Date published: 2026-4-24

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Pim Inhibitors

Santa Cruz Biotechnology now offers a broad range of Pim Inhibitors for use in various applications. Pim Inhibitors are essential tools for studying the Pim family of serine/threonine kinases, which are involved in the regulation of cell survival, proliferation, and differentiation. These kinases, including Pim-1, Pim-2, and Pim-3, play crucial roles in various signaling pathways that control cellular processes such as apoptosis, cell cycle progression, and transcriptional regulation. By inhibiting Pim kinases, researchers can dissect their specific functions and understand their contribution to cellular homeostasis and response to external stimuli. In scientific research, Pim Inhibitors are utilized to explore the molecular mechanisms underlying Pim kinase activity and their interactions with other signaling molecules. These inhibitors help explain the pathways through which Pim kinases influence cellular behavior, providing insights into how these enzymes regulate key physiological processes. Additionally, Pim Inhibitors are employed in studies focused on identifying the downstream targets of Pim kinases and understanding their role in cell growth and survival. Researchers use these inhibitors to develop experimental models that investigate the regulatory networks governed by Pim kinases, thereby advancing knowledge of cellular signaling dynamics. The use of Pim Inhibitors also supports high-throughput screening assays to discover novel compounds that modulate Pim kinase activity. By providing precise control over Pim kinase activity, these inhibitors are invaluable for advancing research in cell biology and molecular signaling. View detailed information on our available Pim Inhibitors by clicking on the product name.
Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

SGI-1776

1025065-69-3sc-364615
sc-364615A
5 mg
50 mg
$158.00
$1009.00
1
(1)

SGI-1776 is characterized by its ability to selectively inhibit specific protein interactions, particularly those involving the PIM kinases. Its unique structure facilitates binding to the ATP-binding site, disrupting phosphorylation processes. This compound can modulate cellular growth pathways by altering the dynamics of protein-protein interactions, leading to changes in downstream signaling. Furthermore, its distinct electronic properties may influence the reactivity of associated biomolecules, enhancing its role in cellular regulation.

Quercetagetin

90-18-6sc-204221
5 mg
$333.00
3
(1)

Quercetagetin exhibits unique properties as a flavonoid, showcasing strong antioxidant activity through its ability to scavenge free radicals. Its molecular structure allows for effective chelation of metal ions, which can modulate oxidative stress pathways. Additionally, Quercetagetin's capacity to interact with various enzymes may influence metabolic processes, while its solubility characteristics enhance its bioavailability in diverse environments, impacting its reactivity and stability.