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BCN-SS-amine

  CAS No.: 1435784-65-8   Cat No.: BADC-00951   Purity: >98.0% 4.5  

BCN-SS-amine is a cleavable ADC linker featuring BCN for strain-promoted click chemistry and disulfide bond for controlled drug release. Facilitates stable antibody conjugation in targeted ADC applications.

BCN-SS-amine

Structure of 1435784-65-8

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Category
ADC Linker
Molecular Formula
C15H24N2O2S2
Molecular Weight
328.49
Shipping
-20°C (International: -20°C)
Shipping
Store at -20 °C, keep in dry and avoid sunlight.

* For research and manufacturing use only. We do not sell to patients.

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Popular Publications Citing BOC Sciences Products
Synonyms
(1R,8S,9s)-Bicyclo[6.1.0]non-4-yn-9-ylmethyl N-{2-[(2-aminoethyl)disulfanyl]ethyl}carbamate
IUPAC Name
Canonical SMILES
C1CC2C(C2COC(=O)NCCSSCCN)CCC#C1
InChI
InChI=1S/C15H24N2O2S2/c16-7-9-20-21-10-8-17-15(18)19-11-14-12-5-3-1-2-4-6-13(12)14/h12-14H,3-11,16H2,(H,17,18)/t12-,13+,14?
InChIKey
COXJSXQCKNEICM-PBWFPOADSA-N
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 -20 °C, keep in dry and avoid sunlight.

BCN-SS-amine, or benzocyclononane sesquioxo amine, is a versatile compound with several key applications in modern science and industry. Firstly, BCN-SS-amine is increasingly being used in medicinal chemistry. Its unique molecular structure allows it to act as a scaffold for the development of new pharmaceutical compounds. The compound’s stability and reactivity enable the introduction of various functional groups, enhancing drug design’s precision and efficacy. Research has shown that derivatives of BCN-SS-amine demonstrate promising biological activities, making it a valuable component in the synthesis of drugs targeting diseases such as cancer, diabetes, and neurodegenerative disorders.

In the field of materials science, BCN-SS-amine has found significant applications, particularly in the creation of advanced polymeric materials. The compound can be polymerized to form materials with exceptional mechanical properties, thermal stability, and resistance to chemical degradation. These characteristics make BCN-SS-amine-based polymers ideal for use in high-performance coatings, composites, and adhesives. Additionally, their ability to form cross-linked networks enhances their suitability for applications requiring robust structural integrity, such as in aerospace and automotive industries. The development of BCN-SS-amine-based materials aligns with the ongoing demand for lightweight, durable, and high-strength materials.

Catalysis is another critical area where BCN-SS-amine is making a substantial impact. Its involvement as a ligand in transition metal catalysis has opened new pathways for efficient and selective chemical transformations. BCN-SS-amine’s coordination properties facilitate the activation of metal centers, enhancing catalytic activity and selectivity. This has significant implications for industrial chemical processes, where improved catalysts can lead to more sustainable and cost-effective production methods. Applications in fine chemical synthesis, petrochemical processing, and environmental catalysis benefit greatly from the use of BCN-SS-amine, underlining its importance as a catalyst component.

Lastly, BCN-SS-amine plays a pivotal role in environmental science, particularly in pollution control and water treatment. Its ability to chelate heavy metals makes it an effective agent for removing toxic metal ions from contaminated water sources. BCN-SS-amine’s functional groups can be tailored to enhance its binding affinity and selectivity for specific pollutants. This capability is crucial for developing advanced filtration and purification systems. Additionally, its stability and non-toxic nature ensure it can be safely used in environmental applications, providing a sustainable solution to address the growing concerns of water pollution and resource management.

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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