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首页> 外文期刊>Engineering in Life Sciences >Preparation of a PET-hydrolyzing lipase from Aspergillus oryzae by the addition of bis(2-hydroxyethyl) terephthalate to the culture medium and enzymatic modification of PET fabrics. (Special Issue: Biotechnical functionalization of renewablepolymeric
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Preparation of a PET-hydrolyzing lipase from Aspergillus oryzae by the addition of bis(2-hydroxyethyl) terephthalate to the culture medium and enzymatic modification of PET fabrics. (Special Issue: Biotechnical functionalization of renewablepolymeric

机译:通过向培养基中添加对苯二甲酸双(2-羟乙基)酯和酶改性PET织物,从米曲霉制备PET水解脂肪酶。 (特刊:可再生聚合物的生物技术功能化

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Optimization of cultivation conditions for lipase production and the preparation of a specific lipase catalyzing the hydrolysis of polyethylene terephthalate (PET) by Aspergillus oryzae CCUG 33812 as well as modification of PET fabrics by the enzyme were investigated. The lipase activity produced by the fungus after the addition of olive oil was not efficient in changing the properties of PET samples. In order to obtain lipase activity directed toward the hydrolysis of PET, two derivatives of terephthalic acid (TPA), namely diethyl p-phthalate (DP) and bis(2-hydroxyethyl) terephthalate (BHT), and PET short fibers were used as inducers. The results showed that BHT was the best inducer. The BHT-induced extracellular lipase could catalyze the hydrolysis of the PET model substrate DP. The formation of new carboxyl groups is consistent with the increase in K/S values of dyed PET fabrics after the enzymatic treatment. Additionally, treatment with the BHT-induced lipase resulted in increased moisture regain and weight loss of PET fiber/fabric, while the water contact angle and the static half decay time decreased slightly. This indicates that hydrophilicity and anti-static ability were improved after the treatment with the BHT-induced lipase. Compounds that were solubilized by the enzymatic treatment were analyzed by spectrophotometry and high performance liquid chromatography (HPLC) with UV detection. Both analyses indicated that hydrolysis of PET occurred and that products were formed due to the catalytic action of the BHT-induced enzyme; however, no significant changes in UV absorbance and no new peaks were found in HPLC-UVD analyses of reaction mixtures with olive oil-induced lipase or PET-induced lipase. This investigation has resulted in detailed procedures for the production of PET-hydrolyzing lipase by A. oryzae and is the first report regarding the successful use of BHT as an inducer for the enzyme production.
机译:研究了用于生产脂肪酶的培养条件的优化以及催化米曲霉CCUG 33812催化聚对苯二甲酸乙二酯(PET)水解的特定脂肪酶的制备以及该酶对PET织物的改性。加入橄榄油后,真菌产生的脂肪酶活性不能有效改变PET样品的性能。为了获得针对PET水解的脂肪酶活性,对苯二甲酸(TPA)的两种衍生物,即对苯二甲酸二乙酯(DP)和对苯二甲酸双(2-羟乙基)酯(BHT),以及PET短纤维用作诱导剂。结果表明,BHT是最好的诱导剂。 BHT诱导的细胞外脂肪酶可以催化PET模型底物DP的水解。酶处理后,新的羧基的形成与染色的PET织物的K / S值增加一致。此外,用BHT诱导的脂肪酶处理可提高回潮率和PET纤维/织物的重量减轻,而水接触角和静态半衰期则略有减少。这表明用BHT诱导的脂肪酶处理后,亲水性和抗静电能力得到改善。通过分光光度法和具有UV检测的高效液相色谱(HPLC)分析通过酶处理增溶的化合物。两项分析均表明,发生了PET水解,并且由于BHT诱导的酶的催化作用而形成了产物。但是,用橄榄油诱导的脂肪酶或PET诱导的脂肪酶对反应混合物进行HPLC-UVD分析时,UV吸光度没有显着变化,也没有发现新的峰。这项研究导致了米曲霉生产PET水解脂肪酶的详细程序,并且是有关成功将BHT用作酶生产诱导剂的第一份报告。

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