Potter S M, DeMarse T B
156-29 Division of Biology, California Institute of Technology, Pasadena, CA 91125, USA.
J Neurosci Methods. 2001 Sep 30;110(1-2):17-24. doi: 10.1016/s0165-0270(01)00412-5.
We have developed a new method for culturing cells that maintains their health and sterility for many months. Using conventional techniques, primary neuron cultures seldom survive more than 2 months. Increases in the osmotic strength of media due to evaporation are a large and underappreciated contributor to the gradual decline in the health of these cultures. Because of this and the ever-present likelihood of contamination by airborne pathogens, repeated or extended experiments on any given culture have until now been difficult, if not impossible. We surmounted survival problems by using culture dish lids that form a gas-tight seal, and incorporate a transparent hydrophobic membrane (fluorinated ethylene-propylene) that is selectively permeable to oxygen (O(2)) and carbon dioxide (CO(2)), and relatively impermeable to water vapor. This prevents contamination and greatly reduces evaporation, allowing the use of a non-humidified incubator. We have employed this technique to grow dissociated cortical cultures from rat embryos on multi-electrode arrays. After more than a year in culture, the neurons still exhibit robust spontaneous electrical activity. The combination of sealed culture dishes with extracellular multi-electrode recording and stimulation enables study of development, adaptation, and very long-term plasticity, across months, in cultured neuronal networks. Membrane-sealed dishes will also be useful for the culture of many other cell types susceptible to evaporation and contamination.
我们开发了一种新的细胞培养方法,可使细胞在数月内保持健康和无菌状态。使用传统技术时,原代神经元培养物很少能存活超过2个月。由于蒸发导致培养基渗透压升高,是这些培养物健康状况逐渐下降的一个重要且未得到充分认识的因素。鉴于此,以及空气传播病原体污染的可能性始终存在,迄今为止,对任何给定培养物进行重复或长期实验即便并非不可能,也十分困难。我们通过使用能形成气密密封的培养皿盖克服了存活问题,该培养皿盖包含一层透明疏水膜(氟化乙烯丙烯),它对氧气(O₂)和二氧化碳(CO₂)具有选择性渗透性,而对水蒸气相对不渗透。这可防止污染并大大减少蒸发,从而可以使用非加湿培养箱。我们已采用这项技术在多电极阵列上培养来自大鼠胚胎的解离皮质培养物。培养一年多后,神经元仍表现出强劲的自发电活动。密封培养皿与细胞外多电极记录和刺激相结合,能够对培养的神经元网络在数月内的发育、适应性和非常长期的可塑性进行研究。膜密封培养皿对于培养许多其他易受蒸发和污染影响的细胞类型也将很有用。