31 research outputs found

    Beta-carotene affects gene expression in lungs of male and female Bcmo1βˆ’/βˆ’ mice in opposite directions

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    Molecular mechanisms triggered by high dietary beta-carotene (BC) intake in lung are largely unknown. We performed microarray gene expression analysis on lung tissue of BC supplemented beta-carotene 15,15β€²-monooxygenase 1 knockout (Bcmo1βˆ’/βˆ’) mice, which areβ€”like humansβ€”able to accumulate BC. Our main observation was that the genes were regulated in an opposite direction in male and female Bcmo1βˆ’/βˆ’ mice by BC. The steroid biosynthetic pathway was overrepresented in BC-supplemented male Bcmo1βˆ’/βˆ’ mice. Testosterone levels were higher after BC supplementation only in Bcmo1βˆ’/βˆ’ mice, which had, unlike wild-type (Bcmo1+/+) mice, large variations. We hypothesize that BC possibly affects hormone synthesis or metabolism. Since sex hormones influence lung cancer risk, these data might contribute to an explanation for the previously found increased lung cancer risk after BC supplementation (ATBC and CARET studies). Moreover, effects of BC may depend on the presence of frequent human BCMO1 polymorphisms, since these effects were not found in wild-type mice

    Age-Related Comparisons of Evolution of the Inflammatory Response After Intracerebral Hemorrhage in Rats

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    In the hours to days after intracerebral hemorrhage (ICH), there is an inflammatory response within the brain characterized by the infiltration of peripheral neutrophils and macrophages and the activation of brain-resident microglia and astrocytes. Despite the strong correlation of aging and ICH incidence, and increasing information about cellular responses, little is known about the temporal- and age-related molecular responses of the brain after ICH. Here, we monitored a panel of 27 genes at 6Β h and 1, 3, and 7Β days after ICH was induced by injecting collagenase into the striatum of young adult and aged rats. Several molecules (CR3, TLR2, TLR4, IL-1Ξ², TNFΞ±, iNOS, IL-6) were selected to reflect the classical activation of innate immune cells (macrophages, microglia) and the potential to exacerbate inflammation and damage brain cells. Most of the others are associated with the resolution of innate inflammation, alternative pathways of macrophage/microglial activation, and the repair phase after acute injury (TGFΞ², IL-1ra, IL-1r2, IL-4, IL-13, IL-4RΞ±, IL-13RΞ±1, IL-13RΞ±2, MRC1, ARG1, CD163, CCL22). In young animals, the up-regulation of 26 in 27 genes (not IL-4) was detected within the first week. Differences in timing or levels between young and aged animals were detected for 18 of 27 genes examined (TLR2, GFAP, IL-1Ξ², IL-1ra, IL-1r2, iNOS, IL-6, TGFΞ², MMP9, MMP12, IL-13, IL-4RΞ±, IL-13RΞ±1, IL-13RΞ±2, MRC1, ARG1, CD163, CCL22), with a generally less pronounced or delayed inflammatory response in the aged animals. Importantly, within this complex response to experimental ICH, the induction of pro-inflammatory, potentially harmful mediators often coincided with resolving and beneficial molecules

    Knockout of the Bcmo1 gene results in an inflammatory response in female lung, which is suppressed by dietary beta-carotene

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    Beta-carotene 15,15β€²-monooxygenase 1 knockout (Bcmo1βˆ’/βˆ’) mice accumulate beta-carotene (BC) similarly to humans, whereas wild-type (Bcmo1+/+) mice efficiently cleave BC. Bcmo1βˆ’/βˆ’ mice are therefore suitable to investigate BC-induced alterations in gene expression in lung, assessed by microarray analysis. Bcmo1βˆ’/βˆ’ mice receiving control diet had increased expression of inflammatory genes as compared to BC-supplemented Bcmo1βˆ’/βˆ’ mice and Bcmo1+/+ mice that received either control or BC-supplemented diets. Differential gene expression in Bcmo1βˆ’/βˆ’ mice was confirmed by real-time quantitative PCR. Histochemical analysis indeed showed an increase in inflammatory cells in lungs of control Bcmo1βˆ’/βˆ’ mice. Supported by metabolite and gene-expression data, we hypothesize that the increased inflammatory response is due to an altered BC metabolism, resulting in an increased vitamin A requirement in Bcmo1βˆ’/βˆ’ mice. This suggests that effects of BC may depend on inter-individual variations in BC-metabolizing enzymes, such as the frequently occurring human polymorphisms in BCMO1

    Lipid droplets: a classic organelle with new outfits

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    Lipid droplets are depots of neutral lipids that exist virtually in any kind of cell. Recent studies have revealed that the lipid droplet is not a mere lipid blob, but a major contributor not only to lipid homeostasis but also to diverse cellular functions. Because of the unique structure as well as the functional importance in relation to obesity, steatosis, and other prevailing diseases, the lipid droplet is now reborn as a brand new organelle, attracting interests from researchers of many disciplines
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