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在大鼠中建立使用基于盐水的氧微/纳米气泡分散体的全液体通气系统。

Establishment of a total liquid ventilation system using saline-based oxygen micro/nano-bubble dispersions in rats.

作者信息

Kakiuchi Kenta, Matsuda Kenichi, Harii Norikazu, Sou Keitaro, Aoki Junko, Takeoka Shinji

机构信息

Department of Life Science and Medical Bioscience, Graduate School of Advanced Science and Engineering, Waseda University (TWIns), 2-2 Wakamatsu-Cho, Shinjuku-Ku, Tokyo, 162-8480, Japan.

出版信息

J Artif Organs. 2015 Sep;18(3):220-7. doi: 10.1007/s10047-015-0835-z. Epub 2015 Apr 9.

Abstract

Micro/nano-bubbles are practical nanomaterials designed to increase the gas content in liquids. We attempted to use oxygen micro/nano-bubble dispersions as an oxygen-rich liquid as a means for total liquid ventilation. To determine the oxygen content in the bubble dispersion, a new method based on a spectrophotometric change between oxy- and deoxy-hemoglobin was established. The oxygen micro/nano-bubble dispersion was supplied to an experimental total ventilation liquid in anesthetic rats. Though the amount of dissolving oxygen was as low as 6 mg/L in physiological saline, the oxygen content in the oxygen micro/nano-bubble dispersion was increased to 45 mg/L. The positive correlation between the oxygen content and the life-saving time under liquid ventilation clearly indicates that the life-saving time is prolonged by increasing the oxygen content in the oxygen micro/nano-bubble dispersion. This is the first report indicating that the oxygen micro/nano-bubbles containing a sufficient amount of oxygen are useful in producing oxygen-rich liquid for the process of liquid ventilation.

摘要

微/纳米气泡是旨在增加液体中气体含量而设计的实用纳米材料。我们尝试将氧微/纳米气泡分散体作为富氧液体用于全液体通气。为了测定气泡分散体中的氧含量,建立了一种基于氧合血红蛋白和脱氧血红蛋白之间分光光度变化的新方法。将氧微/纳米气泡分散体供应给麻醉大鼠的实验性全通气液体。尽管生理盐水中的溶解氧量低至6mg/L,但氧微/纳米气泡分散体中的氧含量增加到了45mg/L。液体通气下氧含量与救生时间之间的正相关清楚地表明,通过增加氧微/纳米气泡分散体中的氧含量可延长救生时间。这是首次报道表明含有足够量氧气的氧微/纳米气泡可用于为液体通气过程制备富氧液体。

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