Instituto Multidisciplinario de Investigación y Transferencia Agroalimentaria y Biotecnológica (IMITAB), Universidad Nacional de Villa María, Campus Universitario, Av. Arturo Jauretche 1555, Villa María, Córdoba, Argentina.
Departamento de Microbiología e Inmunología, Universidad Nacional de Río Cuarto, Ruta Nacional 36 KM 601, Río Cuarto, Córdoba, Argentina.
Int J Biol Macromol. 2023 Dec 31;253(Pt 5):127167. doi: 10.1016/j.ijbiomac.2023.127167. Epub 2023 Oct 2.
A chitosan-glucose derivative (ChG) with lower antimicrobial activity against whey native probiotic yeast K. marxianus VM004 was synthesized by the Maillard reaction. The ChG derivative was characterized by FT-IR, H NMR, and SLS to determine the structure, deacetylation degree (DD), and molecular weight (Mw). In addition, we evaluated the antioxidant, cytotoxic, and antimicrobial activities of ChG. ChG was then used for microencapsulation of K. marxianus VM004 by spray drying. The microcapsules were characterized by evaluating their encapsulation yield, encapsulation efficiency, morphology, tolerance to the gastrointestinal tract, and viability during storage. The results indicated that a non-cytotoxic product with lower MW and DD and higher antioxidant activity than native chitosan was obtained by the Maillard reaction. The yeast ChG microcapsules exhibited an encapsulation efficiency >57 %, improved resistance to gastrointestinal conditions, and enhanced stability during storage. These results demonstrate that ChG may be a promising wall material for the microencapsulation of probiotic yeasts.
通过美拉德反应合成了一种壳聚糖-葡萄糖衍生物(ChG),其对乳清天然益生菌酵母 K. marxianus VM004 的抗菌活性较低。通过 FT-IR、H NMR 和 SLS 对 ChG 衍生物进行了表征,以确定其结构、脱乙酰度(DD)和分子量(Mw)。此外,我们评估了 ChG 的抗氧化、细胞毒性和抗菌活性。然后,通过喷雾干燥将 ChG 用于 K. marxianus VM004 的微胶囊化。通过评估微胶囊的包封产率、包封效率、形态、对胃肠道的耐受性和储存期间的活力来表征微胶囊。结果表明,通过美拉德反应获得了一种非细胞毒性产物,其 MW 和 DD 较低,抗氧化活性高于天然壳聚糖。酵母 ChG 微胶囊表现出 >57%的包封效率、提高了对胃肠道条件的抵抗力以及在储存期间的稳定性增强。这些结果表明 ChG 可能是益生菌酵母微胶囊化的一种有前途的壁材。