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C Kubo

Publications and source records attributed to C Kubo.

At least 19 recordsLinked to original sources

Dehydroepiandrosterone attenuates the spontaneous elevation of serum IgE level in NC/Nga mice.

Dehydroepiandrosterone (DHEA) and its sulfate derivatives are known to affect host immune function; however if such hormones influence the development of atopic dermatitis has not yet been clarified. In this study, we examined the effects of DHEA on the allergic process using NC/Nga mouse, a model animal of human atopic dermatitis. The administration of DHEA profoundly suppressed the spontaneous elevation of both serum IgE and interleukin-6 levels in NC/Nga mice during the observation period. These results indicate that DHEA promotes a shift in Thl/Th2 balance toward Th1-dominant immunity, and thus may be one of the effective alternatives in treating atopic dermatitis.

Animals↗

Central and peripheral catecholamines regulate the exercise-induced elevation of plasma interleukin 6 in rats.

Several recent reports indicate that exercise elevates the plasma interleukin 6 levels; however, the precise regulation of such an elevation still remains to be clarified. In this study, in order to clarify the requirements of central and peripheral catecholaminergic system for this exercise-induced interleukin 6 elevation, rats were either intraperitoneally or intracerebroventricularly injected with 6-hydroxydopamine which depletes the catecholamine in the central or peripheral tissues. As a result, our exercise protocol elevated the plasma interleukin 6, ACTH, and corticosterone levels in response to exercise. All such exercise-induced increases in the interleukin 6, ACTH, and corticosterone levels were significantly inhibited by pretreatment with an intracerebroventricular injection of 6-hydroxydopamine. In the intraperitoneal 6-hydroxydopamine-treated animals, the exercise-induced interleukin 6 elevation was significantly suppressed compared with the vehicle-treated animals, although no significant difference was found in either the ACTH level or the corticosterone level between both groups of animals. These results thus suggest that central and peripheral catecholamines are involved in the regulation of the exercise-induced interleukin 6 elevation.

Adrenergic Agents↗

Restraint stress elevates the plasma interleukin-6 levels in germ-free mice.

Several recent reports demonstrated that restraint stress elevates plasma IL-6 levels; however, the precise mechanism whereby stress stimuli trigger the production of IL-6 remains to be clarified. In this study, in order to elucidate whether or not the intestinal microflora contribute to the stress-induced IL-6 elevation, the plasma IL-6 response of germ-free (GF) mice, which are indeed devoid of indigenous microflora, was compared to that of specific pathogen-free (SPF) mice. The plasma IL-6 level increased after 1 h of restraint stress and thereafter gradually decreased in GF mice as well as in SPF mice. In addition, such a stress-induced IL-6 elevation was also found in the mice reconstituted with SPF feces. The expression levels of IL-6 mRNA in the liver increased after 1 h of stress in both GF and SPF mice based on the findings of a semiquantitative RT-PCR method, although no such increase was observed in the spleen and kidney of both groups of mice. These results thus indicate that restraint stress is capable of elevating the plasma IL-6 levels independently of the intestinal microflora and the liver is one of the main sources responsible for the increased plasma IL-6 during stress.

Adrenocorticotropic Hormone↗

Hypothalamically induced emotional behavior and immunological changes in the cat.

Numerous animal studies on the correlation between stress and immunity have been performed but few such studies have been made concerning the relationship between various kinds of stress-related emotional behavior and immunological changes. Electrical stimulation of the hypothalamus in cats elicits various emotional behaviors such as restlessness, defensive attack, defensive retreat and quiet biting attack. We examined changes in the lymphocyte proliferative responses and plasma cortisol level which accompanied such emotional behavior. A significant increase in plasma cortisol was observed in the restlessness, defensive attack and defensive retreat groups, but not in the quiet biting attack or non-response (control) groups. A significant increase in the lymphocyte proliferative responses to phytohemagglutinin (PHA) was observed in the restlessness and defensive attack groups but not in the defensive retreat, quiet biting attack or non-response groups. These results suggest that various kinds of emotional behavior appear to be differentially correlated with the lymphocyte proliferative responses, while also being differentially correlated with the plasma cortisol concentration. Because the changes in lymphocyte responses and plasma cortisol did not always completely correlate with one another, the changes in the lymphocyte responses are not considered to be influenced by plasma cortisol alone.

