Anderson Warren D, Greenhalgh Andrew D, Takwale Aditya, David Samuel, Vadigepalli Rajanikanth
Daniel Baugh Institute for Functional Genomics/Computational Biology, Department of Pathology, Anatomy and Cell Biology, Thomas Jefferson UniversityPhiladelphia, PA, United States.
Center for Research in Neuroscience, The Research Institute of the McGill University Health CenterMontreal, QC, Canada.
Front Cell Neurosci. 2017 Aug 14;11:233. doi: 10.3389/fncel.2017.00233. eCollection 2017.
Coordinated interactions between cytokine signaling and morphological dynamics of microglial cells regulate neuroinflammation in CNS injury and disease. We found that pro-inflammatory cytokine gene expression showed a pronounced recovery following systemic LPS. We performed a novel multivariate analysis of microglial morphology and identified changes in specific morphological properties of microglia that matched the expression dynamics of pro-inflammatory cytokine TNFα. The adaptive recovery kinetics of TNFα expression and microglial soma size showed comparable profiles and dependence on anti-inflammatory cytokine IL-10 expression. The recovery of cytokine variations and microglial morphology responses to inflammation were negatively regulated by IL-10. Our novel morphological analysis of microglia is able to detect subtle changes and can be used widely. We implemented simulations of cytokine network dynamics which showed-counter-intuitively, but in line with our experimental observations-that negative feedback from IL-10 was sufficient to impede the adaptive recovery of TNFα-mediated inflammation. Our integrative approach is a powerful tool to study changes in specific components of microglial morphology for insights into their functional states, in relation to cytokine network dynamics, during CNS injury and disease.
细胞因子信号传导与小胶质细胞形态动力学之间的协同相互作用调节中枢神经系统损伤和疾病中的神经炎症。我们发现,全身性脂多糖刺激后促炎细胞因子基因表达有明显恢复。我们对小胶质细胞形态进行了一项新颖的多变量分析,并确定了与促炎细胞因子TNFα表达动态相匹配的小胶质细胞特定形态特性的变化。TNFα表达和小胶质细胞胞体大小的适应性恢复动力学显示出可比的特征,并依赖于抗炎细胞因子IL-10的表达。细胞因子变化和小胶质细胞形态对炎症反应的恢复受到IL-10的负调控。我们对小胶质细胞进行的新颖形态分析能够检测到细微变化,并且可以广泛应用。我们进行了细胞因子网络动力学模拟,结果显示——与直觉相反,但与我们的实验观察结果一致——IL-10的负反馈足以阻碍TNFα介导的炎症的适应性恢复。我们的综合方法是一种强大的工具,可用于研究小胶质细胞形态特定成分的变化,以深入了解其在中枢神经系统损伤和疾病期间与细胞因子网络动力学相关的功能状态。