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Biomedical subjects

K Matsuno

Publications and source records attributed to K Matsuno.

At least 37 records · Page 2Linked to original sources

Asialoglycoprotein receptors on rat dendritic cells: possible roles for binding with Kupffer cells and ingesting virus particles.

Rat dendritic cells selectively bind to Kupffer cells in vitro. The present study aimed to reveal adhesion molecules on dendritic cells and their roles in the host defense system. The in situ binding assay to examine the effects of pretreatment of dendritic cells with various kinds of monosaccharides suggested that N-acetylgalactosamine was necessary for the binding of dendritic cells to Kupffer cells. This binding was also attenuated when dendritic cells were injected into an ex vivo liver perfusion circuit together with N-acetyl-galactosamine. It was further shown that the majority of rat lymph dendritic cells and some interdigitating dendritic cells in the lymph nodes possessed asialoglycoprotein receptors specific for N-acetylgalactosamine/galactose as detected by immunostaining. Lymph dendritic cells could ingest virus particles in vitro, even though these cells showed no phagocytic activity for latex particles. The results indicate that rat dendritic cells possess asialoglycoprotein receptors which are probably utilized to recognize Kupffer cells for their recruitment to the liver and possibly to recognize virus particles prior to phagocytosis.

Animals↗

In vivo roles of donor and host dendritic cells in allogeneic immune response: cluster formation with host proliferating T cells.

Possible roles of dendritic cells (DCs) in allogeneic immune responses in host lymphoid tissues were characterized in situ by using rat DC transfer and cardiac transplantation models. When allogeneic DCs were intravenously injected, these cells selectively migrated to the T-cell area of hepatic lymph nodes, with peak accumulation at 18 h after injection. Donor DCs and proliferating host T cells formed clusters (rosettes) in which the T-cell proliferative response started. The donor DCs were CD80(+) CD86(+) and, ultrastructurally, were in intimate contact with lymphoblasts within the rosettes. As a novel finding, some of the migrated donor DCs were quickly phagocytosed by putative host interdigitating DCS: By 48 h, the remaining donor DCs had disintegrated within the rosettes. Host interdigitating DCs also formed rosettes throughout the T-cell area, and their kinetics correlated well with that of the T-cell proliferation. In the cardiac allograft model, a few donor DCs selectively migrated to the host spleen and hepatic nodes. Rosette formation by donor and host DCs, phagocytosis of donor DCs, and the T-cell proliferative response occurred in much the same fashion as they did in the first experiment. We conclude that the donor rosettes at the early stage represent the sites of direct allosensitization and those at the late stage represent donor-DC killing. Host rosettes are the sites of T-cell proliferation. In this structure, phagocytosed donor-DC-derived antigens are presumably indirectly presented.

Adoptive Transfer↗

Individual differences in urinary cotinine levels in Japanese smokers: relation to genetic polymorphism of drug-metabolizing enzymes.

Urinary cotinine, one of the main metabolites of nicotine, has been widely used as a biomarker for assessment of direct or passive exposure to cigarette smoke. However, there is wide variation of the cotinine level among smokers who smoke the same number of cigarettes. To use urinary cotinine as a proper exposure-biomarker for cigarette smoke, interindividual variations of cotinine formation must be considered. Therefore, we studied the effects of genetic polymorphisms in drug metabolic enzymes on urinary cotinine levels among 190 male Japanese smokers (ages 19-66 years; mean, 40.6 years). Genetic polymorphisms in cytochrome P-450s (CYP1A1, CYP2A6, CYP2E1), and aldehyde dehydrogenase 2 (ALDH2) were determined by analyzing DNA isolated from peripheral blood. Cotinine in morning spot urine was analyzed by high-performance liquid chromatography. Lifestyle, i.e., smoking, alcohol consumption, and intake of coffee or tea, was examined using a questionnaire. The number of cigarettes smoked and CYP2A6 polymorphism were significantly associated with the urinary cotinine level. Especially, the urinary cotinine levels was drastically lower in CYP2A6-deleted homozygous (CYP2A6*4/*4) subjects than in CYP2A6*1 allele-positive subjects. The polymorphism in the CYP2E1 5'-flanking region was related to the urinary cotinine level in intermediate smokers (who smoke 11-20 cigarettes/day; P < 0.01). Polymorphisms in CYP1A1 or ALDH2, and consumption of alcohol, coffee, or tea were not associated with the urinary cotinine level.

