Xanthylium,3,6-bis(diethylamino)-9-[2-[(octadecyloxy)carbonyl]phenyl]-, chloride (1:1);[6-(diethylamino)-9-(2-octadecoxycarbonylphenyl)xanthen-3-ylidene]-diethylazanium,chloride;OCTADECYL RHODAMINE B CHLORIDE;OCTADECYL RHODAMINE B CHLORIDE (R18);EINECS 260;octadecyl rhodamine B;octadecylrhodamine B (chloride salt);ORBC;R 18 Cl;rhodamine B octadecyl ester;Xanthylium,3,6-bis(diethylamino)-9-(2-((octadecyloxy)carbonyl)phenyl)-,chloride;3,6-Bis(diethylamino)-9-[2-[(octadecyloxy)carbonyl]phenyl]xanthylium Chloride;6-(Diethylamino)-N,N-diethyl-9-[2-[(octadecyloxy)carbonyl]phenyl]-3H-xanthen-3-iminium Chloride;N-[6-(Diethylamino)-9-[2-[(octadecyloxy)carbonyl]phenyl]-3H-xanthen-3-ylidene]-N-ethylethanaminium Chloride;Octadecyl Rhodamine B chloride
Cas No.
65603-19-2
分子式
C46H67N2O3+.Cl-
分子量
731.49
包装储存
4°C, sealed storage, away from moistur In solvent : -80°C, 6 months; -20°C, 1 month (sealed storage, away from moisture)
详情描述
Octadecyl Rhodamine B chloride 是一种阳离子两亲物,可用于细胞膜染色。可用于多种研究,包括在有机分子组装、膜结构及蛋白质结构域中的电子能量转移。
产品详情
Octadecyl Rhodamine B chloride 是一种阳离子两亲物,可用于细胞膜染色。可用于多种研究,包括在有机分子组装、膜结构及蛋白质结构域中的电子能量转移。
生物活性
Octadecyl Rhodamine B chloride is a cationic amphiphile that can be used for staining cell membranes. Octadecyl Rhodamine B chloride can be used in numerous studies including electronic energy transfer in organized molecular assemblies, membrane structure, and distances of closest approach between protein domains and membranes.
性状
Solid
运输条件
Room temperature in continental US; may vary elsewhere.
储存方式
4°C, sealed storage, away from moistur In solvent : -80°C, 6 months; -20°C, 1 month (sealed storage, away from moisture)
参考文献
[1]. Tione Buranda, et al. Real-time partitioning of octadecyl rhodamine B into bead-supported lipid bilayer membranes revealing quantitative differences in saturable binding sites in DOPC and 1:1:1 DOPC/SM/cholesterol membranes. J Phys Chem B. 2010 Jan 28;114
溶解度数据
In Vitro: DMSO : 125 mg/mL (170.88 mM; Need ultrasonic)配制储备液
[1]. Tione Buranda, et al. Real-time partitioning of octadecyl rhodamine B into bead-supported lipid bilayer membranes revealing quantitative differences in saturable binding sites in DOPC and 1:1:1 DOPC/SM/cholesterol membranes. J Phys Chem B. 2010 Jan 28;114