Catalog |
name |
Description |
price |
R-M1-8227 |
5(6)-TAMRA ethylenediamine |
5(6)-TAMRA ethylenediamine,5(6)-Tetramethylrhodamine ethylenediamine from kamulin.Tetramethylrhodamine,namely tetramethylrhodamine (TMR, Tamra), is a fluorescent dye commonly used in biological coupling. It is often used to connect antibodies, avidin and so on for immunochemistry. TMR and Tamra are the common names of this dye in the literature. Tamra generally introduces carboxylic acid at position 5 or 6 for labeling. |
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R-M1-8258 |
Rhodamine-3-Indoleacetic acid |
Rhodamine-3-Indoleacetic acid is a fluorescent dye molecule that contains both a rhodamine group and an indoleacetic acid group. It is commonly used as a tool in biological research to track and visualize the activity and movement of indoleacetic acid (IAA) in plant tissues. |
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R-M1-8263 |
RiboGreen dye kits |
RiboGreen fluorescent dye, as one of the RNA staining agents, is an asymmetric cyanine dye that binds to RNA in the sample, including rRNA and mRNA, to generate fluorescent signals. RiboGreen technology can detect changes of up to 1 nanogram of RNA. A slight increase in RNA causes a significant increase in fluorescence signal intensity (Intensity) or relative fluorescence unit (RFU). Its spontaneous fluorescence is negligible, the repeatability standard deviation is low, and it is not affected by the chemical composition of the sample. |
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R-M1-8265 |
Luciferase substrate,cas61970-00-1 |
Luciferase abstract can be used in the research of bioluminescence intermediates, fluorescence imaging in vivo and other fields. |
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R-M1-8302 |
RB-Ectoin |
RB-Ectoin,Rhodamine b-Ectoin is a molecular compound labeled with near-infrared dyes.Ectoin is a strongly hydrophilic substance. These small amino acid derivatives bind to the surrounding water molecules and produce the so-called "Ectoin Hydroelectric Complex". Then these complexes once again surround cells, enzymes, proteins, and other biological molecules, forming protective, nourishing, and stable hydrated shells around them. It has the functions of protection, prevention, repair, and regeneration. |
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R-M1-8309 |
CH1055-COOH |
CH1055-COOH is a NIR-II fluorophore based on a synthetic organic molecule. CH1055 is a rapidly excreted dye (∼90% excreted through the kidneys within 24 h). CH1055 also allows targeted molecular imaging of tumors in vivo when conjugated with anti-EGFR Affibody. |
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R-M1-8368 |
FITC-CMC-Na |
FITC-CMC-Na,FITC-Carboxymethylcellulose sodium from ruixibio.Carboxymethyl cellulose sodium (CMC Na) is the carboxymethyl derivative of cellulose, the most important ionic cellulose glue, and also an anionic polymer compound. |
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R-M1-8396 |
DID liposomes@doxorubicin |
DID liposomes@doxorubicin,fluorescent DID liposomes loaded with doxorubicin from ruixibio.DiD(1,1-Dioctadecyl-3,3,3,3-tetramethylindodicarbocyanine)is a lipophilic fluorescent dye, which can be used to dye cell membrane and other liposoluble biological structures. The fluorescence intensity of these environmentally sensitive fluorescent dyes is very weak before they enter the cell membrane, and increases greatly when they combine with the cell membrane. It has the characteristics of high extinction coefficient, dependence and short lifetime of excited state. |
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R-M1-8402 |
NH2-DID liposomes loaded with Temozolomide |
Amino-modified fluorescent DID liposomes loaded with Temozolomide is a drug delivery system that utilizes liposomes, which are small vesicles made up of lipid bilayers, to encapsulate and deliver the chemotherapeutic drug Temozolomide. The liposomes are modified with amino groups and fluorescent dye DID, which allows for imaging and tracking of the liposomes in vivo. This system has potential applications in the treatment of various types of cancer, including brain cancer. |
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R-M1-8467 |
Liposome Encapsulated FITC |
Liposome Encapsulated Fluorescein Isothiocyanate (FITC) is a specific compound consisting of FITC encapsulated within liposomes, which are small spherical nanoparticles composed of a lipid bilayer.FITC is a green fluorescent dye that can be conjugated with biomolecules for detection or imaging purposes. When encapsulated within liposomes, FITC can be protected from degradation and can be used as a marker for tracing the uptake and distribution of liposomes within biological systems.Liposomes, acting as a delivery vehicle, can facilitate the efficient and targeted delivery of drugs, proteins, or other molecules to specific cell types or tissues. Encapsulation of FITC within liposomes allows for the monitoring of the biodistribution and pharmacokinetics of these particles, providing valuable insight into their therapeutic efficacy and safety. |
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