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Biomedical subjects

F Hirata

Publications and source records attributed to F Hirata.

At least 37 records · Page 2Linked to original sources

Alteration of G protein levels in antigen-challenged guinea pigs.

To elucidate the mechanism(s) of altered responses of various receptors observed in asthma, we examined levels of G proteins in lung membranes isolated from guinea pigs at various stages of experimental asthma. We found that levels of Gi2 alpha and Gq alpha increase after multiple exposures to aerosolized antigen but not after a single exposure. Levels of Gi1 alpha, Gs alpha and G beta did not change under these experimental conditions. Tracheas from these animals exhibited hyperresponsive muscarinic bronchoconstriction and hyporesponsive beta adrenoceptor-mediated relaxation of endothelin-preconstricted tracheas as measured by an ex vivo isometric assay. No changes in numbers or affinities of membrane M3 muscarinic and beta-2 adrenergic receptors were detected as measured by binding of [3H]QNB and [125I]CYP, respectively. The impairment of beta adrenoceptor-mediated relaxation of tracheas isolated from animals treated by multiple challenges was reversed by the pretreatment of tracheas with pertussis toxin. On the other hand, the carbamylcholine-stimulated GTPase activity was higher in lung membranes isolated from animals in the multiple challenge group and was blocked by anti-Gq alpha protein antibody. Taken together, our present observations suggest that an underlying mechanism of altered receptor responses associated with asthma is in part due to increased expression of Gi2 alpha and Gq alpha proteins, leading to altered coupling of receptors to effector systems.

Acetylcholine↗

Effect of solvent on collective motions in globular protein.

Two molecular dynamics simulations on bovine pancreatic trypsin inhibitor (BPTI), have been made, one in vacuum, the other in water, in order to assess the effect of the solvent water on collective motions. Principal component analysis has been performed to determine collective modes, the principal components, which are assumed to behave as effectively independent harmonic oscillators. Projection of the protein's motion in water onto the plane defined by the first two principal components shows a clustering effect in the trajectory, absent in the vacuum trajectory. This is thought to be due to many local minima in the free energy surface caused by solute-solvent interactions. In order to assess the viscous effect of the solvent, friction coefficients for the principal components were determined by analyzing their velocity correlation functions in terms of the Langevin equation for an independent damped oscillator. Consistent with this analysis is that all modes have friction coefficients centered on the value of 47 cm-1 in a range of +/- 10 cm-1. With this friction coefficient, all modes of effective frequencies below 23.5 cm-1 display overdamped motion. By assuming the harmonic approximation for the conformational energy surface for BPTI in vacuum to be valid for BPTI in water, and treating each mode as an independent damped oscillator with a friction coefficient of 47 cm-1, the shift to higher frequencies in the water spectrum relative to the vacuum spectrum could be almost exactly reproduced, indicating this shift is due solely to the viscous effect of the solvent. By analyzing the time correlation functions of the first four principal components it is found that they can be very well described as independent damped oscillators each with a friction coefficient of 47 cm-1.

Animals↗

The low-density lipoprotein receptor and cholesterol synthesis are affected differently by dietary cholesterol in the rat.

In the hamster and the rabbit, the low-density lipoprotein (LDL) receptor and cholesterol synthesis are coordinately downregulated by dietary cholesterol. In the rat, cholesterol synthesis is downregulated but LDL kinetic studies suggest that the LDL receptor is not. The aim of this study was to determine the effect of dietary cholesterol on the expression of the hepatic LDL receptor in the rat. Young (2 months) hooded and albino Wistar rats and older (9 months) Sprague-Dawley rats were used because of their reported different propensities to develop hypercholesterolaemia when fed cholesterol. Hepatic LDL receptor activity was measured using a dot blot assay with LDL-gold and LDL receptor mass was measured using an electroblot assay with a polyclonal antibody. Dietary cholesterol had no effect on the plasma cholesterol concentration in both strains of young Wistar rats but increased it in the older Sprague-Dawley rats. Cholesterol synthesis as measured with 3H2O or as indicated by 3-hydroxy-3-methylglutaryl coenzyme A (HMG-CoA) reductase activity or the ratio of plasma lathosterol to cholesterol was effectively downregulated by dietary cholesterol (1% w/w) in all three strains. In contrast, dietary cholesterol increased both hepatic LDL receptor activity and mass in the young Wistar rats and had no effect on either receptor activity or mass in the older Sprague-Dawley rats. Increases in receptor activity occurred despite increases in hepatic cholesterol especially when cholic acid was added to the cholesterol diet. The effect was systemic because CL 277082, an inhibitor of intestinal cholesterol absorption, prevented the increase in LDL receptor activity.(ABSTRACT TRUNCATED AT 250 WORDS)

Age Factors↗

Oxidation of low-density lipoproteins: intraindividual variability and the effect of dietary linoleate supplementation.

