无菌性
sterile; γ-irradiated
形式
tablet
制造商/商品名称
(BioSilta Oy)
pH值(酸碱度)
6.8
运输
ambient
储存温度
room temp
一般描述
Enpresso B by BioSilta Oy
生化/生理作用
EnPresso® B是一种预灭菌生长体系,适合基于大肠杆菌的表达体系,提高功能性蛋白的表达水平。
EnPresso®生长体系可为微生物生长、代谢及蛋白表达提供最佳的培养条件。该体系可达到远超常规培养基的细胞密度,从而提高蛋白得率。通过控制生长速率及代谢环境,可大幅提高表达蛋白的正确折叠比例,提高蛋白产物的溶解率,最大限度降低包涵体的形成,确保蛋白产物的功能。
EnPresso®生长体系不仅可以维持稳定的pH,提供生长所需的充足矿物质元素、维生素及微量元素,而且可通过专利的EnBase™ 技术来确保多聚糖基质中的葡萄糖能够稳定、缓慢地释放。
了解EnPresso B 生长体系所有产品的订购信息。
EnPresso®生长体系可为微生物生长、代谢及蛋白表达提供最佳的培养条件。该体系可达到远超常规培养基的细胞密度,从而提高蛋白得率。通过控制生长速率及代谢环境,可大幅提高表达蛋白的正确折叠比例,提高蛋白产物的溶解率,最大限度降低包涵体的形成,确保蛋白产物的功能。
EnPresso®生长体系不仅可以维持稳定的pH,提供生长所需的充足矿物质元素、维生素及微量元素,而且可通过专利的EnBase™ 技术来确保多聚糖基质中的葡萄糖能够稳定、缓慢地释放。
了解EnPresso B 生长体系所有产品的订购信息。
外形
EnPresso® B 以试剂盒形式提供,足够进行4次50 ml 培养。试剂盒组分包括:
20包(白色),共40片
20包(黑色),共20片
1瓶(5 ml)Reagent A
20包(白色),共40片
20包(黑色),共20片
1瓶(5 ml)Reagent A
法律信息
EnBase is a trademark of BioSilta Oy
EnPresso is a registered trademark of BioSilta Oy
警示用语:
Danger
危险分类
Aquatic Chronic 3 - Carc. 1B - Eye Irrit. 2 - Skin Sens. 1 - STOT RE 2
WGK
WGK 3
法规信息
新产品
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Biochemical and biophysical research communications, 437(3), 342-348 (2013-07-06)
Family VIII esterases represent a poorly characterised esterase family, with high sequence identity to class C β-lactamases, peptidases and penicillin binding proteins. This study reports on the metagenomic library screening and biochemical characterisation of a novel esterase (Est22) derived from
PloS one, 8(11), e81306-e81306 (2013-12-05)
Clostridium difficile is a major cause of infectious diarrhea worldwide. Although the cell surface proteins are recognized to be important in clostridial pathogenesis, biological functions of only a few are known. Also, apart from the toxins, proteins exported by C.
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The structural complexity of nonribosomal peptides (NRPs) impeding economic chemical synthesis and poor cultivability of source organisms limits the development of bioprocesses for novel bioactive compounds. Since nonribosomal peptide synthetases (NRPSs) assemble NRPs from simple amino acid building blocks, heterologous
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A novel chimeric-truncated form of tissue-type plasminogen activator (t-PA) with improved fibrin affinity and resistance to PAI was successfully produced in CHO expression system during our previous studies. Considering advantages of prokaryotic expression systems, the aim in this study was
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