Search PubMed⌕ Search

Biomedical subjects

N Nakagawa

Publications and source records attributed to N Nakagawa.

At least 19 recordsLinked to original sources

Relaxation, the Boltzmann-Jeans conjecture, and chaos.

Slow (logarithmic) relaxation from a highly excited state is studied in a Hamiltonian system with many degrees of freedom. The relaxation time is shown to increase as the exponential of the square root of the energy of excitation, in agreement with the Boltzmann-Jeans conjecture, while it is found to be inversely proportional to residual Kolmogorov-Sinai entropy, introduced in this Rapid Communication. The increase of the thermodynamic entropy through this relaxation process is found to be proportional to this quantity.

Journal Article↗

Influence of anesthesia on brain distribution of [(11)C]methamphetamine in monkeys in positron emission tomography (PET) study.

We investigated the influence of anesthesia on the brain distribution of [11C]methamphetamine (MAP) obtained by the positron emission tomography (PET) using the normal rhesus monkeys. We clarified that the brain uptake of [11C]MAP under halothane anesthesia was faster and higher than that under pentobarbital. The difference of the effect of anesthesia is an important problem in pharmacokinetic study in PET with experimental animals.

Adjuvants, Anesthesia↗

Collagen minipellet as a controlled release delivery system for tetanus and diphtheria toxoid.

The use of biodegradable polymer matrices as a single-dose vaccine delivery system was investigated using tetanus toxoid (TT) and diphtheria toxoid (DT). BALB/c mice were immunized with TT or DT in different formulations including individual, in minipellet and aluminum hydroxide (alum), and the antibody responses were monitored for 48 weeks. Antigens entrapped in minipellet elicited higher antibody responses compared to those obtained with individual antigens and antigens adsorbed to alum and the antibody levels remained elevated over 48 weeks. In addition, minipellet formulations induced the same subclasses of antibodies induced by alum formulations. These results raise the possibility to obtain optimal and long-lasting immune responses by a single administration of minipellet formulations.

Adjuvants, Immunologic↗

Superconductivity at 39 K in magnesium diboride.

In the light of the tremendous progress that has been made in raising the transition temperature of the copper oxide superconductors (for a review, see ref. 1), it is natural to wonder how high the transition temperature, Tc, can be pushed in other classes of materials. At present, the highest reported values of Tc for non-copper-oxide bulk superconductivity are 33 K in electron-doped Cs(x)Rb(y)C60 (ref. 2), and 30 K in Ba(1-x)K(x)BiO3 (ref. 3). (Hole-doped C60 was recently found to be superconducting with a Tc as high as 52 K, although the nature of the experiment meant that the supercurrents were confined to the surface of the C60 crystal, rather than probing the bulk.) Here we report the discovery of bulk superconductivity in magnesium diboride, MgB2. Magnetization and resistivity measurements establish a transition temperature of 39 K, which we believe to be the highest yet determined for a non-copper-oxide bulk superconductor.

Journal Article↗

Creep motion in a granular pile exhibiting steady surface flow.

We investigate experimentally granular piles exhibiting steady surface flow. Below the surface flow, it has been believed that a "frozen" bulk region exists, but our results show no such frozen bulk. We report here that even the particles in layers deep in the bulk exhibit very slow flow and that such motion can be detected at an arbitrary depth. The mean velocity of the creep motion decays exponentially with depth, and the characteristic decay length is approximately equal to the particle size and is independent of the flow rate. It is expected that the creep motion we have seen is observable in all sheared granular systems.

Journal Article↗

Characterization of new epidemic strains of influenza B virus by using neutralizing monoclonal antibodies.

