About This Item
Formulário
saline suspension
Extensão da rotulagem
2-8 μmol per mL
Matriz
cross-linked 4% beaded agarose
ativação da matriz
cyanogen bromide
ligação da matriz
amino
espaçador de matriz
1 atom
temperatura de armazenamento
2-8°C
Aplicação
D-Alanine Agarose can be used in proteomics and protein chromatography. It has been utilized in experiments with antibiotics of the vancomycin group to determine the role of micellular aggregates in the high binding affinity of teicoplanin to D-alanyl-D-alanine-agarose.
forma física
Suspension in 2.0 M NaCl containing preservative
Escolha uma das versões mais recentes:
Certificados de análise (COA)
Lamentamos, não temos COA para este produto disponíveis online no momento.
Se precisar de ajuda, entre em contato Atendimento ao cliente
Já possui este produto?
Encontre a documentação dos produtos que você adquiriu recentemente na biblioteca de documentos.
Clinical chemistry, 31(10), 1606-1610 (1985-10-01)
A solid-phase enzyme-receptor assay (SPERA) has been developed for glycopeptide antibiotics of the vancomycin class such as teicoplanin, vancomycin, ristocetin, avoparcin, actaplanin, A-47934, A-41030, and A-35512-B. The assay exploits the mechanism of most action of these antibiotics, which is based
Journal of applied biochemistry, 7(2), 133-137 (1985-04-01)
Teicoplanin, as well as the other antibiotics of the vancomycin group, was shown to bind specifically to D-alanyl-D-alanine-agarose (D-Ala-D-Ala-AGA) (A. Corti and G. Cassani, Appl. Biochem. Biotechnol. 11, 101-110 (1985)). This finding is extended, showing that the binding is as
Electrophoresis, 24(5), 808-815 (2003-03-11)
Binding constants between the glycopeptides teicoplanin (Teic) and ristocetin (Rist) and their derivatives to D-Ala-D-Ala terminus peptides were determined by on-column receptor synthesis coupled to partial-filling affinity capillary electrophoresis (PFACE) or affinity capillary electrophoresis (ACE). In these techniques, the column
Biochemical and biophysical research communications, 466(4), 717-722 (2015-09-09)
Arginine, a semi-essential amino acid, is known as one of the most strongest insulin secretagogues in a glucose-dependent manner, but major mechanism is unknown. Arginine induced insulin secretion in mice as well as β cell line, NIT-1, in which more
Nossa equipe de cientistas tem experiência em todas as áreas de pesquisa, incluindo Life Sciences, ciência de materiais, síntese química, cromatografia, química analítica e muitas outras.
Entre em contato com a assistência técnica