豚草中酿酒酵母β-葡聚糖的提取、鉴定及生物毒性研究

I. Ramadhani, D. Larissa, Y. Yuliani, M. Amir, Kusmiati Kusmiati
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引用次数: 3

摘要

β-葡聚糖是一种具有生物活性的同质多糖,对健康有益,具有免疫刺激、抗炎、抗糖尿病、抗胆固醇等作用。从酵母中提取β-葡聚糖的结果需要与这种生物活性质量相关的表征,如β-葡聚糖重量、单体分析、官能团和细胞毒性测定。从3份本地ragi样品中分离到4株酿酒酵母菌,分别为即食ragi的SC-1、SC-2、SC-3和SAF。本研究旨在获得高β-葡聚糖和低蛋白水平酿酒葡萄球菌分离株的最佳候选菌株,并测试其细胞毒性潜力。将4株菌株在马铃薯葡萄糖琼脂(PDA)上恢复活力,然后接种于液体葡萄糖酵母蛋白胨(GYP)发酵培养基中,培养6 d。用酸碱中和法提取酿酒酵母细胞,干燥后称粗β-葡聚糖(mg / 300 mL)。产率最高的是SC-2 (818 mg),其次是SC-3 (726 mg)、SAF (597 mg)和SC-1 (433 mg)。用FTIR表征表明- oh(醇)、- c - c - c -(烷烃)和- r - o - r -(醚)基团的存在。用紫外-可见分光光度计测定葡萄糖等效β-葡聚糖水平和蛋白质水平。结果表明,β-葡聚糖SC-1的效果最好,葡萄糖当量β-葡聚糖水平为4865%,蛋白质水平为3804%。采用卤虾致死试验(BSLT)法进行β-葡聚糖粗毒试验,结果表明,SAF菌株的β-葡聚糖LC50毒性为114.8 ppm,其次为SC-2 (323.5 ppm)、SC-1 (331.1 ppm)和SC-3 (354.8 ppm)。由此可见,SC-1分离物β-葡聚糖粗含量最高,蛋白质含量最低的是SC-2。根据IC50值,SAF提取物的β-葡聚糖具有最高的毒性。
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Extraction, characterization, and biological toxicity of β-glucans from Saccharomyces cerevisiae isolated from ragi
β-glucan is a homopolysaccharide with biological activities that are beneficial to health as an immunostimulant, anti-inflammatory, anti-diabetic, anti-cholesterol, and many more. β-glucan extraction results from yeast require characterization related to this bioactive quality, such as β-glucan weight, monomer analysis, functional groups, and cytotoxicity assay. Four Saccharomyces cerevisiae isolates were isolated from three local ragi samples, namely the SC-1, SC-2, SC-3, and SAF from instant ragi. This study aimed to obtain the best candidate of S. cerevisiae isolates to produce high β-glucan levels and low protein levels and to test the potential for cytotoxicity. The four isolates were rejuvenated on potato dextrose agar (PDA), then inoculated into the liquid glucose yeast peptone (GYP) fermentation medium for six days. Saccharomyces cerevisiae cells were extracted by neutralizing acid-base, dried and weighed as a crude β-glucan (mg per 300 mL). The highest yield was SC-2 (818 mg), followed by SC-3 (726 mg), SAF (597 mg), and SC-1 (433 mg). The presence of –OH (alcohol), -C-C-C- (alkane), and –R-O-R- (ether) groups were showed using FTIR characterization. Glucose equivalent β-glucan levels and protein levels were determined using a UV-Vis spectrophotometer. The results showed that β-glucan SC-1 gave the best results with glucose equivalent β-glucan levels of 4,865% and protein levels of 3,804%. The crude β-glucan toxicity test using the brine shrimp lethality test (BSLT) method shows that the β-glucan of the SAF strain has LC50 cytotoxicity of 114.8 ppm followed by β-glucan cytotoxicity from local ragi LC50 was SC-2 (323.5 ppm), SC-1 (331.1 ppm), and SC-3 (354.8 ppm). Therefore, based on the results, SC-1 isolate obtained the highest β-glucan crude and the lowest protein content was SC-2. The β-glucan of SAF extract had the highest toxicity properties based on the IC50 value.
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Cover and Table of Content JMSB Vol 3, No 1 (2021) Culturable bacterial abundance in Volvariella volvacea cultivation medium and characterization of its bacteria Extraction, characterization, and biological toxicity of β-glucans from Saccharomyces cerevisiae isolated from ragi The influence of biocarrier of Aspergillus niger and Trichoderma harzianum toward vegetative growth of sorghum in the field experiment Development of a dimer-based screening system for dimerization inhibitor of HIV-1 protease
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