RRC ID 19637
Author Katsuura S, Imamura T, Bando N, Yamanishi R.
Title beta-Carotene and beta-cryptoxanthin but not lutein evoke redox and immune changes in RAW264 murine macrophages.
Journal Mol Nutr Food Res
Abstract The mechanism of immunological benefits induced by carotenoids has not been fully elucidated. Here, we investigated some of the immunity-related properties of beta-carotene and two other carotenoids, beta-cryptoxanthin, and lutein, on the murine macrophages cell line RAW264. beta-Carotene added to the culture medium accumulated in the cells in a time- and dose-dependent manner. The accumulation was positively correlated with cellular lipid peroxidation, demonstrating the pro-oxidative activity of beta-carotene, and also with the synthesis of glutathione, an intracellular antioxidant. Conversely, accumulation of beta-carotene was negatively correlated with the transcription of immune-active molecules, such as IL-1beta, IL-6, and IL-12 p40, in cells stimulated by LPS and INF-gamma. The transcription of the pro-inflammatory cytokines IL-1beta and IL-6 was more sensitive to the accumulation of beta-carotene than was IL-12 p40. The accumulation of beta-cryptoxanthin in cells resulted in effects similar to those of beta-carotene. However, lutein accumulated minimally and did not significantly affect the cells. These results demonstrate that beta-carotene, and beta-cryptoxanthin as well, can accumulate in RAW264 cells and induce changes in intracellular redox status, which in turn regulate the immune function of macrophages.
Volume 53(11)
Pages 1396-405
Published 2009-11-1
DOI 10.1002/mnfr.200800566
PMID 19760679
MeSH Animals Cells, Cultured Cryptoxanthins Glutathione / analysis Glutathione Disulfide / analysis Lipid Peroxidation / drug effects Lutein / pharmacology* Macrophages / drug effects* Macrophages / immunology Macrophages / metabolism Mice Oxidation-Reduction Xanthophylls / metabolism Xanthophylls / pharmacology* beta Carotene / metabolism beta Carotene / pharmacology*
IF 5.309
Times Cited 39
WOS Category FOOD SCIENCE & TECHNOLOGY
Resource
Human and Animal Cells RAW 264(RCB0535)