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来自……子实体的粗多糖的功能组成及抗氧化特性

Functional composition and antioxidant property of crude polysaccharides from the fruiting bodies of .

作者信息

Ayimbila Francis, Keawsompong Suttipun

机构信息

Specialized Research Units: Prebiotics and Probiotics for Health, Department of Biotechnology, Faculty of Agro-Industry, Kasetsart University, Bangkok, 10900 Thailand.

Center for Advanced Studies for Agriculture and Food, KU Institute of Advanced Studies, Kasetsart University (CASAF, NRU-KU), Bangkok, 10900 Thailand.

出版信息

3 Biotech. 2021 Jan;11(1):7. doi: 10.1007/s13205-020-02594-7. Epub 2021 Jan 2.

Abstract

(Hed Khon Khao) is a source of bioactive polysaccharides. Three crude polysaccharides (LSPs) were subjected to cold water (LSP-CP), hot water (LSP-HP), and aqueous alkaline (LSP-AP) extractions, and their functional compositions and radical scavenging activities were compared. Synchrotron radiation FTIR (SR-FTIR) spectra and PCA plot analysis in the bio-regions (4000-400 cm) revealed that functional composition LSPs differ significantly ( < 0.05). All LSPs had lipids, protein, and polysaccharides such as β-glucan. The major monosaccharides in LSP-CP and LSP-HP are d-galactose, d-glucose, and d-mannose at different proportions, while LSP-AP contained mainly d-glucose. Also, fucose and xylose were present in all the LSPs. LSP-CP, LSP-HP and LSP-AP induced maximum 1,1-diphenyl-2- picrylhydrazyl (DPPH) radical scavenging activity of 78.93 ± 0.42% at 3 mg/mL, 79.16 ± 1.43% at 3 mg/mL and 65.26 ± 1.74% at 5 mg/mL, whiles on 2,2'-azino-bis(3-ethylbenzothiazoline-6-sulfonic acid (ABTS), their maximum activities were 98.94 ± 0.16% at 3 mg/mL, 97.42 ± 0.76% at 3 mg/mL and 47.24 ± 0.045% at 5 mg/mL, respectively. The results showed that LSP-CP and LSP-HP are good ABTS scavengers, whiles LSP-AP is poor ABTS scavenger. In overall, LSPs consist of essential functional compositions and could be used as natural antioxidants. This exploitation of fungal fruiting body extracts increased the potential use of in food and medicinal industries.

摘要

(黑孔考)是生物活性多糖的一个来源。三种粗多糖(LSPs)分别采用冷水(LSP-CP)、热水(LSP-HP)和碱性水溶液(LSP-AP)进行提取,并比较了它们的功能成分和自由基清除活性。同步辐射傅里叶变换红外光谱(SR-FTIR)光谱以及生物区域(4000 - 400厘米)的主成分分析图显示,功能成分LSPs存在显著差异(<0.05)。所有LSPs都含有脂质、蛋白质和多糖,如β-葡聚糖。LSP-CP和LSP-HP中的主要单糖是不同比例的D-半乳糖、D-葡萄糖和D-甘露糖,而LSP-AP主要含有D-葡萄糖。此外,所有LSPs中都存在岩藻糖和木糖。LSP-CP、LSP-HP和LSP-AP在3毫克/毫升时对1,1-二苯基-2-苦基肼(DPPH)自由基的最大清除活性分别为78.93±0.42%、79.16±1.43%和5毫克/毫升时的65.26±1.74%,而在2,2'-联氮-双(3-乙基苯并噻唑啉-6-磺酸)(ABTS)方面,它们的最大活性分别为3毫克/毫升时的98.94±0.16%、3毫克/毫升时的97.42±0.76%和5毫克/毫升时的47.24±0.045%。结果表明,LSP-CP和LSP-HP是良好的ABTS清除剂,而LSP-AP是较差的ABTS清除剂。总体而言,LSPs由必需的功能成分组成,可作为天然抗氧化剂。这种对真菌子实体提取物的开发增加了其在食品和医药行业的潜在用途。

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