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Biomedical subjects

S Asano

Publications and source records attributed to S Asano.

At least 217 records · Page 12Linked to original sources

Heat shock protects cultured rat astrocytes in a model of reperfusion injury.

We have previously found that incubation of cultured rat astrocytes in Ca(2+)-free medium caused an increase in intracellular Ca2+ ([Ca2+]i) followed by delayed cell death. Here, we examined whether thermal stress protects astrocytes from cell death in this model system of reperfusion injury. Cultured astrocytes were preincubated at 40-44 degrees C for 10-20 min in fetal calf serum-free medium, incubated at 37 degrees C for 24 h in serum-containing medium, and subjected to the in vitro reperfusion experiment. Thermal stress attenuated reperfusion-induced cell toxicity. Furthermore, the stress increased cell viability after incubation with serum-free medium containing Ca2+. These effects of heat shock required incubation in serum-containing medium for at least 12 h after heat shock, and it was blocked by the protein synthesis inhibitor cycloheximide. Thermal stress increased synthesis of several proteins, and one of the inducible proteins was identified as the 72-kDa heat shock protein by an immunoblot analysis. Neither the increase in [Ca2+]i nor the Na(+)-Ca2+ exchange activity in astrocytes induced in this model were affected by thermal stress. These findings suggest that heat shock proteins protect astrocytes from cell death in a model of reperfusion injury and they may affect processes down stream of the increase in [Ca2+]i.

Animals↗

Inhibition of amyloid beta protein aggregation and neurotoxicity by rifampicin. Its possible function as a hydroxyl radical scavenger.

Aggregation of physiologically produced soluble amyloid beta protein (Abeta) to insoluble, neurotoxic fibrils is a crucial step in the pathogenesis of Alzheimer's disease. Aggregation studies with synthetic Abeta1-40 peptide by the thioflavin T fluorescence assay and electron microscopy and cytotoxicity assays using rat pheochromocytoma PC12 cells showed that an antibiotic, rifampicin, and its derivatives, which possess a naphthohydroquinone or naphthoquinone structure, inhibited Abeta1-40 aggregation and neurotoxicity in a concentration-dependent manner. Hydroquinone, p-benzoquinone, and 1,4dihydroxynaphthalene, which represent partial structures of the aromatic chromophore of rifampicin derivatives, also inhibited A beta1 40 aggregation and neurotoxicity at comparable molar concentrations to rifampicin. Electron spin resonance spectrometric analysis revealed that the inhibitory activities of those agents correlated with their radical-scavenging ability on hydroxyl free radical, which was shown to be generated in cell-free incubation of Abeta1-40 peptide. These results suggest that at least one mechanism of rifampicin-mediated inhibition of A beta aggregation and neurotoxicity involves scavenging of free radicals and that rifampicin and/or appropriate hydroxyl radical scavengers may have therapeutic potential for Alzheimer's disease.

Alzheimer Disease↗

Functional expression of gastric H+,K(+)-ATPase and site-directed mutagenesis of the putative cation binding site and catalytic center.