Adult↗

Metabotropic neurosteroid/sigma-receptor involved in stimulation of nociceptor endings of mice.

In peripheral nociceptive flexor test, SA4503, (+)-pentazocine, and (+)-3-(hydroxyphenyl)-N-(1-propyl)piperidine, representative sigma-receptor agonists, elicited dose-dependent flexor responses. These responses were blocked by sigma-receptor antagonists NE-100 or BD1063, but not by pretreatments with antisense oligodeoxynucleotide for sigma1 binding protein. The sigma-agonists' nociception is attributed to the substance P (SP) release from nociceptor endings through activations of Galpha(i1) and phospholipase C (PLC). On the other hand, attomolar doses of neurosteroids such as dehydroepiandrosterone sulfate (DHEAS) and pregnenolone sulfate caused similar nociception, and they were blocked by progesterone (PROG). However, DHEAS nociception was not affected by pertussis toxin, but was completely inhibited by a PLC inhibitor or thapsigargin. Although the nociception by lower doses of DHEAS was abolished by diphenhydramine (DPH), H1 antagonist, there were dose-dependent responses by high doses of DHEAS in the presence of DPH. The responses by DHEAS in the presence of DPH were blocked by NE-100, and those by (+)-pentazocine were blocked by PROG. All these findings suggest that two novel types of neurosteroid receptors exist, neuronal NS1/sigma-type, which mediates activation of Galpha(i1) by neurosteroids and sigma-agonists, followed by SP release from nociceptor endings; and NS2 type, which mediates histamine release from mast cells by very low doses of neurosteroids.

Animals↗

Efficacy of the novel selective platelet-derived growth factor receptor antagonist CT52923 on cellular proliferation, migration, and suppression of neointima following vascular injury.

Exaggerated or inappropriate signaling by the platelet-derived growth factor receptor (PDGFR) tyrosine kinase has been implicated in a wide variety of diseases. Thus, a series of piperazinyl quinazoline compounds were identified as potent antagonists of the PDGFR by screening chemical libraries. An optimized analog, CT52923, was shown to be an ATP-competitive inhibitor that exhibited remarkable specificity when tested against other kinases, including all members of the closely related PDGFR family. The PDGFRs and stem cell factor receptor were inhibited with an IC(50) of 100 to 200 nM, while 45- to >200-fold higher concentrations of CT52923 were required to inhibit fms-like tyrosine kinase-3 and colony-stimulating factor-1 receptor, respectively. Other receptor tyrosine kinases, cytoplasmic tyrosine kinases, serine/threonine kinases, or members of the mitogen-activated protein kinase pathway were not significantly inhibited at 100- to 1000-fold higher concentrations. In addition, this compound also demonstrated specificity for inhibition of cellular responses. Platelet-derived growth factor-induced smooth muscle cell migration or fibroblast proliferation was found to be blocked by CT52923 with an IC(50) of 64 and 280 nM, respectively, whereas 50- to 100-fold higher concentrations were required to inhibit these responses when induced with fibroblast growth factor. To investigate the effect of CT52923 on PDGFR signaling, in vivo studies demonstrated that CT52923 could significantly inhibit neointima formation following carotid artery injury by oral administration in the rat. Therefore, PDGFR antagonism by CT52923 could be a viable strategy for the prevention of clinical restenosis or the treatment of other human diseases involving PDGFR signaling.

Angioplasty, Balloon↗

Metabolic changes in human CD36 deficiency displayed by glucose loading.

