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Y Terano

Publications and source records attributed to Y Terano.

At least 19 recordsLinked to original sources

Ouabain-like immunoreactivity in the medulla oblongata of rats.

An isomer of ouabain, the ouabain-like compound (OI,C), may participate in the regulation of body fluid volume and vascular tone. Forebrain regions, especially the hypothalamus, are reported to be sites of OLC action in the central nervous system. The medulla oblongata is another critical area involved in central cardiovascular regulation. We reported that the microinjection of either monoclonal antibody to ouabain T8B11 or Fab fragment of digoxin-specific antibody into the rostral ventrolateral medulla significantly decreased mean arterial pressure and renal sympathetic nerve activity in anesthetized normotensive rats (TERUYA et al.: J. Clin. Invest. 99: 2791-2798, 1997). Using T8B11, we examined the ouabain-like immunoreactivity in the medulla oblongata of normotensive rats. In periodate-lysine-paraformaldehyde fixed tissues, ouabain-like immunoreactive neurons were detected in the nuclei and regions in the medulla oblongata including the ventrolateral medulla, ventromedial medulla, nucleus ambiguus, caudal raphe nuclei, nucleus of solitary tract, and dorsal motor nucleus of the vagus. When an Fab fragment of digoxin-specific antibody was used as a first antibody, the digoxin-like immunoreactive neurons were distributed in almost the same pattern as those observed with the use of T8B11. In the brain fixed with the "three-step" procedure developed by YAMADA et al. (1987), which was used in a previous ouabain immunohistochemical study of the hypothalamus, ouabain-like immunoreactivity in the medulla oblongata was much weaker in intensity and less restricted in distribution than that in the hypothalamus. These findings suggest that ouabain-like immunoreactivities are present in the medulla oblongata with a manner of distribution different from that seen in the hypothalamus. Some ouabain-immunopositive nuclei and regions in the medulla oblongata, especially the rostral ventrolateral medulla, may be other OLC action sites.

Animals

Role of ouabain-like compound in the rostral ventrolateral medulla in rats.

To determine whether ouabain-like compound (OLC) exerts modulatory influences on the activity of vasomotor neurons in the rostral ventrolateral medulla (RVLM), we examined the effects of microinjecting ouabain, digoxin-specific antibody Fab fragments, and mAb against ouabain on the rat RVLM. Microinjection of ouabain into the unilateral RVLM of anesthetized normotensive rats elicited dose-dependent increases in mean arterial pressure (MAP) and renal sympathetic nerve activity (RSNA). The pressor and sympathoexcitatory effects of ouabain in the RVLM were reversed by microinjections of an M2 muscarinic antagonist, gallamine, or digoxin-specific antibody Fab fragments. Furthermore, a prior microinjection in the RVLM of gallamine, digoxinspecific antibody Fab fragments, or kainic acid or intravenous injection of hexamethonium all prevented the pressor and sympathoexcitatory effects induced by a subsequent microinjection of ouabain. Microinjections of either digoxinspecific antibody Fab fragments or gallamine per se significantly decreased baseline MAP and RSNA. Injection of digoxin-specific antibody Fab fragments attenuated the effects of a subsequent injection of gallamine. Microinjection of mAb against ouabain, but not nonspecific IgG, also significantly decreased baseline MAP and RSNA. These results suggest that OLC in the RVLM contributes to the tonic activity of vasomotor neurons in anesthetized normotensive rats, and the action of OLC in the RVLM is at least partly mediated by M2 muscarinic mechanisms.

Animals

Elevation of ouabainlike compound levels with hypertonic sodium chloride load in rat plasma and tissues.

