Garcia-Carrasco Melissa, Picos-Corrales Lorenzo A, Gutiérrez-Grijalva Erick P, Angulo-Escalante Miguel A, Licea-Claverie Angel, Heredia J Basilio
Nutraceuticals and Functional Foods Laboratory, Centro de Investigación en Alimentación y Desarrollo, A.C., Carretera a Eldorado Km. 5.5, Col. Campo El Diez, Culiacán 80110, Sinaloa, Mexico.
Facultad de Ingeniería Culiacán, Universidad Autónoma de Sinaloa, Ciudad Universitaria, Culiacán 80013, Sinaloa, Mexico.
Polymers (Basel). 2022 Sep 1;14(17):3609. doi: 10.3390/polym14173609.
Mexican oregano () polyphenols have antioxidant and anti-inflammatory potential, but low bioaccessibility. Therefore, in the present work the micro/nano-encapsulation of these compounds in two different matrixes of chitosan (CS) and chitosan--poly(PEGMA) (CS--PPEGMA) is described and assessed. The particle sizes of matrixes of CS (955 nm) and CS--PPEGMA (190 nm) increased by 10% and 50%, respectively, when the phenolic compounds were encapsulated, yielding loading efficiencies (LE) between 90-99% and 50-60%, correspondingly. The release profiles in simulated fluids revealed a better control of host-guest interactions by using the CS--PPEGMA matrix, reaching phenolic compounds release of 80% after 24 h, while single CS retained the guest compounds. The total reducing capacity (TRC) and Trolox equivalent antioxidant capacity (TEAC) of the phenolic compounds (PPHs) are protected and increased (more than five times) when they are encapsulated. Thus, this investigation provides a standard encapsulation strategy and relevant results regarding nutraceuticals stabilization and their improved bioaccessibility.
墨西哥牛至()多酚具有抗氧化和抗炎潜力,但生物可及性较低。因此,在本研究中,描述并评估了这些化合物在壳聚糖(CS)和壳聚糖-聚(聚乙二醇甲基丙烯酸酯)(CS-PPEGMA)两种不同基质中的微/纳米包封情况。当酚类化合物被包封时,CS(约955 nm)和CS-PPEGMA(约190 nm)基质的粒径分别增加了10%和50%,相应的载药效率(LE)分别在90-99%和50-60%之间。在模拟流体中的释放曲线显示,使用CS-PPEGMA基质能更好地控制主客体相互作用,24小时后酚类化合物的释放率达到80%,而单一的CS则保留了客体化合物。酚类化合物(PPHs)的总还原能力(TRC)和特洛克斯等效抗氧化能力(TEAC)在被包封后得到保护并有所提高(超过五倍)。因此,本研究提供了一种标准的包封策略以及关于营养保健品稳定性及其改善的生物可及性的相关结果。