Methyltetrazine-PEG4-SS-PEG4-methyltetrazine

Methyltetrazine-PEG4-SS-PEG4-methyltetrazine Catalog number: BADC-01291

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Category
ADCs Linker
Product Name
Methyltetrazine-PEG4-SS-PEG4-methyltetrazine
Catalog Number
BADC-01291
Molecular Formula
C48H70N12O12S2
Molecular Weight
1071.27
Purity
≥95%

Ordering Information

Catalog Number Size Price Quantity
BADC-01291 -- $-- Inquiry
Solubility
10 mm in DMSO
Shelf Life
0-4°C for short term (days to weeks), or -20°C for long term (months).
Shipping
-20°C (International: -20°C)
Storage
Store at 4 °C

Methyltetrazine-PEG4-SS-PEG4-methyltetrazine, a versatile bifunctional reagent, plays a pivotal role in bioconjugation and bioorthogonal chemistry, facilitating the synthesis of intricate biomolecules.

Protein Labeling: Harnessing Methyltetrazine-PEG4-SS-PEG4-methyltetrazine enables precise, site-specific protein labeling, empowering researchers to affix fluorescent dyes or other probes for visualization and tracking purposes. This technique is indispensable for unraveling the complex dynamics of protein localization, interactions, and dynamics within the ever-evolving milieu of living cells. The stable and specific conjugation methodology ensures minimal disruption to protein function and cellular processes, paving the way for nuanced investigations into cellular behavior.

Drug Delivery Systems: By leveraging this compound, sophisticated drug delivery systems can be developed by conjugating therapeutic agents to targeting molecules. Facilitating the coupling of drugs to targeting ligands enhances the precision and efficacy of drug delivery while minimizing off-target effects. This strategic approach is particularly valuable in tailoring treatments for diseases like cancer, where precise delivery to tumor cells is paramount for therapeutic success.

Bioorthogonal Click Chemistry: Within the intricate realm of chemical biology, Methyltetrazine-PEG4-SS-PEG4-methyltetrazine emerges as a critical reagent for bioorthogonal click reactions that occur seamlessly within natural biological processes. This unique capability allows for specific labeling and modification of biomolecules within the complex environment of living organisms. Researchers leverage this methodology to dissect cellular processes, track biomolecules in real-time within live cells, and explore biological pathways with exceptional specificity, elevating our understanding of the multifaceted mechanisms governing life.

The molarity calculator equation

Mass (g) = Concentration (mol/L) × Volume (L) × Molecular Weight (g/mol)

The dilution calculator equation

Concentration (start) × Volume (start) = Concentration (final) × Volume (final)

This equation is commonly abbreviated as: C1V1 = C2V2

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