Applications of 9,10-Anthracenediyl-bis(methylene)dimalonic Acid in Research
The chemical industry thrives on innovation, often driven by specialized compounds that unlock new possibilities in scientific research. 9,10-Anthracenediyl-bis(methylene)dimalonic acid (CAS 307554-62-7) stands out as a prime example, offering unique functionalities as a fluorescent probe and a tool for studying reactive oxygen species. For R&D scientists and product formulators, understanding these applications is key to leveraging its potential effectively.
One of the primary applications of 9,10-Anthracenediyl-bis(methylene)dimalonic acid is its role as a fluorescent probe. This compound is instrumental in measuring specific biological markers, such as the levels of ADMA (asymmetric dimethylarginine) within cells. Its ability to bind to cell nuclei and be detected via fluorescence microscopy makes it an invaluable tool for researchers investigating cellular processes and disease markers. When you need to buy a reliable fluorescent probe for your assays, this compound offers excellent sensitivity and specificity.
Furthermore, this anthracene derivative is recognized for its utility in detecting singlet oxygen generation (SOG). When exposed to singlet oxygen, the compound undergoes a predictable photobleaching process, which can be quantitatively monitored. This makes it an excellent reagent for studying photochemical reactions and oxidative stress in biological systems. Researchers seeking to understand or quantify singlet oxygen production can confidently purchase this compound from reputable suppliers, knowing its photophysical properties are well-characterized.
Beyond its direct applications, 9,10-Anthracenediyl-bis(methylene)dimalonic acid has implications in advanced fields such as photodynamic therapy (PDT) research. Its interaction with light and reactive species makes it a candidate for developing novel therapeutic agents or diagnostic tools. For those involved in pioneering research in areas like cancer treatment or material science, procuring this intermediate from a trusted manufacturer ensures access to the high-purity material necessary for reproducible and groundbreaking results. Explore the possibilities and inquire about pricing for this versatile chemical.
Perspectives & Insights
Molecule Vision 7
“For those involved in pioneering research in areas like cancer treatment or material science, procuring this intermediate from a trusted manufacturer ensures access to the high-purity material necessary for reproducible and groundbreaking results.”
Alpha Origin 24
“The chemical industry thrives on innovation, often driven by specialized compounds that unlock new possibilities in scientific research.”
Future Analyst X
“9,10-Anthracenediyl-bis(methylene)dimalonic acid (CAS 307554-62-7) stands out as a prime example, offering unique functionalities as a fluorescent probe and a tool for studying reactive oxygen species.”