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BMC Pulmonary Medicine 2008-Jul

Hypertonic saline reduces inflammation and enhances the resolution of oleic acid induced acute lung injury.

Vetëm përdoruesit e regjistruar mund të përkthejnë artikuj
Identifikohuni Regjistrohu
Lidhja ruhet në kujtesën e fragmenteve
Muiris T Kennedy
Brendan D Higgins
Joseph F Costello
William A Curtin
John G Laffey

Fjalë kyçe

Abstrakt

BACKGROUND

Hypertonic saline (HTS) reduces the severity of lung injury in ischemia-reperfusion, endotoxin-induced and ventilation-induced lung injury. However, the potential for HTS to modulate the resolution of lung injury is not known. We investigated the potential for hypertonic saline to modulate the evolution and resolution of oleic acid induced lung injury.

METHODS

Adult male Sprague Dawley rats were used in all experiments. Series 1 examined the potential for HTS to reduce the severity of evolving oleic acid (OA) induced acute lung injury. Following intravenous OA administration, animals were randomized to receive isotonic (Control, n = 12) or hypertonic saline (HTS, n = 12), and the extent of lung injury assessed after 6 hours. Series 2 examined the potential for HTS to enhance the resolution of oleic acid (OA) induced acute lung injury. Following intravenous OA administration, animals were randomized to receive isotonic (Control, n = 6) or hypertonic saline (HTS, n = 6), and the extent of lung injury assessed after 6 hours.

RESULTS

In Series I, HTS significantly reduced bronchoalveolar lavage (BAL) neutrophil count compared to Control [61.5 +/- 9.08 versus 102.6 +/- 11.89 x 10(3) cells.ml-1]. However, there were no between group differences with regard to: A-a O2 gradient [11.9 +/- 0.5 vs. 12.0 +/- 0.5 KPa]; arterial PO2; static lung compliance, or histologic injury. In contrast, in Series 2, hypertonic saline significantly reduced histologic injury and reduced BAL neutrophil count [24.5 +/- 5.9 versus 46.8 +/- 4.4 x 10(3) cells.ml-1], and interleukin-6 levels [681.9 +/- 190.4 versus 1365.7 +/- 246.8 pg.ml-1].

CONCLUSIONS

These findings demonstrate, for the first time, the potential for HTS to reduce pulmonary inflammation and enhance the resolution of oleic acid induced lung injury.

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