 3.32% THDC. THC in solution existed as keto-enol tautomers in three different forms at different retention time, but the enol form was found to be dominant, which was also supported by nuclear magnetic resonance analysis. THC was thermally stable up to 335.55 °C. THC exhibited more suppression of cytokines (TNF-α, IL-1β, and MIP-1α) than CUR in a concentration-dependent manner in mouse splenocytes, while NK-cell and phagocytosis activity was increased in macrophages. THC showed a significant reduction of free radicals (LPO) along with improved antioxidant enzymes (SOD and catalase) and increased free radical scavenging activity against ABTS radicals in HepG2 cells. THC displayed higher protection capability than CUR from oxidative stress and neuronal damage by improving cell viability against H O induced HepG2 cells and MPP induced SH-SY5Y cells, respectively, in a concentration-dependent manner. Thus, a variation of the biological activities of THC might rely on its keto-enol form and the presence of other THC analogs as impurities. The present study could be advantageous for further research on THC for better understanding its physicochemical properties and biological variation.
机译:四氢胶(THC)是姜黄素(CUR),一种古代生物活性天然多酚化合物的主要代谢产物之一。本研究制品描述了使用先进的光谱和热分析技术的THC的固态和液态表征。使用细胞系研究了抗炎,抗氧化剂和THC的神经保护活性。液相色谱 - 质谱分析显示,我们的样品包含95.15%THC,0.51%四氢甲氧基氧杂菌蛋白(THDC),3.40%六氢锆蛋白和0.94%八氢烃蛋白。气相色谱 - 质谱分析表明存在96.68%的THC和3.32%THDC。在溶液中以不同的保留时间以三种不同的形式存在于溶液中,但发现烯醇形式是占优势的,其也被核磁共振分析支持。 THC热稳定高达335.55℃。在小鼠脾细胞中,THC在浓度依赖性方式上表现出细胞因子(TNF-α,IL-1β和MIP-1α)的更多抑制,而NK细胞和吞噬作用在巨噬细胞中增加。 THC显示出自由基(LPO)的显着降低以及改善的抗氧化酶(SOD和过氧化氢酶),并增加了对HepG2细胞中的ABTS基团的自由基清除活性。通过以浓度依赖性方式改善对HO诱导的HEPG2细胞和MPP诱导的SH-SY5Y细胞,通过改善细胞活力和MPP诱导的SH-SY5Y细胞来显示比氧化应激和神经元损伤更高的保护能力。因此,THC的生物活性的变异可以依赖于其Keto-enol形式和其他THC类似物作为杂质的存在。本研究可能是有利的,用于进一步研究THC,以便更好地理解其物理化学性质和生物学变异。

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