Literature DB >> 11316649

Evaluation of exogenous surfactant in HCL-induced lung injury.

A M Brackenbury1, P S Puligandla, L A McCaig, V Nikore, L J Yao, R A Veldhuizen, J F Lewis.   

Abstract

The efficacy of exogenous surfactant administration is influenced by numerous factors, which has resulted in variable outcomes of clinical trials evaluating this treatment for the acute respiratory distress syndrome (ARDS). We investigated several of these factors in an animal model of acid aspiration including different surfactant preparations, and different delivery methods. In addition, high-frequency oscillation (HFO), a mode of mechanical ventilation known to recruit severely damaged lungs, was utilized. Lung injury was induced in adult rabbits via intratracheal instillation of 0.2 N HCl followed by conventional mechanical ventilation (CMV) until Pa(O2)/FI(O2) values ranged from 220 to 270 mm Hg. Subsequently, animals were given one of three surfactants administered via three different methods and physiological responses were assessed over a 1-h period. Regardless of the surfactant treatment strategy utilized, oxygenation responses were not sustained. In contrast, HFO resulted in a superior response compared with all surfactant treatment strategies involving CMV. The deterioration in physiological parameters after surfactant treatment was likely due to overwhelming protein inhibition of the surfactant. In conclusion, various surfactant treatment strategies were not effective in this model of lung injury, although the lungs of these animals were recruitable with HFO, as reflected by the acute and sustained oxygenation improvements.

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Year:  2001        PMID: 11316649     DOI: 10.1164/ajrccm.163.5.2004049

Source DB:  PubMed          Journal:  Am J Respir Crit Care Med        ISSN: 1073-449X            Impact factor:   21.405


  10 in total

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3.  Non-invasive neurally adjusted ventilatory assist in rabbits with acute lung injury.

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Review 4.  Acute respiratory distress syndrome and lung injury: Pathogenetic mechanism and therapeutic implication.

Authors:  Chain-Fa Su; Shang Jyh Kao; Hsing I Chen
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5.  Protective effect of surfactant inhalation against warm ischemic injury in an isolated rat lung ventilation model.

Authors:  Akihiro Ohsumi; Fengshi Chen; Jin Sakamoto; Daisuke Nakajima; Masashi Kobayashi; Toru Bando; Hiroshi Date
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6.  Acute lung injury and acute respiratory distress syndrome: experimental and clinical investigations.

Authors:  Hsing I Chen
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7.  The effects of exogenous surfactant administration on ventilation-induced inflammation in mouse models of lung injury.

Authors:  Valeria Puntorieri; Josh Qua Hiansen; Lynda A McCaig; Li-Juan Yao; Ruud A W Veldhuizen; James F Lewis
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Authors:  Cassiano Felippe Gonçalves-de-Albuquerque; Adriana Ribeiro Silva; Patrícia Burth; Isabel Matos Medeiros de Moraes; Flora Magno de Jesus Oliveira; Mauricio Younes-Ibrahim; Maria da Conceição Batista dos Santos; Heloísa D'Ávila; Patrícia Torres Bozza; Hugo Caire de Castro Faria Neto; Mauro Velho de Castro Faria
Journal:  Mediators Inflamm       Date:  2012-11-13       Impact factor: 4.711

9.  Synthetic surfactant containing SP-B and SP-C mimics is superior to single-peptide formulations in rabbits with chemical acute lung injury.

Authors:  Frans J Walther; José M Hernández-Juviel; Larry M Gordon; Alan J Waring
Journal:  PeerJ       Date:  2014-05-22       Impact factor: 2.984

10.  Hypothermic total liquid ventilation after experimental aspiration-associated acute respiratory distress syndrome.

Authors:  Jérôme Rambaud; Fanny Lidouren; Michaël Sage; Matthias Kohlhauer; Mathieu Nadeau; Étienne Fortin-Pellerin; Philippe Micheau; Luca Zilberstein; Nicolas Mongardon; Jean-Damien Ricard; Megumi Terada; Patrick Bruneval; Alain Berdeaux; Bijan Ghaleh; Hervé Walti; Renaud Tissier
Journal:  Ann Intensive Care       Date:  2018-05-02       Impact factor: 6.925

  10 in total

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