Catalog |
name |
Description |
price |
R-C-4852 |
DSPE-PEG-propargyl |
The DSPE-PEGs have been widely used for medical applications. The encapsulation and congregation of hydrophobic drugs to the hydrophobic DSPE makes the DSPEs perfect drug delivery devices. On the other hand, The hydrophilic PEG linker increases the water solubility of the formed complex, allowing for the delivery of the drug in biological fluids. The propargyl group can undergo Click Chemistry with azide-bearing compounds or biomolecules. |
price> |
R-C-4853 |
DSPE-PEG350-propargyl |
The DSPE-PEGs have been widely used for medical applications. The encapsulation and congregation of hydrophobic drugs to the hydrophobic DSPE makes the DSPEs perfect drug delivery devices.On the other hand, The hydrophilic PEG linker increases the water solubility of the formed complex, allowing for the delivery of the drug in biological fluids. The propargyl group can undergo Click Chemistry with azide-bearing compounds or biomolecules. |
price> |
R-C-4854 |
DSPE-polyethylene glycol550-propargyl |
The DSPE-PEGs have been widely used for medical applications. The encapsulation and congregation of hydrophobic drugs to the hydrophobic DSPE makes the DSPEs perfect drug delivery devices. On the other hand, The hydrophilic PEG linker increases the water solubility of the formed complex, allowing for the delivery of the drug in biological fluids. The propargyl group can undergo Click Chemistry with azide-bearing compounds or biomolecules. |
price> |
R-C-4855 |
propargyl-PEG750-DSPE |
The DSPE-PEGs have been widely used for medical applications. The encapsulation and congregation of hydrophobic drugs to the hydrophobic DSPE makes the DSPEs perfect drug delivery devices. On the other hand, The hydrophilic PEG linker increases the water solubility of the formed complex, allowing for the delivery of the drug in biological fluids. The propargyl group can undergo Click Chemistry with azide-bearing compounds or biomolecules. |
price> |
R-C-4856 |
DSPE-PEG-TFP |
1,2-Distearoyl-sn-glycero-3-phosphoethanolamine-polyethylene glycol-tetrafluorophenylis a PEG linker with a DSPE moiety and an activated TFP ester.The hydrophobic nature of DSPE allows for the encapsulation and aggregation of other hydrophobic drugs. Hydrophilic PEG linkers increase the water solubility of the overall compound allowing drug delivery. Compared to NHS esters,TFP esters can react with primary amine groups and are also less prone to hydrolysis. |
price> |
R-C-4857 |
DSPE-PEG350-tetrafluorophenyl |
1,2-Distearoyl-sn-glycero-3-phosphoethanolamine-polyethylene glycol-tetrafluorophenylis a PEG linker with a DSPE moiety and an activated TFP ester.The hydrophobic nature of DSPE allows for the encapsulation and aggregation of other hydrophobic drugs. Hydrophilic PEG linkers increase the water solubility of the overall compound allowing drug delivery. Compared to NHS esters,TFP esters can react with primary amine groups and are also less prone to hydrolysis. |
price> |
R-C-4858 |
DSPE-polyethylene glycol550-TFP |
1,2-Distearoyl-sn-glycero-3-phosphoethanolamine-polyethylene glycol-tetrafluorophenylis a PEG linker with a DSPE moiety and an activated TFP ester.The hydrophobic nature of DSPE allows for the encapsulation and aggregation of other hydrophobic drugs. Hydrophilic PEG linkers increase the water solubility of the overall compound allowing drug delivery. Compared to NHS esters,TFP esters can react with primary amine groups and are also less prone to hydrolysis. |
price> |
R-C-4859 |
tetrafluorophenyl-PEG750-DSPE |
1,2-Distearoyl-sn-glycero-3-phosphoethanolamine-polyethylene glycol-tetrafluorophenylis a PEG linker with a DSPE moiety and an activated TFP ester.The hydrophobic nature of DSPE allows for the encapsulation and aggregation of other hydrophobic drugs. Hydrophilic PEG linkers increase the water solubility of the overall compound allowing drug delivery. Compared to NHS esters,TFP esters can react with primary amine groups and are also less prone to hydrolysis. |
price> |
R-C-4861 |
FITC-DOPE |
Phospholipid is the main component of biofilm, which is divided into glycerol phospholipid and sphingomyelin, which are respectively composed of glycerol and sphingosine.FITC is mainly used as a fluorescent dye in fluorescent antibody technology. It can combine with various antibody proteins.The combined antibody does not lose the specificity of binding with certain antigens,and has strong green fluorescence in alkaline solution. |
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R-C-4862 |
FITC-DSPE |
Phospholipid is the main component of biofilm, which is divided into glycerol phospholipid and sphingomyelin, which are respectively composed of glycerol and sphingosine. FITC is mainly used as a fluorescent dye in fluorescent antibody technology. It can combine with various antibody proteins. The combined antibody does not lose the specificity of binding with certain antigens, and has strong green fluorescence in alkaline solution. |
price> |