Cyanine7.5 NHS酯 (Cyanine7.5 NHS ester)

目录号 数量 价格 提前通知时间
16020 1 mg $125 现货
26020 5 mg $260 现货
46020 25 mg $510 现货
56020 50 mg $895 现货
66020 100 mg $1490 现货
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Cyanine7.5 是一种具有长波发射的近红外染料。该产品是该荧光团的胺反应衍生物。

近红外辐射很容易穿透组织,可用于体内成像应用。

该产品可用于标记各种含有胺基的生物分子,如蛋白质和肽,通过近红外成像追踪它们在生物体内的分布。

与 Cy7.5® NHS 的母体结构相比,增加中心聚甲炔部分的刚性,可使量子产率提高 20%。

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sulfo-Cyanine7.5 amine

Near-infrared, water-soluble, hydrophilic dye with amine functional group.

sulfo-Cyanine7 amine

NIR dye amine, sulfonated derivative of Cyanine7 dye, for the modification via enzymatical transamination.

BDP 581/591 alkyne

BDP 581/591 is a borondipyrromethene fluorophore useful for fluorescence polarization assays, microscopy, and two-photon experiments. This alkyne is a derivative for copper-catalyzed click chemistry.

外观: 绿色粉末
质谱 M+ 增量: 630.4
分子量: 833.76
CAS 编号: 2708152-94-5
分子式: C49H52N3BF4O4
IUPAC 名称: 1H-​Benz[e]​indolium, 2-​[2-​[3-​[2-​(1,​3-​dihydro-​1,​1,​3-​trimethyl-​2H-​benz[e]​indol-​2-​ylidene)​ethylidene]​-​1-​cyclohexen-​1-​yl]​ethenyl]​-​3-​[6-​[(2,​5-​dioxo-​1-​pyrrolidinyl)​oxy]​-​6-​oxohexyl]​-​1,​1-​dimethyl-
溶解度: 溶于有机溶剂(DMSO、DMF、二氯甲烷),水中溶解度低
质量控制: NMR 1H, HPLC-MS (95%)
储存条件: 储存:收到后-20℃避光保存12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: 788
ε, 摩尔吸光系数,cm⁻¹: 223000
发射极大值,纳米: 808
荧光量子产率: 0.10

产品引用

  1. Chang, C.; Liu, H.; Li, X.; Song, D.; Liu, Y.; Lu, C.; Zhen, Y.; Chen, Y.; Xu, J.; Li, W.; Jia, X.; Chen, Z.; Chen, R. Combined ROS Responsive Polydopamine-Coated Berberine Nanoparticles Effective Against Ulcerative Colitis in Mouse Model. International Journal of Nanomedicine, 2024, 19, 1205-1224. doi: 10.2147/ijn.s442761
  2. Tang, M.; Chen, B.; Xia, H.; Pan, M.; Zhao, R.; Zhou, J.; Yin, Q.; Wan, F.; Yan, Y.; Fu, C.; Zhong, L.; Zhang, Q.; Wang, Y. pH-gated nanoparticles selectively regulate lysosomal function of tumour-associated macrophages for cancer immunotherapy. Nature Communications, 2023, 14, 5888. doi: 10.1038/s41467-023-41592-0
  3. Sreekanth, K.V.; Perumal, J.; Dinish, U.S.; Prabhathan, P.; Liu, Y.; Singh, R.; Olivo, M.; Teng, J. Tunable Tamm plasmon cavity as a scalable biosensing platform for surface enhanced resonance Raman spectroscopy. Nature Communications, 2023, 14, 7085. doi: 10.1038/s41467-023-42854-7
  4. Nie, Q.; Li, C.; Wang, Y.; Hu, Y.; Pu, W.; Zhang, Q.; Cai, J.; Lin, Y.; Li, G.; Wang, C.; Li, L.; Dou, Y.; Zhang, J. Pathologically Triggered in Situ Aggregation of Nanoparticles for Inflammation-Targeting Amplification and Therapeutic Potentiation. Acta Pharmaceutica Sinica B, 2023, 13(1), 390–409. doi: 10.1016/j.apsb.2022.07.013
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