Previous in vitro studies have shown that CD36 participates in cellular fatty acid (FA) uptake. In vivo evidence for a physiologic role of CD36 in this process is poor and mostly obtained in animals. To examine the metabolic role of human CD36, we performed a glucose loading test for normals (n = 16) and subjects with CD36 deficiency, both Type I (n = 5) and Type II (n = 16). After 30 min, FA levels had fallen by 60.1% in normals but by only 31.7% in Type II deficiency (P <0.01 vs. normals) and 16.5% in Type I deficiency which remained significantly higher than the other two groups out to 2 h. Further, changes in triglyceride and glucose metabolism were observed in the both types of CD36 deficiency. Impaired fast FA clearance by muscle and consequently increased hepatic FA uptake seem to underlie these changes. We conclude that human CD36 deficiency causes systemic metabolic changes.

Adult↗

Human CD36 deficiency is associated with elevation in low-density lipoprotein-cholesterol.

To find out whether CD36 plays a role in the human lipoprotein metabolism, we studied lipoprotein profiles in subjects with CD36 deficiency. Apparently healthy Japanese volunteers (n = 790) were classified by flow cytometry into three groups of normal (platelet and monocyte CD36+, n = 741, 93.8%), type-II deficiency (platelet CD36- and monocyte CD36+, n = 45, 5.7%), and type-I deficiency (platelet and monocyte CD36-, n = 4, 0.5%). At least one of reported mutations in the CD36 gene was found in all four subjects with type-I deficiency and in 23 of the 45 subjects with type II. Among 779 subjects (731 normals, 44 type II, and four type I) with serum triglyceride levels of <400 mg/dL, serum total cholesterol and low-density lipoprotein (LDL) cholesterol were significantly elevated in type-II deficiency (P = 0.0095 and 0.0382 versus normal, respectively, Scheffe's F-test), while differences were not significant in triglyceride and high-density lipoprotein-cholesterol. Similar tendency was observed in type-I deficiency, although the differences were not statistically significant because of small sample size. We conclude that CD36 deficiency elevates LDL cholesterol, indicating a contribution of CD36 to LDL metabolism.

CD36 Antigens↗

Binding of [35S]GTPgammaS stimulated by (+)-pentazocine sigma receptor agonist, is abundant in the guinea pig spleen.

Here we measured sigma receptor agonist, [3H](+)-pentazocine binding and (+)-pentazocine-stimulated [35S]GTPgammaS binding throughout brain regions and peripheral organs of mice and guinea pigs to investigate the distribution of G protein-coupled sigma receptors. There was no significant correlationship between both distributions, in which the [3H](+)-pentazocine binding is highest in the liver of each species, while the [35S]GTP-gammaS binding is highest in the guinea pig spleen. The agonist-stimulated [35S]GTPgammaS binding in the spleen was also confirmed by in situ autoradiography using sections. Thus it is suggested that there are at least two subtypes, metabotropic and nonmetabotropic sigma receptors, and the former ones are abundant in the guinea pig spleen.

Animals↗

Novel mutation (E113X) of antithrombin III gene (AT3) in a woman with gestational recurrent thrombosis.

A 35-year-old Japanese woman with a low level (42-54%) of blood antithrombin (AT) III, experienced two induced abortions due to deep venous thrombosis at 8 weeks of gestation (GW) and cerebral thrombosis at 10 GW. The present pregnancy was successfully managed with intravenous administration of AT III (6,000-8,000 U/wk). Analysis of polymerase chain reaction (PCR)-single strand conformation polymorphism (SSCP) for exons 3A and 4 of the AT III gene (AT3) using her DNA revealed extra expansion bands with altered migration. The DNA sequencing demonstrated novel mutations in exon 3A of AT3: a G to T substitution at nucleotide position 5333 in codon GAG for Glu 113, causing a stop codon (E113X), and an A to T substitution at position 5338 in codon AAA for Lys 114, forming Asn (K114N). These novel mutations, especially E113X, in AT3 may be related to recurrent thrombosis in the pregnancy.

Abortion, Induced↗

Preclinical evaluation of [11C]SA4503: radiation dosimetry, in vivo selectivity and PET imaging of sigma1 receptors in the cat brain.

