Secondary Metabolites in Fungi

Birsen Atli, Beria Ozcakir, B. Isik, V. Mursaliyeva, R. Mammadov
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引用次数: 1

Abstract

Fungi are a biological family that includes multicellular and unicellular eukaryotic organisms in general. They are quite numerous and diverse. It is the second largest group of organisms on Earth after insects. Higher fungi (terrestrial fungi) currently constitute a large and efficiently untapped resource of new pharmacological crops with nutritional values are potentially powerful. Antioxidants prevent cellular damage caused by free radicals in living beings. It has been found that 36% of endophytic mushroom extracts with a high phenolic content show strong antioxidant effects. In one study, they reported that the antioxidant activities of the strains Aspergillus sp., A. niger, A. peyronelii and Chaetomium sp. ranged from 50% to 80% and that this antioxidant activity was due to their high phenolic content. In addition to the antioxidant properties of fungi, it has been shown as a result of research that they show antibacterial activity. Macrofungal β-glucans (β-1,6 glycosidic bonds and mainly β-1,3), which are known to have immunomodulatory and antitumor effects in cancer prevention, can be used in treatment strategies. At the same time, it has been shown in studies that these metabolites obtained from fungi cause fewer side effects when used in treatments, unlike chemical drugs. As a result of phytochemical research, the presence of flavonoids, anthraquinones, steroids, terpenoids, coumarins, phenols and tannins in fungal extracts in general was detected, while alkaloids and saponins were not found. It has been determined that the studies on mushrooms have gained versatile uses since they reveal secondary metabolite components with different biological activities in the structure of these group members.
真菌中的次生代谢物
真菌是一个生物家族,一般包括多细胞和单细胞真核生物。它们数量众多,种类繁多。它是地球上仅次于昆虫的第二大生物群。高等真菌(陆生真菌)目前构成了一个巨大的和有效的未开发资源,具有潜在的营养价值的新药理学作物。抗氧化剂可以防止自由基对生物体造成的细胞损伤。研究发现,36%的高酚含量内生蘑菇提取物具有较强的抗氧化作用。在一项研究中,他们报道了曲霉、黑曲霉、佩氏曲霉和毛毛菌的抗氧化活性在50%到80%之间,这种抗氧化活性是由于它们的高酚含量。真菌除了具有抗氧化特性外,研究结果还表明它们具有抗菌活性。巨真菌β-葡聚糖(β-1,6糖苷键,主要是β-1,3)具有免疫调节和抗肿瘤的抗癌作用,可用于治疗策略。与此同时,研究表明,与化学药物不同,这些从真菌中获得的代谢物在用于治疗时产生的副作用更少。通过植物化学研究,在真菌提取物中普遍检测到黄酮类、蒽醌类、类固醇类、萜类、香豆素类、酚类和单宁类,而未发现生物碱和皂苷类。人们已经确定,对蘑菇的研究已经获得了广泛的用途,因为它们揭示了这些群体成员结构中具有不同生物活性的次级代谢物成分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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