Cy5反式环辛烯 Cy5 TCO 货号901-AAT Bioquest荧光染料

上海金畔生物科技有限公司代理AAT Bioquest荧光染料全线产品,欢迎访问AAT Bioquest荧光染料官网了解更多信息。

Cy5反式环辛烯 Cy5 TCO

Cy5反式环辛烯 Cy5 TCO

Cy5反式环辛烯 Cy5 TCO    货号901 货号 901 存储条件 在零下15度以下保存, 避免光照
规格 1 mg 价格 2604
Ex (nm) 651 Em (nm) 670
分子量 1161.58 溶剂 DMSO
产品详细介绍

简要概述

产品基本信息

货号:901

产品名称:Cy5反式环辛烯 Cy5 TCO

规格:1mg

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

分子量:1161.58

溶剂:DMSO

激发波长(nm):650

发射波长(nm):669

 

产品介绍

Cy5反式环辛烯 Cy5 TCO是美国AAT Bioquest生产的荧光染料。四嗪 – 反式 – 环辛烯(TCO)连接构成反应迅速的无毒生物分子标记方法。 四嗪官能化分子与TCO官能化分子反应,通过二氢吡嗪部分形成稳定的缀合物。 这种反向电子需求环加成反应已经普及,因为TCO作为亲二烯体可能具有极快的环加成动力学。 AAT Bioquest提供一组含有四嗪和TCO的染料,用于探索可以使用点击反应的各种生物系统。 Cy5-TCO已用于标记生物分子,用于荧光成像和其他基于荧光的生化分析。 它广泛用于标记肽,蛋白质和寡核苷酸等。金畔生物是AAT Bioquest的中国代理商,为您提供最优质的Cy5反式环辛烯 Cy5 TCO。

点击查看光谱

 

参考文献

Site-specific chemical conjugation of human Fas ligand extracellular domain using trans-cyclooctene–methyltetrazine reactions
Authors: Michiro Muraki, Kiyonori Hirota
Journal: BMC biotechnology (2017): 56

说明书
Cy5反式环辛烯 Cy5 TCO.pdf

AF488 TCO 货号4601-AAT Bioquest荧光染料

上海金畔生物科技有限公司代理AAT Bioquest荧光染料全线产品,欢迎访问AAT Bioquest荧光染料官网了解更多信息。

AF488 TCO

AF488 TCO

AF488 TCO    货号4601 货号 4601 存储条件 在零下15度以下保存, 避免光照
规格 1 mg 价格 2340
Ex (nm) 499 Em (nm) 520
分子量 856.79 溶剂 DMSO
产品详细介绍

简要概述

产品基本信息

货号:4601

产品名称:AF488 TCO

规格:1mg

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

分子量:856.79

外观:固体

溶剂:DMSO

激发波长(nm):499

发射波长(nm):520

 

产品介绍

XFD488 包含与 Alexa Fluor® 488 相同的荧光团。它是一种明亮的绿色荧光染料,具有非常适合 488 nm 激光线的激发光。 它可以在成像和流式细胞术中产生稳定的信号。 AF488 TCO 表现出与四嗪的异常快速反应,这是迄今为止报道的任何双正交反应中最快的动力学。 它为用四嗪修饰的底物制备生物偶联物提供了一种方便的工具。金畔生物是AAT Bioquest的中国代理商,为您提供最优质的AF488 TCO。 

点击查看光谱

 

