Christo Susan N, Diener Kerrilyn R, Manavis Jim, Grimbaldeston Michele A, Bachhuka Akash, Vasilev Krasimir, Hayball John D
Experimental Therapeutics Laboratory, Sansom Institute and Hanson Institute, School of Pharmacy and Medical Science, University of South Australia, Adelaide, SA, 5000, Australia.
Robinson Research Institute, School of Paediatrics and Reproductive Health, University of Adelaide, Adelaide, SA, 5005, Australia.
Sci Rep. 2016 Feb 10;6:20635. doi: 10.1038/srep20635.
Detailing the inflammatory mechanisms of biomaterial-implant induced foreign body responses (FBR) has implications for revealing targetable pathways that may reduce leukocyte activation and fibrotic encapsulation of the implant. We have adapted a model of poly(methylmethacrylate) (PMMA) bead injection to perform an assessment of the mechanistic role of the ASC-dependent inflammasome in this process. We first demonstrate that ASC(-/-) mice subjected to PMMA bead injections had reduced cell infiltration and altered collagen deposition, suggesting a role for the inflammasome in the FBR. We next investigated the NLRP3 and AIM2 sensors because of their known contributions in recognising damaged and apoptotic cells. We found that NLRP3 was dispensable for the fibrotic encapsulation; however AIM2 expression influenced leukocyte infiltration and controlled collagen deposition, suggesting a previously unexplored link between AIM2 and biomaterial-induced FBR.
详细阐述生物材料植入引起的异物反应(FBR)的炎症机制,对于揭示可能减少白细胞活化和植入物纤维化包囊的可靶向途径具有重要意义。我们采用了聚甲基丙烯酸甲酯(PMMA)珠注射模型,以评估ASC依赖性炎性小体在此过程中的作用机制。我们首先证明,接受PMMA珠注射的ASC(-/-)小鼠细胞浸润减少且胶原沉积改变,这表明炎性小体在FBR中发挥作用。接下来,由于已知NLRP3和AIM2传感器在识别受损和凋亡细胞方面的作用,我们对其进行了研究。我们发现NLRP3对于纤维化包囊并非必需;然而,AIM2的表达影响白细胞浸润并控制胶原沉积,这表明AIM2与生物材料诱导的FBR之间存在此前未被探索的联系。