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Biomedical subjects

K Onodera

Publications and source records attributed to K Onodera.

At least 91 records · Page 5Linked to original sources

Cognitive involvement by negative modulation of histamine H2 receptors in passive avoidance task in mice.

In this study, the intracerebroventricular administration of 4-methylhistamine (3 and 10 micrograms/head), a histamine H2 receptor agonist, shortened the step-through latency in the retention trial using a step-through passive avoidance task in mice. This deteriorating effect of 4-methylhistamine (3 micrograms/head) was clearly antagonized by pretreatment with zolantidine (10 mg/kg, i.p.), a histamine H2 receptor antagonist, 20 min before an acquisition trial. Zolantidine alone at the dose tested had no effect. Thus, it is likely that activation of histamine H2 receptors has a deteriorating effect on avoidance learning in mice. The present results indicate the cognitive involvement by negative modulation of histamine H2 receptors in passive avoidance task in mice.

Animals↗

A trial to detect behavioral changes by swimming stress.

We investigated behavioral changes in mice in a light/dark test after forced swimming stress in a streaming pool. Locomotion and rearing behavior in mice in a light/dark test was suppressed immediately after the swimming and gradually regained. Shuttle crossing between light and dark zones was also suppressed but time spent in a light zone was not. The suppression of locomotor activity by the swimming was not observed 20 min after it. Naloxone (10 mg/kg, i.p.) suppressed recovery of locomotor activity after the swimming while it did not affect a light/dark test in nonswimming mice. These results suggest that this model is useful for the study of behavioral and psychological changes after exercise, and that opioidergic systems may be involved in regaining spontaneous locomotor activity.

Animals↗

The effects of radix Salviae miltiorrhizae on lipid accumulation of peroxidized low density lipoprotein in mouse peritoneal macrophages--lipid analysis and morphological studies.

Mouse peritoneal macrophages were incubated in DMEM with pox-LDL and Rradix Salviae Miltiorrhizae (RSM) to investigate the effects of RSM on the internalization of peroxidized low density lipoprotein (pox-LDL) by using lipid analysis and electron microscopy. Lipid peroxide (LPO) concentrations were increased slightly in the medium after incubation of macrophages with normal LDL (n-LDL), while decreased significantly in the media after incubation of macrophages with pox-LDL. In the three groups with pox-LDL, it could be found that there was a dose-dependent decrease of concentrations of LPO and total cholesterol (TCH) in the two RSM groups, and the decrease in the two RSM groups was much greater than in the group without RSM. RSM accelerated a more decrease of LPO than cholesterol contents in the media containing pox-LDL. The ultrastructural studies also showed that RSM induced the accumulation of lipid droplets in the cytoplasm of mouse peritoneal macrophages. The results suggested that RSM could accelerate the phagocytosis and degradation of pox-LDL by macrophages.

Animals↗

[The role of the right hemisphere on recovery from Wernicke's aphasia].

We report a rare case of severe Wernicke's aphasia who showed a rapid and surprisingly good recovery despite of a large infarct involving the left posterior language area. A 68-year-old right-handed woman without a family history of left-handedness developed a severe comprehension difficulty and paraphasic output following a large infarct in the left posterior temporoparietal region. However, in 6 weeks, naming, comprehension, and repetition of words became almost normal. Spontaneous speech also became almost normal, although comprehension and repetition of sentences remained slightly impaired. The lesion size remained unchanged. A dichotic listening test 4 months after the onset showed clear left ear superiority. We speculate from these observations that the dormant language function in the right hemisphere might have played a role for rapid and good recovery of this case.

Aged↗

Ipidacrine (NIK-247), a novel antidementia, rapidly enters the brain and improves scopolamine-induced amnesia in rats during the Morris water maze task.

The effects of single and repeated administrations of ipidacrine (NIK-247, 9-amino-2, 3, 5, 6, 7, 8-hexahydro-1H-cyclopenta [b] quinoline monohydrochloride monohydrate) on scopolamine-induced spatial learning deficit were investigated in rats using the Morris water maze task. A single oral administration of ipidacrine (0.3 and 1 mg/kg) reduced the increased total latency induced by scopolamine in this task. The repeated administration of ipidacrine (1 mg/kg) of once a day for 5 successive days reduced the increased total latency induced by scopolamine to the levels of the saline-treated control rats in this task. In this pharmaco-kinetic study, ipidacrine was rapidly taken up into the brain within 5 min. Moreover, higher drug levels were observed mainly in the cortex and hippocampus, which both play important roles in learning and memory. Thus, a previous study together with this investigation indicate that ipidacrine improves amnesia which consists of the impairment of the working and reference memory in various animal models, suggesting that ipidacrine is a useful candidate for the therapy of patients with Alzheimer's disease.

