突触
突触可塑性
神经炎症
精神分裂症(面向对象编程)
作者
Carl M. Sellgren,Jessica Gracias,Bradley Watmuff,Jonathan Biag,Jessica M. Thanos,Paul B. Whittredge,Ting Fu,Kathleen A. Worringer,Henry Phelps Brown,Jennifer Wang,Ajamete Kaykas,Rakesh Karmacharya,Carleton P. Goold,Steven D. Sheridan,Roy H. Perlis
标识
DOI:10.1038/s41593-018-0334-7
摘要
Synapse density is reduced in postmortem cortical tissue from schizophrenia patients, which is suggestive of increased synapse elimination. Using a reprogrammed in vitro model of microglia-mediated synapse engulfment, we demonstrate increased synapse elimination in patient-derived neural cultures and isolated synaptosomes. This excessive synaptic pruning reflects abnormalities in both microglia-like cells and synaptic structures. Further, we find that schizophrenia risk-associated variants within the human complement component 4 locus are associated with increased neuronal complement deposition and synapse uptake; however, they do not fully explain the observed increase in synapse uptake. Finally, we demonstrate that the antibiotic minocycline reduces microglia-mediated synapse uptake in vitro and its use is associated with a modest decrease in incident schizophrenia risk compared to other antibiotics in a cohort of young adults drawn from electronic health records. These findings point to excessive pruning as a potential target for delaying or preventing the onset of schizophrenia in high-risk individuals.
科研通智能强力驱动
Strongly Powered by AbleSci AI