pH荧光探针ProtonexRed670A…

pH荧光探针ProtonexRed670AM*细胞可渗透*货号21182
产品简介
详细介绍
  • 参考报价:电议 产地:陕西 品牌:AAT Bioquest 型号:21182 更新时间:2024/3/28
pH荧光探针Protonex Red 670 AM *细胞可渗透* 货号21182参数
Ex (nm)-Em (nm)-
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

pH荧光探针Protonex Red 670 AM *细胞可渗透* 货号21182概述

产品基本信息

产品名称:Protonex 红 670  AM

储存条件:-15℃避光防潮

保质期:12个月

 

pH荧光探针Protonex Red 670 AM *细胞可渗透* 货号21182物理化学光谱特性

分子量:772.85

外观:固体

溶剂:DMSO

激发波长(nm):N/A

发射波长(nm):N/A

 

pH荧光探针Protonex Red 670 AM *细胞可渗透* 货号21182介绍

Protonex Red 670 AM 是 Protonex Red 670 的细胞渗透版本。Protonex Red 670 染料的工作原理是根据环境 pH 值改变其荧光强度。 Protonex Red 670 在碱性 pH 值下荧光zui小,在酸性 pH 下荧光zui大。当 Protonex Red 670 与酸性细胞内靶标结合时,它会变得高度荧光,并在被红色激光(例如 632 nm He-Ne 或 647 nm 红色激光)激发时发出红光。通过测量 Protonex Red 670 的荧光强度,可以标记或监测活细胞中的酸性细胞内靶标。百萤生物是AAT Bioquest的zhong国代理商,为您提供优质的Protonex 红 670 AM。 

 

溶解方案(溶剂以说明书为准)


0.1 mg0.5 mg1 mg5 mg10 mg
1 mM129.391 μL646.956 μL1.294 mL6.47 mL12.939 mL
5 mM25.878 μL129.391 μL258.782 μL1.294 mL2.588 mL
10 mM12.939 μL64.696 μL129.391 μL646.956 μL1.294 mL

 

pH荧光探针Protonex Red 670 AM *细胞可渗透* 货号21182参考文献

Mechanisms of 15-Epi-LXA4-Mediated HO-1 in Cytoprotection Following Inflammatory Injury.
Authors: Wang, Meng and Tong, Kun and Chen, Zhe and Wen, Zhengde
Journal: The Journal of surgical research (2023): 245-255
 
Generalization of the Ratiometric Method to Extend pH Range Measurements of the BCECF Probe.
Authors: Tafech, Alaa and Beaujean, Céline and Usson, Yves and Stéphanou, Angélique
Journal: Biomolecules (2023)
 
The phosphoinositide PI(3,5)P2 inhibits the activity of plant NHX proton/potassium antiporters: Advantages of a novel electrophysiological approach.
Authors: Gradogna, Antonella and Pardo, José M and Carpaneto, Armando
Journal: Biomolecular concepts (2022): 119-125
 
Biochemical properties of H+-Ca2+-exchanger in the myometrium mitochondria.
Authors: Danylovych, Yurii V and Danylovych, Hanna V and Kolomiets, Oksana V and Sviatnenko, Marina D and Kosterin, Sergiy O
Journal: Current research in physiology (2022): 369-380
 
FLIM for Evaluation of Difference in Metabolic Status between Native and Differentiated from iPSCs Dermal Papilla Cells.
Authors: Kashirina, Alena and Gavrina, Alena and Mozherov, Artem and Kozlov, Dmitriy and Kuznetsova, Daria and Vorotelyak, Ekaterina and Zagaynova, Elena and Kalabusheva, Ekaterina and Kashina, Aleksandra
Journal: Cells (2022)
 
mOrange2, a Genetically Encoded, pH Sensitive Fluorescent Protein, is an Alternative to BCECF-AM to Measure Intracellular pH to Determine NHE3 and DRA Activity.
Authors: Sarker, Rafiquel and Tse, Chung Ming and Lin, Ruxian and McNamara, George and Singh, Varsha and Donowitz, Mark
Journal: Cellular physiology and biochemistry : international journal of experimental cellular physiology, biochemistry, and pharmacology (2022): 39-49
 
RNA-seq analysis reveals genes related to photosynthetic carbon partitioning and lipid production in Phaeodactylum tricornutum under alkaline conditions.
Authors: Liu, Jian and Yin, Weihua and Zhang, Xinya and Xie, Xuan and Dong, Guanghui and Lu, Yao and Tao, Baoxiang and Gong, Qiangbin and Chen, Xinyan and Shi, Chao and Qin, Yuan and Zeng, Rensen and Li, Dawei and Li, Hongye and Zhao, Chao and Zhang, Huiying
Journal: Frontiers in microbiology (2022): 969639
 
ClC-K2 Cl- channel allows identification of A- and B-type of intercalated cells in split-opened collecting ducts.
Authors: Pyrshev, Kyrylo and Khayyat, Naghmeh Hassanzadeh and Stavniichuk, Anna and Tomilin, Viktor N and Zaika, Oleg and Ramkumar, Nirupama and Pochynyuk, Oleh
Journal: FASEB journal : official publication of the Federation of American Societies for Experimental Biology (2022): e22275
 
Characterization of intracellular buffering power in human induced pluripotent stem cells and the loss of pluripotency is delayed by acidic stimulation and increase of NHE1 activity.
Authors: Lee, Shiao-Pieng and Chao, Shih-Chi and Chou, Mei-Fang and Huang, Shu-Fu and Dai, Niann-Tzyy and Wu, Gwo-Jang and Tsai, Chien-Sung and Loh, Shih-Hurng and Tsai, Yi-Ting
Journal: Journal of cellular physiology (2021): 1515-1528
 
Energy Metabolism and Intracellular pH Alteration in Neural Spheroids Carrying Down Syndrome.
Authors: Kashirina, Alena and Gavrina, Alena and Kryukov, Emil and Elagin, Vadim and Kolesova, Yuliya and Artyuhov, Alexander and Momotyuk, Ekaterina and Abdyyev, Vepa and Meshcheryakova, Natalia and Zagaynova, Elena and Dashinimaev, Erdem and Kashina, Aleksandra
Journal: Biomedicines (2021)


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