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Biomedical subjects

K Tashiro

Publications and source records attributed to K Tashiro.

At least 127 records · Page 7Linked to original sources

Laminin inhibits both Abeta40 and Abeta42 fibril formation but does not affect Abeta40 or Abeta42-induced cytotoxicity in PC12 cells.

Laminin has recently been reported to inhibit both Abeta40 and Abeta42 fibril formation in vitro. Laminin was thus suggested to be an effective therapeutic agent for Alzheimer's disease. However, some recent reports have shown that Abeta fibril formation may not necessarily be linked to the development of Abeta neurotoxicity. In the present study, we thus investigated whether or not laminin affects Abeta40 and Abeta42-induced neurotoxicity. The findings of the present study by using the 3-[4,5-dimethylthiazol-2-yl]-2,5-diphenyltetrazolium bromide (MTT) dye reduction test showed laminin not to have an inhibitory effect on Abeta40 or Abeta42-induced cytotoxicity in PC12 cells while Abeta fibril formation was inhibited under the conditions used in the present study. The findings of the present study therefore do not support the hypothesis that Abeta fibril formation is absolutely required for the development of Abeta cytotoxicity.

Amyloid beta-Peptides↗

Protective effects of the TNF-ceramide pathway against glutamate neurotoxicity on cultured mesencephalic neurons.

Pretreatments with TNF-alpha and lower concentrations of C2-ceramide protected cultured mesencephalic neurons from excitotoxicity in a dose-dependent manner. These protective effects are reduced by cotreatment with N,N-dimethylsphingosine (DMS), an inhibitor of sphingosine kinase. Since the pretreatment with sphingosine-1-phosphate (SPP) showed a neuroprotective effect, our data suggest that protective effects of TNF and C2-ceramide could be attributable to their further metabolism to SPP.

Animals↗

Augmented expression of macrophage migration inhibitory factor (MIF) in the telencephalon of the developing rat brain.

Macrophage migration inhibitory factor (MIF) has been characterized as a proinflammatory cytokine, hormone, and immunomodulator. We previously demonstrated the distribution of MIF in the adult rat brain and revealed its expression in neurons as well as glial cells. In this study, we investigated the localization of MIF in the developing rat brain from embryonic day (ED) 13 to ED19, and after birth from postnatal day (PD) 1 to PD28 using both immunohistochemistry and in situ hybridization. On ED16, the signals of MIF mRNA were high in the ventricular, subventricular, and intermediate zones of the telencephalon, in which 'neuropoietic' progenitor cells proliferate and migrate from the ventricular zone to the superficial layer in the cerebral cortex. The mRNA expression was detected throughout the postnatal period, and intense signals of the transcript were seen in the ventricle and in layers I, II and III of the cerebral cortex at PD5. Similarly, positive staining of MIF protein was seen in the ventricular zone by immunohistochemical analysis, although the positively stained area appeared to be smaller than the mRNA expression. Taken together, these results suggest that the increase in MIF mRNA in the developing brain reflects the growth and maturation of neurons and glial cells.

Animals↗

Identification of a heparin binding site and the biological activities of the laminin alpha1 chain carboxy-terminal globular domain.

The carboxy-terminal globular domain (G-domain) of the laminin alpha1 chain has been shown to promote heparin binding, cell adhesion, and neurite outgrowth. In this study, we defined the potential sequences originating from the G-domain of laminin alpha1 chain which possess these functional activities. A series of peptides were synthesized from the G-domain, termed LG peptides (LG-1 to LG-6) and were tested for their various biological activities. In the direct [3H] heparin binding assays, LG-6 (residues 2,335-2,348: KDFLSIELVRGRVK) mediated high levels of [3H]heparin binding, and this peptide also directly promoted cell adhesion and spreading, including B16F10, M2, HT1080, and PC12 cells. The peptide LG-6 also promoted the neurite outgrowth of PC12 cells, mouse granule cells, and chick telencephalic cells. An anti-peptide LG-6 antibody inhibited laminin-1 and peptide LG-6-mediated cell adhesion and neurite outgrowth. Furthermore, an anti-integrin alpha2 antibody also inhibited the cell adhesion activity. These results suggest that peptide LG-6 plays a functional role as a heparin binding site in the G-domain of the laminin alpha1 chain, and this sequence was thus concluded to play a crucial role in regulating cell adhesion and spreading and neurite out-growth which is related to integrin alpha2.