Our previous in vivo study with rats has demonstrated that 11C-labeled 1-(3,4-dimethoxyphenethyl)-4-(3-phenylpropyl)piperazine ([11C]SA4503) is a potential radioligand for mapping CNS sigmal receptors by positron emission tomography (PET). In the present study, we further characterized this ligand. The radiation absorbed-dose of [11C]SA4503 in humans estimated with the tissue distribution in mice, was higher in the liver, kidney and pancreas than in other organs studied, but was low enough for clinical use. The brain uptake of [11C]SA4503 in mice was reduced to approximately 60-70% by co-injection of carrier SA4503 and haloperidol, but not by co-injection of any of six ligands for sigma2 or other receptors, for which SA4503 showed in vitro >100 times weaker affinity than for signal receptor. In the cat brain, the uptake in the cortex was higher than that in the cerebellum. The radioactivity in the cortex and cerebellum accumulated for the first 10 min and then gradually decreased until 81.5 min in the baseline measurement, but rapidly decreased in the carrier-loading condition. The receptor-mediated uptake was estimated to be approximately 60-65% of the total radioactivity in the cortex and cerebellum at 76 min after tracer injection. We have concluded that [11C]SA4503 has the potential for mapping sigma1 receptor by PET.

Animals↗

Effect of mental stress on left ventricular ejection fraction and its relationship to the severity of coronary artery disease.

To evaluate the relationship between the mental stress-induced decrease in left ventricular ejection fraction (LVEF) and the severity of exercise-induced ischaemia, 20 patients with stable coronary artery disease (CAD) underwent radionuclide ventriculography during mental stress testing and stress myocardial perfusion single-photon emission tomography (SPET). We also examined whether changes in haemodynamic and neurohormonal parameters are related to changes in LVEF during mental stress. The LVEF decreased from 54.8% +/- 17.7% to 49.8% +/- 16.2% with mental stress (P < 0.0005). Ten of the 20 patients (50.0%) had a > or = 5% decrease in LVEF The remaining ten patients had no or a <5% decrease in LVEF There was a significant correlation between the change in LVEF during mental stress and the size of the reversible defect on stress myocardial perfusion SPET (r = -0.80, P < 0.0005), with close regional correspondence (75% identical). This correlation was less strong in the 12 patients with a total defect score at rest of <10 (r = -0.69, P = 0.014) than in the eight patients with a total defect score at rest of > or = 10 (r = -0.94, P = 0.001). The changes in blood pressure and heart rate were not significantly correlated with the change in LVEF, but the percent change in adrenaline concentration correlated with the change in LVEE It is suggested that mental stress impairs systolic function by inducing transient myocardial ischaemia. The effect of neurohormonal responses during mental stress on LV systolic function may also be important in patients with CAD.

Aged↗

Immunochemical characterization of monoclonal protein in the serum of a patient with Waldenstr]om's macroglobulinemia showing both pyroglobulin and cryoglobulin properties.

A patient with Waldenstr]om's macroglobulinemia whose serum demonstrated properties of both pyroglobulin and cryoglobulin was studied. A monoclonal (M) protein in the serum of the patient was identified by immunoelectrophoresis (IEP) and immunofixation electrophoresis (IFE) as IgM-lambda. The M-protein was separated by gel permeation high-performance liquid chromatography (HPLC). Cryoglobulin in the serum was isolated by the method of cold precipitation. The cryoglobulin was identified as IgM-lambda type by IEP and was the same M-protein as that which occurred in this patient's serum. The purified cryoglobulin also had the properties of a pyroglobulin. Neither property disappeared following pretreatment with 2-mercaptoethanol (2-ME), urea, and Triton X-100 detergent, and deglycosylation with N-glycanase (E.C. 3.5.1.52). We suggest that these abnormal properties were caused by the molecular abnormality of the IgM-lambda M-protein.

Aged↗

Dendritic cell dynamics in the liver and hepatic lymph.