A major biologically active endogenous digitalis-like factor in the mammalian body may be an isomer of ouabain (ouabainlike compound, OLC). However, the exact role of OLC in sodium homeostasis is still unclear, and acute isotonic volume expansion does not enhance the secretion of OLC. We tested the hypothesis that OLC may be more important in the response to acute hypertonic NaCl load rather than isotonic volume expansion. We injected intraperitoneally 2 mL of 20% NaCl solution into male Wistar rats (n=34) and measured OLC levels in plasma, hypothalamus, pituitary, and adrenal at baseline (n=10) and 1, 2, and 4 hours (n=8 for each). In response to hypertonic NaCl loading, plasma Na-K ratio was elevated at 2 and 4 hours (P<.01). OLC levels in pituitary increased (P<.01) at 1 hour. Thereafter, plasma OLC levels increased at 2 and 4 hours (P<.05; basal, 75+/-11 pmol/L [+/-SEM]; 1 hour, 55+/-11; 2 hours, 130+/-24; 4 hours, 156+/-20). Concomitantly, OLC levels in adrenal increased at 2 and 4 hours (P<.01; basal, 1.7+/-0.2 pmol/g; 1 hour, 4.5+/-0.9; 2 hours, 5.0+/-0.7; 4 hours, 6.8+/-2.2). A significant correlation was observed between OLC levels in plasma and adrenal (P<.05). Plasma Na-K ratio positively correlated with OLC levels in plasma (r=.51, P<.01) and adrenal (r=.48, P<.01). Similar injection of physiological saline solution or hypertonic sucrose solution in physiological saline did not increase OLC levels in plasma and tissues. These findings indicate the elevation of OLC levels in plasma, pituitary, and adrenal in response to acute hypertonic NaCl load in rats and suggest that OLC may be involved in the response to the hypernatremic state.

Adrenal Glands

Rapid and highly sensitive enzyme immunoassay for quantitative determination of tetrodotoxin.

A monoclonal antibody against tetrodotoxin (TTX) was obtained from Balb/c mice immunized with TTX-bovine serum albumin (BSA) conjugate. The monoclonal antibody was highly specific for TTX and had no cross-reaction to tetrodonic acid, which is a TTX derivative, or gonyautoxins, although a minor cross-reaction to anhydro-tetrodotoxin was observed. The monoclonal antibody neutralized the lethal activity of TTX. By using the monoclonal antibody, a rapid and highly sensitive competitive enzyme immunoassay (EIA) for quantitative analysis of TTX was developed. By the competitive EIA system, TTX can be determined quantitatively in about 30 min (90 min are required if the time for preparation of the solid-phase antigen was included), and the working range for quantitative analysis of TTX was 2-100 ng/ml. In recovery tests and examinations of TTX samples, results of the mouse bioassay and EIA analyses correlated well (r = 0.987). Moreover, it was demonstrated that low concentrations of TTX, which could not be detected by the mouse bioassay, could be determined quantitatively by the competitive EIA.

Animals

Distribution of catch-relaxing peptide (CARP)-like immunoreactive neurons in the central and peripheral nervous system of Helix pomatia.

Immunocytochemistry was performed on the nervous system of Helix by the use of an antibody raised against a myotropic neuropeptide, the catch-relaxing peptide (CARP), isolated from Mytilus edulis. In each ganglion of the central nervous system of Helix pomatia, numerous CARP-immunoreactive cell bodies and a dense immunoreactive fiber system could be observed with a dominancy in the cerebral and pedal ganglia. The majority of the immunoreactive neurons are unipolar, although multipolar neurons also occur. In the neuropil areas, CARP-immunoreactive fibers show extensive arborization, which may indicate a central role of CARP. CARP-immunoreactive elements could be observed in each investigated peripheral nerve and peripheral areas, namely in the intestine, heart, aorta, buccal mass, lips, and foot. However, CARP-immunoreactive cell bodies could only be demonstrated in the intestine and the foot musculature. Thin varicose CARP-immunoreactive fibers were observed over both muscle and gland cells in the different peripheral organs, suggesting a peripheral role of CARP. In vivo CARP injection into the body cavity (10(-3), 10(-4), 10(-5) M) altered the general behavioral state of the animals and induced the relaxation of the musculature of the whole body wall indicating that CARP has a significant role in the regulation of muscle contraction.

