神经科学
体内
神经活动
神经生理学
体外
神经系统
运动前神经元活动
感觉系统
翻译(生物学)
生物
心理学
生物化学
基因
信使核糖核酸
生物技术
作者
Cédric Bardy,Mark van den Hurk,Tameji Eames,Cynthia Marchand,Rubén Hernández,M Kellogg,Mark A.J. Gorris,Ben Galet,Vanessa Palomares,J. Elliott Brown,Anne G. Bang,Jérôme Mertens,Lena Böhnke,Leah Boyer,Suzanne Simon,Fred H. Gage
标识
DOI:10.1073/pnas.1504393112
摘要
Human cell reprogramming technologies offer access to live human neurons from patients and provide a new alternative for modeling neurological disorders in vitro. Neural electrical activity is the essence of nervous system function in vivo. Therefore, we examined neuronal activity in media widely used to culture neurons. We found that classic basal media, as well as serum, impair action potential generation and synaptic communication. To overcome this problem, we designed a new neuronal medium (BrainPhys basal + serum-free supplements) in which we adjusted the concentrations of inorganic salts, neuroactive amino acids, and energetic substrates. We then tested that this medium adequately supports neuronal activity and survival of human neurons in culture. Long-term exposure to this physiological medium also improved the proportion of neurons that were synaptically active. The medium was designed to culture human neurons but also proved adequate for rodent neurons. The improvement in BrainPhys basal medium to support neurophysiological activity is an important step toward reducing the gap between brain physiological conditions in vivo and neuronal models in vitro.
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