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3D Hydrogel Scaffolds for Articular Chondrocyte Culture and Cartilage Generation
Published on: October 7, 2015
P2X7 ionotropic receptor is functionally expressed in rabbit articular chondrocytes and mediates extracellular ATP
Hitoshi Tanigawa1,2, Futoshi Toyoda2, Kosuke Kumagai1
1Department of Orthopedic Surgery, Shiga University of Medical Science, Seta Tsukinowa-cho, Otsu, Shiga, Japan.
Abstract:
Extracellular ATP regulates various cellular functions by engaging multiple subtypes of P2 purinergic receptors. In many cell types, the ionotropic P2X7 receptor mediates pathological events such as inflammation and cell death. However, the importance of this receptor in chondrocytes remains largely unexplored. Here, we report the functional identification of P2X7 receptor in articular chondrocytes and investigate the involvement of P2X7 receptors in ATP-induced cytotoxicity. Chondrocytes were isolated from rabbit articular cartilage, and P2X7 receptor currents were examined using the whole-cell patch-clamp technique. ATP-induced cytotoxicity was evaluated by measuring caspase-3/7 activity, lactate dehydrogenase (LDH) leakage, and prostagrandin E2 (PGE2) release using microscopic and fluorimetric/colorimetric evaluation. Extracellular ATP readily evoked a cationic current without obvious desensitization. This ATP-activated current was dose related, but required millimolar concentrations. A more potent P2X7 receptor agonist, BzATP, also activated this current but at 100-fold lower concentrations. ATP-induced currents were largely abolished by selective P2X7 antagonists, suggesting a predominant role for the P2X7 receptor. RT-PCR confirmed the presence of P2X7 in chondrocytes. Heterologous expression of a rabbit P2X7 clone successfully reproduced the ATP-induced current. Exposure of chondrocytes to ATP increased caspase-3/7 activities, an effect that was totally abrogated by P2X7 receptor antagonists. Extracellular ATP also enhanced LDH release, which was partially attenuated by the P2X7 inhibitor. The P2X7 receptor-mediated elevation in apoptotic caspase signaling was accompanied by increased PGE2 release and was attenuated by inhibition of either phospholipase A2 or cyclooxygenase-2. This study provides direct evidence for the presence of functional P2X7 receptors in articular chondrocytes. Our results suggest that the P2X7 receptor is a potential therapeutic target in chondrocyte death associated with cartilage injury and disorders including osteoarthritis.
Insights
This study identifies functional P2X7 receptors in articular chondrocytes, showing they mediate ATP-induced cell death and prostaglandin E2 release, suggesting P2X7 receptor as a therapeutic target for cartilage disorders.
Area of Science:
- Cell Biology
- Pharmacology
- Immunology
Background:
- Extracellular ATP (adenosine triphosphate) regulates cellular functions via P2 purinergic receptors.
- The P2X7 receptor is implicated in inflammation and cell death in various cell types.
- The role of P2X7 receptors in chondrocytes is largely unknown.
Purpose of the Study:
- To functionally identify P2X7 receptors in articular chondrocytes.
- To investigate the involvement of P2X7 receptors in ATP-induced chondrocyte cytotoxicity.
- To explore P2X7 receptor's role in prostaglandin E2 release.
Main Methods:
- Isolation of chondrocytes from rabbit articular cartilage.
- Whole-cell patch-clamp technique to examine P2X7 receptor currents.
- Assays for caspase-3/7 activity, LDH leakage, and PGE2 release.
- RT-PCR for P2X7 receptor gene expression.
- Heterologous expression of rabbit P2X7.
Main Results:
- Extracellular ATP evoked cationic currents in chondrocytes, requiring millimolar concentrations.
- A selective P2X7 agonist (BzATP) was more potent, and antagonists blocked ATP-induced currents.
- RT-PCR confirmed P2X7 expression, and heterologous expression validated the current.
- ATP exposure increased caspase-3/7 activity and LDH release, mediated by P2X7 receptors.
- ATP-induced PGE2 release was linked to P2X7 activation and involved phospholipase A2 and cyclooxygenase-2.
Conclusions:
- Direct evidence for functional P2X7 receptors in articular chondrocytes was established.
- P2X7 receptor activation contributes to ATP-induced chondrocyte death and PGE2 release.
- The P2X7 receptor represents a potential therapeutic target for cartilage injury and osteoarthritis.
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