参考文献

Detection of Homologous Blood Transfusion in Sport Doping by Flow Cytofluorimetry: State of the Art and New Approaches to Reduce the Risk of False-Negative Results.
Authors: Donati, Francesco and de la Torre, Xavier and Pagliarosi, Sarajane and Pirri, Daniela and Prevete, Giuliana and Botrè, Francesco
Journal: Frontiers in sports and active living (2022): 808449
A fluorescent aptasensor for the detection of Aflatoxin B1 by graphene oxide mediated quenching and release of fluorescence.
Authors: Setlem, Sai Keerthana and Mondal, Bhairab and Ramlal, Shylaja
Journal: Journal of microbiological methods (2022): 106414
Introducing Cysteines into Nanobodies for Site-Specific Labeling.
Authors: Hansen, Simon Boje and Andersen, Kasper Røjkjær
Journal: Methods in molecular biology (Clifton, N.J.) (2022): 327-343
Dynamics of intracellular neonatal Fc receptor-ligand interactions in primary macrophages using biophysical fluorescence techniques.
Authors: Pannek, Andreas and Houghton, Fiona J and Verhagen, Anne M and Dower, Steven K and Hinde, Elizabeth and Gleeson, Paul A
Journal: Molecular biology of the cell (2022): ar6
Gold nanoparticles enhance fluorescence signals by flow cytometry at low antibody concentrations.
Authors: Reis, Daniela S and de Oliveira, Vivian L and Silva, Misael L and Paniago, Roberto M and Ladeira, Luiz O and Andrade, Lidia M
Journal: Journal of materials chemistry. B (2021): 1414-1423
Binding of cytochrome P450 27C1, a retinoid desaturase, to its accessory protein adrenodoxin.
Authors: Glass, Sarah M and Webb, Stephany N and Guengerich, F Peter
Journal: Archives of biochemistry and biophysics (2021): 109076
Pegylated-Catalase Is Protective in Lung Ischemic Injury and Oxidative Stress.
Authors: Kim, Jung-Lye and Reader, Brenda F and Dumond, Curtis and Lee, Yonggyu and Mokadam, Nahush A and Black, Sylvester M and Whitson, Bryan A
Journal: The Annals of thoracic surgery (2021): 1019-1027
Retinal ganglion cells projecting to superior colliculus and pulvinar in marmoset.
Authors: Grünert, Ulrike and Lee, Sammy C S and Kwan, William C and Mundinano, Inaki-Carril and Bourne, James A and Martin, Paul R
Journal: Brain structure & function (2021)
An In Vitro Assay to Monitor Sertoli Cell Blood-Testis Barrier (BTB) Integrity.
Authors: Wu, Siwen and Wang, Lingling and Tang, Elizabeth I and Wang, Junlu and Cheng, C Yan
Journal: Methods in molecular biology (Clifton, N.J.) (2021)
A fully integrated isotachophoresis with a programmable microfluidic platform.
Authors: Shebindu, Adam and Somaweera, Himali and Estlack, Zachary and Kim, Jungtae and Kim, Jungkyu
Journal: Talanta (2021): 122039

说明书
AF488 TCO.pdf

iFluor™ 488 TCO 货号1005-AAT Bioquest荧光染料

上海金畔生物科技有限公司代理AAT Bioquest荧光染料全线产品,欢迎访问AAT Bioquest荧光染料官网了解更多信息。

iFluor™ 488 TCO

iFluor™ 488 TCO

iFluor™ 488 TCO    货号1005 货号 1005 存储条件 在零下15度以下保存, 避免光照
规格 1 mg 价格 2472
Ex (nm) 491 Em (nm) 516
分子量 945.16 溶剂 DMSO
产品详细介绍

简要概述

产品基本信息

货号:1005

产品名称:iFluor™ 488 TCO

规格:1 mg

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

分子量:856.79

外观:固体

溶剂:DMSO

Ex(nm):491

Em(nm):516

 

