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endo-BCN-PEG4-PFP ester is a PEG-containing bioorthogonal conjugation building block that provides a BCN strained-alkyne handle for modular click-chemistry workflows. The molecule can be used to introduce a click-reactive group onto an antibody, peptide, linker intermediate, or payload-containing component, depending on the chemistry of its second terminal functionality. Its additional reactive group is pfp ester (amine-reactive) for antibody lysines/primary amines. The structure includes peg4 spacer to provide hydrophilic spacing. Conjugation can be performed using spaac with an azide-functionalized antibody or payload; use the second terminal group for orthogonal coupling. The sequence and orientation of the coupling steps should be selected according to the functional groups carried by the two conjugation partners.
Structure of 1421932-52-6
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| Size | Price | Stock | Quantity |
|---|---|---|---|
| 25 mg | $399 | In stock |
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The specialized chemical reagent endo-BCN-PEG4-PFP ester is a linchpin in various scientific applications, particularly in the sphere of bioconjugation. Here we present four key applications of this compound:
Bioconjugation: Serving as the bedrock of bioconjugation, endo-BCN-PEG4-PFP ester facilitates the binding of biological molecules such as proteins or antibodies to other entities via its reactive ester group. This foundational process is imperative for constructing targeted drug delivery systems and diagnostic tools. The incorporation of the PEG4 spacer imparts flexibility and diminishes steric hindrance, ensuring efficacious conjugation and heightened functionality in the resultant bioconjugates.
Drug Delivery: In the realm of cutting-edge drug delivery systems, this compound emerges as a pivotal component where precise targeting of therapeutic agents reigns supreme. The BCN (bicyclo[6.1.0]nonyne) group enables click chemistry with azide-containing molecules, facilitating the coupling of drugs to targeting moieties. This strategic linkage enhances the efficiency and specificity of drug delivery to affected tissues, thereby elevating therapeutic efficacy with pinpoint accuracy.
Surface Functionalization: The utility of endo-BCN-PEG4-PFP ester extends to the functionalization of surfaces such as nanoparticles or biosensors with biological ligands. By modulating surface properties, this technique propels the development of sophisticated biosensing devices, enabling sensitive and selective detection of biomolecules.
Proteomics and Glycomics: In the realms of proteomics and glycomics, endo-BCN-PEG4-PFP ester emerges as an invaluable tool for labeling and capturing specific biomolecules for in-depth analysis. This capability empowers researchers to delve into the structures and interactions of proteins and glycans within intricate biological systems.
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