Recent patents on novel P2X(7) receptor antagonists and their potential for reducing central nervous system
Scott A Friedle1, Marjorie A Curet, Jyoti J Watters
1Program in Cellular and Molecular Biology and Department of Comparative Biosciences, University of Wisconsin, Madison, WI 53706, USA.
Abstract:
Inflammation arises in the CNS from a number of neurodegenerative and oncogenic disorders, as well as from ischemic and traumatic brain injuries. These pathologies give rise to increased levels of extracellular adenine nucleotides which, via activation of a variety of cell surface P2 purinergic receptors, influence the inflammatory activities of responding immune cells. One P2 receptor subtype in particular, the P2X(7) receptor, potentiates the release of pro-inflammatory cytokines, such as interleukin-1beta (IL-1beta) from macrophage-like cells. It is also thought to contribute to secondary brain injury by inducing neuronal cell death. Therefore, antagonism of this receptor could have significant therapeutic impact on all disorders, not just CNS, to which excessive inflammatory activities contribute. The use of currently available P2X(7) receptor antagonists for the treatment of CNS inflammation has been limited to the generally non-selective antagonists PPADS, oxidized ATP, Brilliant Blue G, suramin, calmidizolium, and KN-62. However, the recent patents and development of novel P2X(7) receptor antagonists, as discussed in this review, will provide new tools both for clinical and research purposes. Here we discuss compounds for which patents have been applied since 2006, from the following categories: benzamide inhibitors, bicycloheteroaryl compounds, acylhdranzine antagonists, biaromatic P2X(7) antagonists, heterocyclic compounds and amide derivatives, and aromatic amine antagonists.
Insights
Novel P2X(7) receptor antagonists show therapeutic potential for CNS inflammation and neurodegenerative diseases. Recent patents since 2006 offer new research and clinical tools for targeting excessive inflammation.
Area of Science:
- Neuroscience
- Immunology
- Pharmacology
Background:
- Central nervous system (CNS) inflammation is linked to neurodegenerative diseases, cancer, and brain injuries.
- Extracellular adenine nucleotides activate P2 purinergic receptors, influencing immune cell inflammatory responses.
- The P2X(7) receptor specifically enhances pro-inflammatory cytokine release and may cause neuronal death.
Purpose of the Study:
- To review novel P2X(7) receptor antagonists patented since 2006.
- To highlight their potential therapeutic applications in CNS disorders and beyond.
- To provide an overview of emerging chemical classes targeting P2X(7) receptors.
Main Methods:
- Literature review of patents filed since 2006 for P2X(7) receptor antagonists.
- Categorization of novel antagonists based on chemical structure.
- Analysis of the therapeutic implications of P2X(7) receptor antagonism.
Main Results:
- Development of novel P2X(7) receptor antagonists offers new therapeutic avenues.
- Existing antagonists have limitations in selectivity and clinical use.
- Patented compounds include benzamides, bicycloheteroaryls, acylhydrazines, and others.
Conclusions:
- Targeting the P2X(7) receptor holds significant therapeutic promise for inflammatory conditions.
- Novel antagonists provide improved tools for research and potential clinical treatments.
- Further development of selective P2X(7) antagonists is crucial for managing CNS inflammation.
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