Long-term changes of spine dynamics and microglia after transient peripheral immune response triggered by LPS in vivo

被引:100
作者
Kondo, Satoru [1 ]
Kohsaka, Shinichi [2 ]
Okabe, Shigeo [1 ]
机构
[1] Univ Tokyo, Grad Sch Med, Dept Cellular Neurobiol, Bunkyo Ku, Tokyo 1130033, Japan
[2] Natl Inst Neurosci, Dept Neurochem, Kodaira, Tokyo 1878502, Japan
关键词
Peripheral inflammation; Spine; Microglia; in vivo imaging; Sepsis; DENDRITIC SPINES; SYNAPTIC TRANSMISSION; TRANSGENIC MICE; CRANIAL WINDOW; INDUCED FEVER; ADULT CORTEX; BRAIN; LIPOPOLYSACCHARIDE; CELLS; PLASTICITY;
D O I
10.1186/1756-6606-4-27
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Background: An episode of peripheral immune response may create long-lasting alterations in the neural network. Recent studies indicate a glial involvement in synaptic remodeling. Therefore it is postulated that both synaptic and glial changes could occur under the peripheral inflammation. Results: We tested this possibility by in vivo two-photon microscopy of dendritic spines after induction of a peripheral immune response by lipopolysaccharide (LPS) treatment of mice. We observed that the spines were less stable in LPS-treated mice. The accumulation of spine changes gradually progressed and remained low over a week after LPS treatment but became significantly larger at four weeks. Over eight weeks after LPS treatment, the fraction of eliminated spines amounted to 20% of the initial population and this persistent destabilization resulted in a reduction of the total spine density. We next evaluated glial activation by LPS administration. Activation of microglia was confirmed by a persistent increase of Iba1 immunoreactivity. Morphological changes in microglia were observed two days after LPS administration and were partially recovered within one week but sustained over a long time period. Conclusions: These results indicate long-lasting aggravating effects of a single transient peripheral immune response on both spines and microglia. The parallel persistent alterations of both spine turnover and the state of microglia in vivo suggest the presence of a pathological mechanism that sustains the enhanced remodeling of neural networks weeks after peripheral immune responses. This pathological mechanism may also underlie long-lasting cognitive dysfunctions after septic encephalopathy in human patients.
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页数:16
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