产品介绍

四嗪-反式-环辛烯(TCO)的连接构成了快速无毒的生物分子标记方法。四嗪功能化的分子与TCO功能化的分子反应,通过二氢吡嗪部分形成稳定的结合物。由于其极快的动力学,它已获得普及。AAT Bioquest提供了一组含四嗪和TCO的染料,用于探索可以利用这种强大点击反应的各种生物系统。iFluor™488-TCO可以轻松用于标记四嗪改性的生物分子,用于荧光成像和其他基于荧光的生化分析。与荧光素衍生物(例如FITC)的缀合物相比,使用iFluor™488染料制备的缀合物要优越得多。iFluor™488缀合物比荧光素缀合物明显更亮,并且光稳定性更高。此外,iFluor™488的荧光不受pH(4-10)的影响。这种pH不敏感性是对荧光素的一个重大改进,荧光素仅在pH高于9时才发出最大荧光。iFluor™488具有类似于AlexaFluor®488的光谱特性,在某些情况下,它显示出更明亮的信号(AlexaFluor®是Invitrogen的商标)。

点击查看光谱

 

参考文献

A General Strategy for Macrotheranostic Prodrug Activation: Synergy between the Acidic Tumor Microenvironment and Bioorthogonal Chemistry.
Authors: Dong, Yansong and Tu, Yalan and Wang, Kewei and Xu, Congfei and Yuan, Youyong and Wang, Jun
Journal: Angewandte Chemie (International ed. in English) (2020): 7168-7172

A Pretargeted Imaging Strategy for Immune Checkpoint Ligand PD-L1 Expression in Tumor Based on Bioorthogonal Diels-Alder Click Chemistry.
Authors: Qiu, Lin and Tan, Hui and Lin, Qingyu and Si, Zhan and Mao, Wujian and Wang, Tingting and Fu, Zhequan and Cheng, Dengfeng and Shi, Hongcheng
Journal: Molecular imaging and biology (2020): 842-853

A Systematic Study of Coumarin-Tetrazine Light-Up Probes for Bioorthogonal Fluorescence Imaging.
Authors: Galeta, Juraj and Dzijak, Rastislav and Obořil, Jan and Dračínský, Martin and Vrabel, Milan
Journal: Chemistry (Weinheim an der Bergstrasse, Germany) (2020)

A colorimetric immunosensor for determination of foodborne bacteria using rotating immunomagnetic separation, gold nanorod indication, and click chemistry amplification.
Authors: Guo, Ruya and Huang, Fengchun and Cai, Gaozhe and Zheng, Lingyan and Xue, Li and Li, Yanbin and Liao, Ming and Wang, Maohua and Lin, Jianhan
Journal: Mikrochimica acta (2020): 197

Antibody Pretargeting Based on Bioorthogonal Click Chemistry for Cancer Imaging and Targeted Radionuclide Therapy.
Authors: Rondon, Aurélie and Degoul, Françoise
Journal: Bioconjugate chemistry (2020): 159-173

Bioorthogonal Tetrazine Carbamate Cleavage by Highly Reactive trans-Cyclooctene.
Authors: van Onzen, Arthur H A M and Versteegen, Ron M and Hoeben, Freek J M and Filot, Ivo A W and Rossin, Raffaella and Zhu, Tong and Wu, Jeremy and Hudson, Peter J and Janssen, Henk M and Ten Hoeve, Wolter and Robillard, Marc S
Journal: Journal of the American Chemical Society (2020): 10955-10963

Bond-Breaking Bio-orthogonal Chemistry Efficiently Uncages Fluorescent and Therapeutic Compounds under Physiological Conditions.
Authors: Wu, Xunshen and Wu, Kui and Gaye, Fatima and Royzen, Maksim
Journal: Organic letters (2020): 6041-6044

Bridge-Clamp Bis(tetrazine)s with [N]8 π-Stacking Interactions and Azido-s-Aryl Tetrazines: Two Classes of Doubly Clickable Tetrazines.
Authors: Mboyi, Clève D and Vivier, Delphine and Daher, Ahmad and Fleurat-Lessard, Paul and Cattey, Hélène and Devillers, Charles H and Bernhard, Claire and Denat, Franck and Roger, Julien and Hierso, Jean-Cyrille
Journal: Angewandte Chemie (International ed. in English) (2020): 1149-1154