Amino Acid Sequence

Stress-induced elevation of ouabainlike compound in rat plasma and adrenal.

Recent observations demonstrate the presence of neurosteroids and their rapid increase in response to acute stress. In view of a steroidal nature of ouabainlike compound, we tested the hypothesis that ouabainlike compound may participate in a homeostatic response to acute stress. Male Wistar rats were subjected to acute stress by swimming in water (22 degrees C) for 10 minutes. The levels of ouabainlike compound in plasma, hypothalamus, pituitary, and adrenal at 10, 40, and 70 minutes (n = 8 for each) after the end of swim stress were compared with nonstressed control levels (n = 10). Ouabainlike compound was measured by a radioimmunoassay for ouabain. Plasma levels of corticosterone and catecholamines were also measured. Plasma corticosterone concentrations increased rapidly at 10 minutes (P < .01) and then declined. A trend for a rise in plasma catecholamines was found at 10 minutes. Adrenal levels of ouabainlike compound concomitantly increased at 10 minutes (P < .01, control: 58.9 +/- 5.9 pmol ouabain equivalents per gram; 10 minutes: 92.5 +/- 4.8; 40 minutes: 47.3 +/- 9.6; 70 minutes: 45.1 +/- 6.3). In contrast, the response of plasma ouabainlike compound was slow and doubled at 40 minutes (P < .01, control: 115 +/- 12 pmol ouabain equivalents per liter; 10 minutes: 132 +/- 23; 40 minutes: 226 +/- 53; 70 minutes: 117 +/- 16). Ouabainlike compound levels in hypothalamus and pituitary remained unaltered. These findings suggest that ouabainlike compound may function as a stress hormone.

Acute Disease

Studies of radioimmunoassay for measurement of insulin-like growth factor-I (IGF-I) by using anti-IGF-I monoclonal antibody.

Radioimmunoassay system for measurement of insulin-like growth factor-I (IGF-I) was established by using anti-recombinant human IGF-I monoclonal antibody (MAb). This MAb is capable of recognizing not only human but also rat IGF-I. It was thus suggested that this RIA system can quantify IGF-I in human and rat sera. MAb used in this paper was clarified to be an antibody against the common epitope of C-region of human and rat IGF-I. Gly32-Ser33-Ser34 sequence of C-region of IGF-I is discussed to be an antigenic determinant to which this antibody might specifically bind. MAb does not cross-react with proinsulin and insulin as well as anti-IGF-I polyclonal antibody (PAb). And it is general that PAb has almost 2% cross-reactivity with IGF-II. But this MAb did not cross-react with IGF-II. Actually, the value of IGF-I measured by this system was lower than that measured by RIA using PAb.

Adult

[Haptoglobin].

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Adult

Distribution and characterization of tumor necrosis factor-alpha-like immunoreactivity in the murine central nervous system.

Tumor necrosis factor-alpha (TNF alpha) is a protein released from macrophages during infection and inflammation. Recent studies suggest that it has several effects within the central nervous system, including generation of fever, enhancement of slow wave sleep, and stimulation of pituitary hormone secretion. We have proposed that TNF alpha may be synthesized by neurons in the CNS and used as a neuromodulator in the pathways involved in the central control of these activities. To test this hypothesis, we have used an antiserum raised against recombinant murine (rm) TNF alpha with an indirect immunoperoxidase technique to stain the murine CNS immunohistochemically. Western blot analysis of mouse brain homogenates revealed one band with electrophoretic mobility identical to that of rmTNF alpha. We identified TNF alpha-like immunoreactive (ir) neurons in the hypothalamus, in the bed nucleus of the stria terminalis, in the caudal raphe nuclei, and along the ventral pontine and medullary surface. TNF alpha ir innervation was widespread within the CNS, particularly in areas involved in autonomic and endocrine regulation, including the hypothalamus, amygdala, bed nucleus of the stria terminalis, parabrachial nucleus, dorsal vagal complex, nucleus ambiguus, and thoracic sympathetic preganglionic cell column. Our data suggest that TNF alpha may serve as a neuromodulator in central pathways involved in the regulation of the autonomic, endocrine and behavioral components of the acute-phase response to inflammation and infection.

