Catalog name Description price
R-C-6995 Lyophosome-Phosphatidylserine(PS)-based(DOPS:DOPC (30:70 molar ratio)) Lyophosome-Phosphatidylserine(PS)-based(DOPS:DOPC (30:70 molar ratio)),Phosphatidylserine(PS)is a negatively charged molecule.The amount of the negative zeta potential in the liposomes depends on the molar percentage of the phosphatidylserine(PS)in the formulation.Can bind to positively charged biomolecules or cell surfaces through electrostatic interactions. price>
R-C-6996 Lyophosome-Phosphatidylserine(PS)-based(DOPS:DOPC(20:80 molar ratio)) Lyophosome-Phosphatidylserine(PS)-based(DOPS:DOPC (20:80 molar ratio)),Phosphatidylserine(PS)is a negatively charged molecule.The amount of the negative zeta potential in the liposomes depends on the molar percentage of the phosphatidylserine(PS)in the formulation.Can bind to positively charged biomolecules or cell surfaces through electrostatic interactions. price>
R-C-6997 Lyophosome-Phosphatidylserine(PS)-based(DOPS:DOPC (10:90 molar ratio)) Lyophosome-Phosphatidylserine(PS)-based(DOPS:DOPC (10:90 molar ratio)),Phosphatidylserine(PS)is a negatively charged molecule.The amount of the negative zeta potential in the liposomes depends on the molar percentage of the phosphatidylserine(PS)in the formulation.Can bind to positively charged biomolecules or cell surfaces through electrostatic interactions. price>
R-C-6998 Lyophosome-Phosphatidylserine(PS)-based(DOPS:DOPC (5:95 molar ratio)) Lyophosome-Phosphatidylserine(PS)-based(DOPS:DOPC (5:95 molar ratio)),Phosphatidylserine(PS)is a negatively charged molecule.The amount of the negative zeta potential in the liposomes depends on the molar percentage of the phosphatidylserine(PS)in the formulation.Can bind to positively charged biomolecules or cell surfaces through electrostatic interactions. price>
R-C-6999 Lyophosome-Phosphatidylserine(PS)-based(DOPS:DOPC (2:98 molar ratio)) Lyophosome-Phosphatidylserine(PS)-based(DOPS:DOPC (2:98 molar ratio)),Phosphatidylserine(PS)is a negatively charged molecule.The amount of the negative zeta potential in the liposomes depends on the molar percentage of the phosphatidylserine(PS)in the formulation.Can bind to positively charged biomolecules or cell surfaces through electrostatic interactions. price>
R-C-7000 Lyophosome-Phosphatidylserine(PS)-based(DOPS:DOPC (1:99 molar ratio)) Lyophosome-Phosphatidylserine(PS)-based(DOPS:DOPC (1:99 molar ratio)),Phosphatidylserine(PS)is a negatively charged molecule.The amount of the negative zeta potential in the liposomes depends on the molar percentage of the phosphatidylserine(PS)in the formulation.Can bind to positively charged biomolecules or cell surfaces through electrostatic interactions. price>
R-C-7001 Lyophosome-Phosphatidylserine(PS)-based(DOPS:DOPC (0.5:99.5 molar ratio)) Lyophosome-Phosphatidylserine(PS)-based(DOPS:DOPC (0.5:99.5 molar ratio)),Phosphatidylserine(PS)is a negatively charged molecule.The amount of the negative zeta potential in the liposomes depends on the molar percentage of the phosphatidylserine(PS)in the formulation.Can bind to positively charged biomolecules or cell surfaces through electrostatic interactions. price>
R-C-5582 DODMA CAS:104162-47-2 DODMA (1,2-dioleyloxy-3-dimethylaminopropane) is a cationic lipid often employed in gene delivery and drug delivery research. Its structure and properties make it suitable for forming lipid nanoparticles or complexes with nucleic acids for efficient delivery and expression of genetic material in target cells. price>
R-C-5583 C13-113-tri-tail CAS:1381861-86-4 C13-113-tri tail CAS:1381861-86-4 is an ionizable cationic lipidoid compound containing a polar aminoalcohol head group, three hydrophobic carbon 13 tails and a tertiary amine linker. The C13-113-tri tail can be formulated into lipid nanoparticles (LNPs) to deliver anionic substrates in vitro and in vivo. price>
R-C-5584 C13-112-tri-tail CAS:1381861-96-6 C13-112-tri-tail (CAS: 1381861-96-6) is a cationic lipid molecule that has been used as a component in the formulation of lipid nanoparticles (LNPs) for the delivery of nucleic acids, such as small interfering RNA (siRNA) and messenger RNA (mRNA). The molecule consists of a central quaternary ammonium head group and three hydrophobic alkyl chains. price>