Catalog |
name |
Description |
price |
R-C-5133 |
PLGA-Polyethylene glycol550-RB |
Poly(L-lactide-co-glycolide)-Polyethylene glycol-Rhodamine B can be used to prepare new targeting products such as micelles or vesicles.The active group at the end of the product can link some modified peptides, proteins,carbohydrates,folate or antibodies,so that it has active targeting effect. |
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R-C-5134 |
Rhodamine B-PEG750-PLGA |
Poly(L-lactide-co-glycolide)-Polyethylene glycol-Rhodamine B can be used to prepare new targeting products such as micelles or vesicles.The active group at the end of the product can link some modified peptides,proteins,carbohydrates,folate or antibodies,so that it has active targeting effect. |
price> |
R-C-5157 |
PLGA-PEG-CTHRSSVVC |
PEG (polyethylene glycol) can enhance the solubility of hydrophobic drugs, proteins,nucleic acids,and liposomes, improve stability,and extend cycle time.It is widely used in various fields such as the connection between macromolecules and surfaces,targeting of drugs and liposomes, and functionalization of nanoparticles. |
price> |
R-C-5158 |
PLGA-PEG350-CTHRSSVVC |
PEG (polyethylene glycol) can enhance the solubility of hydrophobic drugs, proteins,nucleic acids,and liposomes, improve stability,and extend cycle time.It is widely used in various fields such as the connection between macromolecules and surfaces,targeting of drugs and liposomes, and functionalization of nanoparticles. |
price> |
R-C-5159 |
PLGA-Polyethylene glycol550-CTHRSSVVC |
PEG (polyethylene glycol) can enhance the solubility of hydrophobic drugs, proteins,nucleic acids,and liposomes, improve stability,and extend cycle time.It is widely used in various fields such as the connection between macromolecules and surfaces,targeting of drugs and liposomes, and functionalization of nanoparticles. |
price> |
R-C-5160 |
CTHRSSVVC-PEG750-PLGA |
PEG (polyethylene glycol) can enhance the solubility of hydrophobic drugs, proteins,nucleic acids,and liposomes, improve stability,and extend cycle time.It is widely used in various fields such as the connection between macromolecules and surfaces,targeting of drugs and liposomes, and functionalization of nanoparticles. |
price> |
R-C-5161 |
PLGA8K-PEG2K-CTHRSSVVCK(FITC) |
Poly(L-lactide-co-glycolide)-Polyethylene glycol block copolymer is one of the polymer materials used in nanocarriers, which has advantages such as good biocompatibility, biodegradability, and the ability to assemble into nanoparticles. PLGA-PEG block copolymer is used as the carrier material to transport divalent platinum complexes or tetravalent platinum complexes. |
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R-C-5380 |
PLGA(50/50)10K-PEG2K-PLL5K-citraconic anhydride |
PLGA is a biodegradable and biocompatible polymer that is widely used in drug delivery systems, tissue engineering, and medical devices.PEG is a hydrophilic polymer that can improve the solubility and biocompatibility of other polymers when conjugated to them.PLL is a cationic, biodegradable, and biocompatible polymer that can enhance the cellular uptake of drug delivery systems.Citraconic anhydride a molecule that can react with the amine groups of PLL to form a pH-sensitive bond. This allows the polymer to be sensitive to changes in pH, which can be useful in drug delivery systems. |
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R-C-5393 |
PLGA10K-TK-PEG2K |
Poly(L-lactide-co-glycolide)-thioketal-polyethylene glycol (PLGA-TP-PEG) is a biodegradable polymer blend that has potential applications in drug delivery. The polymer blend consists of the copolymer PLGA, a thioketal crosslinker, and PEG. |
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R-C-5398 |
PLGA30-40K-SS-PEG2K-DBCO 50:50 |
PLGA is a biodegradable and biocompatible polymer commonly used in drug delivery applications.It degrades into non-toxic monomers, making it suitable for use in the human body.The polymer blend contains 30 to 40 kDa molecular weight of PLGA.The disulfide bond can be cleaved inside the cell under reducing environments, which triggers the controlled release of the drug payload.PEG is a biocompatible, hydrophilic polymer that can be conjugated to other molecules to improve their solubility and stability in aqueous environments. |
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