Amino Acid Sequence↗

Fractalkine and macrophage-derived chemokine: T cell-attracting chemokines expressed in T cell area dendritic cells.

Dendritic cells (DC) are a system of antigen-presenting cells specialized in interaction with T cells. Recently it has been reported that DC can produce CC (beta) chemokines that attract T cells. In this study we isolated mouse fractalkine and macrophage-derived chemokine (MDC) belonging to CX3C (delta) and CC chemokine families, respectively, from bone marrow-derived mature DC. While expression of fractalkine, which has so far been only examined in the brain and in vitro endothelial cells so far, was rather ubiquitous, MDC, which has been reported to be synthesized by macrophages and DC, was expressed specifically in the thymus and lymph node. This is the first report that indicates fractalkine expression by DC. Expression of fractalkine and MDC mRNA increased with maturation of DC during in vitro culture of bone marrow cells. Spleen- and epidermis-derived mature DC in culture also expressed these chemokines. Furthermore, their expression was detected selectively by Northern hybridization in CD11c+ B220- DC freshly purified from lymph nodes, and in large stellate cells in the lymph node T cell areas by in situ hybridization. Conditioned media of 293T cells transfected with these chemokine cDNA were chemotactic to Con A-activated splenic T cells as well as the mouse T cell line EL4. In conclusion, while fractalkine and MDC belong to different families of chemokines, both may be involved in recruitment of T cells for interaction with mature DC in the immune response.

Animals↗

Mosaicism of unstable CAG repeats in the brain of spinocerebellar ataxia type 2.

Spinocerebellar ataxia type 2 (SCA2) is caused by expansion of unstable CAG repeats within the coding region of the novel gene, ataxin-2, on chromosome 12q24.1. We analyzed CAG repeat size of the SCA2 allele in two deceased patients (father and daughter) to investigate the repeat mosaicism in CNS regions. The CAG repeat size was examined using lymphoblastoid cell lines, frozen brain tissues, and paraffin-embedded tissues. In each patient the major repeat size of the expanded allele varied within the brain or spinal cord (father, 39-42; daughter, 39-47 repeats), and was smaller by three to eight repeats in the cerebellum than in other CNS regions. Our results are in agreement with the findings in other polyglutamine disorders showing somatic mosaicism.

Adolescent↗

A method for detection of a cytokine and its mRNA in the central nervous system of the developing rat.

We report here an effective and concise method to determine the localization of macrophage migration inhibitory factor (MIF), a proinflammatory cytokine, and its mRNA in the central nervous system of pre- and postnatal rats. This method allows for double staining to demonstrate localization of different molecules on the same tissue specimen at the levels of mRNA and proteins by in situ hybridization and immunohistochemistry, respectively. Additionally, the present method gives results more quickly than the conventional isotopic techniques. By use of this method, we carried out immunohistochemistry with an anti-rat MIF polyclonal antibody and demonstrated positive staining using the avidin-biotin complex method (ABC method). To detect its mRNA, we performed nonradioactive in situ hybridization using a digoxigenin (DIG)-labeled RNA probe prepared from a full length fragment of rat MIF cDNA. MIF was strongly expressed in the telencephalon on embryonic day 16. Non-radioactive in situ hybridization with a DIG-labeled RNA probe as well as the immunohistochemistry described here could be applicable to characterize localization of mRNA and proteins of different molecules on the same tissue specimen.

Animals↗

Regional differences on production of chemokines in gastric mucosa between Helicobacter pylori-positive duodenal ulcer and gastric ulcer.

