首页> 美国卫生研究院文献>American Journal of Physiology - Gastrointestinal and Liver Physiology >Innovative and Emerging Technologies in GI Physiology and Disease: Translational aspects of rectal evoked potentials: a comparative study in rats and humans
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Innovative and Emerging Technologies in GI Physiology and Disease: Translational aspects of rectal evoked potentials: a comparative study in rats and humans

机译:胃肠生理和疾病方面的创新技术:直肠诱发电位的转化方面:在大鼠和人类中的比较研究

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摘要

Inconsistencies between species has stunted the progress of developing new analgesics. To increase the success of translating results between species, improved comparable models are required. Twelve rats received rectal balloon distensions on 2 different days separated by 24.3 (SD 24.6) days. Rectal balloon distensions were also performed in 18 humans (mean age: 34 yr; range: 21–56 yr; 12 men) on two separate occasions, separated by 9.3 (SD 5.5) days. In rats, cerebral evoked potentials (CEPs) were recorded by use of implanted skull-electrodes to distension pressure of 80 mmHg. In humans surface electrodes and individualized pressure, corresponding to pain detection threshold, were used. Comparison of morphology was assessed by wavelet analysis. Within- and between-day reproducibility was assessed in terms of latencies, amplitudes, and frequency content. In rats CEPs showed triphasic morphology. No differences in latencies, amplitudes, and power distribution were seen within or between days (all P ≥ 0.5). Peak-to-peak amplitude between the first positive and negative potential were the most reproducible characteristic within and between days (evaluated by intraclass correlation coefficients, ICC) (ICC = 0.99 and ICC = 9.98, respectively). In humans CEPs showed a triphasic morphology. No differences in latencies, amplitudes, or power distribution were seen within or between days (all P ≥ 0.2). Latency to the second negative potential (ICC = 0.98) and the second positive potential (ICC = 0.95) was the most reproducible characteristic within and between days. A unique and reliable translational platform was established assessing visceral sensitivity in rats and humans, which may improve the translational process of developing new drugs targeting visceral pain.
机译:物种之间的不一致阻碍了开发新镇痛药的进展。为了增加物种间翻译结果的成功率,需要改进的可比模型。十二只大鼠在2天(SD 24.6)天间隔2天接受直肠球囊扩张。直肠球囊扩张还分别在18个人(平均年龄:34岁;范围:21-56岁; 12名男性)中进行了两次,相隔9.3天(标准差5.5天)。在大鼠中,通过植入颅骨电极至80 mmHg的扩张压力记录了脑诱发电位(CEP)。在人类中,使用了与疼痛检测阈值相对应的表面电极和个性化压力。通过小波分析评估形态比较。根据潜伏期,幅度和频率含量评估日内和日间重现性。在大鼠中,CEP表现出三相形态。在几天之内或之间,没有观察到延迟,幅度和功率分布的差异(所有P≥0.5)。第一个正电位和负电位之间的峰峰幅度在几天之内和两天之间是最可重现的特征(通过组内相关系数ICC进行评估)(分别为ICC = 0.99和ICC = 9.98)。在人类中,CEPs表现出三相形态。在几天之内或之间,没有观察到延迟,幅度或功率分布的差异(所有P≥0.2)。第二天和第二天之间,第二负电位(ICC = 0.98)和第二正电位(ICC = 0.95)的延迟是最可复制的特征。建立了一个独特且可靠的翻译平台,以评估大鼠和人类的内脏敏感性,这可能会改善开发针对内脏痛的新药的翻译过程。

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