Cellular Delivery of Bioorthogonal Pretargeting Therapeutics in PSMA-Positive Prostate Cancer.
Authors: Hapuarachchige, Sudath and Huang, Colin T and Donnelly, Madeline C and Bařinka, Cyril and Lupold, Shawn E and Pomper, Martin G and Artemov, Dmitri
Journal: Molecular pharmaceutics (2020): 98-108

Click by Click Microporous Annealed Particle (MAP) Scaffolds.
Authors: Darling, Nicole J and Xi, Weixian and Sideris, Elias and Anderson, Alexa R and Pong, Cassie and Carmichael, S Thomas and Segura, Tatiana
Journal: Advanced healthcare materials (2020): e1901391

说明书
iFluor™ 488 TCO.pdf

iFluor™ 555 TCO 货号1007-AAT Bioquest荧光染料

上海金畔生物科技有限公司代理AAT Bioquest荧光染料全线产品,欢迎访问AAT Bioquest荧光染料官网了解更多信息。

iFluor™ 555 TCO

iFluor™ 555 TCO

iFluor™ 555 TCO    货号1007 货号 1007 存储条件 在零下15度以下保存, 避免光照
规格 1 mg 价格 2472
Ex (nm) 557 Em (nm) 570
分子量 1036.98 溶剂 DMSO
产品详细介绍

简要概述

产品基本信息

货号:1007

产品名称:iFluor™ 555 TCO

规格:1 mg

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

分子量:1036.98

外观:固体

溶剂:DMSO

Ex(nm):557

Em(nm):570

 

产品介绍

四嗪-反式-环辛烯(TCO)的连接构成了快速无毒的生物分子标记方法。四嗪功能化的分子与TCO功能化的分子反应,通过二氢吡嗪部分形成稳定的结合物。由于其极快的动力学,它已获得普及。AAT Bioquest提供了一组含四嗪和TCO的染料,用于探索可以利用这种强大点击反应的各种生物系统。iFluor™555-TCO可以轻松用于标记四嗪改性的生物分子,用于荧光成像和其他基于荧光的生化分析。与其他光谱相似的染料(例如流行的Cy3和AlexaFluor®555)的缀合物相比,使用iFluor™555染料制备的肽和寡核苷酸缀合物荧光强度等优势更好。

点击查看光谱

 

参考文献

A Systematic Study of Coumarin-Tetrazine Light-Up Probes for Bioorthogonal Fluorescence Imaging.
Authors: Galeta, Juraj and Dzijak, Rastislav and Obořil, Jan and Dračínský, Martin and Vrabel, Milan
Journal: Chemistry (Weinheim an der Bergstrasse, Germany) (2020)

A glutathione-responsive photosensitizer with fluorescence resonance energy transfer characteristics for imaging-guided targeting photodynamic therapy.
Authors: Cao, Jing-Jing and Zhang, Ming-Shan and Li, Xiao-Qiang and Yang, De-Chao and Xu, Gan and Liu, Jian-Yong
Journal: European journal of medicinal chemistry (2020): 112203

A novel polythioether-based rhodamine B fluorescent probe via successive click reaction and its application in iron ion detection and cell imaging.
Authors: Zhang, Xiaomei and Gou, Zhiming and Zuo, Yujing and Lin, Weiying
Journal: Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy (2020): 117679

Alkynylated and Dendronized 5-Aza-7-deazaguanine Nucleosides: Cross-Coupling with Tripropargylamine and Linear Alkynes, Click Functionalization, and Fluorescence of Pyrene Adducts†.
Authors: Kondhare, Dasharath and Zhang, Aigui and Leonard, Peter and Seela, Frank
Journal: The Journal of organic chemistry (2020): 10525-10538

Aptamer/magnetic nanoparticles decorated with fluorescent gold nanoclusters for selective detection and collection of human promyelocytic leukemia (HL-60) cells from a mixture.
Authors: Haghighi, Farid Hajareh and Binaymotlagh, Roya and Mirahmadi-Zare, Seyede Zohreh and Hadadzadeh, Hassan
Journal: Nanotechnology (2020): 025605

