Hoyle Christopher, Redondo-Castro Elena, Cook James, Tzeng Te-Chen, Allan Stuart M, Brough David, Lemarchand Eloise
Division of Neuroscience and Experimental Psychology, School of Biological Sciences, Faculty of Biology, Medicine and Health, Manchester Academic Health Science Centre, University of Manchester, Manchester, UK.
The Lydia Becker Institute of Immunology and Inflammation, University of Manchester, Manchester, UK.
Immunology. 2020 Sep;161(1):39-52. doi: 10.1111/imm.13221. Epub 2020 Jun 22.
Microglial inflammation driven by the NACHT, LRR and PYD domain-containing protein 3 (NLRP3) inflammasome contributes to brain disease and is a therapeutic target. Most mechanistic studies on NLRP3 activation use two-dimensional pure microglial cell culture systems. Here we studied the activation of the NLRP3 inflammasome in organotypic hippocampal slices, which allowed us to investigate microglial NLRP3 activation in a three-dimensional, complex tissue architecture. Toll-like receptor 2 and 4 activation primed microglial inflammasome responses in hippocampal slices by increasing NLRP3 and interleukin-1β expression. Nigericin-induced NLRP3 inflammasome activation was dynamically visualized in microglia through ASC speck formation. Downstream caspase-1 activation, gasdermin D cleavage, pyroptotic cell death and interleukin-1β release were also detected, and these findings were consistent when using different NLRP3 stimuli such as ATP and imiquimod. NLRP3 inflammasome pathway inhibitors were effective in organotypic hippocampal slices. Hence, we have highlighted organotypic hippocampal slice culture as a valuable ex vivo tool to allow the future study of NLRP3 inflammasomes in a representative tissue section, aiding the discovery of further mechanistic insights and drug development.
由含NACHT、LRR和PYD结构域的蛋白3(NLRP3)炎性小体驱动的小胶质细胞炎症与脑部疾病有关,是一个治疗靶点。大多数关于NLRP3激活的机制研究使用二维纯小胶质细胞培养系统。在此,我们研究了器官型海马切片中NLRP3炎性小体的激活情况,这使我们能够在三维复杂组织结构中研究小胶质细胞NLRP3的激活。Toll样受体2和4的激活通过增加NLRP3和白细胞介素-1β的表达,引发了海马切片中小胶质细胞炎性小体的反应。尼日利亚菌素诱导的NLRP3炎性小体激活通过ASC斑点形成在小胶质细胞中动态可视化。还检测到下游半胱天冬酶-1的激活、gasdermin D的切割、焦亡细胞死亡和白细胞介素-1β的释放,并且当使用不同的NLRP3刺激物(如ATP和咪喹莫特)时,这些发现是一致的。NLRP3炎性小体途径抑制剂在器官型海马切片中有效。因此,我们强调了器官型海马切片培养作为一种有价值的体外工具,可用于未来在代表性组织切片中研究NLRP3炎性小体,有助于发现更多的机制见解和药物开发。