Aminoquinolines↗

CD28-B7 T-cell co-stimulatory blockade potentiates the effects of intrathymic immunomodulation in sensitized graft recipients.

BACKGROUND: Peripheral and central immune mechanisms contribute to the induction of tolerance in acute rejection rodent transplant models after systemic administration of CTLA4Ig and intrathymic infusion of donor alloantigen, respectively. We have investigated the effects of CTLA4Ig-induced blockade of CD28-B7 T-cell co-stimulation in conjunction with intrathymic immunomodulation on cellular and humoral immune responses leading to accelerated rejection of cardiac allografts in presensitized rats. METHODS AND RESULTS: Lewis rats were challenged with Wistar-Furth (WF) skin transplants, followed 7 days later by transplantation of WF hearts. These cardiac allografts were rejected in a fulminant manner in <24 hr. A single infusion of human CTLA4Ig (0.5 mg/rat i.v.) at the time of cardiac engraftment (day 0) did not affect accelerated rejection. Intrathymic injection of WF spleen cells (2x10[7]) at the time of skin transplantation (day -7) abrogated <24-hr rejection and extended cardiac allograft survival to 6.6+/-0.6 days. Moreover, intrathymic host immunomodulation combined with administration of human CTLA4Ig (days 0-14, every other day) extended cardiac allograft survival synergistically to 27.7+/-7.5 days, and immunomodulation combined with murine CTLA4Ig extended survival to >42.5+/-4.8 days. The prolongation of allograft survival required the blockade of both B7-1 and B7-2 ligands and was accompanied by reduction of host proliferative responses (mixed lymphocyte response) and depression of anti-donor cytotoxic T-cell generation/function (lymphocyte-mediated cytotoxicity). CTLA4Ig therapy did not affect the strong systemic IgM and IgG alloantibody response seen otherwise after intrathymic immunomodulation. CONCLUSION: CTLA4Ig enhances the effects of intrathymic donor-type cell infusion in sensitized rat recipients of cardiac allografts, indicating that "peripheral" blockade of CD28-B7 T-cell co-stimulation synergizes with the "central" immunosuppressive effects of intrathymic immunomodulation.

Abatacept↗

CD28-B7 T cell costimulatory blockade by CTLA4Ig in sensitized rat recipients: induction of transplantation tolerance in association with depressed cell-mediated and humoral immune responses.

We tested the effects of blocking CD28-B7 T cell costimulation by using CTLA4Ig in an established transplantation model in which LBNF1 cardiac allografts are rejected in an accelerated manner (<36 h) by LEW rats presensitized with Brown-Norway skin grafts. Treatment with CTLA4Ig with or without donor alloantigen in the sensitization phase (between skin and cardiac engraftment) minimally delayed accelerated rejection. However, adjunctive infusion of CTLA4Ig and donor alloantigen in the effector phase (after cardiac engraftment) resulted in long term graft survival and donor-specific tolerance in 30 to 50% of the recipients. The mutant form of CTLA4Ig, which blocks B7-1 but not B7-2, was ineffective. The tolerant state was accompanied by reduction of cell-mediated (MLR/CTL) responses and depression of humoral (circulating IgM/IgG allo-Abs) alloreactivity in vivo. Hence, the binding of CD28 on T cells to both CD80 and CD86 ligands represents a crucial initial costimulatory step leading to accelerated graft rejection. CTLA4Ig-mediated early blockade of the CD28 signaling pathway combined with transfusion of donor cells in the perioperative period interrupts sensitization and may produce transplantation tolerance. This regimen inhibits T cell costimulation and activation to provide help to CD8+ cytotoxic T and B cells, perhaps, via CTLA4Ig-induced clonal anergy or deletion.

Abatacept↗

Arrest in primitive erythroid cell development caused by promoter-specific disruption of the GATA-1 gene.

To elucidate the in vivo function of GATA-1 during hematopoiesis, we specifically disrupted the erythroid promoter of the GATA-1 gene in embryonic stem cells and generated germ line chimeras. Male offspring of chimeras bearing the targeted mutation were found to die by 12.5 days post coitus due to severe anemia while heterozygous females displayed characteristics ranging from severe anemia to normal erythropoiesis. When female heterozygotes were crossed with transgenic males carrying a reporter gene, which specifically marks primitive erythroid progenitors, massive accumulation of undifferentiated erythroid cells were observed in the yolk sacs of the GATA-1-mutant embryos, demonstrating that GATA-1 is required for the terminal differentiation of primitive erythroid cells in vivo.

Animals↗

GATA-1 transcription is controlled by distinct regulatory mechanisms during primitive and definitive erythropoiesis.

