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西安百萤生物科技有限公司

18502920169

AAT Bioquest Rhod-4 马来酰亚胺 货号21127

其他化学试剂产品AAT BioquestAAT Bioquest,欢迎选购!

¥面议
起订量
≥100 ug
可售量
500 ug
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级别 :
优级纯GR
含量 :
96%
产品规格 :
100 ug
品牌 :
AAT Bioquest
用途范围 :
用于标记蛋白质和核酸
特色服务 :
免费提供技术支持 顺丰包邮
产品详情
Product details

产品参数

Ex (nm)523Em (nm)551
分子量N/A溶剂DMSO
存储条件在零下15度以下保存, 避免光照

产品概述

产品基本信息

产品名称:Rhod-4  马来酰亚胺

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:893.86

外观:固体

溶剂:DMSO

激发波长(nm):523

发射波长(nm):551

 

产品介绍

Rhod-4 马来酰亚胺是一种出色的构建模块,可轻松用于制备钙的生物共轭物,用于监测特定目标的空间钙变化。它可以选择性地与含硫醇的生物分子缀合,例如抗体、硫醇修饰的寡核苷酸或含有半胱氨酸残基的肽。 Rhod-4™ 是一种荧光钙指示剂染料,常用于细胞生物学和经科学研究。它属于对jia酚基钙家族。 Rhod-4™ 是一种高亲和力钙指示剂染料,与钙离子结合后会表现出荧光强度的变化。当 Rhod-4™ 与钙结合时,其荧光强度急剧增加,使研究人员能够测量和监测钙水平的变化。与传统的 Rhod-2 相比,Rhod-4™ 是一种zhuo越的替代品。它是钙成像研究中的一个有价值的工具,能够量化细胞内钙动态。它的荧光特性和钙结合特异性使其适合研究各种细胞类型和生物系统中的钙信号传导。百萤生物是AAT Bioquest的中国代理商,为您提供优质的Rhod-4 马来酰亚胺。 


 

溶解方案(溶剂以说明书为准)


0.1 mg0.5 mg1 mg5 mg10 mg
1 mM111.874 µL559.372 µL1.119 mL5.594 mL11.187 mL
5 mM22.375 µL111.874 µL223.749 µL1.119 mL2.237 mL
10 mM11.187 µL55.937 µL111.874 µL559.372 µL1.119 mL

 

参考文献

Mitochondria-Endoplasmic Reticulum Contact Sites Dynamics and Calcium Homeostasis Are Differentially Disrupted in PINK1-PD or PRKN-PD Neurons.
Authors: Grossmann, Dajana and Malburg, Nina and Glaß, Hannes and Weeren, Veronika and Sondermann, Verena and Pfeiffer, Julia F and Petters, Janine and Lukas, Jan and Seibler, Philip and Klein, Christine and Grünewald, Anne and Hermann, Andreas
Journal: Movement disorders : official journal of the Movement Disorder Society (2023)

 

Cardiomyocyte Targeting Peptide to Deliver Amiodarone.
Authors: Zahid, Maliha and Weber, Beth and Yurko, Ray and Islam, Kazi and Agrawal, Vaishavi and Lopuszynski, Jack and Yagi, Hisato and Salama, Guy
Journal: bioRxiv : the preprint server for biology (2023)

 

The Effect of Primary Root Canal Treatment on Dentinal Tubule Penetration of Calcium Silicate-based Sealers during Endodontic Retreatment.
Authors: Eğemen, Ayşenur and Belli, Sema
Journal: Journal of endodontics (2022): 1169-1177

 

Dual SGLT-1 and SGLT-2 inhibition improves left atrial dysfunction in HFpEF.
Authors: Bode, David and Semmler, Lukas and Wakula, Paulina and Hegemann, Niklas and Primessnig, Uwe and Beindorff, Nicola and Powell, David and Dahmen, Raphael and Ruetten, Hartmut and Oeing, Christian and Alogna, Alessio and Messroghli, Daniel and Pieske, Burkert M and Heinzel, Frank R and Hohendanner, Felix
Journal: Cardiovascular diabetology (2021): 7

 

Whole brain irradiation in mice causes long-term impairment in astrocytic calcium signaling but preserves astrocyte-astrocyte coupling.
Authors: Institoris, Adam and Murphy-Royal, Ciaran and Tarantini, Stefano and Yabluchanskiy, Andriy and Haidey, Jordan N and Csiszar, Anna and Ungvari, Zoltan and Gordon, Grant R
Journal: GeroScience (2021): 197-212

 

KairoSight: Open-Source Software for the Analysis of Cardiac Optical Data Collected From Multiple Species.
Authors: Cooper, Blake L and Gloschat, Chris and Swift, Luther M and Prudencio, Tomas and McCullough, Damon and Jaimes, Rafael and Posnack, Nikki G
Journal: Frontiers in physiology (2021): 752940

 

Cardiomyocyte depolarization triggers NOS-dependent NO transient after calcium release, reducing the subsequent calcium transient.
Authors: Mosqueira, Matias and Konietzny, Roland and Andresen, Carolin and Wang, Chao and H A Fink, Rainer
Journal: Basic research in cardiology (2021): 18

 

Preserved Ca2+ handling and excitation-contraction coupling in muscle fibres from diet-induced obese mice.
Authors: Jaque-Fernandez, Francisco and Beaulant, Agathe and Berthier, Christine and Monteiro, Laloé and Allard, Bruno and Casas, Mariana and Rieusset, Jennifer and Jacquemond, Vincent
Journal: Diabetologia (2020): 2471-2481

 

Ruthenium red improves blastocyst developmental competence by regulating mitochondrial Ca2+ and mitochondrial functions in fertilized porcine oocytes in vitro.
Authors: Jegal, Ho-Geun and Park, Hyo-Jin and Kim, Jin-Woo and Yang, Seul-Gi and Kim, Min-Ji and Koo, Deog-Bon
Journal: The Journal of reproduction and development (2020): 377-386

 

Generalized ratiometric fluorescence nanosensors based on carbon dots and an advanced chemometric model.
Authors: Yan, Xiu-Fang and Chen, Zeng-Ping and Huang, Ying and Kang, Chao and Yu, Ru-Qin
Journal: Talanta (2019): 233-240


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