Catalog |
name |
Description |
price |
R-M1-8928 |
Polylysine,Cy5 labeled |
The addition of the Cy5 label allows researchers to track the location and distribution of polylysine in biological systems using fluorescence microscopy or other imaging techniques. This labeled polylysine(Polylysine,Cy5 labeled can be used to study cell behavior, protein interactions, and other biological processes. It can also be utilized in the development of diagnostic tools or fluorescent-based assays. |
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R-M1-8964 |
CY5-Chitosan100K |
CY5-Chitosan100K is often used in various biomedical and biotechnological applications, particularly in the field of drug delivery and imaging. The attachment of the CY5 dye to chitosan allows for fluorescence labeling and imaging of cells, tissues, or drug delivery systems |
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R-M1by-9081 |
2,3-cGAMP-Cy5 conjugate |
The 2,3-cGAMP-Cy5 conjugate refers to the covalent attachment of the small molecule 2,3-cGAMP (cyclic guanosine monophosphate-adenosine monophosphate) to the fluorophore Cy5.This conjugate combines the signaling molecule 2,3-cGAMP with the fluorescent properties of Cy5 for research applications.2,3-cGAMP has greater affinity and binding ability than 3,3-cGAMP.CGAMP has also been proven to be an effective reagent for promoting the production of antigen-specific antibodies and T cell responses in mice. |
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R-M1-9170 |
CY5-rapamycin |
CY5-rapamycin likely refers to a compound created by conjugating the fluorescent dye CY5 with rapamycin.
By attaching CY5 to rapamycin, researchers can track the distribution, localization, and uptake of rapamycin within biological systems using fluorescence microscopy and related techniques. This is particularly useful for studying the intracellular trafficking and targeting of rapamycin-based drug delivery systems, as well as for visualizing the interactions of rapamycin with specific cellular components or receptors.
The CY5 tag allows for the visualization and monitoring of the compound behavior within cells or tissues, providing valuable insights into its pharmacokinetics and pharmacodynamics. This type of labeled compound is commonly used in biological and biomedical research to elucidate the mechanisms of drug action and to optimize drug delivery strategies. |
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R-M1-9085 |
Cy7-rapamycin |
Cy7-rapamycin likely refers to a molecule formed by conjugating the fluorophore Cy7 with rapamycin.Cy7 is a near-infrared fluorescent dye often used for in vivo imaging and biodistribution studies in biological systems due to its ability to penetrate tissues more effectively than visible light dyes.
Conjugating Cy7 with rapamycin allows for the visualization and tracking of rapamycin within living organisms at a cellular or systemic level. This can provide insights into the compound distribution, localization, and pharmacokinetics, particularly in preclinical studies. |
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R-M1-9086 |
Cy5.5-rapamycin |
Conjugating Cy5.5 with rapamycin(Cy5.5-rapamycin/Cyanine5.5-rapamycin/Rapamycin,Cyanine5.5 labed/Rapamycin,Cy5.5 labed) enables researchers to visualize the distribution, localization, and uptake of rapamycin within biological systems using near-infrared imaging techniques. This allows for the tracking of the compound in living organisms at a cellular or systemic level, offering insights into its pharmacokinetics and biodistribution in preclinical studies. |
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R-M2-9335 |
Cy3-trehalose |
Cy3-Trehalose by combining Cy3, which is a fluorescent dye commonly used in various bioimaging applications, with trehalose, researchers can track the localization and behavior of trehalose in biological systems. This conjugate not only imparts fluorescence to trehalose for visualization purposes but also retains the stabilizing properties of trehalose, making it a valuable tool for studying cellular processes, drug delivery, and other applications where tracking and stabilizing biological molecules are important. |
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R-M2-9338 |
Ginsenoside Rg1-Cy2 |
Ginsenoside-Cy2 is a compound that combines a ginsenoside molecule with a cyanine dye Cy2. By conjugating ginsenoside with Cy2, a fluorescent dye,researchers can track the distribution and behavior of ginsenosides in biological systems using fluorescence imaging techniques. This conjugate allows for studying the uptake, localization, and pharmacokinetics of ginsenosides in cells and tissues, providing insights into their mechanisms of action and potential applications in medicine and biotechnology. |
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R-M2-9339 |
Cy2-Astragalus Polysacharin |
Cy2-Astragalus Polysaccharide by conjugating Cy2 with Astragalus Polysaccharide, researchers can track the localization and behavior of the polysaccharide within biological systems using fluorescence microscopy techniques. This conjugate allows for visualization of the distribution and uptake of Astragalus Polysaccharide in cells and tissues, enabling researchers to study its effects and mechanisms of action.
This compound may find applications in biological research, drug delivery, and biotechnology where monitoring the behavior of polysaccharides and their interactions with cells is essential for understanding their therapeutic potential and biological activities. |
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R-M2-9344 |
CY5-Tetrahydromagnolol |
CY5 Tetrahydromagnolol/Cyanine5-Tetrahydromagnolol is a fluorescent dye that can be used in fields such as biomarkers and fluorescence imaging. |
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