During the 1998-1999 influenza season, two distinct influenza B virus Yamagata group strains were isolated from the patients of a private clinic. Each responded differently to monoclonal antibodies (Mabs) 5H4 and 8B3 on staining, and hemagglutination inhibition and neutralizing tests. When the analysis of nucleotide sequences was undertaken, the identity of deduced amino acid sequences of the HA1 region was 94%, which suggested that they derived from different strains. They were termed 5H4-responding strains and 5H4-nonresponding strains, respectively. The analysis of laboratory-induced antigenic variants suggested that the amino acid at position 149 is important to the reactivity to 5H4. This residue was "Arg" in 5H4-responding strains and "Lys" in nonresponding strains. During the 1998-1999 season, a total of 100 influenza B virus strains were isolated and 5H4-responding strains were the major type (94 strains). In the 1999-2000 influenza season, only two influenza B virus strains were isolated. Neither responded to 5H4. However, analysis of the deduced amino acid sequences of the HA1 region suggested that one of the two strains was derived from the 5H4-responding strains of the previous season. The amino acid residue at position 149 was "Lys" in place of "Arg." These observations suggested that 5H4-nonresponding strains will increase in coming seasons.

Amino Acid Sequence↗

Synovial cells from a patient with rheumatoid arthritis produce osteoclastogenesis inhibitory factor/osteoprotegerin: reciprocal regulation of the production by inflammatory cytokines and basic fibroblast growth factor.

To understand the involvement of osteoclastogenesis inhibitory factor (OCIF), also called osteoprotegerin (OPG), in the pathogenesis of bone destruction in rheumatoid arthritis (RA), we investigated the cytokine network involved in the production of OCIF by human fibroblast-like synovial (HFLS) cells from a patient with RA. Inflammatory cytokines, such as interleukin (IL)-1beta, IL-6 plus soluble IL-6 receptor (sIL-6R), IL-17, and tumor necrosis factor (TNF)-alpha, which are elevated in synovial fluid in RA, upregulated the production of OCIF to a level (5-20 ng/ml) sufficient to inhibit osteoclastogenesis in vitro. These inflammatory cytokines (except for IL-6 plus sIL-6R) stimulate OCIF production directly or indirectly through stimulation of prostaglandin E2 (PGE2) synthesis. In contrast to the findings with inflammatory cytokines, basic fibroblast growth factor (bFGF) inhibited the production of OCIF by the cells in a dose-dependent manner. While bFGF enhanced both the inflammatory cytokine-mediated release of PGE2 and the PGE2-mediated OCIF production, it significantly suppressed OCIF production by negating the direct stimulatory effect of the inflammatory cytokines. These findings suggest that bFGF in the synovial fluid of patients with RA may lead to severe joint destruction by suppressing the production of OCIF by HFLS cells.

Arthritis, Rheumatoid↗

Measurement of ethylene emission from Japanese red pine (Pinus densiflora) under field conditions in NOx-polluted areas.

Emission of ethylene from the needles of Japanese red pine, Pinus densiflora, was measured in air-polluted areas in Hiroshima, Japan. We applied a suitable protocol to determine the rate of ethylene emission from the excised needles. The influence of excision of needles on ethylene emission was not detected during the first 4 h of incubation at 20 degrees C. Ethylene emissions were low in the unpolluted (clean) areas regardless of the altitude or season. The emission of stress ethylene increased with the atmospheric NO2 concentration, suggesting that atmospheric NOx or related substances induced the higher ethylene emission in the polluted areas (near urban and industrial areas). In all cases, 1-year-old needles emitted significantly larger amounts of ethylene than the current needles. Ethylene emission did not increase evenly in the polluted areas, but the frequency of trees emitting high ethylene increased. Therefore, threshold rates for the baseline ethylene emission were proposed.

Air Pollutants↗

Increase of dendritic cells of type 2 (DC2) by altered response to IL-4 in atopic patients.

