BDP FL 炔烃 (BDP FL alkyne)

目录号 数量 价格 提前通知时间
A14B0 1 mg $125 现货
B14B0 5 mg $260 现货
C14B0 10 mg $325 现货
D14B0 25 mg $510 现货
E14B0 50 mg $895 现货
F14B0 100 mg $1490 现货
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BDP FL 的炔衍生物。 BDP FL 是一种硼二吡咯亚甲基染料,是一种明亮且光稳定的荧光团,在荧光素 (FAM) 通道中发射。与 FAM 不同,BDP FL非常耐光。其亮度与荧光素相似。

这种炔烃可以通过铜催化的点击化学与许多含叠氮化物的分子偶合。

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Thiazole Orange NHS ester

Thiazole Orange NHS ester for labeling biomolecules (peptides, proteins, amino-DNA, etc.). Thiazole orange is a cyanine dye that is essentially dark in solution but has a bright fluorescence in double-stranded DNA and RNA.

AF 488 alkyne

Alkyne derivative of AF 488 dye for copper-catalyzed cycloaddition to azides. Pure 5-isomer.

BDP FL maleimide

BDP FL maleimide is a bright and photostable thiol-reactive dye for protein labeling, an ideal replacement for fluorescein for microscopy.

外观: 橙色固体
质谱 M+ 增量: 329.1
分子量: 329.15
CAS 编号: 302795-84-2, 2006345-30-6
分子式: C17H18BF2N3O
溶解度: 适合有机溶剂(DMF、DMSO、二氯甲烷),但仅限于水
质量控制: NMR 1H, HPLC-MS (95%)
储存条件: 储存:收到后-20℃避光保存24个月。 运输:室温下最多可保存3周。 避免长时间暴露在光线下。 干燥。
安全数据表(MSDS): 下载
产品规格

激发/吸收极大值,纳米: 503
ε, 摩尔吸光系数,cm⁻¹: 92000
发射极大值,纳米: 509
荧光量子产率: 0.97
CF260: 0.015
CF280: 0.027

产品引用

  1. Fong, C.K.; Andersen, M.J.; Kunesh, E.; Leonard, E.; Durand, D.; Coombs, R.; Flores-Mireles, A.L.; Howell, C. Removal of Free Liquid Layer from Liquid-Infused Catheters Reduces Silicone Loss into the Environment while Maintaining Adhesion Resistance. medRxiv, 2023, preprint. doi: 10.1101/2023.09.14.23295548
  2. Charoen-Rajapark, P.; Clarke, D.R. Confocal microscopy observations of electrical pre-breakdown of bi-layer elastomer dielectrics. Extreme Mechanics Letters, 2021, 49, 101473. doi: 10.1016/j.eml.2021.101473
  3. Abukar, T.; Rahmani, S.; Thompson, N.K.; Antonescu, C.N.; Wakarchuk, W.W. Development of BODIPY labelled sialic acids as sialyltransferase substrates for direct detection of terminal galactose on N- and O-linked glycans. Carbohydrate Research, 2021, 500, 108249. doi: 10.1016/j.carres.2021.108249
  4. Merlo, R.; Caprioglio, D.; Cillo, M.; Valenti, A.; Mattossovich, R.; Morrone, C.; Massarotti, A.; Rossi, F.; Miggiano, R.; Leonardi, A.; Minassi, A.; Perugino, G. The SNAP-tag technology revised: an effective chemo-enzymatic approach by using a universal azide-based substrate. Journal of Enzyme Inhibition and Medicinal Chemistry, 2021, 36(1), 85–97. doi: 10.1080/14756366.2020.1841182
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