推荐产品
生物来源
fungus (Myrothecium verrucaria)
表单
lyophilized powder
比活
15-65 units/mg protein
组成
Protein, ≥15% biuret
储存条件
(Keep container tightly closed in a dry and well-ventilated place.)
环保替代产品特性
Waste Prevention
Design for Energy Efficiency
Learn more about the Principles of Green Chemistry.
sustainability
Greener Alternative Product
技术
toxicology assay: suitable
环保替代产品分类
, Enabling
运输
dry ice
储存温度
−20°C
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一般描述
我们致力于为您带来更加绿色的替代产品,这些产品遵守一项或多项绿色化学12项原则。对于生物燃料电池研究,本品已根据提高能效和防止废物原则进行了改进。详情参阅《biofiles》文章。
胆红素氧化酶(BOD)属于多铜氧化酶家族亚类成员,常见于真菌。胆红素氧化酶由三个杯状(Cupredoxin-like)结构域组成,含有4个铜离子组成的2个活性位点。研究领域:细胞凋亡
胆红素氧化酶(BOD)属于多铜氧化酶家族亚类成员,常见于真菌。胆红素氧化酶由三个杯状(Cupredoxin-like)结构域组成,含有4个铜离子组成的2个活性位点。研究领域:细胞凋亡
应用
胆红素氧化酶用于降解胆红素。胆红素氧化酶可用于测定黄疸标本中的游离血红蛋白 。在染料流出液脱色方面也有潜在的应用,是治疗新生儿黄疸的潜在药物 。
胆红素氧化酶(来自疣孢漆斑菌)已用于消除胆红素干扰。它还可用于通过荧光素衍生物(FS)标记和多元校正进行直接胆红素(dBR)和总胆红素(tBR)分析。
生化/生理作用
胆红素氧化酶 (BOD) 是一种催化胆红素氧化为胆绿素的多铜氧化酶。氧是电子受体,被还原成水。在血清的医学检查中,该酶用于血清中胆红素的诊断分析。它也被用作中性条件下工作的生物燃料电池阴极的酶催化剂。是一种单体蛋白,分子量为 60 kDa,在中性 pH 下具有高反应性。BOD 参与卟啉和叶绿素代谢。
胆红素氧化酶(BOD)可氧化漆酶底物。
单位定义
在 37°C、pH 8.4 时,1 个单位每分钟将氧化 1.0 μmol 的胆红素。
警示用语:
Danger
危险声明
预防措施声明
危险分类
Resp. Sens. 1
储存分类代码
11 - Combustible Solids
WGK
WGK 1
闪点(°F)
Not applicable
闪点(°C)
Not applicable
个人防护装备
Eyeshields, Gloves, type N95 (US)
历史批次信息供参考:
分析证书(COA)
Lot/Batch Number
其他客户在看
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A self-powered electrochemical sensor has been facilely designed for sensitive detection of Hg(2+) based on the inhibition of biocatalysis process of enzymatic biofuel cell (BFC) for the first time. The as-prepared one-compartment BFC, which was consisted of alcohol dehydrogenase supported
James A Cracknell et al.
Dalton transactions (Cambridge, England : 2003), 40(25), 6668-6675 (2011-05-06)
The blue multi-copper oxidase bilirubin oxidase (BOx) from the ascomycete plant pathogen Myrothecium verrucaria (Mv) efficiently catalyses the oxidation of bilirubin to biliverdin, with the concomitant reduction of O(2) to water, a reaction of considerable interest for low-temperature bio-fuel cell
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Sakasegawa S, et al.
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FEBS letters, 584(18), 4027-4031 (2010-08-24)
Redox-induced protonation state changes of the Glu residue in the multicopper oxidases, CueO and bilirubin oxidase (BO), were studied by attenuated total reflectance-Fourier transform infrared spectroscopy. By monitoring IR bands of the carboxylic acid C=O stretch in the wild-type and
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