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首页> 外文期刊>Applied Microbiology and Biotechnology >Enzymatic production of 3,6-anhydro-l-galactose from agarose and its purification and in vitro skin whitening and anti-inflammatory activities
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Enzymatic production of 3,6-anhydro-l-galactose from agarose and its purification and in vitro skin whitening and anti-inflammatory activities

机译:琼脂糖酶法生产3,6-脱水-1-半乳糖及其纯化和体外美白及抗炎活性

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3,6-Anhydro-l-galactose (L-AHG) constitutes 50 % of agarose, which is the main component of red macroalgae. No information is currently available on the mass production, metabolic fate, or physiological effects of L-AHG. Here, agarose was converted to L-AHG in the following three steps: pre-hydrolysis of agarose into agaro-oligosaccharides by using acetic acid, hydrolysis of the agaro-oligosaccharides into neoagarobiose by an exo-agarase, and hydrolysis of neoagarobiose into L-AHG and galactose by a neoagarobiose hydrolase. After these three steps, L-AHG was purified by adsorption and gel permeation chromatographies. The final product obtained was 95.6 % pure L-AHG at a final yield of 4.0 % based on the initial agarose. In a cell proliferation assay, L-AHG at a concentration of 100 or 200 μg/ mL did not exhibit any significant cytotoxicity. In a skin whitening assay, 100 μg/ mL of L-AHG showed significantly lower melanin production compared to arbutin. L-AHG at 100 and 200 μg/ mL showed strong anti-inflammatory activity, indicating the significant suppression of nitrite production. This is the first report on the production of high-purity L-AHG and its physiological activities.
机译:3,6-脱水-1-半乳糖(L-AHG)构成琼脂糖的50%,琼脂糖是红色大型藻类的主要成分。目前尚无有关L-AHG的大规模生产,代谢命运或生理效应的信息。在此,通过以下三个步骤将琼脂糖转化为L-AHG:使用乙酸将琼脂糖预水解为琼脂寡糖,通过外切琼脂酶将琼脂糖寡糖水解为新琼脂糖,以及将新琼脂糖水解为L-。新琼脂糖水解酶可产生AHG和半乳糖。在这三个步骤之后,通过吸附和凝胶渗透色谱法纯化L-AHG。获得的最终产物是95.6%的纯L-AHG,基于初始琼脂糖的最终产率为4.0%。在细胞增殖测定中,浓度为100或200μg/ mL的L-AHG没有表现出任何明显的细胞毒性。在皮肤增白测定中,与熊果苷相比,100μg/ mL的L-AHG显示黑色素的产生明显降低。 100和200μg/ mL的L-AHG显示出很强的抗炎活性,表明亚硝酸盐的产生得到了明显的抑制。这是关于高纯度L-AHG的产生及其生理活性的第一份报告。

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