Klitou Panayiotis, Parisi Emmanuele, Bordignon Simone, Bravetti Federica, Rosbottom Ian, Dell'Aera Marzia, Cuocci Corrado, Chierotti Michele R, Altomare Angela, Simone Elena
School of Food Science and Nutrition, Food Colloids and Bioprocessing Group, University of Leeds, Leeds LS2 9JT, UK.
Department of Applied Science and Technology (DISAT), Politecnico di Torino, Torino I-10129, Italy.
Cryst Growth Des. 2023 Jul 13;23(8):6034-6045. doi: 10.1021/acs.cgd.3c00584. eCollection 2023 Aug 2.
Quercetin, a naturally occurring bioflavonoid substance widely used in the nutraceutical and food industries, exists in various solid forms that can have different physicochemical properties, thus impacting this compound's performance in various applications. In this work, we will clarify the complex solid-form landscape of this molecule. Two elusive isostructural solvates of quercetin were obtained from ethanol and methanol. The obtained crystals were characterized experimentally, but the crystallographic structure could not be solved due to their high instability. Nevertheless, the desolvated structure resulting from a high-temperature treatment (or prolonged storage at ambient conditions) of both these two labile crystals was characterized and solved via powder X-ray diffraction and solid-state nuclear magnetic resonance (SSNMR). This anhydrous crystal structure was compared with another anhydrous quercetin form obtained in our previous work, indicating that, at least, two different anhydrous polymorphs of quercetin exist. Navigating the solid-form landscape of quercetin is essential to ensure accurate control of the functional properties of food, nutraceutical, or pharmaceutical products containing crystal forms of this substance.
槲皮素是一种天然存在的生物类黄酮物质,广泛应用于营养保健品和食品工业,它以多种固体形式存在,这些形式可能具有不同的物理化学性质,从而影响该化合物在各种应用中的性能。在这项工作中,我们将阐明该分子复杂的固体形态情况。从乙醇和甲醇中获得了两种难以捉摸的槲皮素同构溶剂化物。对所获得的晶体进行了实验表征,但由于它们的高不稳定性,无法解析其晶体结构。然而,通过粉末X射线衍射和固态核磁共振(SSNMR)对这两种不稳定晶体进行高温处理(或在环境条件下长时间储存)后得到的去溶剂化结构进行了表征和解析。将这种无水晶体结构与我们之前工作中获得的另一种无水槲皮素形式进行了比较,表明至少存在两种不同的槲皮素无水多晶型物。了解槲皮素的固体形态情况对于确保准确控制含有该物质晶体形式的食品、营养保健品或药品的功能特性至关重要。