BACKGROUND: Recent studies have shown that there are 2 dendritic cell subpopulations, DC1 and DC2, which induce T(H)1 and T(H)2 cell differentiation in vitro, respectively. OBJECTIVE: The purpose of this study was to determine whether there exists a deviation of DC1 and DC2 subsets and to investigate their functional abnormalities in T(H)2 cell-mediated atopic diseases. METHODS: We analyzed the frequencies of DC1 (CD11c(+)CD123(-)) and DC2 (CD11c(-)CD123(+)) cells in peripheral blood of atopic patients; we also studied the responses of DC2 cells from atopic patients to IL-3 and IL-4 for their survival. RESULTS: DC2 cells but not DC1 cells were significantly increased in peripheral blood of atopic patients in comparison with that of healthy subjects. DC2 cell numbers were positively correlated with serum IgE levels and blood eosinophil counts, the increase of which reflects T(H)2-type immune response in atopic diseases. IL-4 inhibited IL-3-induced survival of DC2 cells from healthy controls, but IL-4 failed to suppress the IL-3-induced survival of DC2 cells from atopic patients. Furthermore, IL-4 alone enhanced the survival of DC2 cells from atopic patients but not from healthy controls. However, no significant differences were found in the expression levels of activation/maturation markers on DC2 cells between atopic patients and healthy controls. CONCLUSION: These results indicate that DC2 cells are preferentially increased in atopic patients in correlation with the state of atopic allergy and that DC2 cells in atopic patients, unlike those in healthy subjects, exhibit altered responses to IL-4 for survival, suggesting that DC2 cells in atopic patients might contribute to the enhanced T(H)2 cell differentiation in atopic diseases.

Adult↗

Paraformaldehyde protects of hepatitis C virus particles during ultracentrifugation.

Divergent buoyant densities of hepatitis C virus (HCV) have been reported. If the destruction of HCV particles occurs during the ultracentrifugation process to separate fractions with different densities, an accurate evaluation of the HCV buoyant density is difficult. To examine this concern, changes were examined in HCV RNA titer of each density fraction after paraformaldehyde fixation of virus particles in the sera of 9 patients with chronic HCV infection. Serum was treated with 4% paraformaldehyde, and the density fractions were then separated by ultracentrifugation. The HCV RNA titer of each fraction was determined by reverse transcription-polymerase chain reaction (RT-PCR) assay, and the results were compared with those obtained from the serum without paraformaldehyde fixation. After fixation, the HCV RNA titer was significantly increased in the 1.11-1.14 g/mL fraction (P=0.0018), and decreased in the 1.14-1.17 and 1.17-1.20 g/mL fractions (P=0.0457 and 0.0003, respectively). Using immunogold electron microscopy, it was found that morphologically destroyed HCV particles are present mainly in the 1.17 g/mL fraction of paraformaldehyde-untreated samples, whereas the intact HCV virion particles are present in the 1.12 and 1.14 g/mL fractions of the paraformaldehyde-treated samples. These results suggest that the destruction of HCV virions occurs during the ultracentrifugation process and that paraformaldehyde treatment protects from destruction. It was also considered that the accurate buoyant density of the HCV virion is 1.11-1.14 g/mL. This study describes a useful method for the purification of HCV virions, and provides new insights for elucidating the physicochemical properties of HCV particles.

Adult↗

Deficiencies of hippocampal Zn and ZnT3 accelerate brain aging of Rat.

We examined the link of hippocampal Zn to the functional impairments with aging using senescence-accelerated mouse prone 10 (SAMP10) with deficits in learning and memory. Zn in hippocampal mossy fiber pathway was less distributed in aged SAMP10 than that in the age-matched control. Furthermore, expression of Zn transporter 3, ZnT3, which plays to accumulate Zn in synaptic vesicles in the mossy fiber pathway, was markedly reduced in the hippocampal region even in young SAMP10. Moreover, excessive presynaptic release of glutamate as well as glycine and expression of glial fibrillary acidic protein, a marker of neuronal cell injury, were observed in the hippocampus of aged SAMP10 compared to the control. The present results suggest that age-dependent deficiencies of Zn in synaptic vesicles of the mossy fiber pathway induced by low expression of ZnT3 cause glutamatergic excitotoxicity in the hippocampal neurons and the deterioration of learning and memory in SAMP10.

Aging↗

Observation of RecA protein monomer by small angle X-ray scattering with synchrotron radiation.