Low-density lipoprotein (LDL) oxidation was measured in vitro to determine intraindividual variability and to relate oxidation to linoleic acid enrichment. Intraindividual variability was determined for eight subjects on 3 consecutive days after 14 d on a fixed diet. Coefficients of variation were 7.49 +/- 1.50%, 6.58 +/- 1.16%, and 4.58 +/- 0.77% for oxidation rate, lag time, and diene concentration, respectively. In the second study 12 normolipidemic men consumed a daily diet supplement containing 35 g linoleate-rich oil in one period and 35 g oleate-rich oil in the other period (2 x 3 wk crossover). LDL oxidized faster after the linoleate diet than after the oleate diet (mean +/- SE: 16.42 +/- 0.85 and 13.16 +/- 0.68 nmol diene.mg LDL protein-1.min-1, respectively, P < 0.02) and produced more conjugated diene (416 +/- 12.60 and 379.29 +/- 11.06 nmol/mg protein, respectively, P < 0.05) in proportion to the increase in LDL linoleate (r = 0.698, P < 0.001 and r = 0.618, P < 0.01 for rate and diene concentration, respectively). Lag time before onset of oxidation was not significantly altered by the linoleate-rich diet.

Carotenoids↗

Organ culture with proinflammatory cytokines reproduces impairment of the beta-adrenoceptor-mediated relaxation in tracheas of a guinea pig antigen model.

The challenge of previously sensitized guinea pigs with aerosolized ovalbumin resulted in impairment of the beta-adrenoceptor-mediated relaxation as measured by the in vitro isometric assay of tracheas preconstricted with endothelin-1 or carbamylcholine. Numbers and affinities of beta-adrenoceptors in lung membranes of these animals were not altered under these conditions, although the antigen challenge caused an inflammatory response, as evident from the accumulation of inflammatory cells in the bronchoalveolar lavage fluids. In order to investigate the pathophysiologic role of inflammation in hyperreactive airways, isolated guinea pig tracheas were cultured with proinflammatory cytokines such as human recombinant tumor necrosis factor-alpha (TNF-alpha), interleukin-1 beta (IL-1 beta), or interleukin-2 (IL-2). None of these cytokines affected the contractile response of tracheas to carbamylcholine. After preconstriction with carbamylcholine, the TNF-alpha- and IL-1 beta-pretreated tissues produced a significant reduction in the maximal relaxation induced by isoproterenol, whereas the IL-2 pretreatment had no effect. The reduction of the isoproterenol-mediated relaxation by the IL-1 beta treatment was time and dose dependent. Our present observations suggest that in vitro incubation of naive tracheas with proinflammatory cytokines is able to reproduce apparent beta-adrenoceptor impairment as seen in the airways of antigen-challenged guinea pigs of asthma model.

Animals↗

ET-1 released histamine from guinea pig pulmonary but not peritoneal mast cells.

Endothelin(ET)-1 triggered histamine release of mast cells from pulmonary tissue but not from the peritoneal cavity of guinea pigs. The observed difference in response to ET-1 was attributable to a quantitative difference in ET-1 binding sites between both cells. The concentrations of ET-1 required for half maximal release of histamine and half maximal binding of [125I]ET-1 were approximately 0.05 and 0.08 nM, respectively. The release of histamine by ET-1 was a Ca(2+)-dependent but not a cytotoxic process. These observations, taken together, suggest that ET-1 induces histamine release from mast cells in a receptor-dependent fashion.

Animals↗

Regulation of endothelin-1 synthesis in cultured guinea pig airway epithelial cells by various cytokines.

To study regulatory mechanisms influencing the synthesis and release of ET-1, a potent bronchoconstrictor, epithelial cells from guinea pig tracheas were cultured to test various cytokines for the synthesis of ET-1 and its precursor, big ET-1. Cytokines tested were divided into 4 groups, based on their potential modes of action. IL-8, TNF alpha and TGF beta transiently increased the synthesis of ET-1, while EGF, PDGF and GM/CSF promoted proliferation of ET-1 synthesizing cells. IL-1 enhanced the synthesis of ET-1 precursor without mitogenesis, whereas IL-2, IL-6 and IGF-1 induced both the synthesis of big ET-1 and mitogenesis. These observations suggest that cytokines involved in damage, inflammation and repair of the airway epithelial layer regulate the synthesis and release of ET-1 by multiple mechanisms, thereby influencing airway muscle tone.

