Biler Michal, Biedermann David, Valentová Kateřina, Křen Vladimír, Kubala Martin
Department of Biophysics, Centre of the Region Haná for Biotechnological and Agricultural Research, Palacký University, Šlechtitelů 27, 783 71, Olomouc, Czech Republic.
Phys Chem Chem Phys. 2017 Oct 11;19(39):26870-26879. doi: 10.1039/c7cp03845c.
This study is focused on eight structurally analogous natural flavonoids that exhibit a wide range of biological activities, which are of interest in pharmacy, cosmetics and the food industry. Using both experimental and theoretical approaches, we relate their fundamental physico-chemical properties to the structural motifs, with particular focus on UV/Vis absorption properties and pH dependence. We highlight the role of the C2-C3 double bond, whose presence or absence is responsible for the switch between absorption bands in the UVB and UVA regions, which is rationalized by strong modification of the involved molecular orbitals. After deprotonation in an alkaline environment, a typical switch in intensity at the maximum absorption wavelength (λ) is observed enabling the calculation of pK values for compounds with a C2-C3 single bond, whereas a bathochromic shift of λvs. pH is observed for the C2-C3 double bond containing compounds. These behaviors are also rationalized and understood by MO analysis. Interestingly, high pH (above 11 for ampelopsin and above 9 for myricetin) induces the formation of a long-wavelength peak arising from double and/or triple deprotonation. Substitution at position C3 by the OH group has almost no effect on λ for taxifolin and eriodictyol, whereas the effect is larger for quercetin and luteolin. An additional sugar moiety at C3 has a stabilizing effect and induces only minor changes in spectral behavior.
本研究聚焦于八种结构类似的天然黄酮类化合物,它们展现出广泛的生物活性,在制药、化妆品和食品工业领域备受关注。我们运用实验和理论方法,将它们的基本物理化学性质与结构基序相关联,特别关注紫外/可见吸收特性及pH依赖性。我们强调了C2 - C3双键的作用,其存在与否决定了UVB和UVA区域吸收带之间的转换,这可通过对相关分子轨道的强烈修饰来解释。在碱性环境中去质子化后,观察到最大吸收波长(λ)处强度的典型变化,从而能够计算具有C2 - C3单键化合物的pK值,而对于含有C2 - C3双键的化合物,则观察到λ随pH的红移。这些行为也通过分子轨道分析得到合理解释。有趣的是,高pH值(对于蛇葡萄素高于11,对于杨梅素高于9)会诱导由于双重和/或三重去质子化而产生的长波长峰的形成。在C3位被OH基团取代对落叶松素和圣草酚的λ几乎没有影响,而对槲皮素和木犀草素的影响更大。在C3位额外的糖基部分具有稳定作用,并且仅引起光谱行为的微小变化。