Dendritic cells (DC) are bone-marrow-derived cells that function as professional antigen-presenting cells (APC). Liver is an essential organ for a host defense. It not only is armed with a powerful macrophage system but also is constantly surveyed by a heavy traffic of DC and lymphocytes. In case of emergency, such as infection and inflammation, DC traffic in the liver is accelerated. DC in the liver (interstitial DC) capture and process antigens, enter the draining lymph (DC in hepatic lymph) and accumulate in the T-cell area of hepatic lymph nodes (LN). DC in the LN present antigens to T and B cells to initiate immune responses. In accelerated states, DC precursors are recruited to the liver and soon translocate to hepatic lymph. Even mature lymph DC can undergo a blood-lymph translocation from the liver to hepatic LN after i.v. injection into normal rats. Rat Kupffer cells in the hepatic sinusoids are capable of selectively trapping DC from the blood in vivo and in vitro, suggesting involvement of certain adhesion molecules. Kupffer cells presumably elaborate chemokines to attract and trap the recruited DC via selective adhesion, leading to DC extravasation. The accelerated traffic and the presence of blood-lymph translocation would induce rapid and efficient immune responses and thus contribute to the local defense to antigens within liver tissues as well as systemic defense to blood-borne antigens. DC progenitors are also present in the liver, and these may play an important role in tolerance induction in liver transplantation.

Animals↗

Is there a biology of quantum information?

This paper briefly considers the notion of a biology of quantum information from a number of complementary points of view. We begin with a very brief look at some of the biomolecular systems that are thought to exploit quantum mechanical effects and then turn to the issue of measurement in these systems and the concomitant generation of information. This leads us to look at the internalist stance and the exchange interaction of quantum particles. We suggest that exchange interaction can also be viewed using ecological ideas related to apparatus-object. This can also help develop the important notion of complementarity in biosystems in relation to the nature and generation of information at the microphysical scale.

Adenosine Triphosphate↗

In vivo evaluation of [(11)C]SA4503 as a PET ligand for mapping CNS sigma(1) receptors.

The potential of the (11)C-labeled selective sigma(1) receptor ligand 1-(3,4-dimethoxyphenethyl)-4-(3-phenylpropyl)piperazine ([(11)C]SA4503) was evaluated in vivo as a positron emission tomography (PET) ligand for mapping sigma(1) receptors in rats. SA4503 is known to have a high affinity (IC(50) = 17.4 nM) and a higher selectivity (sigma(1)/sigma(2) = 103) for the sigma(1) receptor. A high and increasing brain uptake of [(11)C]SA4503 was found. Pre-, co- and postinjection of cold SA4503 significantly decreased uptake of [(11)C]SA4503 in the brain, spleen, heart, lung, and kidney in which sigma receptors are present as well as in the skeletal muscle. In the blocking study with one of four sigma receptor ligands including haloperidol, (+)-pentazocine, SA4503, and (-)-pentazocine (in the order of their affinity for sigma(1) receptor subtype), SA4503 and haloperidol significantly reduced the brain uptake of [(11)C]SA4503 to approximately 30% of the control, but the other two benzomorphans did not. A high specific uptake of [(11)C]SA4503 by the brain was also confirmed by ex vivo autoradiography (ARG) and PET. Ex vivo ARG showed a higher uptake in the vestibular nucleus, temporal cortex, cingulate cortex, inferior colliculus, thalamus, and frontal cortex, and a moderate uptake in the parietal cortex and caudate putamen. Peripherally, the blocking effects of the four ligands depended on their affinity for sigma(1) receptors. No (11)C-labeled metabolite was detected in the brain 30 min postinjection, whereas approximately 20% of the radioactivity was found as (11)C-labeled metabolites in plasma. These results have demonstrated that the (11)C-labeled sigma(1) receptor ligand [(11)C]SA4503 has a potential for mapping sigma(1) receptors in the central nervous system and peripheral organs.

Animals↗

Synthesizing oligomers from monomeric nucleotides in simulated hydrothermal environments.

Dimers and trimers of adenosine monophosphate (AMP) were synthesized from AMP in environments simulating hot vents on the sea floor of the primitive Earth. The simulated environments were made in the flow reactor, in which an aqueous solution of reactants was circulated from the hot to the cold region repeatedly. The oligomerization proceeded most significantly when the hot reaction solution at about 110 degrees C was abruptly ejected into the cold environment maintained at about 0 degree C.

Adenine Nucleotides↗