| Catalog | name | Description | price |
|---|---|---|---|
| R-M2-10440 | Hyaluronidase-PEG-NH2 | Hyaluronidase-PEG-NH2/Hyaluronidase from Bovine Testes-PEG-NH2 is a functionalized PEG complex. It can be used in tumor therapy, drug delivery, regenerative medicine and tissue engineering, and medical aesthetics. | price> |
| R-M2-10490 | COOH-SeSe-PEG-NH2 | COOH-Se-Se-PEG-NH2/NH2-PEG-Se-Se-COOH/NH2-PEG-SeSe-COOH/Amine-PEG-Se-Se-COOH/COOH-Se-Se-PEG-Amine is a polyethylene glycol derivative reagent that combines redox responsiveness and bifunctional modification properties. Can be applied to intelligent drug delivery, biomacromolecule modification, and construction of redox responsive materials. | price> |
| R-M2-10529 | endo-BCN-PEG-NH2 | Endo-BCN-PEG-NH2/endo-BCN-PEG-amine is a class of hybrid bifunctional PEG linkers that can be used for biomolecule modification and coupling, material surface modification, biological detection and imaging, and drug delivery system construction. | price> |
| R-M2-10748 | NH2-PEG1k-mPEG1k | Amine-PEG1k-mPEG1k/NH2-PEG1k-mPEG1k/mPEG1k-PEG1k-NH2/mPEG1k-PEG1k-Amine is a single methoxy amino bifunctional hybrid PEG derivative with a molecular weight of approximately 2kDa. It is commonly used for targeted PEGylation modification of biomolecules, introducing hydrophilic long chains to reduce protein immunogenicity while avoiding non-specific crosslinking side reactions caused by multiple active ends. | price> |
| R-M2-10826 | NH2-PEG-Isobornyl acrylate | NH2-PEG-Isobornyl acrylate/Amine-PEG-Isobornyl acrylate is a bifunctional polyethylene glycol derivative. It can be used for the modification of photo cured biomaterials, synthesis of functional polymer materials, and development of bio coupling reactions. | price> |
| R-M2-10827 | NH2-PEG-2-Hydroxyethyl acrylate | NH2-PEG-2-Hydroxyethyl acrylate/Amine-PEG-2-Hydroxyethyl acrylate is a bifunctional polyethylene glycol derivative. As a bifunctional crosslinking agent, constructing intelligent polymer materials with both responsiveness and biological activity. | price> |
| R-M2-10828 | NH2-PEG-Isodecyl methacrylate | NH2-PEG-Isodecyl methacrylate/Amine-PEG-Isodecyl methacrylate is a bifunctional polyethylene glycol derivative.Introducing active amino sites as macromolecular functional monomers to prepare functional coatings with both biocompatibility and water resistance. It can be used for the construction of amphiphilic nanocarriers, hydrophobic modification of biomaterial surfaces, and preparation of hydrophobic modified photopolymerization materials. | price> |
| R-M2-10829 | NH2-PEG-Cyclohexyl methacrylate | NH2-PEG-Cyclohexyl methacrylate/Amine-PEG-Cyclohexyl methacrylate/Cyclohexyl methacrylate-PEG-NH2 is a bifunctional polyethylene glycol derivative. Introducing active amino sites as macromolecular functional monomers to prepare optical functional materials with both high transparency and biocompatibility. It can be used for optical resin modification, preparation of photo cured biomaterials, and surface functionalization modification of biomaterials. | price> |
| R-M2-10850 | Amino-PEG-Tris-NTA-NI | Amino-PEG-Tris-NTA-NI/NH2-PEG-Tris-Nitrilotriacetic acid-NI/NH2-PEG-Tris-NTA-NI/Amine-PEG-Tris-NTA-NI/Amino-PEG-Tris-Nitrilotriacetic acid-NI is a highly adaptable bifunctional crosslinking reagent in the field of biological nanomodification, designed around the targeted anchoring scenario of His tag biomolecules. It can be used for targeted fixation of recombinant proteins labeled with His tags. Compared with ordinary single NTA reagents, Tris NTA has a dozens of times higher affinity for His tags, and protein binding is more stable and difficult to dissociate. | price> |
| R-M2-10852 | NH2-PEG-NTA-Ni | NH2-PEG-NTA-Ni/NH2-PEG-Nitrilotriacetic acid-Ni/Amine-PEG-Nitrilotriacetic acid-Ni/Amine-PEG-NTA-Ni/Amino-PEG-NTA-Ni is a high affinity bifunctional PEG derivative designed for biological coupling scenarios and is one of the core functional reagents for targeted nanocarrier construction. By coupling the amino end to the surface of liposomes, targeting peptides such as CD31 modified with His tag can be anchored in a targeted manner, without the need for complex covalent coupling operations, maximizing the preservation of peptide biological activity and perfectly adapting to the drug targeted liposome scheme you are developing. It can also be used for recombinant protein purification and fixation, biosensor chip modification, and inorganic nanoparticle functionalization. | price> |

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