品牌
AAT Bioquest
编号
XH1003
| 货号 | 品牌 | 纯度/规格 | 包装 | 目录价 | 您的价格 | 货期 | 数量 |
|---|---|---|---|---|---|---|---|
| XH1003-1mg | AAT Bioquest | 1mg | ¥1298.00 | ¥1298.00 |
|
| 中文名称 | 小麦胚芽凝集素(WGA),AF350标记 |
|---|---|
| 英文名称 | Wheat Germ Agglutinin, XFD350 Labeled *XFD350 Same Structure to Alexa Fluor® 350* |
| 内容 | 产品基本信息 产品名称:小麦胚芽凝集素,AF350标记 储存条件:-15℃避光防潮 保质期:12个月
产品物理化学光谱特性 Ex(nm):303 Em(nm):439 消光系数:19000
产品概述 XFD350 由 AAT Bioquest 制造,与 ThermoFisher 的商标 Alexa Fluor® 350 具有相同的化学结构。小麦胚芽凝集素 (WGA) 是一种经过充分研究的凝集素,以其有价值的生物应用而闻名。由于其与糖缀合物结合的能力,WGA 衍生物和缀合物被广泛用于标记细胞膜和纤维化疤痕组织,以进行荧光成像和分析。 WGA 专门针对称为壳糊精的 β-1,4-GlcNAc 连接残基序列。每个单体拥有两个相同的、非相互作用的结合位点,可补充 3 或 4 个 β-1,4-GlcNAc 单位。在测试的单糖中,只有GlcNAc表现出与WGA的结合,而ManNAc不结合,GalNAc表现出弱结合。 XFD350 WGA 缀合物与其对应的 Alexa Fluor® 350 WGA 缀合物一样,发出亮蓝色荧光,可用于多种应用,包括免疫荧光 (IF)、免疫组织化学 (IHC) 和流式细胞术 (FC)。 参考文献
Wheat germ agglutinin is involved in the protective action of 24-epibrassinolide on the roots of wheat seedlings under drought conditions.
Authors: Avalbaev, Azamat and Bezrukova, Marina and Allagulova, Chulpan and Lubyanova, Alsu and Kudoyarova, Guzel and Fedorova, Kristina and Maslennikova, Dilara and Yuldashev, Ruslan and Shakirova, Farida Journal: Plant physiology and biochemistry : PPB (2020): 420-427 Membrane-associated gamma-glutamyl transferase and alkaline phosphatase in the context of concanavalin A- and wheat germ agglutinin-reactive glycans mark seminal prostasome populations from normozoospermic and oligozoospermic men.
Authors: Janković, Tamara and Goč, Sanja and Mitić, Ninoslav and Danilović Luković, Jelena and Janković, Miroslava Journal: Upsala journal of medical sciences (2020): 10-18 Succinylated Wheat Germ Agglutinin Colocalizes with the Toxoplasma gondii Cyst Wall Glycoprotein CST1.
Authors: Guevara, Rebekah B and Fox, Barbara A and Bzik, David J Journal: mSphere (2020) Wheat germ agglutinin is a biomarker of whole grain content in wheat flour and pasta.
Authors: Killilea, David W and McQueen, Rebecca and Abegania, Judi R Journal: Journal of food science (2020): 808-815 Wheat germ agglutinin liposomes with surface grafted cyclodextrins as bioadhesive dual-drug delivery nanocarriers to treat oral cells.
Authors: Wijetunge, Sashini S and Wen, Jianchuan and Yeh, Chih-Ko and Sun, Yuyu Journal: Colloids and surfaces. B, Biointerfaces (2020): 110572 Wheat germ agglutinin-conjugated fluorescent pH sensors for visualizing proton fluxes.
Authors: Zhang, Lejie and Zhang, Mei and Bellve, Karl and Fogarty, Kevin E and Castro, Maite A and Brauchi, Sebastian and Kobertz, William R Journal: The Journal of general physiology (2020) Bacterial expression, purification and biophysical characterization of wheat germ agglutinin and its four hevein-like domains.
Authors: Leyva, Eduardo and Medrano-Cerano, Jorge L and Cano-Sánchez, Patricia and López-González, Itzel and Gómez-Velasco, Homero and Del Río-Portilla, Federico and García-Hernández, Enrique Journal: Biopolymers (2019): e23242 Targeted delivery of etoposide, carmustine and doxorubicin to human glioblastoma cells using methoxy poly(ethylene glycol)‑poly(ε‑caprolactone) nanoparticles conjugated with wheat germ agglutinin and folic acid.
Authors: Kuo, Yung-Chih and Chang, Yu-Hsuan and Rajesh, Rajendiran Journal: Materials science & engineering. C, Materials for biological applications (2019): 114-128 Wheat Germ Agglutinin as a Potential Therapeutic Agent for Leukemia.
Authors: Ryva, Bradley and Zhang, Keman and Asthana, Abhishek and Wong, Derek and Vicioso, Yorleny and Parameswaran, Reshmi Journal: Frontiers in oncology (2019): 100 Enhanced anti-colon cancer efficacy of 5-fluorouracil by epigallocatechin-3- gallate co-loaded in wheat germ agglutinin-conjugated nanoparticles.
Authors: Wang, Ruoning and Huang, Jinyu and Chen, Jian and Yang, Mengmeng and Wang, Honglan and Qiao, Hongzhi and Chen, Zhipeng and Hu, Lihong and Di, Liuqing and Li, Junsong Journal: Nanomedicine : nanotechnology, biology, and medicine (2019): 102068 |