School of Life Sciences, University of Sussex, Sussex, United Kingdom.
Division of Physiology, Department of Human Biology, Neuroscience Institute and Institute of Infectious Disease and Molecular Medicine, Faculty of Health Sciences, University of Cape Town, Cape Town, South Africa.
Sci Rep. 2017 May 19;7(1):2188. doi: 10.1038/s41598-017-02301-2.
The ability to reliably and precisely deliver picolitre volumes is an important component of biological research. Here we describe a high-performance, low-cost, open hardware pressure ejection system (Openspritzer), which can be constructed from off the shelf components. The device is capable of delivering minute doses of reagents to a wide range of biological and chemical systems. In this work, we characterise the performance of the device and compare it to a popular commercial system using two-photon fluorescence microscopy. We found that Openspritzer provides the same level of control over delivered reagent dose as the commercial system. Next, we demonstrate the utility of Openspritzer in a series of standard neurobiological applications. First, we used Openspritzer to deliver precise amounts of reagents to hippocampal neurons to elicit time- and dose-precise responses on neuronal voltage. Second, we used Openspritzer to deliver infectious viral and bacterial agents to living tissue. This included viral transfection of hippocampal interneurons with channelrhodopsin for the optogenetic manipulation of hippocampal circuitry with light. We anticipate that due to its high performance and low cost Openspritzer will be of interest to a broad range of researchers working in the life and physical sciences.
能够可靠且精确地输送皮升体积是生物研究的一个重要组成部分。在这里,我们描述了一种高性能、低成本、开源硬件压力喷射系统(Openspritzer),它可以由现成的组件构建而成。该设备能够将微量试剂递送到广泛的生物和化学系统中。在这项工作中,我们对设备的性能进行了表征,并使用双光子荧光显微镜将其与流行的商业系统进行了比较。我们发现,Openspritzer 提供了与商业系统相同水平的试剂输送剂量控制。接下来,我们在一系列标准神经生物学应用中展示了 Openspritzer 的实用性。首先,我们使用 Openspritzer 将精确剂量的试剂递送到海马神经元,以在神经元电压上产生时间和剂量精确的反应。其次,我们使用 Openspritzer 将传染性病毒和细菌制剂递送到活组织。这包括使用通道视紫红质将病毒转染到海马中间神经元中,以用光对海马回路进行光遗传操作。我们预计,由于其高性能和低成本,Openspritzer 将引起从事生命和物理科学研究的广泛研究人员的兴趣。