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Open lung approach associated with high-frequency oscillatory or low tidal volume mechanical ventilation improves respiratory function and minimizes lung injury in healthy and injured rats

机译:开放性肺入路与高频振荡或低潮气量机械通气相关,可以改善健康和受伤大鼠的呼吸功能,并最大程度地减少肺部损伤

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摘要

INTRODUCTION:\udTo test the hypothesis that open lung (OL) ventilatory strategies using high-frequency oscillatory ventilation (HFOV) or controlled mechanical ventilation (CMV) compared to CMV with lower positive end-expiratory pressure (PEEP) improve respiratory function while minimizing lung injury as well as systemic inflammation, a prospective randomized study was performed at a university animal laboratory using three different lung conditions.\udMETHODS:\udSeventy-eight adult male Wistar rats were randomly assigned to three groups: (1) uninjured (UI), (2) saline washout (SW), and (3) intraperitoneal/intravenous Escherichia coli lipopolysaccharide (LPS)-induced lung injury. Within each group, animals were further randomized to (1) OL with HFOV, (2) OL with CMV with "best" PEEP set according to the minimal static elastance of the respiratory system (BP-CMV), and (3) CMV with low PEEP (LP-CMV). They were then ventilated for 6 hours. HFOV was set with mean airway pressure (PmeanHFOV) at 2 cm H2O above the mean airway pressure recorded at BP-CMV (PmeanBP-CMV) following a recruitment manoeuvre. Six animals served as unventilated controls (C). Gas-exchange, respiratory system mechanics, lung histology, plasma cytokines, as well as cytokines and types I and III procollagen (PCI and PCIII) mRNA expression in lung tissue were measured.\udRESULTS:\udWe found that (1) in both SW and LPS, HFOV and BP-CMV improved gas exchange and mechanics with lower lung injury compared to LP-CMV, (2) in SW; HFOV yielded better oxygenation than BP-CMV; (3) in SW, interleukin (IL)-6 mRNA expression was lower during BP-CMV and HFOV compared to LP-CMV, while in LPS inflammatory response was independent of the ventilatory mode; and (4) PCIII mRNA expression decreased in all groups and ventilatory modes, with the decrease being highest in LPS.\udCONCLUSIONS:\udOpen lung ventilatory strategies associated with HFOV or BP-CMV improved respiratory function and minimized lung injury compared to LP-CMV. Therefore, HFOV with PmeanHFOV set 2 cm H2O above the PmeanBP-CMV following a recruitment manoeuvre is as beneficial as BP-CMV.
机译:简介:\ ud为了检验以下假设:与使用较低的呼气末正压通气(PEEP)的CMV相比,使用高频振荡通气(HFOV)或受控机械通气(CMV)的开肺(OL)通气策略可改善呼吸功能,同时将肺最小化损伤以及全身性炎症,在大学动物实验室使用三种不同的肺部条件进行了一项前瞻性随机研究。\ udMETHODS:\ ud七十八只成年雄性Wistar大鼠随机分为三组:(1)未受伤(UI), (2)盐水冲洗(SW)和(3)腹膜内/静脉内大肠杆菌脂多糖(LPS)诱导的肺损伤。在每组中,将动物进一步随机分为(1)HFOV OL,(2)根据呼吸系统的最小静态弹性(BP-CMV)设置“最佳” PEEP的CMV OL和(3)CMOV低PEEP(LP-CMV)。然后将它们通风6小时。募集操作后,HFOV的平均气道压力(PmeanHFOV)高于BP-CMV记录的平均气道压力(PmeanBP-CMV)2 cm H2O。六只动物作为不通风的对照(C)。测量了肺组织中的气体交换,呼吸系统力学,肺组织学,血浆细胞因子以及细胞因子和I型和III型前胶原(PCI和PCIII)mRNA的表达。\ udRESULTS:\ ud我们发现(1)在两个SW中与LP-CMV相比,LPS,HFOV和BP-CMV与LP-CMV相比,改善了气体交换和力学,降低了肺部损伤(2); HFOV的氧合效果优于BP-CMV。 (3)在SW中,与LP-CMV相比,在BP-CMV和HFOV期间白介素(IL)-6 mRNA表达较低,而在LPS中,炎症反应与通气模式无关。 (4)PCIII mRNA表达在所有组和通气模式下均下降,其中LPS的下降最高。\ ud结论:\ ud与LP-CMV相比,开放性通气策略与HFOV或BP-CMV相关联改善了呼吸功能并最小化了肺损伤。因此,在招募演习之后,将PmeanHFOV设置在PmeanBP-CMV上方2 cm H2O的HFOV与BP-CMV一样有益。

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