Date published: 2026-5-28

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CD10 and Neprilysin Inhibitors

Santa Cruz Biotechnology now offers a broad range of CD10 and Neprilysin Inhibitors for use in various applications. CD10 and Neprilysin are critical proteases involved in the breakdown of bioactive peptides, playing essential roles in various physiological processes, including the regulation of cell surface molecule expression and the modulation of peptide signaling pathways. In scientific research, CD10 and Neprilysin Inhibitors are valuable tools for studying the biochemical pathways that involve these enzymes, allowing researchers to dissect their function and influence within cellular systems. For example, CD10 is often explored in the context of cell differentiation and proliferation, making inhibitors of this enzyme vital for studies focusing on cell signaling and developmental biology. Neprilysin, on the other hand, is widely researched for its role in degrading peptides like amyloid-beta, making its inhibitors crucial for understanding proteolytic regulation and the dynamics of peptide metabolism. By utilizing these inhibitors, scientists can precisely modulate enzyme activity in experimental models, providing insights into enzyme kinetics, substrate specificity, and the broader impact of protease inhibition on cellular and molecular processes. These inhibitors are indispensable in experimental designs that require the suppression of specific proteolytic activities to reveal their biological significance, contributing to advancements in fields such as biochemistry, molecular biology, and enzymology. View detailed information on our available CD10 and Neprilysin Inhibitors by clicking on the product name.
Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

AHU 377

149709-62-6sc-492600
5 mg
$235.00
(0)

AHU 377 is a selective inhibitor that targets CD10 and neprilysin, showcasing unique molecular interactions that modulate peptide metabolism. Its structure allows for specific binding to active sites, influencing enzymatic activity and substrate availability. The compound exhibits distinct kinetic profiles, altering reaction rates and pathways in proteolytic processes. Furthermore, its ability to stabilize enzyme conformations can lead to significant changes in cellular signaling dynamics, emphasizing its role in regulatory mechanisms.