Clarendon Laboratory, Oxford University, UK.
Eur Biophys J. 2011 May;40(5):651-60. doi: 10.1007/s00249-010-0667-y. Epub 2011 Jan 30.
Modern single-molecule biophysical experiments require high numerical aperture oil-immersion objectives in close contact with the sample. We introduce two methods of high numerical aperture temperature control which can be implemented on any microscope: objective temperature control using a ring-shaped Peltier device, and stage temperature control using a fluid flow cooling chip in close thermal contact with the sample. We demonstrate the efficacy of each system by showing the change in speed with temperature of two molecular motors, the bacterial flagellar motor and skeletal muscle myosin.
现代单分子生物物理实验需要高数值孔径油浸物镜与样品紧密接触。我们介绍了两种可在任何显微镜上实现的高数值孔径温度控制方法:使用环形珀耳贴器件控制物镜温度,以及使用与样品紧密热接触的流体流动冷却芯片控制载物台温度。我们通过展示两种分子马达(细菌鞭毛马达和骨骼肌肌球蛋白)的速度随温度的变化,证明了每个系统的功效。