Animals↗

Antibiotic use during infancy promotes a shift in the T(H)1/T(H)2 balance toward T(H)2-dominant immunity in mice.

BACKGROUND: Recent epidemiologic studies indicate that antibiotic use in infancy may be associated with an increased risk of development of atopy; however, its precise mechanism remains to be elucidated. OBJECTIVE: The purpose of this study is to clarify whether one such antibiotic, kanamycin, affects the T(H)1/T(H)2 balance. METHODS: BALB/c mice at 3 and 52 weeks of age were orally administered 600 mg/d kanamycin sulfate for 7 consecutive days. Blood samples were collected on weeks 0, 10, 18, and 26 after the cessation of kanamycin treatment, and the effect of the kanamycin treatment on the T(H)1/T(H)2 balance was evaluated on the basis of both the in vivo antibody levels and the in vitro splenocyte cytokine secretion pattern. RESULTS: The administration of kanamycin increased the serum levels of total IgG1 and IgE while decreasing the serum IgG2a levels. Moreover, when spleen cells were stimulated with immobilized anti-CD3 antibody in vitro, such kanamycin treatment enhanced the in vitro IL-4 secretion while reducing the in vitro IFN-gamma secretion. The basal IL-12 p70 secretion levels of splenic dendritic cells in the kanamycin-treated mice were lower than those in the control mice, although no significant difference was seen in IL-12 p40 levels between either group of mice. CONCLUSION: These results suggested that antibiotic use during infancy may indeed quantitatively disturb, qualitatively disturb, or both the intestinal microflora and thereby prevent postnatal T(H)1 cell maturation, thus resulting in a T(H)2-polarized immune deviation.

Animals↗

5-HT2A promoter polymorphism is not associated with anorexia nervosa in Japanese patients.

Genetic factors have been implicated in playing a significant role in susceptibility to anorexia nervosa (AN). Among many candidate genes for AN, an association with the A allele of the -1438G/A polymorphism in the promoter region of the 5-HT2A receptor has been reported. However, these findings are controversial and all patients studied to date have been Caucasian. This study was designed to determine whether this association is reproducible in Japanese subjects. This case-control study of a cohort of 75 female Japanese AN sufferers and 127 normal female control subjects revealed no significant association between the 5-HT2A promoter polymorphism and AN. Thus, at least for Japanese subjects, the A-allele of the -1438G/A polymorphism in the promoter region of the 5-HT2A receptor gene does not contribute to a predisposition to AN.

Alleles↗

Analysis of tumor necrosis factor-alpha gene promoter polymorphisms in anorexia nervosa.

Elevated plasma tumor necrosis factor-alpha (TNFalpha) levels and enhanced spontaneous TNFalpha release from peripheral blood mononuclear cells in patients with anorexia nervosa (AN) have been reported. TNFalpha activates the hypothalamic-pituitary-adrenal axis and reduces food intake, which is characteristic of eating disorders. Recently, three novel polymorphisms in the 5'-flanking region of the TNFalpha gene were reported at positions -1031 (T --> C substitution), -863 (C --> A) and -857 (C --> T). Differences in these alleles are reportedly related to altered TNFalpha-transcriptional promoter activity. Therefore, we performed a case-control association analysis to determine whether any of those three polymorphisms in the TNFalpha promoter region were involved in a predisposition to AN. The results of our analysis of a cohort of 79 female Japanese AN sufferers and 127 normal female control subjects provide no support for the hypothesis that -1031T/C, -863 C/A and -857C/T polymorphisms in the TNFalpha gene promoter region influence the susceptibility to AN.

Adult↗

Orexin-A and leptin change inversely in fasting non-obese subjects.