Gastric H+,K(+)-ATPase was functionally expressed in the human kidney HEK293 cell line. The expressed enzyme catalyzed ouabain-resistant K(+)-dependent ATP hydrolysis. The K(+)-ATPase activity was inhibited by SCH 28090, a specific inhibitor of gastric proton pump, in a dose-dependent manner. By using this functional expression system in combination with site-directed mutagenesis, we investigated effects of mutations in the putative cation binding site and the catalytic center of the gastric H+,K(+)-ATPase. In Na+,K(+)-ATPase, the glutamic acid residue in the 4th transmembrane segment is regarded as one of the residues responsible for the K(+)-induced conformational change (Kuntzweiler, T. A., Wallick, E. T., Johnson, C. L., and Lingrel, J. B. (1995) J. Biol. Chem. 270, 2993-3000). When the corresponding glutamic acid (Glu-345) of H+,K(+)-ATPase was mutated to aspartic acid, lysine, or valine, the SCH 28080-sensitive K(+)-ATPase activity was abolished. However, when this residue was replaced by glutamine, about 50% of the activity was retained. This mutant showed a 10-fold lower affinity for K+ (Km = 2.6 mM) compared with the wild-type enzyme (Km = 0.24 mm). Thus, Glu-345 is important in determining the K+ affinity of H+,K(+)-ATPase. When the aspartic acid residue in the phosphorylation site was mutated to glutamic acid, this mutant showed no SCH 28080-sensitive K(+)-ATPase activity. Thus, amino acid replacement of the phosphorylation site is not tolerated and a stringent structure appears to be required for enzyme activity. When the lysine residue in the fluorescein isothiocyanate binding site (part of ATP binding site) was mutated to arginine, asparagine, or glutamic acid, the SCH 28080-sensitive K(+)-ATPase activity was eliminated. However, the mutant in which this residue was changed to glutamine had about 30% of the activity, suggesting that amino acid replacement of this site is tolerated to a certain extent.

Amino Acid Sequence↗

Spontaneous antibody-secreting cells in the stomach of gastric cancer patients.

The gastric mucosa has been regarded as an active site of humoral immunity since the discovery of Helicobacter pylori. The present study was conducted to determine the in vivo activity of gastric B cells in 53 gastric cancer patients. B-cell activity was measured by protein-A plaque assay, in which IgA-, IgM-, and IgG-plaque-forming cells (PFC) were counted. The number of PFC was associated with the stage of cancer, but the response of lymphocytes in a non-tumorous area (NML) and tumor-infiltrating lymphocytes (TIL) differed. PFC in both sites were decreased compared to n0 cancer in n1 lymph node metastasis-positive cancer, while only NML showed raised PFC in n2 + (P < 0.05, vs TIL). Cancer cells penetrating the submucosa caused the PFC of TIL (but not of NML) to decrease. Invasion of the intratumor capillary (V) or lymphatic (Ly) vessels also caused PFC to change, showing differences of Ig class; there was a decrease of PFC in V2 (IgG- and IgM-PFC) and in Ly2 (all Ig-PFC). IgA-PFC in Ly1 differed in TIL (decrease of PFC) and NML (increase). PFC also differed in TIL and NML in cancer cells, as follows: TIL < NML in tubular and poorly differentiated adenocarcinoma and TIL > NML in papillary and signet ring cell adenocarcinoma. Changes in lymph node (LNL) and blood lymphocytes were similar to those in gastric PFC whose IgA value was 10 times as much as that of LNL. The 5-year survival rate was significantly better in patients with lower rather than higher PFC such as 89% vs 68%. Gastric B cells thus appear to be active and to reflect gastric mucosal immunity.

Adult↗

Enhanced expression of manganese superoxide dismutase mRNA and increased TNFalpha mRNA expression by gastric mucosa in gastric cancer.

Manganese superoxide dismutase (Mn-SOD), a mitochondrial enzyme, is a cytokine-regulated acute-phase protein that protects cells from free radicals. The current investigations examined the in vivo regulation of the expression of Mn-SOD mRNA and tumor necrosis factor alpha (TNFalpha) mRNA in gastric carcinoma tissue. The expression of these transcripts in breast carcinoma tissue also was examined because breast cancer is a much more TNF-sensitive tumor than gastric cancer. TNFalpha mRNA was markedly increased in gastric carcinoma tissue (p < 0.005). There were significantly higher levels of Mn-SOD mRNA in gastric carcinoma tissue than in noncancerous tissue (p < 0.0001). The level of Mn-SOD mRNA in gastric carcinoma tissue was higher than that in breast carcinoma tissue (p < 0.005). Up-regulation of Mn-SOD mRNA in gastric carcinoma tissue most likely serves as a protective mechanism against superoxide radicals and TNF cytotoxicity.

