FAM 叠氮化物,6-异构体 (FAM azide, 6-isomer)

目录号 数量 价格 提前通知时间
15130 100 uL, 10 mM/DMSO $69 现货
35130 500 uL, 10 mM/DMSO $97 现货
45130 1 mL, 10 mM/DMSO $139 现货
A5130 1 mg $69 现货
B5130 5 mg $97 现货
C5130 10 mg $139 现货
D5130 25 mg $285 现货
E5130 50 mg $445 现货
F5130 100 mg $765 现货
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AM(荧光素)叠氮化物,6-异构体,是一种常用于点击化学的荧光染料叠氮化物。其固体 10 mM 的DMSO 溶液,用于标记试剂的点击化学反应。该试剂为纯6-异构体。

它可以替代 DyLight 488。

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用于点击化学偶联中的荧光素染料炔烃,纯 6-异构体。

AmdU (5-Azidomethyl-2'-deoxyuridine)

Azidomethyldeoxyuridine (AmdU) is an azide-contained nucleoside that is incorporated into nascent DNA by cellular polymerases. The azide groups attached to DNA this way can be subsequently modified with alkynes or cycloalkynes via copper-catalyzed or strain-promoted click reaction.

磺基-Cyanine7 羧酸 (sulfo-Cyanine7 carboxylic acid)

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外观: 黄色晶体
分子量: 458.42
CAS 编号: 1386385-76-7
分子式: C24H18N4O6
溶解度: 可溶于极性有机溶剂(DMF、DMSO、酒精)
质量控制: NMR 1H, HPLC-MS (95%)
储存条件: 储存:收到后在 -20°C 黑暗条件下可保存 24 个月。运输:室温下可保存最多 3 周。避免长时间暴露在光线下。
安全数据表(MSDS): 下载
产品规格

激发/吸收极大值,纳米: 492
ε, 摩尔吸光系数,cm⁻¹: 74000
发射极大值,纳米: 517
荧光量子产率: 0.93
CF260: 0.22
CF280: 0.17

产品引用

  1. Kropacheva, N. O.; Golyshkin, A. A.; Vorobyeva, M. A.; Meschaninova, M. I. Convenient Solid-Phase Attachment of Small-Molecule Ligands to Oligonucleotides via a Biodegradable Acid-Labile P-N-Bond. Molecules, 2023, 28(4), 1904. doi: 10.3390/molecules28041904
  2. Gabold, B.; Adams, F.; Brameyer, S.; Jung, K.; Ried, C. L.; Merdan, T.; Merkel, O. M. Transferrin-Modified Chitosan Nanoparticles for Targeted Nose-to-Brain Delivery of Proteins. Drug Deliv. and Transl. Res., 2023, 13(3), 822–838. doi: 10.1007/s13346-022-01245-z
  3. Kafle, C. M.; Anderson, A. Y.; Prakash, A.; Swedik, S.; Bridge, E. An Adenovirus Early Region 4 Deletion Mutant Induces G2/M Arrest via ATM Activation and Reduces Expression of the Mitotic Marker Phosphorylated (Ser10) Histone 3. Virology, 2022, 565, 1–12. doi: 10.1016/j.virol.2021.09.006
  4. Babi, M.; Palermo, A.; Abitbol, T.; Fatona, A.; Jarvis, V.; Nayak, A.; Cranston, E.; Moran-Mirabal, J. Direct Imaging of the Alternating Disordered and Crystalline Structure of Cellulose Fibrils via Super-Resolution Fluorescence Microscopy. ChemRxiv, 2022, preprint. doi: 10.26434/chemrxiv-2022-0jqng
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