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1.
Chinese Journal of Natural Medicines (English Ed.) ; (6): 907-915, 2018.
Article Dans Anglais | WPRIM | ID: wpr-812339

Résumé

Cisplatin and other platinum-based drugs are used frequently for treatment of lung cancer. However, their clinical performance are usually limited by drug resistance or toxic effects. Carnosic acid, a polyphenolic diterpene isolated from Rosemary (Rosemarinus officinalis), has been reported to have several pharmacological and biological activities. In the present study, the combination effect of cisplatin plus carnosic acid on mouse LLC (Lewis lung cancer) xenografts and possible underlying mechanism of action were examined. LLC-bearing mice were treated with intraperitoneal injection with cisplatin, oral gavage with carnosic acid, or combination with cisplatin and carnosic acid, respectively. Combination of carnosic acid and cisplatin yielded significantly better anti-growth and pro-apoptotic effects on LLC xenografts than drugs alone. Mechanistic study showed that carnosic acid treatment boosted the function of CD8 T cells as evidenced by higher IFN-γ secretion and higher expression of FasL, perforin as well as granzyme B. In the meantime, the proportion of MDSC (myeloid-derived suppressor cells) in tumor tissues were reduced by carnosic acid treatment and the mRNA levels of iNOS2, Arg-1, and MMP9, which are the functional markers for MDSC, were reduced. In conclusion, our study proved that the functional suppression of MDSC by carnosic acid promoted the lethality of CD8 T cells, which contributed to the enhancement of anti-lung cancer effect of cisplatin.


Sujets)
Animaux , Humains , Souris , Abiétanes , Antinéoplasiques , Lymphocytes T CD8+ , Allergie et immunologie , Carcinome pulmonaire de Lewis , Traitement médicamenteux , Génétique , Allergie et immunologie , Lignée cellulaire tumorale , Cisplatine , Synergie des médicaments , Interféron gamma , Génétique , Allergie et immunologie , Tumeurs du poumon , Traitement médicamenteux , Génétique , Allergie et immunologie , Matrix metalloproteinase 9 , Génétique , Souris de lignée C57BL , Cellules myéloïdes suppressives , Allergie et immunologie , Extraits de plantes , Rosmarinus , Chimie
2.
Chinese Journal of Natural Medicines (English Ed.) ; (6): 907-915, 2018.
Article Dans Anglais | WPRIM | ID: wpr-776917

Résumé

Cisplatin and other platinum-based drugs are used frequently for treatment of lung cancer. However, their clinical performance are usually limited by drug resistance or toxic effects. Carnosic acid, a polyphenolic diterpene isolated from Rosemary (Rosemarinus officinalis), has been reported to have several pharmacological and biological activities. In the present study, the combination effect of cisplatin plus carnosic acid on mouse LLC (Lewis lung cancer) xenografts and possible underlying mechanism of action were examined. LLC-bearing mice were treated with intraperitoneal injection with cisplatin, oral gavage with carnosic acid, or combination with cisplatin and carnosic acid, respectively. Combination of carnosic acid and cisplatin yielded significantly better anti-growth and pro-apoptotic effects on LLC xenografts than drugs alone. Mechanistic study showed that carnosic acid treatment boosted the function of CD8 T cells as evidenced by higher IFN-γ secretion and higher expression of FasL, perforin as well as granzyme B. In the meantime, the proportion of MDSC (myeloid-derived suppressor cells) in tumor tissues were reduced by carnosic acid treatment and the mRNA levels of iNOS2, Arg-1, and MMP9, which are the functional markers for MDSC, were reduced. In conclusion, our study proved that the functional suppression of MDSC by carnosic acid promoted the lethality of CD8 T cells, which contributed to the enhancement of anti-lung cancer effect of cisplatin.


Sujets)
Animaux , Humains , Souris , Antinéoplasiques , Lymphocytes T CD8+ , Allergie et immunologie , Carcinome pulmonaire de Lewis , Traitement médicamenteux , Génétique , Allergie et immunologie , Lignée cellulaire tumorale , Cisplatine , Abiétanes , Synergie des médicaments , Interféron gamma , Génétique , Allergie et immunologie , Tumeurs du poumon , Traitement médicamenteux , Génétique , Allergie et immunologie , Matrix metalloproteinase 9 , Génétique , Souris de lignée C57BL , Cellules myéloïdes suppressives , Allergie et immunologie , Extraits de plantes , Rosmarinus , Chimie
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