| Catalog | name | Description | price |
|---|---|---|---|
| R-M2-10754 | CY5-Inosine | Cyanine5-Inosine/Inosine,Cyanine5 labeled/Inosine,Cy5 labeled is a scientific grade tracer probe obtained by covalently coupling inosine with near-infrared fluorescent dye CY5. It is commonly used for studying the transmembrane transport and metabolic pathways of inosine at the cellular level, as well as for visualizing the tissue distribution of inosine in vivo, to verify the targeted enrichment efficiency of inosine delivery systems. | price> |
| R-M2-10755 | CY5.5-Laminarin | Cyanine5.5-Laminin/Laminin-CY5.5/Laminin,CY5.5 labeled is a scientific grade tracer probe obtained by covalently coupling the near-infrared fluorescent dye CY5.5 with Kunbu polysaccharide. It is commonly used for macrophage targeted tracking and visualization of immune activation pathways, relying on the pattern recognition receptor targeting properties of Kunbu polysaccharides to achieve long-term fluorescence tracking of immune processes in vitro and in vivo. | price> |
| R-M2-10756 | Sulfo CY5-N-Acetyl-L-cysteine(Connecting carboxyl groups) | Sulfo Cyanine5-N-Acetyl-L-cysteine(Connecting carboxyl groups) is a fluorescent probe. It is commonly used for protein thiol specific labeling and biological imaging studies related to intracellular oxidative stress. | price> |
| R-M2-10761 | Cy3-L-Carnitine | L-Carnitine,Cy3 labeled/Cyanine3-L-Carnitine is a metabolic tracer molecule. As a non radioactive alternative, it can be used for high-throughput screening of carnitine related drugs, in vivo pharmacokinetics and tissue distribution analysis, and can also be combined with energy dyes such as JC-1 to detect mitochondrial status. It can be used for studying the transport mechanism of carnitine, such as analyzing the uptake characteristics of OCTN2 transporters in the kidneys and myocardium. | price> |
| R-M2-10765 | Cy2-liquiritigenin | Cy2-liquiritigenin/Liquiritigenin,Cyanine2 labeled/Liquiritigenin,Cy2 labeled is a fluorescent labeled derivative that covalently couples Cy2 fluorophores with licorice (liquiritigenin), and belongs to natural flavonoid modified products. As a non radioactive tracer probe, it tracks the absorption, distribution, and metabolic pathways of glycyrrhizin in cells and animals, solving the problem of difficult in vivo visualization of natural flavonoids. It can be used as a tracer marker for nanomedicine delivery systems to verify the cellular uptake efficiency and targeted enrichment effect of nanocarriers loaded with glycyrrhizin. | price> |

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