Dent Jayne O, Segal Julia P, Brécier Aurélie, Gowdy Hailey G M, Dubois Rosalin M, Bannerman Courtney A, Halievski Katherine, Silva Jaqueline R, Ghasemlou Nader
Department of Biomedical & Molecular Sciences, Queen's University, Kingston, Ontario, Canada.
Department of Anesthesiology & Perioperative Medicine, Kingston Health Sciences Centre, Kingston, Ontario, Canada.
Can J Pain. 2023 Aug 21;7(2):2249060. doi: 10.1080/24740527.2023.2249060. eCollection 2023.
Standard methods assessing pain in rodents are often observer dependent, potentially resulting in biased outcomes. Advanced dynamic weight bearing (ADWB) offers an observer-independent approach that can provide objective, reliable data in preclinical pain research.
The aim of this study was to characterize the use of ADWB in assessing murine responses to allyl isothiocyanate (AITC)-induced hyperacute hypersensitivity and identify best practices for use of the device.
Male C57BL/6J mice received intraplantar injections of saline or 0.1% AITC solution and were assessed using the ADWB system; simultaneous observer-dependent durations of paw licking and biting were measured. ADWB data were analyzed using the proprietary software from Bioseb and correlated to observer-dependent results, with parameters assessed to optimize data collected.
ADWB detected pain-directed changes in weight and surface area distribution in AITC-treated mice, with paw weight and surface area placement correlating to paw licking and biting. Optimization of adjustable threshold parameters allowed for reduced coefficients of variability and increased duration of validated data.
The ADWB assay provides an efficient and unbiased measure of chemical-induced hyperacute hypersensitivity in mice. ADWB detection parameters influence amount of validated data and variability, a consideration for data analysis in future studies.
评估啮齿动物疼痛的标准方法通常依赖观察者,这可能导致结果有偏差。先进动态负重(ADWB)提供了一种独立于观察者的方法,能够在临床前疼痛研究中提供客观、可靠的数据。
本研究的目的是描述ADWB在评估小鼠对异硫氰酸烯丙酯(AITC)诱导的超急性超敏反应中的应用,并确定该设备的最佳使用方法。
雄性C57BL/6J小鼠接受足底注射生理盐水或0.1% AITC溶液,并使用ADWB系统进行评估;同时测量依赖观察者的舔爪和咬爪持续时间。使用来自Bioseb的专有软件分析ADWB数据,并将其与依赖观察者的结果相关联,评估参数以优化收集到的数据。
ADWB检测到AITC处理小鼠体重和表面积分布的疼痛相关变化,爪部重量和表面积位置与舔爪和咬爪相关。可调阈值参数的优化降低了变异系数,并增加了有效数据的持续时间。
ADWB检测方法为小鼠化学诱导的超急性超敏反应提供了一种有效且无偏差的测量方法。ADWB检测参数会影响有效数据的量和变异性,这是未来研究数据分析时需要考虑的因素。