Wu Bei, Wang Ye-Ming, Xiong Wei, Zheng Liang-Hong, Fu Chong-Luo, Bruce Iain C, Zhang Chen, Zhou Zhuan
Institute of Neuroscience, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai 200031, China.
Front Biosci. 2005 Jan 1;10:761-7. doi: 10.2741/1570.
In biological experiments, especially in neuroscience research, it is important to manipulate the extracellular environment efficiently. We have developed a micro-puffing system for local drug delivery to single cells in electrophysiological experiments, and validated the kinetic properties of this instrument. Based on our results, the kinetics of the delivery of solutions and the territory controlled by this system are influenced by several factors: (1) inner diameter (I.D.) of the guide tubing; (2) I.D. of the puffing tip; (3) angle of the puffing tip; and (4) gravity or external pressure applied to the solution. The system can fully control a territory of 200 x 600 micrometer2. The minimum delay in response to drug delivery is 10-20 ms. Switching between different solutions takes less than 100 ms. The minimum volume of solution required by the system is 0.2 ml. Taken together, our results provide useful data for designing and using an efficient drug/solution delivery system in electrophysiological experiments.
在生物学实验中,尤其是在神经科学研究中,有效操控细胞外环境至关重要。我们开发了一种用于在电生理实验中向单细胞进行局部药物递送的微量喷射系统,并验证了该仪器的动力学特性。基于我们的研究结果,溶液递送的动力学以及该系统所控制的区域受到几个因素的影响:(1)引导管的内径(I.D.);(2)喷射尖端的内径;(3)喷射尖端的角度;以及(4)施加于溶液的重力或外部压力。该系统能够完全控制一个200×600微米²的区域。对药物递送的最小响应延迟为10 - 20毫秒。在不同溶液之间切换所需时间不到100毫秒。该系统所需的最小溶液体积为0.2毫升。综上所述,我们的研究结果为在电生理实验中设计和使用高效的药物/溶液递送系统提供了有用的数据。