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Updated: Aug 15, 2026

Proteomics to Identify Proteins Interacting with P2X2 Ligand-Gated Cation Channels
Published on: May 18, 2009
P2X receptors and nociception
Abstract:
The potential importance for nociception of P2X receptors, the ionotropic receptors activated by ATP, is underscored by the variety of pain states in which this endogenous ligand can be released. Several important findings have been made recently indicating that P2X receptors can be involved in pain mechanisms both centrally and in the periphery. The roles of ATP at these two sites and the P2X receptor subtypes involved appear to be different. In the periphery, ATP can be released as a result of tissue injury, visceral distension, or sympathetic activation and can excite nociceptive primary afferents by acting at homomeric P2X(3) or heteromeric P2X(2/3) receptors. Centrally, ATP released from central afferent terminals or second order neurons can modulate neurotransmitter release or postsynaptically activate neurons involved in central nociceptive transmission, with P2X(2), P2X(4), P2X(6), and some other receptors being potentially involved. Evidence from in vivo studies suggests that peripheral ATPergic mechanisms are most important under conditions of acute tissue injury and inflammation whereas the relevance of central mechanisms appears to be more limited. Furthermore, the release of ATP and P2X receptor-mediated afferent activation appear to have been implicated in visceral and neuropathic pain; the importance of the ATPergic component in these states needs to be investigated further. Thus, peripheral P2X receptors, and homomeric P2X(3) and/or heteromeric P2X(2/3) receptors in particular, constitute attractive targets for analgesic drugs. The development of selective antagonists of these receptors, suitable for a systemic in vivo use although apparently difficult, may prove a useful strategy to generate analgesics with a novel mechanism of action.
Insights
Peripheral P2X receptors, particularly P2X(3) and P2X(2/3) subtypes, are key targets for novel analgesics. Targeting these receptors may offer new pain relief strategies by blocking ATP-mediated nociception.
Area of Science:
- Neuroscience
- Pharmacology
- Pain Research
Background:
- Adenosine triphosphate (ATP) acts as a signaling molecule in pain pathways.
- P2X receptors, ionotropic ATP receptors, are implicated in nociception.
- ATP release occurs in various pain states, suggesting a role for P2X receptors.
Purpose of the Study:
- To investigate the distinct roles of P2X receptors in central and peripheral pain mechanisms.
- To identify specific P2X receptor subtypes involved in nociception.
- To evaluate the therapeutic potential of targeting P2X receptors for pain management.
Main Methods:
- Review of recent findings on P2X receptor involvement in pain.
- Analysis of in vivo studies on peripheral and central ATPergic mechanisms.
- Examination of evidence linking ATP and P2X receptors to visceral and neuropathic pain.
Main Results:
- Peripheral ATP excites nociceptive afferents via homomeric P2X(3) or heteromeric P2X(2/3) receptors.
- Central P2X receptors (e.g., P2X(2), P2X(4), P2X(6)) modulate central pain transmission.
- Peripheral ATPergic mechanisms are crucial in acute injury and inflammation.
Conclusions:
- Peripheral P2X receptors, especially P2X(3) and P2X(2/3), are promising targets for analgesics.
- Developing selective P2X receptor antagonists for systemic use is a potential strategy for novel pain therapies.
- Further research is needed to clarify the role of ATP in visceral and neuropathic pain.
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