Bond-Breaking Bio-orthogonal Chemistry Efficiently Uncages Fluorescent and Therapeutic Compounds under Physiological Conditions.
Authors: Wu, Xunshen and Wu, Kui and Gaye, Fatima and Royzen, Maksim
Journal: Organic letters (2020): 6041-6044

Color-Tunable Light-up Bioorthogonal Probes for In Vivo Two-Photon Fluorescence Imaging.
Authors: Dou, Yandong and Wang, Yajun and Duan, Yukun and Liu, Bin and Hu, Qinglian and Shen, Wei and Sun, Hongyan and Zhu, Qing
Journal: Chemistry (Weinheim an der Bergstrasse, Germany) (2020): 4576-4582

Conjugable A3 adenosine receptor antagonists for the development of functionalized ligands and their use in fluorescent probes.
Authors: Federico, Stephanie and Margiotta, Enrico and Moro, Stefano and Kozma, Eszter and Gao, Zhan-Guo and Jacobson, Kenneth A and Spalluto, Giampiero
Journal: European journal of medicinal chemistry (2020): 111886

Fluorescence “Turn-on” Lectin Sensors Fabricated by Ligand-Assisted Labeling Probes for Detecting Protein-Glycoprotein Interactions.
Authors: Li, Pei-Jhen and Anwar, Mohammad Tarigue and Fan, Chen-Yo and Juang, Duane S and Lin, Hsin-Yi and Chang, Tsung-Che and Kawade, Sachin Kisan and Chen, Hsiang-Jung and Chen, Yu-Ju and Tan, Kui-Thong and Lin, Chun-Cheng
Journal: Biomacromolecules (2020): 815-824

Fluorescent Janus emulsions for biosensing of Listeria monocytogenes.
Authors: Li, Jie and Savagatrup, Suchol and Nelson, Zachary and Yoshinaga, Kosuke and Swager, Timothy M
Journal: Proceedings of the National Academy of Sciences of the United States of America (2020): 11923-11930

说明书
iFluor™ 555 TCO.pdf

Texas Red TCO*单一异构体* 货号899-AAT Bioquest荧光染料

上海金畔生物科技有限公司代理AAT Bioquest荧光染料全线产品,欢迎访问AAT Bioquest荧光染料官网了解更多信息。

Texas Red TCO*单一异构体*

Texas Red TCO*单一异构体*

Texas Red TCO*单一异构体*    货号899 货号 899 存储条件 在零下15度以下保存, 避免光照
规格 1 mg 价格 2472
Ex (nm) 586 Em (nm) 603
分子量 815.01 溶剂 DMSO
产品详细介绍

简要概述

产品基本信息

货号:899

产品名称:Texas Red TCO*单一异构体*

规格:1 mg

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

分子量:815.01

外观:固体

溶剂:DMSO

Ex(nm):586

Em(nm):603

 

产品介绍

四嗪-反式-环辛烯(TCO)的连接构成了快速无毒的生物分子标记方法。四嗪功能化的分子与TCO功能化的分子反应,通过二氢吡嗪部分形成稳定的结合物。这种反电子需求环加成反应由于使用TCO作为亲二烯体而具有极快的环加成动力学的潜力而广受欢迎。AAT Bioquest提供了一组含四嗪和TCO的染料,用于探索可以利用这种强大点击反应的各种生物系统。Texas Red-TCO可以很容易地用于标记四嗪修饰的生物分子,用于荧光成像和其他基于荧光的生化分析。它广泛用于标记四嗪修饰的肽,蛋白质和寡核苷酸等。

点击查看光谱

 

参考文献

A Pretargeted Imaging Strategy for Immune Checkpoint Ligand PD-L1 Expression in Tumor Based on Bioorthogonal Diels-Alder Click Chemistry.
Authors: Qiu, Lin and Tan, Hui and Lin, Qingyu and Si, Zhan and Mao, Wujian and Wang, Tingting and Fu, Zhequan and Cheng, Dengfeng and Shi, Hongcheng
Journal: Molecular imaging and biology (2020): 842-853

