Department of Physical Chemistry, University of Vigo, Lagoas-Marcosende s/n, 36310-Vigo, Galicia, Spain.
Department of Agriculture, Food and Environment. University of Pisa, I-56124 Pisa, Italy.
J Agric Food Chem. 2021 Feb 3;69(4):1272-1282. doi: 10.1021/acs.jafc.0c06827. Epub 2021 Jan 22.
The occurrence of anthocyanin (ACN) and metal (Me) complexes has been widely supported by many research works while the possibility that ACNs bind to metalloids (Mds) is yet to be proven. Here, metalloids (HBO for B; GeO for Ge) were added to cyanidin-based solutions at pH 5, 6, and 7 and ACN-Md stoichiometric ratios of 1:1, 1:10, 1:100, and 1:500, and UV-vis transmittance spectroscopy as well as density functional theory (DFT) calculations were performed to test this hypothesis. Ge and B addition caused bathochromic and hyperchromic shifts on ACN UV-vis spectra, particularly pronounced at pH 5 and a 1:500 (ACN:Md) ratio. ACN-Me complexation reactions have been evaluated where Ge showed a higher capability to bind to ACNs than B. Among the complexes envisioned, those labeled as , , and feature UV-vis spectra compatible with experiments. The combination of experimental and computational data offers for the first time evidence of the formation of ACN-Md complexes.
花青素 (ACN) 和金属 (Me) 配合物的发生已被许多研究工作广泛支持,而 ACN 与类金属 (Mds) 结合的可能性尚未得到证明。在这里,在 pH 值为 5、6 和 7 的花青素基溶液中添加类金属 (B 为 HBO;Ge 为 GeO),并将 ACN-Me 化学计量比设置为 1:1、1:10、1:100 和 1:500,同时进行紫外-可见透射光谱和密度泛函理论 (DFT) 计算,以检验这一假设。Ge 和 B 的添加导致 ACN UV-vis 光谱发生红移和增色,在 pH 5 和 ACN:Md 比为 1:500 时尤为明显。评估了 ACN-Me 配合物的反应,结果表明 Ge 比 B 更能与 ACN 结合。在所设想的配合物中,那些标记为 、 和 的具有与实验兼容的紫外-可见光谱。实验和计算数据的结合首次为 ACN-Md 配合物的形成提供了证据。