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Advanced Research Applications of p-Aminophenyl Arsenoxide

p-Aminophenyl Arsenoxide (CAS 1122-90-3) is more than just a reagent; it's a key player in uncovering complex biological mechanisms. Beyond its well-established role in studying enzyme complexes, this organoarsenic compound is at the forefront of advanced research, impacting fields from cancer biology to redox regulation. For researchers seeking to push the boundaries of scientific discovery, understanding the diverse applications of p-Aminophenyl Arsenoxide and knowing where to buy it reliably is essential.

In cancer research, p-Aminophenyl Arsenoxide has shown promise due to its interaction with cellular signaling pathways, including its effects on the PML–RARα fusion protein, similar to arsenic trioxide. This interaction can trigger apoptosis in cancer cells, making it a subject of interest for developing novel chemotherapeutic strategies. Furthermore, studies have identified p-Aminophenyl Arsenoxide as an inhibitor of redox-active enzymes such as protein disulfide isomerase (PDI) and Quiescin sulfhydryl oxidase (QSOX). By modulating cellular redox balance, it impacts protein folding and cellular stress responses, areas of intense investigation in understanding disease pathogenesis.

The compound's chemical versatility also makes it a valuable building block for synthesizing more complex molecules, including multivalent arsenicals and carbohydrate conjugates. These derivatives are designed to enhance target specificity and therapeutic efficacy, particularly in cancer treatment, by exploiting features like increased glucose uptake in tumor cells. As a chemical supplier dedicated to supporting advanced research, we provide high-purity p-Aminophenyl Arsenoxide that meets the demanding specifications required for these cutting-edge studies. If your work involves molecular mechanisms, cancer therapeutics, or redox biology, consider sourcing your p-Aminophenyl Arsenoxide from us.

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3. We can satisfy customers' perfect transition from small scale lab requirements (gram level) to commercialization requirements (hundred tons level).

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