Fruit and Vegetables Technology Department, CSIR-Central Food Technological Research Institute, Mysuru 570 020, India.
Fruit and Vegetables Technology Department, CSIR-Central Food Technological Research Institute, Mysuru 570 020, India.
Int J Biol Macromol. 2024 Jul;273(Pt 1):133046. doi: 10.1016/j.ijbiomac.2024.133046. Epub 2024 Jun 8.
Chitin-glucan complex (CGC) is an emerging novel prebiotic with numerous physiological activities in amelioration of clinical manifestations. In the present work, natural deep eutectic solvent (NADES), ultrasonication, and submerged fermentation using probiotic microorganisms were deployed for the extraction of CGC from Shiitake fruiting bodies. CGC obtained through non-ultrasonication assisted fermentation employing Lactiplantibacillus plantarum exhibited maximum polysaccharide yield (27.86 ± 0.82 % w/w). However, based on antioxidant potential, NADES combination of urea: glycerol (1:1 M ratio) was selected for further characterization. The rheological behavior of CGC under optimized conditions showed shear thinning property in both 0.1 M NaCl and salt-free solution. FTIR, H-(1D), and 2D HH Homonuclear NMR spectra displayed distinctive patterns associated with β-glycosidic linkage and β-d-glucopyranose sugar moiety. XRD profiles of CGC exhibited characteristic peaks at 2θ = 23°, 25°, and 28° with corresponding hkl values of (220), (101), and (130) lattice planes, respectively. Enhanced radical scavenging activities were noticed due to the triple helical structure and anionic nature of CGC. CGC exhibited potential prebiotic activity (prebiotic score 118-134 %) and short chain fatty acids liberation (maximum 9.99 ± 0.41 mM by Lactobacillus delbrueckii). Simulated static in-vitro digestion demonstrated that CGC withstands acidic environment of gastric phase, which indicated its suitability for use as a prebiotic in nutraceutical-enriched food products.
壳聚糖-葡聚糖复合物(CGC)是一种新兴的新型益生元,具有多种生理活性,可改善临床症状。在本工作中,采用天然深共熔溶剂(NADES)、超声和益生菌微生物浸提发酵的方法从香菇子实体中提取 CGC。通过不进行超声辅助发酵并采用植物乳杆菌(Lactiplantibacillus plantarum)获得的 CGC 表现出最大的多糖产率(27.86±0.82%w/w)。然而,根据抗氧化潜力,选择 NADES 组合的尿素:甘油(1:1 M 比例)进行进一步表征。在优化条件下,CGC 的流变行为在 0.1 M NaCl 和无盐溶液中均表现出剪切稀化特性。FTIR、H-(1D)和 2D HH 同核 NMR 谱显示出与β-糖苷键和β-d-吡喃葡萄糖糖基部分相关的独特图谱。CGC 的 XRD 图谱在 2θ=23°、25°和 28°处表现出特征峰,相应的 hkl 值分别为(220)、(101)和(130)晶格平面。由于 CGC 的三螺旋结构和阴离子性质,观察到自由基清除活性增强。CGC 表现出潜在的益生元活性(益生元评分 118-134%)和短链脂肪酸释放(最大 9.99±0.41 mM 通过德氏乳杆菌(Lactobacillus delbrueckii))。模拟静态体外消化表明,CGC 能耐受胃阶段的酸性环境,这表明其适合用作富含营养的食品中的益生元。