Animals

An anti-platelet activating factor antibody and its effects on platelet aggregation.

Production of antibodies against platelet activating factor (PAF) has been difficult, probably because of the low antigenicity of PAF, a low-molecular-weight phospholipid. We therefore used colloidal gold as a hapten carrier to produce anti-PAF polyclonal and monoclonal antibodies. Both antibodies reacted with PAF, lyso PAF, and L-alpha-lysophosphatidyl choline palmitoyl (lyso PCP), but they did not react phosphorylcholine chloride (PCC). Their affinities were higher for PAF than for lyso PAF and lyso PCP. When the antibodies were tested on PAF-induced platelet aggregation, they suppressed aggregation in a dose-dependent manner.

Animals

Drug-specific T cells derived from patients with drug-induced allergic hepatitis.

Drug-induced allergic hepatitis is a tissue-specific inflammatory disease caused by hypersensitivity to a particular drug. Although the frequency of drug-induced allergic hepatitis appears to increase in proportion to the medicine, the mechanism by which tissue specificity is determined is still to be elucidated. In this study, we established CD4+ T cell clones specific for particular drugs from patients with drug-induced allergic hepatitis accompanied with mild blood eosinophilia and analyzed the possible role of liver protein as a directing factor of liver-specific inflammatory reactions. All CD4+ T cell clones obtained from two patients with this disease proliferated in response to a combination of the particular drug plus liver specific protein (LSP), which consists of over 30 proteins. Some T cell clones were responsive to an antigenic conformation consisting of the 200-kDa glycoprotein (partly purified LSP), a component of LSP, plus the causal drug. In contrast, all CD4+ T cell clones from a patient with simple drug-induced eosinophilia responded to the causal drug in the absence of LSP and partly purified LSP. These data suggested that LSP or partly purified LSP of the appropriate Ag is the target that leads to liver-specific inflammation in drug-induced allergic hepatitis. Furthermore, T cell lines derived from patients with drug-induced allergic hepatitis and simple drug-induced eosinophilia produced large amounts of IL-5 after the appropriate antigenic stimulation, whereas CD4+ T cell clones from donors with a normal amount of peripheral blood eosinophils secreted a much less IL-5. Taken together, these results indicate that overproduction of IL-5 by the allergen-sensitized T cells may result in blood eosinophilia.

Adult

Induction of metallothionein synthesis by menadione or carbon tetrachloride is independent of free radical production.

The relationship between induction of hepatic metallothionein (MT) synthesis and lipid peroxidation by free radical production following an injection of menadione or carbon tetrachloride (CCl4) in mice was studied. The hepatic concentration of MT was increased by menadione significantly at 25 mg/kg or higher. A significant increase in thiobarbituric acid (TBA) value, indicative of lipid peroxidation, was observed in the liver at menadione doses of 62.5 mg/kg or higher. Both the MT and the TBA value in the liver were significantly increased at the low dose of CCl4. The concentration of MT was increased significantly 4-8 hr after administrations of these compounds. The increase of TBA value over time was similar to that of MT concentration after administration of CCl4, but not after administration of menadione. The MT concentration in the menadione group was higher than that in the CCl4 group, and the TBA level in the menadione group was lower than that in the CCl4 group. Pretreatment with vitamin E caused a significant reduction in the TBA value, but did not affect the MT level in the liver. The concentration of MT did not significantly correlate with the TBA value in either the menadione or the CCl4 group. Pretreatment with phenobarbital, which promotes free radical production, did not influence induction of MT synthesis following an injection of menadione or CCl4. Neither L-buthionine sulfoximine nor 2-cyclo-hexen-1-one, which decreases hepatic glutathione, influenced the induction of MT by menadione. These data suggest that induction of MT synthesis by menadione or CCl4 is independent of free radical production in the liver.

