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A system for exposing molecules and cells to biologically relevant and accurately controlled steady-state concentrations of nitric oxide and oxygen

机译:一种系统,用于将分子和细胞暴露于生物学相关且精确控制的一氧化氮和氧气的稳态浓度

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摘要

Nitric oxide (NO) plays key roles in cell signaling and physiology, with diverse functions mediated by NO concentrations varying over three orders-of-magnitude. In spite of this critical concentration dependence, current approaches to NO delivery in vitro result in biologically irrelevant and poorly controlled levels, with hyperoxic conditions imposed by ambient air. To solve these problems, we developed a system for controlled delivery of NO and O[subscript 2] over large concentration ranges to mimic biological conditions. Here we describe the fabrication, operation and calibration of the delivery system. We then describe applications for delivery of NO and O[subscript 2] into cell culture media, with a comparison of experimental results and predictions from mass transfer models that predict the steady-state levels of various NO-derived reactive species. We also determined that components of culture media do not affect the steady-state levels of NO or O[subscript 2] in the device. This system provides critical control of NO delivery for in vitro models of NO biology and chemistry.
机译:一氧化氮(NO)在细胞信号传导和生理中起着关键作用,其不同功能由NO浓度在三个数量级上变化而介导。尽管存在这种关键的浓度依赖性,但是当前的体外NO输送方法导致生物学上不相关且控制不佳的水平,并且环境空气强加了高氧条件。为了解决这些问题,我们开发了一种可在较大浓度范围内控制NO和O [下标2]传递的系统,以模拟生物学条件。在这里,我们描述了传送系统的制造,操作和校准。然后,我们描述了将NO和O [下标2]输送到细胞培养基中的应用,并比较了实验结果和传质模型的预测结果,这些模型预测了各种NO衍生的反应物种的稳态水平。我们还确定培养基的成分不会影响设备中NO或O [下标2]的稳态水平。该系统为NO生物学和化学体外模型提供了关键的NO传递控制。

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