Transcription factor GATA-1 is required for the terminal differentiation of both the primitive and definitive erythroid cell lineages, and yet the regulatory mechanisms of GATA-1 itself are not well understood. To clarify how the GATA-1 gene is transcriptionally controlled in vivo, presumptive regulatory regions of the gene were tested by fusion to a reporter gene and then examined in transgenic mice. We found that a transcriptional control element located between -3.9 and -2.6 kb 5' to the erythroid first exon serves as an activating element and that this sequence alone is sufficient to recapitulate the expression of GATA-1 (but uniquely in primitive erythroid cells). Addition of sequences from the GATA-1 first intron to this upstream element provides a necessary and sufficient condition for complete recapitulation of GATA-1 expression in both primitive and definitive erythroid cells. The first intron element does not possess intrinsic transcriptional activation potential when linked to the GATA-1 gene promoter but rather requires the upstream activating element for its activity. These experiments show that GATA-1 gene expression is regulated by discrete transcriptional control elements during definitive and primitive erythropoiesis: The 5' element displays properties anticipated for a primitive erythroid cell-specific activating element, and the novel element within the GATA-1 first intron specifically augments this activity in definitive erythroid cells.

Animals↗

Type 2 helper T cell-type cytokines and the development of "infectious" tolerance in rat cardiac allograft recipients.

CD4-targeted therapy with a nondepleting RIB-5/2 mAb abrogates accelerated (< 36 h) rejection in presensitized LEW rats and results in permanent acceptance of LBNF1 cardiac allografts in conjunction with the features of infectious tolerance. This study examined the role and functional significance of the Th1 and Th2 cytokine network and systemic host allospecific Ab (allo-Ab) responses in the development of the infectious tolerance pathway in this model. Long term survival of cardiac transplants in rats treated with the tolerizing RIB-5/2 mAb regimen was accompanied by profound depression of Th1 (IL-2 and IFN-gamma) and Th2 (IL-4, IL-10) cytokines at the graft site, as shown by competitive template reverse transcription-PCR and immunohistochemistry. In contrast, the expression of Th2-type cytokines was selectively up-regulated after transfer of infectious tolerance by spleen cells into new generations of primary and secondary test recipients. Donor-specific circulating IgM allo-Ab responses were diminished throughout, and the switch from IgM to IgG allo-Ab was completely prevented in tolerant hosts, as shown by flow cytometry. The demonstration that treatment with cytolytic anti-CD4, but not anti-CD8, mAb recreated rejection of test cardiac allografts with simultaneous down-regulation of IL-4 mRNA/protein expression underlines the importance of this cytokine in the development of infectious tolerance. Hence, this report documents distinct cytokine elaboration patterns in animals tolerized by CD4-targeted therapy compared with those rendered tolerant by putative regulatory Th2-like cells. The mechanism of tolerance in anti-CD4 mAb-treated hosts appears distinct from that operating in the absence of mAb, when the tolerant state is being transferred in an infectious manner to new cohorts of test recipients.

Adoptive Transfer↗

Functional assessment of proliferating hepatocytes stimulated by hepatic stimulatory substance in ascorbic acid biosynthetic enzyme-deficient rats.

The functional ability of hepatic stimulatory substance (HSS)-stimulated proliferating hepatocytes was investigated by intrasplenic and/or intraportal transplantation in ascorbic acid (AsA) biosynthetic enzyme-deficient (ODS-od/od) rats that die of osteogenic disorders unless there is AsA supplementation. HSS was extracted from regenerating porcine livers. Hepatocytes isolated from the livers of congeneic ODS-+/+ rats that are capable of synthesizing AsA were transplanted into the spleen (Sp-HTx) and/or the portal vein (Pv-HTx) of ODS-od/od rats. The recipients were divided into eight groups as follows: HSS-untreated groups [group Ia, sham-operated, HTx(-); group IIa, Sp-HTx; group IIIa, Pv-HTx; and group IVa, Sp- and Pv-HTx], HSS-treated groups [group Ib, HSS only; group IIb, Sp-HTx + HSS; group IIIb, Pv-HTx + HSS; and group IVb, Sp- and Pv-HTx + HSS]. The recipients were given a diet and water containing AsA for 6 weeks after HTx, and AsA supplementation was then halted. The average bromodeoxyuridine (BrdU) labeling index (LI) and hepatocyte-occupied ratio in the spleen (H/S ratio) of HSS-treated rats were significantly higher than those of HSS-untreated rats. All the rats in HSS-untreated groups and group Ib died by 8 weeks after the cessation of AsA. In HSS-treated groups IIb, IIIb, and IVb, the survival rates were 60%, 50%, and 80%, respectively, at 16 weeks after HTx. The average serum AsA level of the surviving rats in groups IIb, IIIb, and IVb was significantly higher than that in HSS-untreated groups. These results indicate that HSS treatment induced rapid proliferation of transplanted hepatocytes in the spleen and the portal vein, and that these proliferating hepatocytes synthesized AsA and improved the survival rate of ODS-od/ od rats.

