2017PubMedRequires access

[Effects of p38 mitogen-activated protein kinase in rats with oleic acid-induced acute lung injury].

Bin Huang, Wang Deng, Daoxin Wang

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Abstract

OBJECTIVE: To study the effects of p38 mitogen-activated protein kinase (p38MAPK) signal transduction pathway inhibitor SB203580 on the inflammatory reaction and lung water clearance, and to explore the role of p38MAPK in acute lung injury, to provide new way for p38MAPK inhibitor -SB203580 intervene fat embolism syndrome induced lung injury. METHODS: jugular vein, followed 30 min before by OA infusion; At the 4 hours animals were sacrificed. Arterial blood gas, the wet/dry weight(W/D)of the right lower lung were examined, lung index(LI), pulmonary permeability index(PPI) and levels of tumor necrosis factor α(TNF-α) in bronchoalveolar lavage fluid(BALF) were examined. The expressions of p38MAPK and phospho-p38MAPK (p-p38MAPK) were determined by Western blot and immunohistochemical method. Pathological changes of the lung tissue were examined with light microscrope. RESULTS: <0.01). The pathological changes were observed significantly in injured lung tissue. Compared to OA-group, those indexes were improved in SB203580 pretreated group. CONCLUSIONS: p38MAPK signal transaction path mediated inflammatory response process and played an important role in acute lung injury. SB203580 could inhibit the expression of inflammatory cytokines, reduce lung edema, protect lung tissue of rats from OA-induced lung injury obviously. Therefore, inhibition of p38MAPK activity provides a new way for the clinical treatment of fat embolism syndrome induced lung injury.

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What this paper is about

OBJECTIVE: To study the effects of p38 mitogen-activated protein kinase (p38MAPK) signal transduction pathway inhibitor SB203580 on the inflammatory reaction and lung water clearance, and to explore the role of p38MAPK in acute lung injury, to provide new way for p38MAPK inhibitor -SB203580 intervene fat embolism syndrome induced lung injury. METHODS: jugular vein, followed 30 min before by OA infusion; At the 4 hours animals were sacrificed. Arterial blood gas, the wet/dry weight(W/D)of the right lower lung were examined, lung index(LI), pulmonary permeability index(PPI) and levels of tumor necrosis factor α(TNF-α) in bronchoalveolar lavage fluid(BALF) were examined. The expressions of p38MAPK and phospho-p38MAPK (p-p38MAPK) were determined by Western blot and immunohistochemical method. Pathological changes of the lung tissue were examined with light microscrope. RESULTS: <0.01). The pathological changes were observed significantly in injured lung tissue. Compared to OA-group, those indexes were improved in SB203580 pretreated group. CONCLUSIONS: p38MAPK signal transaction path mediated inflammatory response process and played an important role in acute lung injury. SB203580 could inhibit the expression of inflammatory cytokines, reduce lung edema, protect lung tissue of rats from OA-induced lung injury obviously. Therefore, inhibition of p38MAPK activity provides a new way for the clinical treatment of fat embolism syndrome induced lung injury.

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Available abstract

OBJECTIVE: To study the effects of p38 mitogen-activated protein kinase (p38MAPK) signal transduction pathway inhibitor SB203580 on the inflammatory reaction and lung water clearance, and to explore the role of p38MAPK in acute lung injury, to provide new way for p38MAPK inhibitor -SB203580 intervene fat embolism syndrome induced lung injury. METHODS: jugular vein, followed 30 min before by OA infusion; At the 4 hours animals were sacrificed. Arterial blood gas, the wet/dry weight(W/D)of the right lower lung were examined, lung index(LI), pulmonary permeability index(PPI) and levels of tumor necrosis factor α(TNF-α) in bronchoalveolar lavage fluid(BALF) were examined. The expressions of p38MAPK and phospho-p38MAPK (p-p38MAPK) were determined by Western blot and immunohistochemical method. Pathological changes of the lung tissue were examined with light microscrope. RESULTS: <0.01). The pathological changes were observed significantly in injured lung tissue. Compared to OA-group, those indexes were improved in SB203580 pretreated group. CONCLUSIONS: p38MAPK signal transaction path mediated inflammatory response process and played an important role in acute lung injury. SB203580 could inhibit the expression of inflammatory cytokines, reduce lung edema, protect lung tissue of rats from OA-induced lung injury obviously. Therefore, inhibition of p38MAPK activity provides a new way for the clinical treatment of fat embolism syndrome induced lung injury.

Key concepts: Bronchoalveolar lavage, Lung, Medicine, p38 mitogen-activated protein kinases, Internal medicine, Pathology, Endocrinology, Protein kinase A

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[Effects of p38 mitogen-activated protein kinase in rats with oleic acid-induced acute lung injury]. — Research Paper | ScholarLens