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DACN(Tos) hydrochloride

  CAS No.: 2331322-18-8   Cat No.: BADC-01844 4.5  

DACN(Tos) hydrochloride is a maleimide-based ADC linker featuring tosylate groups for selective cysteine conjugation, improving antibody-drug conjugate stability and targeted payload delivery.

DACN(Tos) hydrochloride

Structure of 2331322-18-8

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ADC Linker
Molecular Formula
C14H19ClN2O2S
Molecular Weight
314.83

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IUPAC Name
1-(4-methylphenyl)sulfonyl-1,5-diazacyclonon-7-yne;hydrochloride
Canonical SMILES
CC1=CC=C(C=C1)S(=O)(=O)N2CCCNCC#CC2.Cl
InChI
InChI=1S/C14H18N2O2S.ClH/c1-13-5-7-14(8-6-13)19(17,18)16-11-3-2-9-15-10-4-12-16;/h5-8,15H,4,9-12H2,1H3;1H
InChIKey
GTZOSSXITQXUOW-UHFFFAOYSA-N

DACN(Tos) hydrochloride, a crucial intermediate in organic synthesis, plays a pivotal role in various applications, including pharmaceutical synthesis, chemical research, material science, and bioconjugation. Here are four key applications of DACN(Tos) hydrochloride:

Pharmaceutical Synthesis: An integral player in the realm of pharmaceutical development, DACN(Tos) hydrochloride shines as a key intermediate for synthesizing active pharmaceutical ingredients (APIs). Its versatile reactivity catalyzes the creation of intricate molecular structures essential for cutting-edge drug formulations. This compound stands as a cornerstone in the quest for innovative therapeutics targeting a diverse spectrum of ailments.

Chemical Research: Pushing boundaries in chemical exploration, DACN(Tos) hydrochloride serves as a fundamental building block for investigating novel organic reactions and pathways. Researchers leverage its properties to delve into uncharted territories of synthetic methodologies, fine-tuning established chemical processes. This compound fuels the quest for more streamlined and economical synthetic routes to valuable compounds, driving the evolution of chemical research.

Material Science: Unveiling possibilities in material innovation, DACN(Tos) hydrochloride finds its place in the creation of specialized materials, from polymers to advanced industrial solutions. Its integration elevates properties like thermal stability, mechanical robustness, and chemical resilience in these cutting-edge materials. This application stands at the forefront of developing bespoke materials tailored for industrial and technological applications, catering to diverse industry needs.

Bioconjugation: Enabling breakthroughs in biomedical technologies, DACN(Tos) hydrochloride plays a pivotal role in bioconjugation techniques, facilitating the attachment of biomolecules onto various substrates. This process underpins the development of diagnostic tools, novel drug delivery systems, and biocompatible materials, propelling advancements in healthcare solutions. Through bioconjugation, DACN(Tos) hydrochloride stands as a driver of innovation in the biomedical domain, forging paths toward enhanced healthcare delivery.

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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Historical Records: Me-PMeOx(100)-N3 (MW 8.5kDa) | (R)-(+) Azetidine-2-carboxylic acid | SC209 intermediate-2 | DACN(Tos2,6-OH) | Boc-cis-L-4-hydroxyproline methyl ester | H-L-Dbu(N3)-OH HCl | Boc-Ser(O-propargyl)-OH (DCHA) | Boc-L-Phe(4-NH-Poc)-OH | Me-PMeOx(50)-N3 (MW 4.3kDa) | Z-AEVD-FMK | DACN(Tos) hydrochloride
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