It is well known that antrum-predominant gastritis and pan-gastritis occurs in the patients with Helicobacter pylori-positive duodenal ulcer (DU) and gastric ulcer (GU), respectively. However, the role of chemokines in the pathogenesis of these pathologies is unclear. We examined the regional differences in mucosal chemokine production in patients with DU and GU. The production of interleukin-8 (IL-8), growth-related gene (GRO) alpha, and macrophage inflammatory protein (MIP)-1alpha was greater in the antrum than in the corpus in DU patients. In the patients with GU, monocyte chemoattractant protein (MCP)-1 levels in the mucosa adjacent to ulcer were greater than those away for the ulcer in the corpus. The reduction in chemokine production occurring in association with the eradication of H. pylori differed between DU and GU patients in the antrum (IL-8, P = 0.0394; GROalpha, P = 0.0149; MIP-1alpha, P = 0.0246; MCP-1, P = 0.0087). The data imply a different pathogenesis may exist for the gastritis present in patients with DU and GU occurring in H. pylori-positive individuals.

Adult↗

Modified natural and synthetically reconstituted surfactant therapies for acute lung injury caused by endotoxin in rats.

BACKGROUND: Impairment of surfactant is involved in development of acute respiratory distress syndrome. To develop artificial surfactant substitute for clinical use, we prepared synthetically reconstituted surfactant (SRS) by adding porcine surfactant-associated protein B and C (SP-B and SP-C) to synthetic phospholipids, and compared its effect with that of modified natural surfactant (MNS) in rats with acute lung injury caused by endotoxin. METHODS: Escherichia coli endotoxin (71+18 mg x kg(-1), mean+/-SD) was injected into the tracheas of 27 anesthetized and mechanically ventilated rats (FI(O2) of 1.0). When the PaO2 had decreased to below 26.7 kPa, the rats were randomly assigned to three groups. The MNS and SRS groups (n=9, each) were given 100 mg x kg(-1) of MNS and SRS through the airway, respectively. The control group (n=9) was given air in the same volume. RESULTS: The PaO2 of the control group remained below 13.3 kPa until the end of the experiment (6 h after the assignment). The PaO2 of the MNS group increased to 45.3+/-9.5 kPa and that of the SRS group to 45.5+/-3.7 kPa 0.5 h after the assignment (P<0.05 vs. control group). The PaO2 of both groups remained above 40 kPa throughout the experiment. CONCLUSION: In this acute lung injury model, the effects of replacement therapy with surfactant consisting of synthetic phospholipids, SP-B and SP-C, were the same as those observed with MNS. These results warrant development of surfactant substitutes based on natural SP-B and SP-C, and synthetic phospholipids.

1,2-Dipalmitoylphosphatidylcholine↗

Alymphoplasia is caused by a point mutation in the mouse gene encoding Nf-kappa b-inducing kinase.

The alymphoplasia (aly) mutation of mouse is autosomal recessive and characterized by the systemic absence of lymph nodes (LN) and Peyer's patches (PP) and disorganized splenic and thymic structures with immunodeficiency. Although recent reports have shown that the interaction between lymphotoxin (LT) and the LT beta-receptor (Ltbeta r, encoded by Ltbr) provides a critical signal for LN genesis in mice, the aly locus on chromosome 11 is distinct from those for LT and its receptor. We found that the aly allele carries a point mutation causing an amino acid substitution in the carboxy-terminal interaction domain of Nf-kappa b-inducing kinase (Nik, encoded by the gene Nik). Transgenic complementation with wild-type Nik restored the normal structures of LN, PP, spleen and thymus, and the normal immune response in aly/aly mice. In addition, the aly mutation in a kinase domain-truncated Nik abolished its dominant-negative effect on Nf-kappa b activation induced by an excess of Ltbeta r. Our observations agree with previous reports that Ltbeta r-deficient mice showed defects in LN genesis and that Nik is a common mediator of Nf-kappa b activation by the tumour necrosis factor (TNF) receptor family. Nik is able to interact with members of the TRAF family (Traf1, 2, 3, 5 and 6), suggesting it acts downstream of TRAF-associating receptor signalling pathways, including Tnfr, Cd40, Cd30 and Ltbeta r. The phenotypes of aly/aly mice are more severe than those of Ltbr-/- mice, however, indicating involvement of Nik in signal transduction mediated by other receptors.

Amino Acid Sequence↗

Focal (segmental) dyshidrosis in syringomyelia.