Animals

Monoclonal antibody to human plasma gelsolin.

Human plasma gelsolin was purified by column chromatography. The method yielded a protein of high purity and activity. Using this protein, we produced monoclonal antibody (Mab H6B11) against human plasma gelsolin by somatic cell fusion. This monoclonal antibody reacted in a dose-dependent manner with gelsolin derived from human plasma and platelets and neutralized depolymerizing activity to F-actin. It differed from the commercially available substance (Mab G4896; Sigma) in that the time required for the reaction between the antigen and antibody in the enzyme-linked immunosorbent assay could be shortened by one-third. The antibody was judged to be useful in assays for elucidating the physiological role of plasma gelsolin.

Animals

Induction of hepatic metallothionein by nonmetallic compounds associated with acute-phase response in inflammation.

Induction of hepatic metallothionein (MT) synthesis by several nonmetallic compounds and its relationship to an acute-phase response in inflammation were studied in mice. Subcutaneous injections of menadione, paraquat, carbon tetrachloride (CCl4), and several organic solvents caused an increase of hepatic MT concentration. This MT contained only zinc. Menadione and n-hexane caused the greatest accumulation of hepatic MT among these nonmetallic compounds (about 13-fold). The concentration of Zn was significantly decreased in plasma in contrast to liver after an injection of these nonmetallic compounds. When 65ZnCl2 was injected iv after these injections, uptake of 65Zn to the liver was increased. This effect was not observed after treatment with cycloheximide. The association with inflammation of this induction of MT accumulation was examined by determination of acute-phase proteins. The concentration of fibrinogen in the plasma was significantly increased following injection of those nonmetallic compounds which caused marked hepatic MT accumulation. An injection of 1 N NaOH, 1 N HCl, turpentine oil, or endotoxin caused a significant increase in the plasma concentration of fibrinogen and in the hepatic MT concentration. Injections of n-hexane as well as turpentine oil significantly increased hepatic MT concentration and plasma concentration of fibrinogen and ceruloplasmin with time. The concentration of fibrinogen was significantly correlated (r = 0.789) with the concentration of hepatic MT. Neither adrenalectomy nor pretreatment with dexamethasone prevented hepatic MT accumulation caused by these compounds. These results indicate that induction of hepatic MT synthesis by these nonmetallic compounds is associated with an acute-phase response in inflammation and is independent of glucocorticoids.

Acute-Phase Proteins

Inhibition of autoimmune diabetes in NOD mice with serum from streptococcal preparation (OK-432)-injected mice.

We have recently reported that systemic and chronic administration of recombinant tumour necrosis factor alpha (TNF-alpha), as well as streptococcal preparation (OK-432), inhibits development of insulin-dependent diabetes mellitus (IDDM) in NOD mice and BB rats, models of IDDM. In this study we examined whether serum containing endogenous TNF induced by OK-432 injection could inhibit IDDM in NOD mice. Treatment twice a week from 4 weeks of age with OK-432-injected mouse serum, which contained endogenous TNF (75U), but not IL-1, IL-2 and interferon-gamma (IFN-gamma) activity, reduced the intensity of insulitis and significantly inhibited the cumulative incidence of diabetes by 28 weeks of age in NOD mice, as compared with the incidence in non-treated mice (P less than 0.01) and in mice treated with control serum (P less than 0.02). This inhibitory effect of the serum was diminished, although not significantly, by neutralization of serum TNF activity with anti-mouse TNF antibody. In the mice treated with the serum from OK-432-injected mice, Thy-1.2+ or CD8+ spleen cells decreased (P less than 0.01) and surface-Ig+ (S-Ig+) cells increased (P less than 0.05), whereas the proliferative response of spleen cells to concanavalin A (P less than 0.01) and lipopolysaccharide (P less than 0.05) increased. The results indicate that the inhibition by OK-432 treatment of IDDM in NOD mice was partially mediated by serum factors including endogenous TNF.

Animals