Department of Food Technology and Nutrition, Molecular Recognition and Encapsulation (REM) Group, UCAM Universidad Católica de Murcia, Murcia, Spain.
Departamento de Producción Animal y Ciencia de los Alimentos, Facultad de Veterinaria, Instituto Agroalimentario de Aragón-IA2 (Universidad de Zaragoza-CITA), Zaragoza, Spain.
J Sci Food Agric. 2021 Jul;101(9):3827-3835. doi: 10.1002/jsfa.11017. Epub 2021 Jan 3.
The antimicrobial activity of essential oils and their constituents has led to increasing interest in using them as natural preservative agents. However, their high sensitivity to light and oxygen, their volatility and their low aqueous solubility are all obstacles to their application in the food, cosmetic or pharmaceutical industries. Encapsulation in cyclodextrins (CDs) is a solution for the application of such essential oils.
The complexation of carvacrol and thymol with hydroxypropyl (HP)-α-, HP-β- and HP-γ-CD, the behavior of the solid complexes prepared by freeze-drying and spray-drying methods and the antibacterial activity of solid complexes were studied. K values of HP-α- and HP-γ-CD complexes with carvacrol (118.4 and 365.7 L mol ) and thymol (112.5 and 239.7 L mol ) were far lower than those observed for HP-β-CD complexes with carvacrol (2268.2 L mol ) and thymol (881.6 L mol ). The lower stability of HP-α- and HP-γ-CD complexes increased the release of compounds, thereby affecting the antimicrobial activity of carvacrol and thymol to a lesser extent than complexation with HP-β-CD, normally used in the encapsulation of carvacrol and thymol. HP-β-CD encapsulation of carvacrol and thymol markedly reduced their antimicrobial activity. The freeze-drying method barely affected the antimicrobial activity of carvacrol and thymol after encapsulation, while spray drying could be considered for the production of solid complexes in combination with the appropriate CD.
It was thus demonstrated that HP-α- and HP-γ-CD are very suitable alternatives for the encapsulation of carvacrol and thymol with the purpose of preserving their bacteriostatic and bactericidal activities. © 2020 Society of Chemical Industry.
精油及其成分的抗菌活性使得它们作为天然防腐剂的应用受到越来越多的关注。然而,它们对光和氧的高度敏感性、挥发性以及低水溶性,都是在食品、化妆品或制药行业应用的障碍。环糊精(CDs)的包合是解决此类精油应用问题的一种方法。
研究了香芹酚和百里酚与羟丙基(HP)-α-、HP-β-和 HP-γ-CD 的包合作用、通过冷冻干燥和喷雾干燥方法制备的固体配合物的行为以及固体配合物的抗菌活性。香芹酚和百里酚与 HP-α-和 HP-γ-CD 的复合物的 K 值(118.4 和 365.7 L/mol)远低于 HP-β-CD 与香芹酚(2268.2 L/mol)和百里酚(881.6 L/mol)的复合物的 K 值。HP-α-和 HP-γ-CD 复合物的稳定性较低,增加了化合物的释放,从而对香芹酚和百里酚的抗菌活性的影响小于与 HP-β-CD 的复合物,通常用于香芹酚和百里酚的包合。HP-β-CD 包合香芹酚和百里酚显著降低了它们的抗菌活性。包合后,冷冻干燥法对香芹酚和百里酚的抗菌活性几乎没有影响,而喷雾干燥法可以与合适的 CD 结合用于生产固体配合物。
因此,HP-α-和 HP-γ-CD 非常适合用于包合香芹酚和百里酚,以保持它们的抑菌和杀菌活性。© 2020 英国化学学会。