26 Results for "

aqueous solution stability

" in MedChemExpress (MCE) Product Catalog:
Products (26)

26 Results for "aqueous solution stability" in MCE Product Catalog:

Cat. No.: HY-174359E
Alkyne-PEG20000-NH2 is an alkyne-functionalized bifunctional PEG derivative that can be used to modify proteins, peptides, and other materials. The alkyne group reacts with azides in aqueous solution in a copper-catalyzed manner. PEGylation can increase solubility and stability and reduce the immunogenicity of peptides and proteins .
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Cat. No.: HY-W1049092C
CAS No.: 89485-61-0
mPEG20000-N3 can be used to modify proteins, peptides, and other materials. The azide group can react with alkynes in aqueous solution catalyzed by copper. It can also be easily reduced to an amine group. PEGylation can increase solubility and stability and reduce the immunogenicity of peptides and proteins. mPEG20000-N3 can also inhibit the nonspecific binding of charged molecules to the modified surface .
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Cat. No.: HY-W1049092A
mPEG5000-N3 can be used to modify proteins, peptides, and other materials. The azide group can react with alkynes in aqueous solution catalyzed by copper. It can also be easily reduced to an amine group. PEGylation can increase solubility and stability and reduce the immunogenicity of peptides and proteins. mPEG5000-N3 can also inhibit the nonspecific binding of charged molecules to the modified surface .
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Cat. No.: HY-W1049092B
mPEG10000-N3 can be used to modify proteins, peptides, and other materials. The azide group can react with alkynes in aqueous solution catalyzed by copper. It can also be easily reduced to an amine group. PEGylation can increase solubility and stability and reduce the immunogenicity of peptides and proteins. mPEG10000-N3 can also inhibit the nonspecific binding of charged molecules to the modified surface .
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Cat. No.: HY-W1049092D
mPEG40000-N3 can be used to modify proteins, peptides, and other materials. The azide group can react with alkynes in aqueous solution catalyzed by copper. It can also be easily reduced to an amine group. PEGylation can increase solubility and stability and reduce the immunogenicity of peptides and proteins. mPEG40000-N3 can also inhibit the nonspecific binding of charged molecules to the modified surface .
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Cat. No.: HY-L214
227 compounds

Liposomes are spherical or multilayered spherical vesicles formed by the self-assembly of diacyl chain phospholipids (lipid bilayers) in aqueous solutions, which can be made from natural or synthetic phospholipids and exhibit good biocompatibility and low toxicity. They can serve as delivery carriers for various bioactive substances (such as drugs, proteins, nucleic acids, etc.) and are widely used in biomedical and chemical research. The main advantages of liposomes include 1) Protective effect: Their bilayer structure can protect encapsulated molecules from enzymatic degradation, oxidation, and other influences, extending stability and activity; 2) Active targeting: Surface modifications enable active targeting, enhancing the concentration of drugs or molecules in specific tissues or cells; 3) Customizability: The composition and structure of liposomes can be adjusted according to needs, such as altering phospholipid types or adding targeting ligands. These properties make liposomes highly valuable in developing novel drug delivery systems, serving as nucleic acid carriers for gene transfection, studying cellular uptake mechanisms and drug release kinetics, as well as developing functional food additives to improve the bioavailability of nutritional components.

MCE contains 227 liposome compounds, which is a good tool for drug delivery-related studies.