Animals↗

ET-1 induced bronchoconstriction in the early phase but not late phase of anesthetized dogs is inhibited by indomethacin and ICI 198615.

Intratracheally injected or aerosolized ET-1 induced quick and long-lasting bronchoconstriction of anesthetized mongrel dogs, thus increasing respiratory resistance(Rrs) with concomitantly decreasing dynamic compliance(Cdyn). As collateral resistance(Rcs) was measured postexposure to aerosolized ET-1 using wedged bronchoscope technique, ET-1 increased Rcs in a dose and time dependent manner. The increase attained maximal in 2 min and then, gradually declined. When the dogs were pretreated with the intravenous injection of 0.1 micrograms/kg ICI 198615, an inhibitor of lipoxygenase, the constrictive response was slowed down. Essentially similar results were also observed with the intravenous injection of 5 mg/kg indomethacin. Our observations suggest that the early phase of the ET-1 induced bronchoconstriction is mediated by eicosanoid metabolites.

Anesthesia, Intravenous↗

Endothelins constrict guinea pig tracheas by multiple mechanisms.

When tracheal rings isolated from guinea pigs were treated with endothelins (ETs), a dose-dependent constriction was observed and measured isometrically. ET potencies were ET-1 = ET-2 greater than ET-3. Dose-response curves of epithelium-denuded tracheas were shifted to the left by approximately one order of magnitude. Lung tissue contained saturable binding sites to 125I-labeled ET-1. These binding sites were replaced by ET-1 = ET-2 greater than ET-3. Because the airway tissue contained primarily ET-1 as measured by immunoassay after high-performance liquid chromatography separation, we investigated the mechanism of ET-1-induced tracheal constriction. Tracheal constriction induced by ET-1 required Ca++ in the medium. Because suppression of the contractile response by nicardipine and diltiazem was small, Ca++ entry appeared to be gated primarily through Ca++ channels rather than via voltage-dependent ones. FPL55712, SC47014A, indomethacin and OKY046 suppressed the dose-response curves, suggesting that lipid mediators are formed in response to ET-1. Diphenhydramine also altered dose-response curves, suggesting that histamine release from mast cells was partially responsible for the constriction. Pretreatment of tracheas with compound 48/80 resulted in suppression of the contractile responses. Furthermore, the combination of indomethacin, FPL55712 and diphenhydramine gave essentially identical effects. Our observations suggest that ET-1 provokes the contractile response of guinea pig tracheas not only by direct actions on smooth muscle but also by indirect actions through production of chemical mediators in mast cells and other inflammatory cells.

Animals↗

Endothelin-1-induced relaxation of guinea pig trachealis muscles.

Our accompanying paper demonstrated that endothelin-1 (ET-1 constricts guinea pig airways directly and indirectly through mediators such as histamine and arachidonate metabolites. In order to exclude the role of mast cells in bronchoconstriction, we sensitized guinea pigs and challenged them in vitro with an antigen (ovalbumin). In the postanaphylactic trachea, ET-1 caused a transient relaxation followed by constriction. Such relaxation by ET was also observed in the tracheas constricted with carbamylcholine. The relaxation was completely blocked by nordihydroguaretic acid and AA861, lipooxygenase inhibitors, but not by indomethacin, a cyclooxygenase inhibitor, and FPL 55712, a leukotriene antagonist. Because the relaxation was not affected even in the presence of methylarginine, an inhibitor of NO synthesis, and superoxide dismutase, an enzyme for destroying NO radical, we concluded that ET-1 induces the relaxation of the tracheal muscles by producing lipooxygenase products, probably hydroperoxides of arachidonic acid.

Anaphylaxis↗

Multiple mechanisms of bronchoconstrictive responses to endothelin-1.

We investigated the mechanism of the endothelin-1 (ET-1)-induced bronchoconstriction of guinea pig tracheal smooth muscles. ET-1 contracted the tracheas in a dose-dependent manner. A combination of FPL55712 (leukotriene antagonist), diphenhydramine (histamine antagonist), and indomethacin (cyclooxygenase inhibitor) shifted the dose-response curve of ET-1 to the right and suppressed the maximal constriction. Azelastine, an antiallergic agent, exerted essentially similar results. The present data suggest that ET-1 constricts the airway smooth muscles not only by direct action on the tracheal smooth muscles but also by indirect action mediated through production of various chemical mediators in cells other than muscles.

Animals↗

Augmentation of LDL receptor activities on lymphocytes by interleukin-2 and anti-CD3 antibody: a flow cytometric analysis.

