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单次奥沙利铂给药对大鼠模型周围神经病变诱导的影响:体内电生理学研究。

Effect of a Single Dose of Oxaliplatin on the Induction of Peripheral Neuropathy in a Rat Model: An in Vivo Electrophysiological Study.

机构信息

Department of Applied Pharmacology, Faculty of Pharmaceutical Sciences, University of Toyama.

Laboratory for Pharmacology, Pharmaceutical Research Center, Asahi Kasei Pharma Corp.

出版信息

Biol Pharm Bull. 2023 Aug 1;46(8):1128-1132. doi: 10.1248/bpb.b23-00263. Epub 2023 Jun 17.

Abstract

The anticancer drug oxaliplatin is associated with peripheral neuropathy as a side effect accompanied by mechanical and cold allodynia. Although the superficial layer of the spinal cord dorsal horn is known to receive information primarily from peripheral pain nerves, to our knowledge, no in vivo electrophysiological analyses have been conducted to determine whether oxaliplatin administration increases the excitability of superficial layer neurons. Therefore, in vivo extracellular recordings were performed to measure action potentials in the deep and superficial layers of the spinal cord dorsal horn in rats treated with a single dose (6 mg/kg) of oxaliplatin. Action potentials were produced by mechanical stimulation with von Frey filaments to the hindlimb receptive fields. The results revealed that the firing frequency of action potentials increased relative to the intensity of mechanical stimulation, and that both deep and superficial layer neurons in the spinal cord dorsal horn increased significantly in oxaliplatin-treated compared with vehicle-treated rats, especially in the superficial layer. Several superficial layer neurons showed spontaneous firing that was not seen in vehicle-treated rats. In addition, a clear increase was seen in the firing frequency of neurons in the superficial layer of oxaliplatin-treated rats in response to a cold stimulus (here, the addition of acetone to the hindlimb receptive field). This study suggests that the superficial spinal cord dorsal horn strongly reflects the pain pathophysiology in peripheral neuropathy induced by oxaliplatin administration, and that the superficial layer neurons are useful for in vivo electrophysiological analysis using this pathological model.

摘要

抗癌药物奥沙利铂会引起外周神经病变,表现为机械性和冷感觉异常痛觉过敏。虽然脊髓背角的浅层已知主要接收来自外周疼痛神经的信息,但据我们所知,尚未进行体内电生理分析来确定奥沙利铂给药是否会增加浅层神经元的兴奋性。因此,在单次给予奥沙利铂(6mg/kg)的大鼠中进行了体内细胞外记录,以测量脊髓背角深、浅层的动作电位。用冯弗雷尔纤维对后肢感受野进行机械刺激以产生动作电位。结果表明,与机械刺激强度相比,动作电位的发放频率增加,与对照组相比,奥沙利铂处理组大鼠脊髓背角的深、浅层神经元均显著增加,尤其是浅层神经元。一些浅层神经元表现出自发性放电,而在对照组大鼠中则没有观察到这种现象。此外,奥沙利铂处理组大鼠浅层神经元对冷刺激(即向后肢感受野中加入丙酮)的反应中,放电频率明显增加。本研究表明,奥沙利铂给药引起的外周神经病变导致脊髓背角浅层强烈反映疼痛病理生理学,并且这些浅层神经元可用于使用这种病理模型的体内电生理分析。

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