首页> 美国卫生研究院文献>The Journal of Neuroscience >Sensory Deprivation Disrupts Homeostatic Regeneration of Newly Generated Olfactory Sensory Neurons after Injury in Adult Mice
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Sensory Deprivation Disrupts Homeostatic Regeneration of Newly Generated Olfactory Sensory Neurons after Injury in Adult Mice

机译:感觉剥夺破坏成年小鼠受伤后新产生的嗅觉感觉神经元的稳态再生。

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摘要

Although it is well known that injury induces the generation of a substantial number of new olfactory sensory neurons (OSNs) in the adult olfactory epithelium (OE), it is not well understood whether olfactory sensory input influences the survival and maturation of these injury-induced OSNs in adults. Here, we investigated whether olfactory sensory deprivation affected the dynamic incorporation of newly generated OSNs 3, 7, 14, and 28 d after injury in adult mice. Mice were unilaterally deprived of olfactory sensory input by inserting a silicone tube into their nostrils. Methimazole, an olfactotoxic drug, was also injected intraperitoneally to bilaterally ablate OSNs. The OE was restored to its preinjury condition with new OSNs by day 28. No significant differences in the numbers of olfactory marker protein-positive mature OSNs or apoptotic OSNs were observed between the deprived and nondeprived sides 0–7 d after injury. However, between days 7 and 28, the sensory-deprived side showed markedly fewer OSNs and mature OSNs, but more apoptotic OSNs, than the nondeprived side. Intrinsic functional imaging of the dorsal surface of the olfactory bulb at day 28 revealed that responses to odor stimulation were weaker in the deprived side compared with those in the nondeprived side. Furthermore, prevention of cell death in new neurons 7–14 d after injury promoted the recovery of the OE. These results indicate that, in the adult OE, sensory deprivation disrupts compensatory OSN regeneration after injury and that newly generated OSNs have a critical time window for sensory-input-dependent survival 7–14 d after injury.
机译:尽管众所周知损伤会在成人嗅觉上皮(OE)中诱导大量新的嗅觉感觉神经元(OSN)的产生,但人们尚不清楚嗅觉感觉输入是否会影响这些损伤诱导的存活和成熟成人OSN。在这里,我们调查了嗅觉剥夺是否影响成年小鼠受伤后第3、7、14和28 d新生OSN的动态结合。通过将硅胶管插入其鼻孔,单方面剥夺小鼠的嗅觉感觉输入。甲硫咪唑是一种嗅觉毒性药物,也被腹膜内注射至双侧消融OSN。到第28天,新的OSN使OE恢复到损伤前的状态。在损伤后0-7 d,剥夺和未剥夺的一侧之间嗅觉标记蛋白阳性成熟OSN或凋亡OSN的数量均未观察到显着差异。然而,在第7天至第28天之间,感觉缺失的一侧显示的OSN和成熟OSN明显少于未剥夺的一侧。在第28天,嗅球背侧表面的内在功能成像显示,与非贫困侧相比,贫困侧对气味刺激的反应较弱。此外,预防损伤后7-14 d新神经元的细胞死亡可促进OE的恢复。这些结果表明,在成年OE中,感觉剥夺破坏了损伤后代偿性OSN的再生,并且新产生的OSN对于损伤后7-14 d依赖于感觉输入的生存具有关键的时间窗。

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