首页> 美国卫生研究院文献>Tissue Engineering. Part A >Inhibition of Connexin 43 Hemichannel-Mediated ATP Release Attenuates Early Inflammation During the Foreign Body Response
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Inhibition of Connexin 43 Hemichannel-Mediated ATP Release Attenuates Early Inflammation During the Foreign Body Response

机译:连接蛋白43半通道介导的ATP释放的抑制减轻异物反应过程中的早期炎症。

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摘要

>Background: In the last 50 years, the use of medical implants has increased dramatically. Failure of implanted devices and biomaterials is a significant source of morbidity and increasing healthcare expenditures. An important cause of implant failure is the host inflammatory response. Recent evidence implicates extracellular ATP as an important inflammatory signaling molecule. A major pathway for release of cytoplasmic ATP into the extracellular space is through connexin hemichannels, which are the unpaired constituents of gap junction intercellular channels. Blockade of hemichannels of the connexin 43 (Cx43) isoform has been shown to reduce inflammation and improve healing. We have developed a Cx43 mimetic peptide (JM2) that targets the microtubule-binding domain of Cx43. The following report investigates the role of the Cx43 microtubule-binding domain in extracellular ATP release by Cx43 hemichannels and how this impacts early inflammatory events of the foreign body reaction.>Methods: In vitro Cx43 hemichannel-mediated ATP release by cultured human microvascular endothelial cells subjected to hypocalcemic and normocalcemic conditions was measured after application of JM2 and the known hemichannel blocker, flufenamic acid. A submuscular silicone implant model was used to investigate in vivo ATP signaling during the early foreign body response. Implants were coated with control pluronic vehicle or pluronic carrying JM2, ATP, JM2+ATP, or known hemichannel blockers and harvested at 24 h for analysis.>Results: JM2 significantly inhibited connexin hemichannel-mediated ATP release from cultured endothelial cells. Importantly, the early inflammatory response to submuscular silicone implants was inhibited by JM2. The reduction in inflammation by JM2 was reversed by the addition of exogenous ATP to the pluronic vehicle.>Conclusions: These data indicate that ATP released through Cx43 hemichannels into the vasculature is an important signal driving the early inflammatory response to implanted devices. A vital aspect of this work is that it demonstrates that targeted molecular therapeutics, such as JM2, provide the capacity to regulate inflammation in a clinically relevant system.
机译:>背景:在过去的50年中,医疗植入物的使用急剧增加。植入设备和生物材料的故障是发病率和医疗保健支出增加的重要原因。植入失败的重要原因是宿主的炎症反应。最近的证据表明细胞外ATP是重要的炎症信号分子。细胞质ATP释放到细胞外空间的主要途径是通过连接蛋白半通道,这是间隙连接细胞间通道的未配对组成。连接蛋白43(Cx43)同工型的半通道的阻断已显示可减少炎症和改善愈合。我们已经开发了针对Cx43的微管结合域的Cx43模拟肽(JM2)。以下报告调查了Cx43微管结合域在Cx43半通道释放细胞外ATP中的作用以及这如何影响异物反应的早期炎症事件。>方法::体外Cx43半通道介导的ATP释放在使用JM2和已知的半通道阻滞剂氟芬那酸后,测定培养的人微血管内皮细胞在低血钙和正常血钙条件下的作用。肌肉下硅胶植入物模型用于研究早期异物反应期间的体内ATP信号传导。植入物涂有对照pl虫媒介或携带JM2,ATP,JM2 + ATP或已知的半通道阻滞剂的pl虫,并在24 h收获进行分析。>结果:JM2显着抑制连接蛋白半通道介导的培养液中ATP的释放内皮细胞。重要的是,JM2抑制了对肌下硅酮植入物的早期炎症反应。 >结论:这些数据表明,通过Cx43半通道释放到血管中的ATP是驱动早期炎症反应的重要信号,JM2减少了炎症。植入装置。这项工作的一个重要方面是,它证明了靶向分子疗法(例如JM2)具有调节临床相关系统中炎症的能力。

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