首页> 外文期刊>European journal of cardio-thoracic surgery: Official journal of the European Association for Cardio-thoracic Surgery >Evaluation of isolated lung perfusion as neoadjuvant therapy of lung metastases using a novel in vivo pig model: I. Influence of perfusion pressure and hyperthermia on functional and morphological lung integrity.
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Evaluation of isolated lung perfusion as neoadjuvant therapy of lung metastases using a novel in vivo pig model: I. Influence of perfusion pressure and hyperthermia on functional and morphological lung integrity.

机译:使用新型的体内猪模型评估孤立的肺灌注作为肺转移的新辅助疗法:I.灌注压力和体温过高对功能和形态学肺完整性的影响。

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Objective: Despite favorable experimental results and an encouraging early experience in humans, isolated lung perfusion (ILP) for treatment of metastases is still not established clinically. The complexity of the procedure as well as poor knowledge regarding the technical necessities of lung perfusion represents major limitations. Methods: In this novel in vivo pig model, ILP of the left lung was performed for 40 min followed by the exclusion of the right lung. Survival and all monitored parameters of hemodynamics, ventilation and gas exchange were exclusively dependent on the previously perfused left lung for the 6-h reperfusion period. Furthermore, histological examination was assessed. In the first protocol influence of different perfusion pressures (PP) on the native lung tissue was investigated (LPG, [Formula: see text] PP<25 mmHg; HPG, [Formula: see text] PP>/=25 mmHg). In the second protocol the influence of normothermic (T-38; [Formula: see text] [Formula: see text] degrees C), mild (T-40; [Formula: see text] [Formula: see text] degrees C) and moderate hyperthermic (T-41.5; [Formula: see text] [Formula: see text] degrees C) perfusion temperature was evaluated. Results were compared to those of a sham-operated control group (SG, [Formula: see text] ). Results: ILP led to a slight deterioration of all functional as well as histological parameters in all groups. HPG resulted in impairment regarding all monitored parameters compared to LPG and SG. Significant differences between HPG and SG were found for cardiac index [Formula: see text] and pulmonary vascular resistance index (PVRI, [Formula: see text] ). Histological scoring revealed significantly higher grade of lung injury for HPG animals [Formula: see text] Functional parameters did not differ between normothermic and hyperthermic perfusion groups. However, animals of the T-38 group demonstrated significantly increased PVRI [Formula: see text] Histological examination revealed significantly higher scores of acute lung injury for all perfusion groups compared to the Sham group [Formula: see text] Conclusions: The results of this novel large animal model represent the first available demonstration that increased PP in a setting of ILP will result in deleterious effects on lung function and morphology. However, mild to moderate hyperthermia is well tolerated by the native lung tissue.
机译:目的:尽管取得了令人鼓舞的实验结果和令人鼓舞的人类早期经验,但临床上仍未建立单独的肺灌注(ILP)治疗转移灶。程序的复杂性以及对肺灌注技术必要性的了解不足,代表了主要的局限性。方法:在这种新颖的体内猪模型中,对左肺进行ILP 40分钟,然后排除右肺。血流动力学,通气和气体交换的存活率和所有监测参数完全取决于先前灌注的左肺在6小时的再灌注期间。此外,评估了组织学检查。在第一个协议中,研究了不同灌注压力(PP)对天然肺组织的影响(LPG,[公式:参见文本] PP <25 mmHg; HPG,[公式:参见文本] PP> / = 25 mmHg)。在第二个协议中,常温(T-38; [公式:参见文本] [公式:参见文本]摄氏度)的影响,轻微(T-40; [公式:参见文本] [公式:参见文本]摄氏度)评估中等和高温(T-41.5; [公式:参见文本] [公式:参见文本]摄氏度)的灌注温度。将结果与假手术对照组(SG,[公式:见正文])进行比较。结果:ILP导致所有组的所有功能和组织学参数均略有下降。与LPG和SG相比,HPG导致所有监控参数的损害。发现HPG和SG在心脏指数[公式:参见文本]和肺血管阻力指数(PVRI,[公式:参见文本])之间存在显着差异。组织学评分显示,HPG动物的肺损伤等级明显更高[公式:参见文本]常温和高热灌注组的功能参数没有差异。然而,T-38组的动物表现出PVRI显着增加[公式:参见文本]组织学检查显示,与假手术组相比,所有灌注组的急性肺损伤评分均显着更高[公式:参见文本]结论:结论新颖的大型动物模型代表了第一个可用的证明,即ILP设置中PP的增加将对肺功能和形态产生有害影响。但是,天然肺组织对轻度至中度的高温有很好的耐受性。

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