Dormant lymphocytes are known to show little LDL receptor (LDL-R) activities. The present study was designed to determine whether or not LDL-R activities of lymphocytes from normal subjects were high enough to be measured by flow cytometry after the cells had been stimulated with recombinant interleukin-2 (IL-2) and anti-CD3 monoclonal antibody (mAb). IL-2 or anti-CD3 mAb individually provokes proliferation of lymphocytes in a serum-free medium. Proliferation rate was accelerated when the two reagents were used in combination. Stimulated cells cultured for 5 days expressed more than 85% CD3 positive, less than 0.5% CD14 positive, and less than 1.5% CD20 positive. The LDL-R activities of the cells were examined by the uptake of a fluorescence probe, DiI-labeled LDL (DiI-LDL) and analyzed by flow cytometry. Stimulated cells showed increased uptake of DiI-LDL and 84 +/- 9% were positive, whereas only 3.0 +/- 2.5% of the cells without stimulation were positive (P less than 0.001). Under the same conditions stimulated lymphocytes from a homozygous familial hypercholesterolemia (FH) patient showed little LDL-R activities; 14% of the cells were positive. Displacement assays reveal that the uptake of LDL by these cells is occurring by way of its specific pathway. These data imply the lymphocytes stimulated with the reagents used in the study might be used for detecting defects in LDL-R, perhaps defects in other genomic systems as well.

Antibodies, Monoclonal↗

Biology of phospholipase inhibitory proteins.

Our present results showed that calpactins might be not the proteins whose synthesis is modulated by glucocorticoids, and suggest that there may be another type of PLA2 inhibitory protein which directly interact with PLA2 and whose synthesis is induced by glucocorticoids. Further characterization and isolation of this protein will provide the most concrete evidence in this aspect.

Animals↗

Dexamethasone inhibits respiratory glycoconjugate secretion from feline airways in vitro by the induction of lipocortin (lipomodulin) synthesis.

The effect of glucocorticoids on respiratory glycoconjugate (RGC) secretion was studied in a cat tracheal organ culture system. Dexamethasone (10(-5) to 10(-9) M) added to culture medium for 24 h caused a dose-related reversible inhibition of RCG of as much as 40% with a peak effect at 24 to 60 h after initiation of dexamethasone treatment. A monoclonal antilipocortin antibody added to the cultures blocked the inhibitory effect of dexamethasone on RGC secretion and accelerated the reversal of the dexamethasone effect after discontinuation of dexamethasone treatment. A control antibody without antilipocortin activity had no effect on RGC secretion or dexamethasone-induced inhibition of RGC secretion. Measurement of the concentration of lipocortin in airways revealed a 220% increase after treatment with dexamethasone for 24 h. We conclude that dexamethasone inhibits RGC secretion through the induction of lipocortin synthesis.

Animals↗

Effects of ketanserin tartrate on serum lipids in patients with essential hypertension.

Several antihypertensive agents such as thiazide diuretics and some beta-blockers have recently been shown to adversely affect lipid metabolism. Moreover, there is a growing suspicion that the adverse effect on plasma lipids might outweigh the favourable effect of lowering blood pressure. The effect of ketanserin tartrate (20 to 60 mg daily), a new antihypertensive drug, on blood lipids was evaluated in a 12-week non-comparative clinical trial in 34 patients with mild or moderate hypertension. Ketanserin reduced systolic and diastolic blood pressure by 12.2 and 9.8%, respectively, without altering heart rates. Total cholesterol and low density lipoprotein (LDL)-cholesterol levels in the fasting plasma were observed to decrease significantly by 6.3 and 8.8% respectively, whereas mean triglyceride and high density lipoprotein (HDL)-cholesterol remained almost unchanged. These changes were consistent irrespective of their initial values. Significant decrease in apolipoprotein B and E was also observed. Apolipoprotein A-I, A-II, C-II and C-III were not altered significantly. It is speculated that ketanserin affects mainly LDL-cholesterol. Based on these findings, ketanserin is considered to have a potentially beneficial effect on coronary risk profile and should be given full consideration when drug therapy is selected for patients with mild to moderate hypertension.

Adult↗

Glucocorticoids and head injury. A possible participation of lipocortin (lipomodulin) in actions of the steroid hormones.

The actions of glucocorticoids require the synthesis of new proteins in many, if not all, cases. One such protein that mimics the actions of glucocorticoids has been isolated and characterized as lipocortin. This protein can mimic the anti-inflammatory activity of glucocorticoids by inhibiting phospholipase A2. The effect of glucocorticoids on various stages of brain and spinal cord injury may be partly, although not totally, explained by the activity of lipocortin.

Annexins↗