Methyltetrazine-PEG5-NHS ester enables fast bioorthogonal click reactions in ADC linker chemistry, enhancing site-specific conjugation and improving therapeutic antibody-drug conjugate design.
Structure of 1802907-92-1
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Methyltetrazine-PEG5-NHS ester is a reactive chemical compound used in bioconjugation and labeling applications. Here are some key applications of Methyltetrazine-PEG5-NHS ester://
Bioorthogonal Chemistry: Methyltetrazine-PEG5-NHS ester is widely used in bioorthogonal labeling, which allows for specific and rapid reactions in biological systems without interfering with native biochemical processes. Its reaction with trans-cyclooctene-modified molecules is highly selective and efficient. This enables researchers to label, track, or modify biomolecules within complex environments such as living cells or whole organisms.
Protein and Peptide Conjugation: In protein and peptide research, Methyltetrazine-PEG5-NHS ester is employed to conjugate various biomolecules, allowing for the functionalization of proteins or peptides with fluorescent probes, drugs, or other chemical groups. By reacting with primary amines on lysine residues, this compound facilitates the creation of homogeneous conjugates. Such conjugations are essential for numerous applications, including imaging, therapeutic delivery, and mechanistic studies of proteins.
Diagnostic Development: Methyltetrazine-PEG5-NHS ester is useful in the development of advanced diagnostic tools where precise molecular interactions are critical. It enables the conjugation of specific antibodies or antigens onto surfaces or detection systems with high fidelity. This aids in the creation of sensitive assays for detecting diseases or monitoring biomarker levels in clinical samples.
Nanoparticle Functionalization: In nanotechnology, Methyltetrazine-PEG5-NHS ester is applied to functionalize nanoparticles for targeted delivery and imaging purposes. Its PEGylation confers increased solubility and biocompatibility, while the methyltetrazine group allows for click chemistry-based attachment of targeting ligands. This approach is significant in developing nanocarriers in drug delivery systems and molecular imaging agents for clinical use.
Catalog | Product Name | CAS | Inquiry |
---|---|---|---|
BADC-01885 | Methyltetrazine-PEG12-NHS ester | ||
BADC-01287 | Methyltetrazine-PEG4-aldehyde | ||
BADC-01288 | Methyltetrazine-PEG4-hydrazone-DBCO | ||
BADC-01289 | Methyltetrazine-PEG4-oxyamine | ||
BADC-01290 | Methyltetrazine-PEG4-SS-NHS ester | ||
BADC-01291 | Methyltetrazine-PEG4-SS-PEG4-methyltetrazine | ||
BADC-01890 | Methyltetrazine-PEG12-acid |
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