School of Food & Biological Engineering, Jiangsu University, Zhenjiang 212013, China.
Certified Group, 199 W Rhapsody Dr, San Antonio, Texas 78216, United States.
J Agric Food Chem. 2024 Sep 11;72(36):19721-19732. doi: 10.1021/acs.jafc.4c01059. Epub 2024 Aug 29.
is a commonly used Chinese medicine fungus, and its polysaccharide is a valuable bioactive with antioxidant, antiaging, antitumor activities, etc. However, their bioactivities are influenced by their structural and physicochemical properties. Hence, this research isolated and purified homogeneous water-soluble intracellular polysaccharide (IPSW-1) from mycelia. A coherent study of its structural characteristics, conformation, and antitumor mechanisms was evaluated. The results showed IPSW-1 has no triple helical conformation according to the Congo red test. Based on FT-IR, periodate oxidation, Smith degradation, methylation analysis, H and C NMR spectroscopy data, and IPSW-1 consisted of α-d-glucopyranose (Glc). The backbone of IPSW-1 consisted primarily of repeating three (1 → 6)-linked α-d-Glc and one (1 → 3,4)-linked α-d-Glc, with one terminal α-d-Glc as side chains of 3-O-connected to the main chain for every four residues. The IPSW-1 had an inhibitory influence on HepG2 cell proliferation and inhibited the migration and invasion ability by down-regulating the expression levels of MMP-7 and RhoA. Moreover, IPSW-1 could inhibit the lysis of autophagosomes to inhibit autophagy and regulate mitochondrial membrane potential and pro-apoptotic protein Bax, which causes the caspase cascade to promote apoptosis, thereby inhibiting the role of tumor cells. These findings show IPSW-1 holds potential as an innovative functional food.
是一种常用的中药真菌,其多糖是一种具有抗氧化、抗衰老、抗肿瘤活性等生物活性的有价值物质。然而,它们的生物活性受到其结构和物理化学性质的影响。因此,本研究从菌丝体中分离和纯化了均一的水溶性胞内多糖(IPSW-1)。评估了其结构特征、构象和抗肿瘤机制的综合研究。结果表明,根据刚果红试验,IPSW-1 没有三螺旋构象。基于 FT-IR、高碘酸氧化、Smith 降解、甲基化分析、H 和 C NMR 光谱数据,以及 IPSW-1 由α-d-葡萄糖(Glc)组成。IPSW-1 的骨架主要由重复的三个(1 → 6)-连接的α-d-Glc 和一个(1 → 3,4)-连接的α-d-Glc 组成,每个四个残基的侧链为 3-O 连接到主链的一个末端α-d-Glc。IPSW-1 对 HepG2 细胞增殖有抑制作用,并通过下调 MMP-7 和 RhoA 的表达水平抑制迁移和侵袭能力。此外,IPSW-1 可以抑制自噬溶酶体的裂解,从而抑制自噬,并调节线粒体膜电位和促凋亡蛋白 Bax,导致半胱天冬酶级联反应促进细胞凋亡,从而抑制肿瘤细胞的作用。这些发现表明 IPSW-1 具有作为创新功能性食品的潜力。