Martinov Tijana, Mack Madison, Sykes Akilah, Chatterjea Devavani
Biology Department, Macalester College.
J Vis Exp. 2013 Dec 19(82):e51212. doi: 10.3791/51212.
Measuring inflammation-induced changes in thresholds of hind paw withdrawal from mechanical pressure is a useful technique to assess changes in pain perception in rodents. Withdrawal thresholds can be measured first at baseline and then following drug, venom, injury, allergen, or otherwise evoked inflammation by applying an accurate force on very specific areas of the skin. An electronic von Frey apparatus allows precise assessment of mouse hind paw withdrawal thresholds that are not limited by the available filament sizes in contrast to classical von Frey measurements. The ease and rapidity of measurements allow for incorporation of assessment of tactile sensitivity outcomes in diverse models of rapid-onset inflammatory and neuropathic pain as multiple measurements can be taken within a short time period. Experimental measurements for individual rodent subjects can be internally controlled against individual baseline responses and exclusion criteria easily established to standardize baseline responses within and across experimental groups. Thus, measurements using an electronic von Frey apparatus represent a useful modification of the well-established classical von Frey filament-based assays for rodent mechanical allodynia that may also be applied to other nonhuman mammalian models.
测量炎症引起的后爪对机械压力的撤爪阈值,是评估啮齿动物疼痛感知变化的一种有用技术。撤爪阈值可先在基线时测量,然后在施加药物、毒液、损伤、过敏原或以其他方式诱发炎症后,通过在皮肤的非常特定区域施加精确的力来测量。与传统的von Frey测量方法相比,电子von Frey仪器能够精确评估小鼠后爪撤爪阈值,且不受现有细丝尺寸的限制。测量的简便性和快速性使得在多种快速发作性炎症性和神经性疼痛模型中纳入触觉敏感性结果评估成为可能,因为可以在短时间内进行多次测量。针对个体啮齿动物受试者的实验测量可以根据个体基线反应进行内部对照,并且可以轻松建立排除标准,以标准化实验组内和组间的基线反应。因此,使用电子von Frey仪器进行测量代表了对成熟的基于经典von Frey细丝的啮齿动物机械性异常性疼痛检测方法的一种有用改进,该方法也可应用于其他非人类哺乳动物模型。