| Catalog | name | Description | price |
|---|---|---|---|
| R-Mcs-209 | DOPG:DOPC:Chol:DOPE-N-DBCO(20:49:30:1molar ratio)-based Fluoroliposome Pyrene lipid (headgroup)-DBCO | DOPG:DOPC:Chol:DOPE-N-DBCO(20:49:30:1molar ratio)-based Fluoroliposome Pyrene lipid (headgroup)-DBCO can be utilized for real-time imaging of cellular uptake, tracking the biodistribution of liposome formulations in vivo. The distinct fluorescence of pyrene enables high sensitivity in detection.The DBCO group can be utilized for precise targeting through bioorthogonal chemistry, enabling specific attachment to antibodies, peptides, or other molecules that direct the liposomes to particular cells or tissues, such as tumors.Fluoroliposomes with pyrene can be applied in building biosensors to detect specific biomolecules or environmental changes (e.g., pH, ion concentration) based on changes in fluorescence. | price> |
| R-Mcs-210 | DOPG:DOPC:Chol:DOPE-N-DBCO-based Fluoroliposome Rhodamine lipid (headgroup)-DBCO | DOPG:DOPC:Chol:DOPE-N-DBCO(20:49:30:1molar ratio)-based Fluoroliposome Rhodamine lipid (headgroup)-DBCO for cellular imaging and targeted drug delivery. By modifying the exterior of the liposomal formulation with ligands that can bind specifically to cell surface receptors, these liposomes can be designed for targeted drug delivery applications, which is especially beneficial in cancer therapy.Fluoroliposomes can be used to deliver various therapeutic agents, including small molecule drugs, genes, or proteins, providing a means for targeted treatment while minimizing side effects. | price> |
| R-Mcs-211 | DOPG:DOPC:Chol:DOPE-N-DBCO(20:49:30:1molar ratio)-based Fluoroliposome Cyanine 5 lipid-DBCO | DOPG:DOPC:Chol:DOPE-N-DBCO(20:49:30:1molar ratio)-based Fluoroliposome Cyanine 5 lipid-DBCO for cellular imaging and targeted drug delivery. By modifying the exterior of the liposomal formulation with ligands that can bind specifically to cell surface receptors, these liposomes can be designed for targeted drug delivery applications, which is especially beneficial in cancer therapy.Fluoroliposomes can be used to deliver various therapeutic agents, including small molecule drugs, genes, or proteins, providing a means for targeted treatment while minimizing side effects. | price> |
| R-Mcs-212 | DOPG:DOPC:Chol:DOPE-N-DBCO(20:49:30:1molar ratio)-based Fluoroliposome Cyanine 5.5 lipid-DBCO | DOPG:DOPC:Chol:DOPE-N-DBCO(20:49:30:1molar ratio)-based Fluoroliposome Cyanine 5.5 lipid-DBCO for cellular imaging and targeted drug delivery. By modifying the exterior of the liposomal formulation with ligands that can bind specifically to cell surface receptors, these liposomes can be designed for targeted drug delivery applications, which is especially beneficial in cancer therapy.Fluoroliposomes can be used to deliver various therapeutic agents, including small molecule drugs, genes, or proteins, providing a means for targeted treatment while minimizing side effects. | price> |
| R-Mcs-213 | DOPG:DOPC:Chol:DOPE-N-DBCO(20:49:30:1molar ratio)-based Fluoroliposome Cyanine 7 lipid-DBCO | DOPG:DOPC:Chol:DOPE-N-DBCO(20:49:30:1molar ratio)-based Fluoroliposome Cyanine 7 lipid-DBCO for cellular imaging and targeted drug delivery. By modifying the exterior of the liposomal formulation with ligands that can bind specifically to cell surface receptors, these liposomes can be designed for targeted drug delivery applications, which is especially beneficial in cancer therapy.Fluoroliposomes can be used to deliver various therapeutic agents, including small molecule drugs, genes, or proteins, providing a means for targeted treatment while minimizing side effects. | price> |
| R-Mcs-214 | DOPG:DOPC:Chol:DOPE-N-(6-azidohexanoyl) (ammonium salt)-based Fluoroliposome DiA-Azide | DOPG:DOPC:Chol:DOPE-N-(6-azidohexanoyl) (ammonium salt)(20:49:30:1molar ratio)-based Fluoroliposome DiA-Azide can be employed in a variety of biomedical applications, particularly in drug delivery, imaging, and cell tracking. | price> |
| R-Mcs-215 | DOPG:DOPC:Chol:DOPE-N-(6-azidohexanoyl) (ammonium salt)-based Fluoroliposome DiD-Azide | DOPG:DOPC:Chol:DOPE-N-(6-azidohexanoyl) (ammonium salt)(20:49:30:1molar ratio)-based Fluoroliposome DiD-Azide can be employed in a variety of biomedical applications, particularly in drug delivery, imaging, and cell tracking. | price> |
| R-Mcs-216 | DOPG:DOPC:Chol:DOPE-N-(6-azidohexanoyl) (ammonium salt)-based Fluoroliposome DiI-Azide | DOPG:DOPC:Chol:DOPE-N-(6-azidohexanoyl) (ammonium salt)(20:49:30:1molar ratio)-based Fluoroliposome DiI-Azide can be employed in a variety of biomedical applications, particularly in drug delivery, imaging, and cell tracking. | price> |
| R-Mcs-217 | DOPG:DOPC:Chol:DOPE-N-(6-azidohexanoyl) (ammonium salt)-based Fluoroliposome DiO-Azide | DOPG:DOPC:Chol:DOPE-N-(6-azidohexanoyl) (ammonium salt)(20:49:30:1molar ratio)-based Fluoroliposome DiO-Azide can be employed in a variety of biomedical applications, particularly in drug delivery, imaging, and cell tracking. | price> |
| R-Mcs-218 | DOPG:DOPC:Chol:DOPE-N-(6-azidohexanoyl) (ammonium salt)-based Fluoroliposome DiR-Azide | DOPG:DOPC:Chol:DOPE-N-(6-azidohexanoyl) (ammonium salt)(20:49:30:1molar ratio)-based Fluoroliposome DiR-Azide can be employed in a variety of biomedical applications, particularly in drug delivery, imaging, and cell tracking. | price> |

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