4.4 Article

Rosmarinic acid ameliorates septic-associated mortality and lung injury in mice via GRP78/IRE1α/JNK pathway

Journal

JOURNAL OF PHARMACY AND PHARMACOLOGY
Volume 73, Issue 7, Pages 916-921

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/jpp/rgaa033

Keywords

rosmarinic acid (RA); septic-associated lung injury; oxidative stress; ER stress related apoptosis; GRP78/IRE1 alpha/JNK pathway

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The study found that rosmarinic acid has a protective effect on septic-associated mortality and lung injury by inhibiting lung cell apoptosis to alleviate inflammation.
Objectives Acute lung injury (ALI) is the major complication of sepsis, and no effective treatment is available now. Recently, rosmarinic acid (RA), a water-soluble polyphenolic phytochemical, exerts a potential role on ALI with anti-inflammation, and antioxidant properties. However, there is still no evidence on its protective effect on cell apoptosis in sepsis. Here, we investigated the protective effect of RA in septic-associated mortality and lung injury based on apoptosis. Methods Male C57BL/6 mice were administered with lipopolysaccharide (LPS) (15 mg/kg, ip) to establish ALI mice model. Preteatment of RA (20 or 40 mg/kg, ip) was performed once daily for five consecutive days. The mortality was monitored for seven days after injection of LPS. Key findings RA (40 mg/kg) significantly decreased mortality and alleviated septic-associated lung injury. Meanwhile, RA significantly reversed LPS induced decrease in serum T-aoc level and superoxide dismutase (SOD) activity, and increase in malondialdehyde (MDA) activity. Furthermore, RA pretreatment significantly inhibited lung cell apoptosis, as well as decreased p53 level in sepsis mice. Finally, the LPS induced activation of GRP78/IRE1 alpha/JNK pathway was suppressed by RA pretreatment. Conclusions These findings indicated that RA could be beneficial to septic-associated lung injury through anti-apoptosis effect.

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