The features or mechanisms of dyshidrosis have not been sufficiently clarified. Neither has the difference between hyperhidrosis and hypohidrosis. To clarify the features and mechanisms of dyshidrosis (hyperhidrosis and hypohidrosis) in syringomyelia, the clinical features focusing on hidrosis of 30 patients with syringomyelia and Chiari malformation located from a syringomyelia database were prospectively analysed. The patients were classified into three groups: eight patients (26.7%) had segmental hypohidrosis, 10 (33. 3%) had segmental hyperhidrosis, and 12 (40.0%) had normohidrosis. We found that the Karnofsky functional status for the hyperhydrosis and normohidrosis groups were significantly higher than for the hypohidrosis group (p=0.0012), with no significant differences between the hyperhidrosis and normohidrosis groups. The duration from the onset of syringomyelia to the current dyshidrosis was significantly longer in the hypohidrosis group than in the hyperhidrosis group (p=0.0027). A significant correlation was identified between the duration from the onset of syringomyelia to the time at study and the performance score (r=-0.599, p=0.0003). The results substantiate previous hypotheses that in its early stage syringomyelia causes segmental hyperactivity of the sympathetic preganglionic neurons, and hyperactivity of these gradually subsides as tissue damage progresses. Focal hyperhidrosis may be regarded as a hallmark of a relatively intact spinal cord, as well as normohidrosis.

Adolescent↗

Experimental neonatal respiratory failure induced by lysophosphatidylcholine: effect of surfactant treatment.

The purpose of this study was to characterize the toxic effects of lysophosphatidylcholine (lyso-PC) on neonatal lung function. Various doses of lyso-PC (from 0 to 40 mg/kg) were administered to near-term newborn rabbits. Lung-thorax compliance during mechanical ventilation was significantly decreased by doses >/=10 mg/kg, and static lung volumes during deflation were decreased by doses >/=20 mg/kg. Using the same experimental model, we investigated the effects of modified porcine surfactant (Curosurf, 200 mg/kg). Animals exposed to lyso-PC at birth and treated simultaneously with surfactant showed a satisfactory therapeutic response, whereas those treated after 30 min failed to respond. These animals also had a much larger leak of albumin into the air spaces and an elevated minimum surface tension of the lavage fluid in a pulsating bubble surfactometer, suggesting inactivation of the exogenous surfactant. Timing of surfactant administration may thus be essential for the therapeutic effect in this experimental model of acute lung injury.

Acute Disease↗

Dextran restores albumin-inhibited surface activity of pulmonary surfactant extract.

We examined the effect of dextran (molecular weight 71,000) in counteracting the surfactant inhibitory action of plasma albumin. The surface adsorption time of 0.5 mg/ml modified natural surfactant (MNS; porcine lung extract consisting of phospholipids and hydrophobic surfactant proteins) with 7.5 mg/ml albumin decreased from 681 to 143 s by addition of dextran at a concentration of 10 mg/ml (P < 0.01). The minimum surface tension of 2.0 mg/ml MNS with 30 mg/ml albumin decreased from over 21 mN/m to below 3 mN/m when dextran was added at a concentration of 10 mg/ml (P < 0.01). Surfactant-deficient newborn rabbits given 10 ml/kg of a liquid containing 2.0 mg/ml MNS with 30 mg/ml albumin had a mean tidal volume </=5 ml/kg after 5 min of mechanical ventilation, but, in those animals given the liquid containing 10 mg/ml dextran also, the volume was >13 ml/kg (P < 0.05). Although the underlying mechanism remains to be elucidated, we conclude that dextran restores the albumin-inhibited surface activity of MNS.

Adsorption↗

Serum levels of soluble Fas and disease activity in patients with IgA nephropathy.

Using a sandwich ELISA, we studied 48 patients with IgA nephropathy and 10 patients with diffuse mesangial proliferative glomerulonephritis without IgA deposition (non-IgA PGN) to determine if levels of serum soluble Fas (s-Fas) might reflect the disease activity. The levels of serum s-Fas in patients with the advanced stage of IgA nephropathy were significantly higher than those in patients with the mild stage of the disease, in non-IgA PGN or in healthy controls. The results showed that advanced stage IgA nephropathy patients who showed heavy proteinuria and the presence of urinary casts revealed high levels of serum s-Fas. It was thus suggested that the measurement of serum s-Fas is useful in evaluating the degree of renal injury in patients with IgA nephropathy.

Adolescent↗