Animals↗

A case of Sjögren's syndrome associated with Sweet's syndrome.

We report a case of Sjögren's syndrome whose clinical course had been indolent until the patient presented with Sweet's syndrome (acute febrile neutrophilic dermatosis). This patient showed renal failure and renal tubular acidosis. Sweet's syndrome resolved within 3 weeks without corticosteroid therapy. Renal biopsy findings were consistent with interstitial nephritis. His renal manifestations responded to corticosteroid therapy and the renal function remained stable during 6 years follow-up without recurrence of Sweet's syndrome. Although close association of both syndromes is already known, in our case Sjögren's syndrome may have been exacerbated by occurrence of Sweet's syndrome.

Acute Kidney Injury↗

Effects of histamine agents on methamphetamine-induced stereotyped behavior and behavioral sensitization in rats.

In this study, effects of histamine (HA) agents on methamphetamine (METH)-induced stereotyped behavior and behavioral sensitization were examined in rats. Pretreatment with a precursor of HA, L-histidine (750mg/kg), significantly inhibited the METH (3 mg/kg)-induced stereotyped behavior, whereas pretreatment with an inhibitor of HA synthesis, alpha-fluoromethylhistidine (FMH) (100 mg/kg), an H1 antagonist pyrilamine (5 mg/kg) or an H2 antagonist zolantidine (5 mg/kg) enhanced it. The inhibitory effect of L-histidine on METH-induced stereotyped behavior was significantly blocked by coadministration of pyrilamine and zolantidine, indicating that the effect is mediated through H1 and H2 receptors. Moreover, chronic treatment with METH (3 mg/kg) significantly enhanced stereotyped behavior at the rechallenge with METH (1 mg/kg). Chronic treatment with L-histidine (750 mg/kg) plus METH inhibited the METH-induced argumentation of stereotyped behavior, while that with FMH (100 mg/kg), pyrilamine (5 mg/kg) or zolantidine (5 mg/kg) potentiated it. These findings suggest that the HA neuron system has an inhibitory role in METH-induced stereotyped behavior and behavioral sensitization.

Animals↗

Interactions between H1-antagonists and opioids: a drug discrimination study.

We previously demonstrated that combination of opioids, pentazocine and dihydrocodeine, with the histamine H1-receptor antagonists tripelennamine and chlorpheniramine could enhance their rewarding effects in rats. In the present study, the effects of combined treatment with opioids and H1-antagonists on discriminative stimulus effects were examined in rats trained to discriminate between cocaine (10 mg/kg) or morphine (3.0 mg/kg) and saline, since it is believed that discriminative stimulus effects of abused drugs are related to their rewarding effects. Tripelennamine and chlorpheniramine, but not pentazocine or dihydrocodeine, generalized to the discriminative stimulus effects of cocaine. Pentazocine (3.0 mg/kg) and dihydrocodeine (5.6 mg/kg) significantly potentiated the cocaine-like discriminative stimulus effects of low doses of tripelennamine and chlorpheniramine, respectively. On the other hand, pentazocine and dihydrocodeine, but not tripelennamine or chlorpheniramine, generalized to the discriminative stimulus effects of morphine. Neither 1.0 or 3.0 mg/kg tripelennamine nor chlorpheniramine affected the morphine-like discriminative stimulus effects of pentazocine and dihydrocodeine, respectively. These results suggest that the potentiation of the cocaine-like discriminative stimulus effects of H1-antagonists by opioids may be involved in the enhanced rewarding effects of combinations of opioids and H1-antagonists.

Analgesics, Opioid↗

Effects of clobenpropit (VUF-9153), a histamine H3-receptor antagonist, on learning and memory, and on cholinergic and monoaminergic systems in mice.

The effects of clobenpropit (VUF-9153), a potent histamine H3-receptor antagonist, on a scopolamine-induced learning deficit in the step-through passive avoidance test was studied in mice. Clobenpropit (10 and 20 mg/kg) alone showed a tendency to ameliorate the scopolamine-induced learning deficit, and clobenpropit (10 mg/kg) in combination with zolantidine (20 mg/kg), a histamine H2-receptor antagonist, ameliorated the scopolamine-induced effect. This ameliorating effect was antagonized by (R)-alpha-methylhistamine (20 mg/kg), a histamine H3-receptor agonist and pyrilamine (20 mg/kg), a histamine H1-receptor antagonist, suggesting that clobenpropit in combination with zolantidine showed the ameliorating effect via histamine H3 receptors and/or histamine H1 receptors. We also studied the effects of clobenpropit on cholinergic and monoaminergic systems. Clobenpropit did not show any significant effect on these neuronal systems except the activation of noradrenergic system. The present results suggest that the effect of clobenpropit might be partially involved with the activation of noradrenergic system, and the histaminergic system may play certain important roles in learning and memory.

Acetylcholine↗