Molecular and Applied Mycology and Plant Pathology Laboratory, Centre of Advanced Study, Department of Botany, University of Calcutta, Kolkata, India.
J Food Biochem. 2021 Jan;45(1):e13594. doi: 10.1111/jfbc.13594. Epub 2020 Dec 21.
Mushroom polysaccharides have been revered for decades as incredibly versatile compounds suitable for application in biomedical, pharmaceutical, food, and cosmetic industries. In that essence Russula alatoreticula, a traditionally appraised unique macrofungus, has earlier been explored to contain functional macromolecules elicited by hydrothermal and cold alkali systems. Remnants of that multistep extraction could further be utilized not only to isolate high-value components, but also to reduce waste material. With this in mind, we decided to recycle leftover residue of the tribal delicacy, rather than undervalue, by following heated NaOH reflux. Intriguingly, the effort resulted productive isolation of carbohydrate fraction (RualaHap) enriched in β-glucan that showed excellent antioxidant activity in terms of radical scavenging, chelating ability, and reducing power with EC of 207-5000 μg/ml. Besides strong immune boosting prowess was also witnessed as exposure of RAW 264.7 cells to the metabolites influenced macrophage viability and phagocytosis in a time-dependent manner. Induction of intracellular NO and ROS generation was also enumerated along with aggrandized production of pseudopods representing hallmark of monocyte stimulation. Moreover, the treatment drastically triggered level of TLR-2, TLR-4, NF-κB, Iκ-Bα, iNOS, COX-2, TNF-α, IFN-γ, and IL-10 maintaining balance between M1 and M2 cytokines via TLR coordinated NF-κB pathway. Conclusively the research offers a roadmap for better utilization of a species boasted in traditional practice aiding future implementation of RualaHap as ingredients of nutraceuticals or functional foods. PRACTICAL APPLICATIONS: At present, macrofungal polysaccharides are regarded as an ideal resource for a range of safe uses encompassing direct contact or ingestion by human. In this context, RualaHap isolated from the wild edible mushroom, R. alatoreticula, could have a broad application prospect, particularly in development of natural therapeutics to ameliorate radical-induced ailment and immune-deficiency condition. The biopolymers could thus be utilized in functional diet or complementary medicine to improve health that in turn might raise local cost of the abandoned taxon boosting rural empowerment.
蘑菇多糖几十年来一直被视为用途广泛的化合物,适用于生物医药、制药、食品和化妆品行业。在这种情况下,Russula alatoreticula,一种传统上被评估为独特的大型真菌,已经被探索出含有由水热和冷碱系统引发的功能大分子。这种多步提取的残余物不仅可以用来分离高价值的成分,还可以减少浪费。考虑到这一点,我们决定回收部落美食的剩余残渣,而不是低估它,通过加热的 NaOH 回流来回收。有趣的是,这项努力成功地分离出富含β-葡聚糖的碳水化合物部分(RualaHap),它在自由基清除、螯合能力和还原能力方面表现出优异的抗氧化活性,EC 值为 207-5000μg/ml。此外,还观察到强大的免疫增强作用,因为代谢物暴露于 RAW 264.7 细胞会以时间依赖的方式影响巨噬细胞活力和吞噬作用。还列举了细胞内 NO 和 ROS 生成的诱导,以及伪足的大量产生,这是单核细胞刺激的标志。此外,该治疗方法还显著触发 TLR-2、TLR-4、NF-κB、Iκ-Bα、iNOS、COX-2、TNF-α、IFN-γ 和 IL-10 的水平,通过 TLR 协调的 NF-κB 途径维持 M1 和 M2 细胞因子之间的平衡。总之,该研究为更好地利用在传统实践中被吹嘘的物种提供了路线图,有助于未来将 RualaHap 作为营养保健品或功能性食品的成分实施。实际应用:目前,大型真菌多糖被认为是一系列安全用途的理想资源,包括人类的直接接触或摄入。在这种情况下,从野生食用蘑菇 Russula alatoreticula 中分离出的 RualaHap 可能具有广泛的应用前景,特别是在开发天然疗法以改善自由基引起的疾病和免疫缺陷方面。生物聚合物因此可以用于功能性饮食或补充医学,以改善健康,从而可能提高被忽视的分类群的当地成本,促进农村赋权。