OBJECTIVE: Leptin, neuropeptide-Y (NPY) and orexin are peptides regulating energy metabolism and appetite control. NPY and orexin are mainly found in the central nervous system and they have also recently been found in the peripheral nervous system. We investigated how fasting affects changes in circulating concentrations of these peptides and their association with nutritional and metabolic parameters in humans. DESIGN AND METHODS: Ten non-obese female patients with psychosomatic disorders fasted for 7 or 10 days. Blood samples were collected at 0800 h before fasting, on the 3rd and 7th days during the fast (with an additional sample taken on the 10th day when the fasting continued for 10 days) and on the 3rd and 7th days of refeeding. We measured blood concentrations of orexin-A, NPY, leptin, adrenocorticotropin, cortisol, insulin, C-peptide, glucose, and beta-hydroxybutyrate. RESULTS: Body mass index and plasma leptin concentrations concomitantly and significantly decreased during fasting, whereas serum orexin-A concentrations significantly increased and were negatively correlated with plasma leptin concentrations. Plasma NPY concentrations decreased slightly but were not significantly different from the prefasting values, and no significant relationship with leptin or orexin-A was found. Orexin-A and leptin concentrations showed a significant inverse correlation with serum glucose, insulin, C-peptide, and beta-hydroxybutyrate concentrations. Only changes in plasma leptin concentrations showed a significant negative correlation with serum cortisol concentrations. All the measured indices which changed during fasting returned to the prefasting concentrations by the 7th day of refeeding. CONCLUSION: Peripheral orexin-A and leptin concentrations inversely change during fasting, which is significantly correlated with energy metabolism in humans.

Adolescent↗

[The characteristics and mechanism of onset of abnormal eating behavior due to stress or psychosomatic diseases].

Abnormal eating behavior is characterized by two major categories. One, stress-induced abnormal eating behavior, is characterized by abnormality of degree and frequency of diet, which stands for appetite loss or appetite gain. They are connected with psychosocial or somatic stress and show temporary disorder for almost all the people. The other, abnormal eating behavior accompanied with psychosomatic diseases, is characterized by chronically devastated cognition and behavior of diet, which represents Anorexia Nervosa(AN) or Bulimia Nervosa(BN). The characteristics and mechanism of onset of these disorders are generally investigated. Abnormal eating behavior in AN or BN are associated with distorted cognition and adjustment difficulty against stress and psychological problems.

Bulimia↗

Presynaptic 5-HT3 receptor-mediated modulation of synaptic GABA release in the mechanically dissociated rat amygdala neurons.

Nystatin-perforated patch recordings were made from mechanically dissociated basolateral amygdala neurons with preserved intact native presynaptic nerve terminals to study the mechanism of 5-HT3 receptor-mediated serotonergic modulation of GABAergic inhibition. The specific 5-HT3 agonist mCPBG (1 microM) rapidly facilitated the frequency of GABAergic miniature inhibitory postsynaptic currents (mIPSCs) and this facilitation desensitized within 1 min. Tropisetron (30 nM), a specific 5-HT3 antagonist, blocked the mCPBG effect. mCPBG augmented mIPSC amplitude. However, no direct postsynaptic serotonergic currents were evoked by mCPBG. Neither GABA-evoked current amplitude nor the kinetics of individual GABAergic mIPSCs were affected by mCPBG. Therefore, the augmentation is unlikely to be due to postsynaptic effects evoked by mCPBG. At higher concentrations mCPBG produced shorter-duration facilitation of miniature events. While mCPBG increased the mIPSC frequency in calcium-containing solution with Cd2+, this increase was absent in Ca2+-free external solution. It appears that the Ca2+ influx through voltage-dependent calcium channels was not as crucial as that through 5-HT3 receptors for synaptic GABA release. When two pulses of mCPBG (each 1 microM, 1 min) were given, the response to the second pulse elicited full recovery when the interval between pulses was at least 9 min. Protein kinase A (PKA) activation by 8-Br-cAMP (300 microM) shortened and PKA inhibition by Rp-cAMP (100 microM) prolonged the recovery time. PKA activity did not affect the time course of fast desensitization. Our results suggest that a 5-HT3-specific agonist acts on presynaptic nerve terminals facilitating synaptic GABA release without postsynaptic effects. The facilitation requires calcium influx through presynaptic 5-HT3 receptors. PKA modulates the recovery process from desensitization of presynaptic 5-HT3 receptor-mediated regulation of synaptic GABA release.

Amygdala↗

Influence of short-term repeated fasting on the longevity of female (NZB x NZW)F1 mice.

Caloric restriction in rodents is well known to retard the rate of aging, increase mean and maximum life-spans, and inhibit the occurrence of many age-associated diseases. However, little is known about the influence of short-term repeated fasting on longevity. In this study, female (NZB x NZW)F1 mice were used to test the physiological effect of short-term repeated fasting (4 consecutive days, every 2 weeks). The results showed that fasting mice survived significantly longer than the full-fed mice, in spite of the fasting group having a heavier body weight than the control group. Mean survival times for fasting and control mice were 64.0+/-15.3 and 47.9+/-9.4 weeks, respectively. Short-term repeated fasting manipulation was also effective on the prolongation of life-span in autoimmune-prone mice.

