Molecular Medicine Reports · 2014 · 68 citations · 29 references
Inflammatory Lung DiseaseLung InflammationNitric OxideImmune RegulationImmunologyInnate ImmunityMajor MetabolitesLps‑stimulated Raw 264.7Oxidative StressInflammationPotential TargetBiochemistryInflammatory ResponseChronic InflammationImmune FunctionPharmacologyInflammatory DiseaseRaw 264.7CytokineAnti-inflammatoryInflammation BiologyMedicine
The aim of the present study was to investigate and compare the anti‑inflammatory activities of curcumin and its three metabolites, tetrahydrocurcumin, hexahydrocurcumin and octahydrocurcumin in lipopolysaccharide (LPS)‑stimulated RAW 264.7 macrophage cells. The results demonstrated that overproduction of nitric oxide (NO) was potently inhibited following treatment with curcumin and its three metabolites. In addition, curcumin and tetrahydrocurcumin significantly inhibited the release of prominent cytokines, including tumor necrosis factor‑α (TNF‑α) and interleukin‑6 (IL‑6); however, hexahydrocurcumin and octahydrocurcumin did not significantly alter cytokine release. Furthermore, the present study investigated the effect of curcumin and its metabolites on the expression of inducible NO synthase (iNOS), cyclooxygenase‑2 (COX‑2) and activated‑nuclear factor kappa B (NF‑κB); the results showed that curcumin and its three metabolites significantly inhibited LPS‑mediated upregulation of iNOS and COX‑2 as well as NF‑κB activation. However, curcumin exerted a more potent effect on LPS‑stimulated RAW 264.7 cells compared to that of its three metabolites, of which tetrahydrocurcuim was found to be the most pharmacologically active. In conclusion, the results of the present study demonstrated that curcumin and its major metabolites inhibited the LPS‑induced inflammatory response via the mechanism of inhibiting NF‑κB translocation to the nucleus.
29
Dose escalation of a curcuminoid formulation
Christopher D. Lao, Mack T. Ruffin, Daniel P. Normolle et al. · BMC Complementary and Alternative Medicine · 2006 · 1.4K citations · Full text
Min‐Hsiung Pan, Shoei‐Yn Lin‐Shiau, Jen‐Kun Lin · Biochemical Pharmacology · 2000 · 356 citations