| Catalog | name | Description | price |
|---|---|---|---|
| R-C-7361 | DLPS-Na CAS:208757-51-1 | 1,2-dilauroyl-sn-glycero-3-phospho-L-serine(sodium salt)(DLPS,CAS 208757-51-1) is a typical anionic phospholipid molecule, consisting of a glycerol backbone, two medium chain length lauric acid(C12:0)acyl groups, a phosphate group, and a serine head group.The molecular head carries a negative charge, the tail is hydrophobic,and the overall structure is amphiphilic,allowing it to spontaneously form a single-layer or double-layer membrane structure at the water lipid interface. | price> |
| R-C-7383 | DOPS-PEG-SFHQFARATLAS | DOPS-PEG-HAP-1,DOPS-PEG is an amphiphilic molecule formed by covalently linking diacylphosphatidylserine(DOPS)and polyethylene glycol(PEG),widely used in the construction of drug delivery systems such as liposomes and micelles.The uniqueness of HAP-1 peptide lies in its combination of targeting and penetration properties,unlike ordinary ligands that can only bind to surface receptors.This product is only for scientific research and cannot be used on the human body. | price> |
| R-C-7401 | DOPS-PEG-Dopamine | Dopamine-PEG-DOPS,DOPS as a phospholipid component,endows the molecular lipid bilayer with self-assembly ability,making it easy to embed into liposomes or cell membrane like structures,enhancing the membrane fusion and stability of the carrier.The PEG segment in the middle significantly enhances water solubility,reduces immune recognition,prolongs blood circulation time,and prevents nanoparticle aggregation, improving bioavailability.Terminal dopamine can achieve strong adhesion through the structure of catechol,and can firmly bind to metal oxides,nano material surfaces,or biological tissues,making it suitable for surface modification and functional fixation.This product is only for scientific research and cannot be used on the human body. | price> |
| R-C-7402 | DPPS-PEG-Dopamine | Dopamine-PEG-DPPS,DPPS has a stable double long-chain saturated fatty acid structure,which can effectively embed into the bilayer of liposomes,enhancing the physical stability and cell membrane affinity of the carrier.Its negatively charged head can also participate in charge mediated targeting in specific microenvironments.PEG segments provide excellent water solubility and an invisible protective layer, significantly prolonging the circulation time of nanoparticles in the body and reducing the clearance of the reticuloendothelial system,enhancing drug bioavailability.Dopamine can achieve strong interfacial adhesion through its catechol structure,making it suitable for modifying metal oxides,carbon materials,or biological tissue surfaces.This product is only for scientific research and cannot be used on the human body. | price> |

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