P2X(7) Receptors in Neurological and Cardiovascular Disorders
Stephen D Skaper1, Patrizia Debetto, Pietro Giusti
1Department of Pharmacology and Anesthesiology, University of Padova, Largo "E. Meneghetti" 2, 35131 Padova, Italy.
Abstract:
P2X receptors are ATP-gated cation channels that mediate fast excitatory transmission in diverse regions of the brain and spinal cord. Several P2X receptor subtypes, including P2X(7), have the unusual property of changing their ion selectivity during prolonged exposure to ATP, which results in a channel pore permeable to molecules as large as 900 daltons. The P2X(7) receptor was originally described in cells of hematopoietic origin, and mediates the influx of Ca(2+) and Na(+) and Ca(2+) and Na(+) ions as well as the release of proinflammatory cytokines. P2X(7) receptors may affect neuronal cell death through their ability to regulate the processing and release of interleukin-1beta, a key mediator in neurodegeneration, chronic inflammation, and chronic pain. Activation of P2X(7), a key mediator in neurodegeneration, chronic inflammation, and chronic pain. Activation of P2X(7) receptors provides an inflammatory stimulus, and P2X(7) receptor-deficient mice have substantially attenuated inflammatory responses, including models of neuropathic and chronic inflammatory pain. Moreover, P2X(7) receptor activity, by regulating the release of proinflammatory cytokines, may be involved in the pathophysiology of depression. Apoptotic cell death occurs in a number of vascular diseases, including atherosclerosis, restenosis, and hypertension, and may be linked to the release of ATP from endothelial cells, P2X(7) receptor activation, proinflammatory cytokine production, and endothelial cell apoptosis. In this context, the P2X(7) receptor may be viewed as a gateway of communication between the nervous, immune, and cardiovascular systems.
Insights
The P2X7 receptor, an ATP-gated channel, influences neuroinflammation, pain, and cell death. Its activation releases inflammatory cytokines, impacting conditions like depression and vascular diseases.
Area of Science:
- Neuroscience
- Immunology
- Cardiovascular Biology
Background:
- P2X receptors are ATP-gated cation channels crucial for neural transmission.
- P2X7 receptors exhibit unique ion selectivity changes, allowing large molecule permeability.
- Initially identified in hematopoietic cells, P2X7 receptors mediate ion influx and cytokine release.
Purpose of the Study:
- To explore the role of P2X7 receptors in neurodegeneration, inflammation, and pain.
- To investigate the involvement of P2X7 receptors in depression and vascular diseases.
- To understand P2X7 receptors as a communication link between nervous, immune, and cardiovascular systems.
Main Methods:
- Studies on P2X7 receptor function and ion selectivity.
- Analysis of P2X7 receptor-deficient mouse models.
- Investigation of P2X7 receptor involvement in cytokine release and cell death pathways.
Main Results:
- P2X7 receptor activation triggers inflammatory responses and cytokine release.
- P2X7 receptor deficiency attenuates inflammatory pain and responses.
- P2X7 receptors are implicated in neuronal cell death, depression pathophysiology, and endothelial cell apoptosis in vascular diseases.
Conclusions:
- P2X7 receptors play a significant role in neuroinflammation, chronic pain, and depression.
- P2X7 receptors are involved in the pathogenesis of vascular diseases through endothelial cell apoptosis.
- The P2X7 receptor acts as a critical interface between the nervous, immune, and cardiovascular systems.
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