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NMR 分配和石榴鞣花单宁 punicalagin 在酸性 pH 值范围内的酸碱特性。

NMR assignments and the acid-base characterization of the pomegranate ellagitannin punicalagin in the acidic pH-range.

机构信息

Department of Chemistry, University of California, Riverside, Riverside, CA 92521, USA.

出版信息

Anal Bioanal Chem. 2013 Jul;405(17):5807-16. doi: 10.1007/s00216-013-6987-x. Epub 2013 May 9.

Abstract

In exploring the capability of nuclear magnetic resonance (NMR) spectroscopy for pomegranate juice analysis, the eight aromatic singlet resonances of α- and β-punicalagin were clearly identified in the (1)H NMR spectra of juice samples. The four downfield resonances were found to be sensitive to small pH changes around pH 3.50 where the NMR spectra of the juice samples were recorded. To understand this unusual behavior, the (1)H and (13)C resonance assignments of the punicalagin anomers were determined in aqueous solution and pH titrations with UV and (1)H NMR detection carried out to characterize the acid-base properties of punicalagin over the pH range 2-8. Simultaneous fitting of all of the pH-sensitive (1)H NMR signals produced similar but significantly different pKa values for the first two deprotonation equilibria of the gallagic acid moiety of the punicalagin α- (pKa1 = 4.57 ± 0.02, pKa2 = 5.63 ± 0.03) and β- (pKa1 = 4.36 ± 0.01, pKa2 = 5.47 ± 0.02) anomers. Equivalent pKa values, (α : 6.64 ± 0.01, β : 6.63± 0.01) were measured for the third deprotonation step involving the ellagic acid group, in good agreement with a prior literature report. The punicalagin anomer equilibrium readjusts in parallel with the proton dissociation steps as the pH is raised such that β-punicalagin becomes the most abundant anomer at neutral pH. The unusual upfield shifts observed for the glucose H3 and H5 resonances with increasing pH along with the shift in the α/β anomer equilibrium are likely the consequence of a conformational rearrangement.

摘要

在探索核磁共振(NMR)光谱法分析石榴汁的能力时,在果汁样品的(1)H NMR 光谱中清楚地识别出α-和β-安石榴甙的八个芳香单峰共振。发现四个场强较高的共振对 pH3.50 左右的微小 pH 变化敏感,在该 pH 值下记录了果汁样品的 NMR 光谱。为了理解这种异常行为,在水溶液中和 pH 滴定中确定了安石榴甙差向异构体的(1)H 和(13)C 共振分配,并进行了 UV 和(1)H NMR 检测,以表征安石榴甙在 pH2-8 范围内的酸碱性质。对所有 pH 敏感的(1)H NMR 信号进行同时拟合,得到了安石榴甙α-(pKa1=4.57±0.02,pKa2=5.63±0.03)和β-(pKa1=4.36±0.01,pKa2=5.47±0.02)差向异构体的前两个去质子化平衡的相似但显著不同的 pKa 值。第三个涉及鞣花酸基团的去质子化步骤的等效 pKa 值(α:6.64±0.01,β:6.63±0.01)与先前的文献报道一致。随着 pH 的升高,质子解离步骤与安石榴甙差向异构体平衡一起重新调整,使得β-安石榴甙在中性 pH 下成为最丰富的差向异构体。随着 pH 的增加,葡萄糖 H3 和 H5 共振的异常向上位移以及α/β 差向异构体平衡的位移很可能是构象重排的结果。

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