Animals↗

Proteolysis and phosphorylation-mediated regulation of thrombin receptor activity in in situ endothelial cells.

The regulatory mechanism of thrombin receptor responsiveness in in situ endothelial cells was investigated by evaluating elevations of cytosolic Ca(2+) concentration ([Ca(2+)](i)) in fura-2-loaded porcine aortic valvular strips. Once stimulated with thrombin, endothelial cells did not respond to the second thrombin stimulation within 90 min. However, applying thrombin receptor activating peptide (TRAP7) at 15 min after the thrombin stimulation caused [Ca(2+)](i) elevation, which was smaller than that seen without preceding stimulation. After 90 min, response to TRAP7 recovered to the control level. When stimulated with TRAP7, the subsequent responses to thrombin and TRAP7 were attenuated at 15 min, and fully recovered after 90 min. Staurosporine partially prevented the TRAP7-induced desensitization. The recovery of responsiveness was inhibited completely by calyculin-A and partially by okadaic acid. Proteolysis and phosphorylation thus play an important role in thrombin receptor desensitization in in situ endothelial cells. Both cleaved and uncleaved receptors were desensitized through phosphorylation in part by staurosporine-sensitive kinase, and restored the responsiveness through dephosphorylation by type 1 phosphatase. The mechanism of regulation of thrombin receptor activity in in situ endothelial cells differed from those reported in cultured endothelial cells. We suggest that the cell-specific regulatory mechanism may be altered by culture conditions.

15-Hydroxy-11 alpha,9 alpha-(epoxymethano)prosta-5↗

Yujiro ikemi, M.D

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Journal Article↗

Stimulus-specific alteration of the relationship between cytosolic Ca(2+) transients and nitric oxide production in endothelial cells ex vivo.

1. To investigate the quantitative relationship between elevation in the intracellular Ca(2+) concentration ([Ca(2+)](i)) and nitric oxide (NO) production, the changes in [Ca(2+)](i) and NO production were determined in parallel, using fluorimetry of fura-2 and 2, 3-diaminonaphthalene, respectively, in endothelial cells ex vivo of pig aortic valves. 2. The extent of [Ca(2+)](i) elevation was quantitatively assessed by two parameters: the level of peak [Ca(2+)](i) elevation and the area under the [Ca(2+)](i) curve during treatment (the integrated [Ca(2+)](i) elevation). The amount of NO production was expressed as a percentage of that obtained with 10 microM ATP for 3 min. 3. ATP, bradykinin, thrombin, and ionomycin were used as stimulation to induce NO production, and all these caused [Ca(2+)](i) increases and NO production in a concentration-dependent manner. 4. The relationships between the peak [Ca(2+)](i) and NO production or between the integrated [Ca(2+)](i) elevation and NO production were well described by a straight line. However, the slope value of the linear relationship in both cases varied with the type of stimulation, with thrombin giving the greatest value, followed by ATP, bradykinin and ionomycin. 5. These data suggest that in endothelial cells ex vivo: (1) [Ca(2+)](i) elevation regulates NO production, but (2) the peak [Ca(2+)](i) elevation- or the integrated [Ca(2+)](i) elevation-NO production relationships varies depending on the type of agonists. Our results thus demonstrate the presence of the agonists-dependent modulation of the relationship between [Ca(2+)](i) elevation and NO production in endothelial cells ex vivo.

Adenosine Triphosphate↗

Dietary nucleic acids promote a shift in Th1/Th2 balance toward Th1-dominant immunity.

BACKGROUND: Dietary sources of nucleic acids and their relative components are known to affect host immune function; however, it has not yet been clarified whether such dietary nucleic acids influence the pathogenesis of allergic reaction. OBJECTIVE: The purpose of this study is to elucidate the effect of dietary nucleic acids on Th1/Th2 balance. METHODS: Both human flora-associated and specific pathogen-free BALB/c mice were maintained on either nucleic acid-free, or -supplemented diets. The effects of nucleic acids on both in vivo antibody levels and in vitro splenocyte cytokine production were compared using these mice. RESULTS: Supplementation of nucleic acids caused a reduction in the serum antibody levels of total IgM, IgG, IgG1, and IgE in the human flora-associated mice without affecting the composition of intestinal flora. In contrast, there was no significant difference of the serum IgG2a levels between nucleic acid-free and -supplemented mice. Such a phenomenon as that, the supplementation of dietary nucleic acids reduces the serum IgE or IgG1 levels, but not the IgG2a level, was also seen in the specific pathogen free mice. Moreover, when the mice were systematically challenged with ovalbumin, the supplementation of nucleic acids also suppressed the serum ovalbumin-specific IgE and IgG1 antibody levels as well as in vitro IL-4 and IL-10 secretion, while enhancing both the serum ovalbumin-specific IgG2a antibody levels and in vitro IFN gamma secretion. CONCLUSION: These results suggested that dietary nucleic acids may play an important role in promoting a shift in Th1/Th2 balance toward Th1-dominant immunity.

