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Curcumin's Metabolites, Tetrahydrocurcumin and Octahydrocurcumin, Possess Superior Anti-inflammatory Effects in vivo Through Suppression of TAK1-NF-?B Pathway.


ABSTRACT: Curcumin (CUR), a promising naturally occurring dietary compound, is commonly recognized as the potential anti-inflammatory agent. While the application of CUR was hampered by its low stability and poor systemic bioavailability, it has been suggested that the biological activities of CUR are intimately related to its metabolites. In the current investigation, we aimed to comparatively explore the anti-inflammatory effects of tetrahydrocurcumin (THC), octahydrocurcumin (OHC), and CUR, and to elucidate the underlying action mechanisms on experimental mice models of acute inflammation, i.e., xylene-induced ear edema, acetic acid-induced vascular permeability, and carrageenan-induced paw edema. The results showed that THC and OHC exerted significant and dose-dependent inhibitions on the formation of ear edema induced by xylene and paw edema provoked by carrageenan and inhibited the Evans blue dye leakage in peritoneal cavity elicited by acetic acid. Moreover, THC and OHC treatments were more effective than CUR in selectively inhibiting the expression of cyclooxygenase 2 (COX-2) and suppressing nuclear factor-?B (NF-?B) pathways via transforming growth factor ? activated kinase-1 (TAK1) inactivation in the carrageenan-induced mouse paw edema model.

SUBMITTER: Zhang ZB 

PROVIDER: S-EPMC6199526 | biostudies-literature | 2018

REPOSITORIES: biostudies-literature

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Curcumin's Metabolites, Tetrahydrocurcumin and Octahydrocurcumin, Possess Superior Anti-inflammatory Effects <i>in vivo</i> Through Suppression of TAK1-NF-κB Pathway.

Zhang Zhen-Biao ZB   Luo Dan-Dan DD   Xie Jian-Hui JH   Xian Yan-Fang YF   Lai Zheng-Quan ZQ   Liu Yu-Hong YH   Liu Wei-Hai WH   Chen Jian-Nan JN   Lai Xiao-Ping XP   Lin Zhi-Xiu ZX   Su Zi-Ren ZR  

Frontiers in pharmacology 20181017


Curcumin (CUR), a promising naturally occurring dietary compound, is commonly recognized as the potential anti-inflammatory agent. While the application of CUR was hampered by its low stability and poor systemic bioavailability, it has been suggested that the biological activities of CUR are intimately related to its metabolites. In the current investigation, we aimed to comparatively explore the anti-inflammatory effects of tetrahydrocurcumin (THC), octahydrocurcumin (OHC), and CUR, and to eluc  ...[more]

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