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amphiphilic molecules

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6

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Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-W089835
    Sodium taurodeoxycholate hydrate
    2 Publications Verification

    G protein-coupled Bile Acid Receptor 1 Endogenous Metabolite Metabolic Disease
    Sodium taurodeoxycholate hydrate, a bile acid, is an amphiphilic surfactant molecule synthesized from cholesterol in the liver. Sodium taurodeoxycholate hydrate activates the S1PR2 pathway in addition to the TGR5 pathway .
    Sodium taurodeoxycholate hydrate
  • HY-B1899A
    Taurodeoxycholic acid sodium hydrate
    2 Publications Verification

    Sodium taurodeoxycholate monohydrate

    G protein-coupled Bile Acid Receptor 1 Endogenous Metabolite Metabolic Disease
    Taurodeoxycholic acid sodium hydrate (Sodium taurodeoxycholate monohydrate), a bile acid, is an amphiphilic surfactant molecule synthesized from cholesterol in the liver. Taurodeoxycholic acid sodium hydrate activates the S1PR2 pathway in addition to the TGR5 pathway .
    Taurodeoxycholic acid sodium hydrate
  • HY-145942

    Biochemical Assay Reagents Inflammation/Immunology
    Octenyl succinic anhydride can be used to esterify Starch to yield a hydrocolloid with amphiphilic properties, octenyl succinylated starch (OS-starch). Octenyl succinic anhydride (OSA) modification affects interaction between molecules on the outer surfaces of two starch granules by altering molecular structures on the outer surfaces .
    Octenyl succinic anhydride
  • HY-167545

    POPE

    Liposome Biochemical Assay Reagents Others
    1-Palmitoyl-2-oleoylphosphatidylethanolamine (POPE) is a PE-based synthetic phospholipid that can intercalate with other amphiphilic molecules to form stable bilayers at physiological pH. 1-Palmitoyl-2-oleoylphosphatidylethanolamine can be used in drug delivery research .
    1-Palmitoyl-2-oleoylphosphatidylethanolamine
  • HY-W440991

    Liposome Cancer
    DOPE-PEG-Amine (MW 2000) is a polydisperse PEG covalently attached to a phospholipid. The polymer is an amphiphilic molecule with hydrophobic fatty acid chains and hydrophilic PEG head which enables lipid bilayer or micelle formation in water. The phospholipid PEG can be used to prepare liposome or nanoparticles for targeted drug delivery and is reactive with alkyne to form a triazole ring.
    DOPE-PEG-Amine (MW 2000)
  • HY-W440904

    Biochemical Assay Reagents Others
    DSPE-PEG-Vinylsulfone, MW 1000 is a self-assembling PEG reagent which forms lipid bilayer. The amphiphilic polymer can be used to prepare liposome for delivering therapeutics, such as nucleic acid (mRNA/DNA) or protein. The vinyl sulfone moiety is reactive with cysteine or other thiol molecule via thiol-ene chemistry. Reagent grade, for research use only.
    DSPE-PEG-Vinylsulfone (MW 1000)
  • HY-W440833

    Biochemical Assay Reagents Liposome Others
    DSPE-PEG-Azide, MW 3400 is a polydisperse PEG covalently attached to a phospholipid. The polymer is an amphiphilic molecule with hydrophobic fatty acid chains and hydrophilic PEG head which enables lipid bilayer or micelles formation in water. The phospholipid PEG can be used to prepare liposome or nanoparticles for targeted drug delivery and is reactive with alkyne to form triazole bond. Reagent grade, for research use only.
    DSPE-PEG-azide (MW 3400)
  • HY-W440895

    Biochemical Assay Reagents Others
    DSPE-PEG-SPDP, MW 5000 is an amphiphilic polyPEG which forms lipid bilayer in water. It can be used to encapsualte therapeutic agents. The core can encapsulate hydrophilic nutrients, such as protein/peptide and mRNA/DNA/siRNA etc. while the lipid bilayer can solubilize hydrophobic drugs, such as doxorubicin, curcumin etc. The SPDP moiety can react with thiol molecule to form a disulfide bond. Reagent grade, for research use only.
    DSPE-PEG-SH (MW 1000)
  • HY-W440901

    Liposome Others
    DSPE-PEG-SPDP, MW 5000 is an amphiphilic polyPEG which forms lipid bilayer in water. It can be used to encapsualte therapeutic agents. The core can encapsulate hydrophilic nutrients, such as protein/peptide and mRNA/DNA/siRNA etc. while the lipid bilayer can solubilize hydrophobic drugs, such as doxorubicin, curcumin etc. The SPDP moiety can react with thiol molecule to form a disulfide bond. Reagent grade, for research use only.
    DSPE-PEG-SPDP (MW 5000)

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