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首页> 外文期刊>Toxicon: An International Journal Devoted to the Exchange of Knowledge on the Poisons Derived from Animals, Plants and Microorganisms >The rat Digit Abduction Score (DAS) assay: A physiological model for assessing botulinum neurotoxin-induced skeletal muscle paralysis
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The rat Digit Abduction Score (DAS) assay: A physiological model for assessing botulinum neurotoxin-induced skeletal muscle paralysis

机译:大鼠数字外展得分(DAS)分析:一种评估肉毒杆菌神经毒素引起的骨骼肌麻痹的生理模型

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摘要

Botulinum neurotoxins (BoNT) are approved for a number of therapeutic indications, including blepharospasm, cervical dystonia and hyperhidrosis, and have also shown efficacy in a variety of pain disorders. The potency of any given BoNT preparation canbe routinely assessed by using the Digit Abduction Score (DAS) assay, which measures the local muscle weakening efficacy of BoNT following injection into mouse hindlimb muscle. While most studies have employed mice to assess BoNT efficacy in the DAS, few have utilized rats. In this study, we applied the DAS assay to a rat model and compared the potency of IM-BOTOX (onabotulinumtoxinA) injections between two separate hind limb muscles, gastrocnemius and tibialis anterior (TA). The results demonstrated that the DAS assay can be performed on rats with similar criteria and parameters as for mice. Moreover in the rat, BoNT can be injected into either the gastrocnemius or TA muscle to elicit similar DAS scoring responses. Interestingly, onabotulinumtoxinA potency in the rat DAS was ~3-fold higher following TA injections than gastrocnemius injections. Additionally, our data showed that the durational kinetics of onabotulinumtoxinA in the rat DAS are approximately twice as long as in the mouse DAS. These results position the rat DAS as a more flexible model for examining the mechanisms of BoNT diffusion and muscle paralysis, while mouse DAS can be used for physiological screening of BoNT because of the potential for higher throughput. Overall, these data confirm the utility of the DAS assay for characterizing the physiological potency of BoNT and related compounds.
机译:肉毒杆菌神经毒素(BoNT)已获批准用于多种治疗适应症,包括眼睑痉挛,宫颈肌张力障碍和多汗症,并且在多种疼痛疾病中也显示出功效。任何给定的BoNT制剂的效力都可以通过使用Digit Abduction Score(DAS)分析进行常规评估,该方法可以测量注入小鼠后肢肌肉后BoNT的局部肌肉削弱功效。虽然大多数研究都使用小鼠来评估BoNT在DAS中的功效,但很少使用大鼠。在这项研究中,我们将DAS分析应用于大鼠模型,并比较了IM-BOTOX(onabotulinumtoxinA)注射在两个独立的后肢肌肉,腓肠肌和胫前肌(TA)之间的效力。结果表明,DAS分析可在具有与小鼠相似的标准和参数的大鼠上进行。此外,在大鼠中,可以将BoNT注射到腓肠肌或TA肌肉中,以引发相似的DAS评分反应。有趣的是,TA注射后大鼠DAS中的肉毒杆菌毒素A效能比腓肠肌注射高约3倍。此外,我们的数据显示,大鼠DAS中的肉毒杆菌毒素A的持续动力学大约是小鼠DAS的两倍。这些结果将大鼠DAS定位为一种更灵活的模型,用于检查BoNT扩散和肌肉麻痹的机制,而小鼠DAS由于可能具有更高的通量,因此可用于BoNT的生理学筛选。总体而言,这些数据证实了DAS分析在表征BoNT和相关化合物的生理效力方面的实用性。

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