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首页> 外文期刊>Canadian Journal of Physiology and Pharmacology >The excitability of dorsal horn neurons is affected by cerebrospinal fluid from humans with osteoarthritis.
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The excitability of dorsal horn neurons is affected by cerebrospinal fluid from humans with osteoarthritis.

机译:患有骨关节炎的人的脑脊液会影响背角神经元的兴奋性。

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摘要

Changes in central neural processing are thought to contribute to the development of chronic osteoarthritis pain. This may be reflected as the presence of inflammatory mediators in the cerebral spinal fluid (CSF). We therefore exposed organotypically cultured slices of rat spinal cord to CSF from human subjects with osteoarthritis (OACSF) at a ratio of 1 part CSF in 9 parts culture medium for 5-6 days, and measured changes in neuronal electrophysiological properties by means of whole-cell recording. Although OACSF had no effect on the membrane properties and excitability of neurons in the substantia gelatinosa, synaptic transmission was clearly altered. The frequency of spontaneous excitatory postsynaptic currents (sEPSC) in delay-firing putative excitatory neurons was increased, as was sEPSC amplitude and frequency in tonic-firing inhibitory neurons. These changes could affect sensory processing in the dorsal horn, and may affect the transfer of nociceptive information. Although OACSF also affected inhibitory synaptic transmission (frequency of spontaneous inhibitory synaptic currents; sIPSC), this may have little bearing on sensory processing by substantia gelatinosa neurons, as sEPSC frequency is >3× greater than sIPSC frequency in this predominantly excitatory network. These results support the clinical notion that changes in nociceptive processing at the spinal level contribute to the generation of chronic osteoarthritis pain.
机译:中枢神经加工的变化被认为有助于慢性骨关节炎疼痛的发展。这可能反映为脑脊髓液(CSF)中存在炎症介质。因此,我们以1份CSF的比例在9份培养基中将来自人类患有骨关节炎(OACSF)的大鼠的CSF的器官典型培养切片暴露于CSF中5-6天,并通过全脂法测量了神经元电生理特性的变化。细胞记录。尽管OACSF对明胶质神经元的膜特性和神经元兴奋性没有影响,但突触传递明显改变。延迟发射推定的兴奋性神经元中自发性兴奋性突触后电流(sEPSC)的频率增加,而强直发射抑制性神经元中的sEPSC振幅和频率也增加。这些变化可能影响背角的感觉处理,并可能影响伤害性信息的传递。尽管OACSF也影响抑制性突触传递(自发抑制性突触电流的频率; sIPSC),但这可能与明胶质神经元的感觉处理无关,因为在这个主要为兴奋性的网络中,sEPSC频率大于sIPSC频率的3倍以上。这些结果支持了临床观点,即在脊髓水平上的伤害感受过程的变化有助于慢性骨关节炎疼痛的产生。

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