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宽范围热偏好测量——一种检测小鼠热诱发痛觉缓解的新型方法。

Wide-Range Measurement of Thermal Preference-A Novel Method for Detecting Analgesics Reducing Thermally-Evoked Pain in Mice.

机构信息

Department of Pharmacodynamics, Chair of Pharmacodynamics, Jagiellonian University Medical College, 9 Medyczna St., 30-688 Krakow, Poland.

Institute of Mechanical Engineering, Warsaw University of Life Sciences, 164 Nowoursynowska St., 02-787 Warsaw, Poland.

出版信息

Molecules. 2021 Jan 25;26(3):612. doi: 10.3390/molecules26030612.

Abstract

BACKGROUND

Wide use of oxaliplatin as an antitumor drug is limited by severe neuropathy with pharmacoresistant cold hypersensitivity as the main symptom. Novel analgesics to attenuate cold hyperalgesia and new methods to detect drug candidates are needed.

METHODS

We developed a method to study thermal preference of oxaliplatin-treated mice and assessed analgesic activity of intraperitoneal duloxetine and pregabalin used at 30 mg/kg. A prototype analgesiameter and a broad range of temperatures (0-45 °C) were used. Advanced methods of image analysis (deep learning and machine learning) enabled us to determine the effectiveness of analgesics. The loss or reversal of thermal preference of oxaliplatin-treated mice was a measure of analgesia.

RESULTS

Duloxetine selectively attenuated cold-induced pain at temperatures between 0 and 10 °C. Pregabalin-treated mice showed preference towards a colder plate of the two used at temperatures between 0 and 45 °C.

CONCLUSION

Unlike duloxetine, pregabalin was not selective for temperatures below thermal preferendum. It influenced pain sensation at a much wider range of temperatures applied. Therefore, for the attenuation of cold hypersensitivity duloxetine seems to be a better than pregabalin therapeutic option. We propose wide-range measurements of thermal preference as a novel method for the assessment of analgesic activity in mice.

摘要

背景

奥沙利铂作为一种抗肿瘤药物被广泛应用,但由于其具有严重的神经病变,以药物抗性冷超敏反应为主要症状,限制了其应用。因此,需要新型的镇痛剂来减轻冷超敏反应,并寻找新的药物筛选方法。

方法

我们开发了一种研究奥沙利铂处理的小鼠热偏好的方法,并评估了腹腔内应用度洛西汀和普瑞巴林(剂量为 30mg/kg)的镇痛活性。使用原型疼痛仪和广泛的温度范围(0-45°C)进行评估。先进的图像分析方法(深度学习和机器学习)可用于确定镇痛剂的效果。奥沙利铂处理的小鼠失去或逆转对冷的偏好可作为镇痛的衡量标准。

结果

度洛西汀选择性地减轻了 0-10°C 之间冷诱导疼痛。普瑞巴林处理的小鼠在 0-45°C 之间的两个温度板中更倾向于较冷的温度板。

结论

与度洛西汀不同,普瑞巴林对低于热偏好温度的温度不具有选择性。它在更广泛的温度范围内影响疼痛感觉。因此,对于冷超敏反应的缓解,度洛西汀似乎是比普瑞巴林更好的治疗选择。我们提出广泛测量热偏好作为评估小鼠镇痛活性的新方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a01/7866141/321f3477ac46/molecules-26-00612-g001.jpg

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