A Systematic Study of Coumarin-Tetrazine Light-Up Probes for Bioorthogonal Fluorescence Imaging.
Authors: Galeta, Juraj and Dzijak, Rastislav and Obořil, Jan and Dračínský, Martin and Vrabel, Milan
Journal: Chemistry (Weinheim an der Bergstrasse, Germany) (2020)

Antibody Pretargeting Based on Bioorthogonal Click Chemistry for Cancer Imaging and Targeted Radionuclide Therapy.
Authors: Rondon, Aurélie and Degoul, Françoise
Journal: Bioconjugate chemistry (2020): 159-173

Cellular Delivery of Bioorthogonal Pretargeting Therapeutics in PSMA-Positive Prostate Cancer.
Authors: Hapuarachchige, Sudath and Huang, Colin T and Donnelly, Madeline C and Bařinka, Cyril and Lupold, Shawn E and Pomper, Martin G and Artemov, Dmitri
Journal: Molecular pharmaceutics (2020): 98-108

Conditionally Controlling Human TLR2 Activity via Trans-Cyclooctene Caged Ligands.
Authors: van de Graaff, Michel J and Oosenbrug, Timo and Marqvorsen, Mikkel H S and Nascimento, Clarissa R and de Geus, Mark A R and Manoury, Bénédicte and Ressing, Maaike E and van Kasteren, Sander I
Journal: Bioconjugate chemistry (2020): 1685-1692

Effect of Modulating FcRn Binding on Direct and Pretargeted Tumor Uptake of Full-length Antibodies.
Authors: Nazarova, Lidia and Rafidi, Hanine and Mandikian, Danielle and Ferl, Gregory Z and Koerber, James T and Davies, Christopher W and Ulufatu, Sheila and Ho, Jason and Lau, Jeffrey and Yu, Shang-Fan and Ernst, James and Sadowsky, Jack D and Boswell, C Andrew
Journal: Molecular cancer therapeutics (2020): 1052-1058

Fluorogenic Bifunctional trans-Cyclooctenes as Efficient Tools for Investigating Click-to-Release Kinetics.
Authors: de Geus, Mark A R and Maurits, Elmer and Sarris, Alexi J C and Hansen, Thomas and Kloet, Max S and Kamphorst, Kiki and Ten Hoeve, Wolter and Robillard, Marc S and Pannwitz, Andrea and Bonnet, Sylvestre A and Codée, Jeroen D C and Filippov, Dmitri V and Overkleeft, Herman S and van Kasteren, Sander I
Journal: Chemistry (Weinheim an der Bergstrasse, Germany) (2020)

Hybrid Imaging Agents for Pretargeting Applications Based on Fusarinine C-Proof of Concept.
Authors: Summer, Dominik and Petrik, Milos and Mayr, Sonja and Hermann, Martin and Kaeopookum, Piriya and Pfister, Joachim and Klingler, Maximilian and Rangger, Christine and Haas, Hubertus and Decristoforo, Clemens
Journal: Molecules (Basel, Switzerland) (2020)

Injectable Click Chemistry-based Bioadhesives for Accelerated Wound Closure.
Authors: Li, Shuxin and Zhou, Jun and Huang, YiHui and Roy, Joyita and Zhou, Ning and Yum, Kyungsuk and Sun, Xiankai and Tang, Liping
Journal: Acta biomaterialia (2020): 95-104

Pre-targeted Imaging of Protease Activity through In Situ Assembly of Nanoparticles.
Authors: Chen, Zixin and Chen, Min and Zhou, Kaixiang and Rao, Jianghong
Journal: Angewandte Chemie (International ed. in English) (2020): 7864-7870

说明书
Texas Red TCO*单一异构体*.pdf