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Response to ethanol induced ataxia between C57BL/6J and 129X1/SvJ mouse strains using a treadmill based assay

机译:使用跑步机基于基于跑步机的测定对C57BL / 6J和129x1 / SVJ小鼠菌株之间的乙醇诱导的乙醇的反应

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摘要

More sensitive assays of mouse motor ataxia may provide a better understanding of the pathological profile. Treadmill gait analysis using ventral imaging allows for unhindered access to the ambulating mouse. In contrast to genetic mutations or exogenous brain injury, ethanol (EtOH) allows for the detection of dose dependent changes in motor behavior, which can be used to assess an assay’s detection sensitivity. EtOH induced ataxia was assessed in C57BL/6J (B6) and 129X1/SvJ (129) mice using the DigiGait imaging system. Gait was analyzed across EtOH dosage (1.75, 2.25 and 2.75 g/kg) in each strain using a linear mixed effects model. Overall, 129 mice displayed greater susceptibility to EtOH ataxia than their B6 counterparts. In both strains, hind paws exhibited greater sensitivity to EtOH dosage than fore paws. Across most variables analyzed, only a modest EtOH-induced change in motor behavior was observed in each strain with the 1.75g/kg EtOH doses failing to elicit significant change. These data indicate the ability to detect motor differences between strains, yet only moderate ability to detect change across EtOH dosage using the automated treadmill. Rotarod assays, however, were able to detect motor impairment at lower doses of EtOH. The significant, but opposite changes in paw placement with increasing EtOH doses highlight strain-specific differences in biophysical adaptations in response to acute EtOH intoxication.
机译:小鼠运动性共济失调的更灵敏的测定方法可以提供对病理学特征的更好理解。使用腹侧成像的跑步机步态分析可让您不受阻碍地接近行走的老鼠。与基因突变或外源性脑损伤不同,乙醇(EtOH)可以检测运动行为的剂量依赖性变化,可用于评估测定的检测灵敏度。使用DigiGait成像系统在C57BL / 6J(B6)和129X1 / SvJ(129)小鼠中评估EtOH诱导的共济失调。使用线性混合效应模型分析了每个菌株中EtOH剂量(1.75、2.25和2.75 g / kg)的步态。总体而言,有129只小鼠比B6小鼠对EtOH共济失调的敏感性更高。在两种菌株中,后爪均比前爪对EtOH的剂量表现出更高的敏感性。在大多数分析变量中,在每株菌株中仅观察到适度的EtOH诱导的运动行为变化,而1.75g / kg EtOH剂量未能引起显着变化。这些数据表明使用自动跑步机检测菌株之间电机差异的能力,但仅中等能力可检测整个EtOH剂量的变化。然而,Rotarod分析法能够在较低剂量的EtOH下检测运动障碍。随着EtOH剂量的增加,脚掌位置发生了明显但相反的变化,突出了对急性EtOH中毒的生物物理适应性的菌株特异性差异。

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