Date published: 2025-9-16

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P2Y11 Inhibitors

Common P2Y11 inhibitors are a class of chemical compounds designed to selectively modulate the activity of the P2Y11 receptor, a member of the purinergic G protein-coupled receptor family. The P2Y11 receptor is primarily responsive to extracellular ATP and plays a crucial role in various cellular processes, including immune responses. In the quest to regulate P2Y11-mediated signaling, researchers have explored diverse chemical structures and mechanisms that hinder the receptor's functionality. Structurally, P2Y11 inhibitors encompass a range of compounds, including small molecules, peptides, and antibodies. High-throughput screening of chemical libraries has been a prominent strategy, aiming to identify small molecules that interact with the P2Y11 receptor and disrupt its signaling cascade. Additionally, structure-based drug design has been employed to craft molecules with a high affinity for the three-dimensional architecture of the P2Y11 receptor, enabling targeted interference with its activation. Pharmacophore modeling and computational approaches have also played a pivotal role in rationalizing the design of P2Y11 inhibitors, providing insights into the key structural features necessary for effective binding and modulation.The development of P2Y11 inhibitors involves a nuanced exploration of their interaction with the receptor, focusing on disrupting the cellular responses associated with P2Y11 activation. From natural product screening to the design of synthetic molecules, the chemical class of P2Y11 inhibitors represents a diverse array of strategies employed by researchers in deciphering the intricate signaling pathways mediated by this purinergic receptor. The ongoing efforts in unraveling the molecular nuances of P2Y11 inhibition contribute to our understanding of cellular communication mechanisms, paving the way for applications in various research domains.

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