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endo-BCN-PEG3-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 peg3 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 2101206-48-6
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endo-BCN-PEG3-PFP ester, a versatile bifunctional linker molecule, finds extensive utility in bioconjugation and chemical biology. Here are four key applications of endo-BCN-PEG3-PFP ester creatively:
Bioconjugation: Positioned as a cornerstone in scientific pursuits, endo-BCN-PEG3-PFP ester emerges as a crucial player in coupling biomolecules like proteins, peptides, and antibodies through the intricate art of click chemistry. The BCN group engages in selective reactions with azide-functionalized molecules, giving birth to robust triazole linkages. This coupling maneuver, renowned for its efficacy, enables the meticulous assembly of functional bioconjugates tailored for a myriad of diagnostic and therapeutic ventures.
Drug Delivery: Pioneering targeted drug delivery innovations, endo-BCN-PEG3-PFP ester assumes a pivotal role in crafting precision drug delivery systems. By conjugating therapeutic agents to targeting entities, such as ligands or antibodies, this ester facilitates the accurate transport of drugs to specific cellular destinations. This focused delivery mechanism not only enhances treatment efficacy but also mitigates unintended off-target effects and toxicit.
Surface Modification: Venturing into the realm of surface engineering, endo-BCN-PEG3-PFP ester emerges as a crucial contributor in functionalizing surfaces for a myriad of biomedical devices and biosensor applications. Through the strategic attachment of designated biomolecules to azide-functionalized surfaces, this versatile ester enables the creation of bioactive surfaces imbued with tailored characteristics. These modified surfaces have the potential to enhance biocompatibility, elevate sensor sensitivity, or facilitate intricate cell culture experiments, emphasizing the transformative impact of surface modification in biological inquiries.
Chemical Biology Research: Within the dynamic domain of chemical biology, endo-BCN-PEG3-PFP ester assumes a pivotal role in exploring and manipulating biological systems. Harnessing this ester to label biomolecules with fluorophores or affinity tags empowers researchers to precisely monitor and isolate specific proteins or cellular components. This methodical approach, integral to unraveling intricate biological pathways and pinpointing promising drug targets, underscores the indispensable nature of endo-BCN-PEG3-PFP ester in advancing our understanding of the complex mechanisms governing biological processes.
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