Animals↗

Induction of mammalian cell transformation and genotoxicity by 2-methoxyestradiol, an endogenous metabolite of estrogen.

2-methoxyestradiol (2-MeOE(2)) is an endogenous metabolite of 17beta-estradiol and a proposed inhibitor of tumor growth and angiogenesis. However, 2-MeOE(2) is also an inhibitor of microtubule assembly and other microtubule inhibitors, e.g. colcemid and diethylstilbestrol, induce aneuploidy and cell transformation in cultured mammalian cells. To assess the in vitro carcinogenicity and related activity of 2-MeOE(2), the abilities of this metabolite to induce cell transformation and genetic effects were studied simultaneously using Syrian hamster embryo (SHE) fibroblasts. Growth of these cells was reduced by treatment with 2-MeOE(2) at 0.1-1.0 microg/ml in a concentration-dependent manner. Treatment of SHE cells with 2-MeOE(2) at 0.3 or 1.0 microg/ml for 2-48 h also resulted in a concentration- and treatment time-related increase in the mitotic index and the percentage of multinucleated cells. Treatment with 2-MeOE(2) at 0.1-1.0 microg/ml for 48 h induced a statistically significant increase in the frequencies of morphological transformation of SHE cells in a concentration-dependent manner. A statistically significant increase in the frequencies of somatic mutations at the Na(+)/K(+) ATPase or hprt locus was also observed in cells treated with 2-MeOE(2) for 48 h at 0.1 or 0.3 microg/ml, respectively. Treatment of SHE cells with 2-MeOE(2) at 0.3 or 1.0 microg/ml for 24 h induced chromosome aberrations, mainly breaks, exchanges and chromosome pulverization. The incidence of chromosome aberrations was not affected by co-treatment with alpha-naphthoflavone, an inhibitor of 2-hydroxylase that inhibits oxidative conversion of 2-MeOE(2) to 2-hydroxyestradiol, but the incidence was slightly increased by co-treatment with L-ascorbic acid. Numerical chromosomal changes in the near diploid range and in the tetraploid and near tetraploid ranges were also detected in 2-MeOE(2)-treated cells. These findings indicate that 2-MeOE(2) has cell transforming and genotoxic activities in cultured mammalian cells and potential carcinogenic activity.

2-Methoxyestradiol↗

Changes in the leukocyte distribution and surface expression of adhesion molecules accompanied with hypothalamically induced restlessness in the cat.

One type of emotional behavior called restlessness occurs when the anteromedial hypothalamus is stimulated in cats. We examined the changes in the distribution and surface expression of adhesion molecules in leukocytes accompanied with restlessness. Mature female cats were used for this study. The cats were stimulated with 60 Hz sine wave train pulses (20-90 microA, 10 s in duration, at 5-min intervals) for 60 min. Samples of blood were collected from 30 min before stimulation up to several hours after the final stimulation. The number of granulocytes increased just after stimulation, while at the same time the expression of L-selectin decreased. On the other hand, the number of CD4+ and CD8+ T lymphocytes decreased at 1-2 h after the end of the stimulation, while the expression of L-selectin increased. In addition, the expression of LFA-1 and VLA-4 did not change. These data suggest that hypothalamically elicited restlessness is thus accompanied by a leukocyte distribution change, which might be mediated by changes in the expression of L-selectin on leukocytes. Plasma cortisol increased during stimulation in restlessness. However, during in vitro culture experiments, cortisol did not alter the expression of leukocyte L-selectin which thus indicated that cortisol does not directly affect the surface expression of L-selectin. These results thus suggest that hypothalamically induced restlessness is a useful stress model for psychoneuroimmunological studies.

Animals↗

[Stress].

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Animals↗