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监测离体肺灌注过程中猪肺呼出的内源性一氧化氮。

Monitoring of endogenous nitric oxide exhaled by pig lungs during ex-vivo lung perfusion.

机构信息

Univ. Grenoble Alpes, CNRS, TIMC-IMAG, Grenoble F-38000, France.

Univ. Grenoble Alpes, CNRS, LIPhy, Grenoble F-38000, France.

出版信息

J Breath Res. 2021 Feb 11;15(2). doi: 10.1088/1752-7163/abde95.

Abstract

In the context of organ shortage for transplantation, new criteria for better organ evaluation should be investigated. Ex-vivo lung perfusion (EVLP) allows extra-corporal lung re-conditioning and evaluation, under controlled parameters of the organ reperfusion and mechanical ventilation. This work reports on the interest of exhaled gas analysis during the EVLP procedure. After a 1 h cold ischemia, the endogenous gas production by an isolated lung of nitric oxide and carbon monoxide is simultaneously monitored in real time. The exhaled gas is analysed with two very sensitive and selective laser spectrometers developed upon the technique of optical-feedback cavity-enhanced absorption spectroscopy. Exhaled gas concentration measured for an ex-vivo lung is compared to the corresponding production by the whole living pig, measured before euthanasia. On-line measurements of the fraction of nitric oxide in exhaled gas (FNO) in isolated lungs are reported here for the first time, allowing to resolve the respiratory cycles. In this study, performed on 9 animals, FNO by isolated lungs range from 3.3 to 10.6 ppb with a median value of 4.4 ppb. Pairing ex-vivo lung and pig measurements allows to demonstrate a systematic increase of FNO in the ex-vivo lung as compared to the living animal, by a factor of 3 ± 1.2. Measurements of the fraction of carbon monoxide in exhaled gas (FCO) confirm levels recorded during previous studies driven to evaluate FCO as a potential marker of ischemia reperfusion injuries. FCO production by ex-vivo lungs ranges from 0.31 to 2.3 ppm with a median value of 0.8 ppm. As expected, these FCO values are lower than the production by the corresponding whole pig body, by a factor of 6.9 ± 2.7.

摘要

在器官短缺进行移植的情况下,应该研究更好的器官评估新标准。离体肺灌注(EVLP)允许在器官再灌注和机械通气的受控参数下进行体外肺再调理和评估。这项工作报告了在 EVLP 过程中呼气分析的兴趣。在 1 小时冷缺血后,同时实时监测一氧化氮和一氧化碳的内源性气体产生。使用两种非常敏感和选择性的激光光谱仪分析呼出气体,该光谱仪是根据光反馈腔增强吸收光谱技术开发的。离体肺的测量的呼出气体浓度与相应的整个活猪的生产进行比较,在安乐死前进行测量。这里首次报道了离体肺中呼出气体中一氧化氮分数(FNO)的在线测量,允许解决呼吸周期。在这项在 9 只动物上进行的研究中,离体肺的 FNO 范围从 3.3 到 10.6 ppb,中位数为 4.4 ppb。离体肺和猪的配对测量表明,与活动物相比,离体肺中的 FNO 系统地增加了 3 ± 1.2 倍。呼出气体中一氧化碳分数(FCO)的测量证实了之前进行的评估 FCO 作为缺血再灌注损伤潜在标志物的研究中记录的水平。离体肺的 FCO 产生范围从 0.31 到 2.3 ppm,中位数为 0.8 ppm。正如预期的那样,这些 FCO 值低于相应的整个猪体的产生,是其的 6.9 ± 2.7 倍。

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