Department of Drug Design and Pharmacology, Faculty of Health and Medical Sciences, University of Copenhagen, Copenhagen, 2100, Denmark.
Department of Pharmacology and Toxicology, Faculty of Pharmacy, Al-Azhar University, Cairo, Egypt.
Sci Rep. 2019 Feb 6;9(1):1486. doi: 10.1038/s41598-018-37606-3.
Organotypic brain culture is an experimental tool widely used in neuroscience studies. One major drawback of this technique is reduced neuronal survival across time, which is likely exacerbated by the loss of blood flow. We have designed a novel, tube flow system, which is easily incorporated into the commonly-used, standard semi-permeable membrane culture methodology which has significantly enhanced neuronal survival in a brain stem nucleus involved in control of motivated and arousal states: the laterodorsal tegmental nucleus (LDT). Our automated system provides nutrients and removes waste in a comparatively aseptic environment, while preserving temperature, and oxygen levels. Using immunohistochemistry and electrophysiology, our system was found superior to standard techniques in preserving tissue quality and survival of LDT cells for up to 2 weeks. In summary, we provide evidence for the first time that the LDT can be preserved in organotypic slice culture, and further, our technical improvements of adding a flow system, which likely enhanced perfusion to the slice, were associated with enhanced neuronal survival. Our perfusion system is expected to facilitate organotypic experiments focused on chronic stimulations and multielectrode recordings in the LDT, as well as enhance neuronal survival in slice cultures originating from other brain regions.
器官型脑培养是神经科学研究中广泛使用的实验工具。该技术的一个主要缺点是神经元随时间的存活率降低,这很可能因血流丧失而加剧。我们设计了一种新颖的管流系统,该系统很容易与常用的标准半透膜培养方法结合使用,这大大提高了与动机和觉醒状态控制有关的脑干核(即外侧背侧被盖核,LDT)中的神经元存活率。我们的自动化系统在相对无菌的环境中提供营养物质并清除废物,同时保持温度和氧气水平。通过免疫组织化学和电生理学,我们的系统在保存组织质量和 LDT 细胞存活方面优于标准技术,最长可达 2 周。总之,我们首次提供证据表明 LDT 可以在器官型切片培养中保存,进一步说,我们添加流系统的技术改进可能增强了切片的灌注,与增强神经元存活率相关。我们的灌注系统有望促进 LDT 中慢性刺激和多电极记录的器官型实验,并增强来自其他脑区的切片培养中的神经元存活率。