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现在位置首页>实验室原料试剂耗材>化学试剂>指示剂/显色剂/染色剂> AAT Bioquest iFluor 750-刀豆蛋白A(ConA)缀合物 货号25598
 AAT Bioquest  iFluor 750-刀豆蛋白A(ConA)缀合物 货号25598
 AAT Bioquest  iFluor 750-刀豆蛋白A(ConA)缀合物 货号25598
  •  AAT Bioquest  iFluor 750-刀豆蛋白A(ConA)缀合物 货号25598

AAT Bioquest iFluor 750-刀豆蛋白A(ConA)缀合物 货号25598

产品报价:询价

更新时间:2023/12/6 15:14:30

地:陕西

牌:AAT Bioquest

号:25598

厂商性质: 生产型,

公司名称: 西安百萤生物科技有限公司

产品关键词: iFluor 750   刀豆蛋白A   AAT Bioquest   凝集素  

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 AAT Bioquest  iFluor 750-刀豆蛋白A(ConA)缀合物 货号25598参数
Ex (nm)757Em (nm)779
分子量N/A溶剂Water
存储条件在零下15度以下保存, 避免光照

 AAT Bioquest  iFluor 750-刀豆蛋白A(ConA)缀合物 货号25598概述

 AAT Bioquest  iFluor 750-刀豆蛋白A(ConA)缀合物 货号25598基本信息

产品名称:iFluor 750-刀豆蛋白A(ConA)缀合物

储存条件:-15℃避光防潮

保质期:12个月

 

 AAT Bioquest  iFluor 750-刀豆蛋白A(ConA)缀合物 货号25598物理化学光谱特性

Ex(nm):757

Em(nm):779

量子产率(cm -1 M -1):0.12

消光系数:275000

 

 AAT Bioquest  iFluor 750-刀豆蛋白A(ConA)缀合物 货号25598概述

iFluor 750 标记的伴刀豆球蛋白 A 选择性地与 a-吡喃甘露糖基和 a-吡喃葡萄糖基残基结合并显示 NIR 荧光。刀豆球蛋白 A (ConA) 是一种凝集素,一种特异性结合碳水化合物的蛋白质,存在于刀豆植物 (Canavalia ensiformis) 的种子中。 ConA 被guang泛用作研究碳水化合物结合蛋白、细胞表面聚糖以及涉及糖蛋白和糖脂的细胞过程的工具。 ConA 特异性结合糖分子甘露糖和葡萄糖,它们通常存在于糖蛋白和糖脂的碳水化合物中。当添加到生物样品中时,ConA 可用于选择性分离和纯化糖蛋白或检测细胞和组织中糖蛋白和聚糖的存在。此外,ConA 可以激活 T 细胞并刺激细胞增殖和分化。 ConA 已用于多种应用,包括细胞分选、免疫测定和细胞信号通路研究。它还被研究作为治疗自身免疫性疾病和癌症的潜在治疗剂。百萤生物是AAT Bioquest的zhong国代理商,为您提供优质的iFluor 750-刀豆蛋白A(ConA)缀合物。 

 


 

 AAT Bioquest  iFluor 750-刀豆蛋白A(ConA)缀合物 货号25598参考文献

Glucosylceramide synthase regulates hepatocyte repair after concanavalin A-induced immune-mediated liver injury.
Authors: Gan, Jian and Gao, Qin and Wang, Li Li and Tian, Ai Ping and Zhu, Long Dong and Zhang, Li Ting and Zhou, Wei and Mao, Xiao Rong and Li, Jun Feng
Journal: PeerJ (2021): e12138
 
Carbohydrate-protein template synthesized high mannose loading gold nanoclusters: A powerful fluorescence probe for sensitive Concanavalin A detection and specific breast cancer cell imaging.
Authors: Sha, Qiuyue and Guan, Ruixue and Su, Huiying and Zhang, Liang and Liu, Bi-Feng and Hu, Zhaoyu and Liu, Xin
Journal: Talanta (2020): 121130
 
Click-Particle Display for Base-Modified Aptamer Discovery.
Authors: Gordon, Chelsea K L and Wu, Diana and Pusuluri, Anusha and Feagin, Trevor A and Csordas, Andrew T and Eisenstein, Michael S and Hawker, Craig J and Niu, Jia and Soh, Hyongsok Tom
Journal: ACS chemical biology (2019): 2652-2662
 
Water-Soluble Glucosyl Pyrene Photosensitizers: An Intramolecularly Synthesized 2- C-Glucoside and an O-Glucoside.
Authors: Kanamori, Takashi and Matsuyama, Akira and Naito, Hidenori and Tsuga, Yuki and Ozako, Yoshiki and Ogura, Shun-Ichiro and Okazaki, Shigetoshi and Yuasa, Hideya
Journal: The Journal of organic chemistry (2018): 13765-13775
 
Catalyst-Free Cycloaddition Reaction for the Synthesis of Glyconanoparticles.
Authors: Kong, Na and Xie, Sheng and Zhou, Juan and Menéndez, Margarita and Solís, Dolores and Park, JaeHyeung and Proietti, Giampiero and Ramstr?m, Olof and Yan, Mingdi
Journal: ACS applied materials & interfaces (2016): 28136-28142
 
Lectin-carbohydrate recognition mechanism of Plasmodium berghei in the midgut of malaria vector Anopheles stephensi using quantum dot as a new approach.
Authors: Basseri, Hamid R and Javazm, Mahdi Salari and Farivar, Leila and Abai, Mohammad R
Journal: Acta tropica (2016): 37-42
 
Pharmacological Modulation of GluK1 and GluK2 by NETO1, NETO2, and PSD95.
Authors: Li, Baolin and Rex, Elizabeth and Wang, He and Qian, Yuewei and Ogden, Ann Marie and Bleakman, David and Johnson, Kirk W
Journal: Assay and drug development technologies (2016): 131-43
 
Spectroscopic and nonlinear optical properties of new chalcone fluorescent probes for bioimaging applications: a theoretical and experimental study.
Authors: Krawczyk, Przemys?aw and Pietrzak, Marek and Janek, Tomasz and J?drzejewska, Beata and Cysewski, Piotr
Journal: Journal of molecular modeling (2016): 125
 
Quantitative fluorine NMR to determine carbohydrate density on glyconanomaterials synthesized from perfluorophenyl azide-functionalized silica nanoparticles by click reaction.
Authors: Kong, Na and Zhou, Juan and Park, JaeHyeung and Xie, Sheng and Ramstr?m, Olof and Yan, Mingdi
Journal: Analytical chemistry (2015): 9451-8
 
In vitro evaluation of fluorescence glucose biosensor response.
Authors: Aloraefy, Mamdouh and Pfefer, T Joshua and Ramella-Roman, Jessica C and Sapsford, Kim E
Journal: Sensors (Basel, Switzerland) (2014): 12127-48