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Methyltetrazine-DBCO

Updated: 2026-08-03

Overview

Methyltetrazine-Dibenzocyclooctyne (Me-Tz-DBCO) is a bifunctional linker used in bioorthogonal chemistry, combining the rapid kinetics of methyltetrazine with the strain-promoted reactivity of dibenzocyclooctyne (DBCO). This compound enables efficient and selective conjugation of biomolecules without interfering with native biological processes. It is particularly useful in pharmaceutical research, diagnostics, and materials science where precise labeling is required. Me-Tz-DBCO is part of the broader toolkit for click chemistry, which emphasizes modular, high-yield reactions under mild conditions. Its design ensures compatibility with live-cell imaging and in vivo applications, making it a versatile reagent for interdisciplinary research.

Physical and Chemical Properties

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Me-Tz-DBCO is typically supplied as a red to orange solid, soluble in polar organic solvents like DMSO and DMF but poorly soluble in water. Its molecular weight is 356.42 g/mol, and it exhibits strong absorbance in the visible spectrum due to the tetrazine moiety. The compound is stable when stored at -20°C but may degrade under prolonged exposure to light or moisture. The methyltetrazine group reacts rapidly with trans-cyclooctene (TCO) via inverse electron-demand Diels-Alder (IEDDA) reactions, while the DBCO moiety allows strain-promoted alkyne-azide cycloadditions (SPAAC). This dual functionality enables sequential or orthogonal labeling strategies in complex biological systems.

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Main Applications

Me-Tz-DBCO is widely used in bioconjugation for labeling proteins, antibodies, and nucleic acids. Its applications include targeted drug delivery, where it links payloads to antibodies or ligands, and live-cell imaging, where it enables real-time tracking of biomolecules. The compound’s bioorthogonality minimizes interference with cellular functions, making it ideal for in vitro and in vivo studies. In diagnostics, Me-Tz-DBCO facilitates the development of sensitive assays by conjugating detection probes to biomarkers. It is also employed in materials science to modify surfaces with bioactive molecules, such as in hydrogel fabrication or biosensor design. The reagent’s versatility supports innovations across therapeutics, nanotechnology, and synthetic biology.

Safety and Storage

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Me-Tz-DBCO should be handled in a fume hood using appropriate personal protective equipment (PPE), including gloves and safety goggles. Avoid inhalation, ingestion, or skin contact, as the compound may cause irritation. In case of exposure, rinse thoroughly with water and seek medical advice if symptoms persist. For long-term stability, store the reagent at -20°C in a tightly sealed container protected from light and moisture. Aliquot the product to minimize freeze-thaw cycles, and use desiccants to prevent hydrolysis. Dispose of waste according to local regulations for organic compounds.

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B2B Procurement Guide

When procuring Me-Tz-DBCO, prioritize suppliers that provide certificates of analysis (CoA) with HPLC purity (≥95%) and mass spectrometry (MS) data. Batch-to-batch consistency is critical for reproducibility in research. Compare lead times and pricing from specialized chemical manufacturers or distributors, as bulk orders may offer cost savings. Consider custom synthesis options for derivatives with tailored solubility or linker lengths. Verify shipping conditions (e.g., cold chain for temperature-sensitive items) and inquire about technical support for application-specific queries. For reference, prices range from $200 to $500 per gram, depending on scale and supplier reputation.

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