RecA protein is capable of forming homo-oligomers in solution. The oligomeric and monomeric states of Thermus thermophilus RecA protein were studied by small angle X-ray scattering, a direct method used to measure the overall dimensions of a macromolecule. In the presence of 3 M urea or 0.2 M lithium perchlorate, RecA dissociates from higher oligomeric states to form a hexamer with a radius of gyration (R(g)) of 52 A. The value of R(g) decreased to 36 A at a higher lithium perchlorate concentration (1.0 M). The zero angle intensity, I(0), was consistent with the identification of the former state as a hexamer and the latter as a monomer.

Crystallography, X-Ray↗

The nucleotide excision repair protein UvrB, a helicase-like enzyme with a catch.

Nucleotide excision repair (NER) is a universal DNA repair mechanism found in all three kingdoms of life. Its ability to repair a broad range of DNA lesions sets NER apart from other repair mechanisms. NER systems recognize the damaged DNA strand and cleave it 3', then 5' to the lesion. After the oligonucleotide containing the lesion is removed, repair synthesis fills the resulting gap. UvrB is the central component of bacterial NER. It is directly involved in distinguishing damaged from undamaged DNA and guides the DNA from recognition to repair synthesis. Recently solved structures of UvrB from different organisms represent the first high-resolution view into bacterial NER. The structures provide detailed insight into the domain architecture of UvrB and, through comparison, suggest possible domain movements. The structure of UvrB consists of five domains. Domains 1a and 3 bind ATP at the inter-domain interface and share high structural similarity to helicases of superfamilies I and II. Not related to helicase structures, domains 2 and 4 are involved in interactions with either UvrA or UvrC, whereas domain 1b was implicated for DNA binding. The structures indicate that ATP binding and hydrolysis is associated with domain motions. UvrB's ATPase activity, however, is not coupled to the separation of long DNA duplexes as in helicases, but rather leads to the formation of the preincision complex with the damaged DNA substrate. The location of conserved residues and structural comparisons with helicase-DNA structures suggest how UvrB might bind to DNA. A model of the UvrB-DNA interaction in which a beta-hairpin of UvrB inserts between the DNA double strand has been proposed recently. This padlock model is developed further to suggest two distinct consequences of domain motion: in the UvrA(2)B-DNA complex, domain motions lead to translocation along the DNA, whereas in the tight UvrB-DNA pre-incision complex, they lead to distortion of the 3' incision site.

Adenosine Triphosphatases↗

ENH, containing PDZ and LIM domains, heart/skeletal muscle-specific protein, associates with cytoskeletal proteins through the PDZ domain.

The Enigma homologue protein (ENH), containing an N-terminal PDZ domain and three C-terminal LIM domains, is a heart and skeletal muscle-specific protein that has been shown to preferentially interact with protein kinase C beta (PKCbeta) through the LIM domains (Kuroda et al., J. Biol. Chem. 271, 31029-31032, 1996). We here demonstrate that ENH is colocalized with a cytoskeletal protein alpha-actinin in the Z-disk region of rat neonatal cardiomyocytes. Pull-down assays using the glutathione-S-transferase-fusion system also showed the interaction of the PDZ domain of ENH with actin and alpha-actinin. Furthermore, by combined use of the in silico and conventional cDNA cloning methods, we have isolated three ENH-related clones from a mouse heart-derived cDNA library: mENH1 (591 amino acid residues) corresponding to rat ENH, mENH2 (337 residues), and mENH3 (239 residues); the latter two containing only a single PDZ domain. Deciphering their cDNA sequences, these mENH1-3 mRNAs appear to be generated from a single mENH gene by alternative splicing. Northern blot analyses using human cancer cells and mouse embryos have shown expression of each mENH mRNA to vary considerably among the cell types and during the developmental stage. Together with a recent finding that PKCbeta is markedly activated in the cardiac hypertrophic signaling, these results suggest that ENH1 plays an important role in the heart development by scaffolding PKCbeta to the Z-disk region and that ENH2 and ENH3 negatively modulate the scaffolding activity of ENH1.

Actinin↗