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1.
Article in English | MEDLINE | ID: mdl-31469027

ABSTRACT

Phytic acid, a constituent of various plants, has been related to health benefits. Phytic acid has been shown to inhibit purine nucleotide metabolism in vitro and suppress elevation of plasma uric acid levels after purine administration in animal models. This study investigated the effect of phytic acid on postprandial serum uric acid (SUA) in humans. This randomized, double-blind, crossover design study included 48 healthy subjects with normal fasting SUA. Subjects consumed a control drink and a phytic acid drink with purine-rich food, and serum and urine uric acid levels were measured for 360 min after purine loading. Phytic acid lowered the incremental area under the curve (0-360 min) and incremental maximum concentration of SUA after purine loading (p < 0.05); tended to lower cumulative urinary uric acid excretion (0-360 min) after purine loading (p < 0.10); and suppressed postprandial SUA in this clinical study. Altogether, our findings suggest that phytic acid may play a beneficial role in controlling postprandial SUA.


Subject(s)
Phytic Acid/blood , Uric Acid/blood , Adult , Cross-Over Studies , Double-Blind Method , Female , Healthy Volunteers , Humans , Male , Middle Aged , Phytic Acid/administration & dosage , Purines/administration & dosage , Purines/blood , Young Adult
2.
Mol Psychiatry ; 21(11): 1504-1510, 2016 11.
Article in English | MEDLINE | ID: mdl-26782057

ABSTRACT

Although evidence for mitochondrial dysfunction in the pathogenesis of bipolar disorder (BD) has been reported, the precise biological basis remains unknown, hampering the search for novel biomarkers. In this study, we performed metabolomics of cerebrospinal fluid (CSF) from male BD patients (n=54) and age-matched male healthy controls (n=40). Subsequently, post-mortem brain analyses, genetic analyses, metabolomics of CSF samples from rats treated with lithium or valproic acid were also performed. After multivariate logistic regression, isocitric acid (isocitrate) levels were significantly higher in the CSF from BD patients than healthy controls. Furthermore, gene expression of two subtypes (IDH3A and IDH3B) of isocitrate dehydrogenase (IDH) in the dorsolateral prefrontal cortex from BD patients was significantly lower than that of controls, although the expression of other genes including, aconitase (ACO1, ACO2), IDH1, IDH2 and IDH3G, were not altered. Moreover, protein expression of IDH3A in the cerebellum from BD patients was higher than that of controls. Genetic analyses showed that IDH genes (IDH1, IDH2, IDH3A, IDH3B) and ACO genes (ACO1, ACO2) were not associated with BD. Chronic (4 weeks) treatment with lithium or valproic acid in rats did not alter CSF levels of isocitrate, and mRNA levels of Idh3a, Idh3b, Aco1 and Aco2 genes in the rat brain. These findings suggest that abnormality in the metabolism of isocitrate by IDH3A in the mitochondria plays a key role in the pathogenesis of BD, supporting the mitochondrial dysfunction hypothesis of BD. Therefore, IDH3 in the citric acid cycle could potentially be a novel therapeutic target for BD.


Subject(s)
Bipolar Disorder/metabolism , Isocitrate Dehydrogenase/metabolism , Adult , Animals , Bipolar Disorder/cerebrospinal fluid , Brain/metabolism , Gene Expression/genetics , Humans , Isocitrate Dehydrogenase/cerebrospinal fluid , Isocitrates/metabolism , Male , Metabolomics/methods , Mitochondria/metabolism , Rats
3.
Oncogene ; 26(3): 449-55, 2007 Jan 18.
Article in English | MEDLINE | ID: mdl-16832346

ABSTRACT

Normal human diploid fibroblasts (HDFs) are refractory to oncogene-mediated transformations in vitro, compared with rodent fibroblasts. As successful oncogene-mediated transformations of normal HDFs have been reported using the human telomerase catalytic subunit, it has been considered that telomerase activity contributes to the species-specific transformability. However, these transformed HDFs are much less malignant compared with those of rodent cells, suggesting the existence of undefined mechanisms that render HDFs resistant to malignant transformation. Here, cDNA microarray analysis identified caveolin-1 as one of the possible cellular factors involved in such mechanisms. The mitogen-activated protein kinases (MAPK) pathway downregulates Caveolin-1 in rodent fibroblasts, transformed by coexpression of the SV40 early region and activated H-Ras. In contrast, the coexpression of these two oncogenes in HDFs failed to reduce the expression level of Caveolin-1. These results strongly suggest the presence of critical differences in events following the phosphorylation of ERK during the activation process of the MAPK signaling pathway between human and rodent cells, as the ERK protein was similarly phosphorylated in both systems. Furthermore, the small interfering RNA-mediated suppression of Caveolin-1 facilitated the oncogene-mediated transformation of normal HDFs, clearly indicating that the differences in the transformability between human and rodent cells are due, at least in part, to the mechanism responsible for the resistance to Ras-induced Caveolin-1 downregulation in HDFs.


Subject(s)
Caveolin 1/metabolism , Cell Transformation, Neoplastic , Fibroblasts/metabolism , Mitogen-Activated Protein Kinases/metabolism , ras Proteins/metabolism , Animals , Caveolin 1/antagonists & inhibitors , Caveolin 1/genetics , Down-Regulation , Fibroblasts/cytology , Gene Expression Regulation , Humans , Luciferases/metabolism , Lung/metabolism , Mice , NIH 3T3 Cells , Phosphorylation , RNA, Small Interfering/pharmacology , Rats , Signal Transduction , Transfection , ras Proteins/genetics
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