Smith A S T, Long C J, Pirozzi K, Hickman J J
Technology (Singap World Sci). 2013;1(1):37-48. doi: 10.1142/S2339547813500015.
High-content phenotypic screening systems are the logical extension of the current efficient, yet low information content, pre-clinical screens for drug discovery. A physiologically accurate neuromuscular junction (NMJ) screening system would therefore be of tremendous benefit to the study of peripheral neuropathies as well as for basic and applied neuromuscular research. To date, no fully-defined, selective assay system has been developed which would allow investigators to determine the functional output of cultured muscle fibers (myotubes) when stimulated via the NMJ in real time for both acute and chronic applications. Here we present the development of such a phenotypic screening model, along with evidence of NMJ formation and motoneuron initiated neuromuscular transmission in an automated system. Myotubes assembled on silicon cantilevers allowed for measurement of substrate deflection in response to contraction and provided the basis for monitoring the effect of controlled motoneuron stimulation on the contractile behavior. The effect was blocked by treatment with D-tubocurarine, confirming NMJ functionality in this highly multiplexed assay system.
高内涵表型筛选系统是当前用于药物发现的高效但信息含量低的临床前筛选的合理延伸。因此,一个生理上准确的神经肌肉接头(NMJ)筛选系统对于周围神经病变的研究以及基础和应用神经肌肉研究将具有巨大的益处。迄今为止,尚未开发出完全定义的、选择性检测系统,该系统能够让研究人员实时确定培养的肌纤维(肌管)在通过神经肌肉接头进行急性和慢性刺激时的功能输出。在此,我们展示了这样一种表型筛选模型的开发,以及在自动化系统中神经肌肉接头形成和运动神经元引发的神经肌肉传递的证据。组装在硅悬臂上的肌管能够测量因收缩而产生的底物偏转,并为监测受控运动神经元刺激对收缩行为的影响提供了基础。用筒箭毒碱处理可阻断该效应,证实了在这个高度多重检测系统中神经肌肉接头的功能。