Adult↗

Differentiation effect of acyclic retinoid on acute promyelocytic leukemia cells.

Acyclic retinoid (all-trans-3, 7, 11, 15-tetramethyl-2, 4, 6, 10, 14-hexadecapentaenoic acid) binds cellular retinoic acid-binding protein with an affinity similar to that of all-trans retinoic acid and induces differentiation of human hepatoma cell lines and a human acute myelogenous leukemia cell line (HL-60). We investigated the in vitro efficacy of acyclic retinoid to induce the differentiation of acute promyelocytic leukemia (APL) cells using primary cultured cells obtained from 11 APL patients. Five days' incubation with acyclic retinoid effected a dose-dependent induction of differentiation. Cells from eight patients showed maximum differentiation at 10(-6) M acyclic retinoid. Cells from one patient required 10(-5) M for maximum differentiation, while those from two patients exhibited moderate differentiation at 10(-5) M. Five days' incubation with acyclic retinoid (10(-7) approximately 10(-5) M) did not affect the viability or number of cells from any patient except one, whose cells showed a slight decrease in viability at 10(-5) M. Thus, we conclude that acyclic retinoid induced the differentiation of primary cultured APL cells at concentrations of 10(-6) approximately 10(-5) M, a range at which it is not toxic.

Antineoplastic Agents↗

Insecticidal activity of the protein encoded by the cryV gene of Bacillus thuringiensis kurstaki INA-02.

A new host specificity was discovered with the insecticidal protein encoded by the cryV gene. The cryV gene was cloned from the Bacillus thuringiensis kurstaki INA-02 strain, which was selected among a number of B. thuringiensis isolates because of its high activity against Spodoptera litura. Analyses by polymerase chain reaction (PCR) revealed that INA-02 contained the cryIA(a) and cryV genes. Since no Spodoptera activity was observed with B. thuringiensis sotto, which contained only cryIA(a), insecticidal activity of the protein encoded by the cryV gene was investigated with several insect species including S. litura. For bioassay, the cryV gene was highly expressed in an acrystalliferous B. thuringiensis strain, BT51. The CryV protein from BT51 was assayed against larvae of three lepidopteran species, Bombyx mori, S. litura, and Plutella xylostella. The protein was highly active against S. litura and P. xylostella, suggestive that the protein contributes to the unique activity of INA-02.

Animals↗

Hemophagocytosis as a para-neoplastic syndrome in NK cell leukemia.

Hemophagocytic syndrome is a proliferative disorder of an activated monocyte-macrophage system and is characterized by fever, hepato-splenomegaly and pancytopenia. The serum level of interferon-gamma in the syndrome is increased but its origin is unknown. Here we describe a case of NK cell leukemia with hemophagocytic syndrome with elevated serum level of interferon-gamma. The levels of various cytokines were monitored during the course and statistic analysis was performed. To identify the clonal component, the NK cell fraction was sorted from the mononuclear layer and was subjected to Southern blot hybridization with a probe for EB virus tandem repeats. The fraction was also stimulated with interleukin-2 and the level of interferon-gamma in the conditioned medium was measured. Levels of M-CSF and interferon-gamma were significantly correlated with the degree of clinical manifestations and laboratory data. Southern blot hybridization revealed monoclonality of an NK cell fraction. The fraction also released interferon-gamma. Since macrophage can be activated through cytokines, the hemophagocytosis might have been triggered by factor(s) released from the abnormal NK cell clone at least in this case.

Adolescent↗

Effects of myeloid cell growth factors on alkaline phosphatase, myeloperoxidase, defensin and granulocyte colony-stimulating factor receptor mRNA expression in haemopoietic cells of normal individuals and myeloid disorders.

The mRNA expression of alkaline phosphatase (ALP), myeloperoxidase (MPO), defensin and G-CSF receptor (G-CSFR) in bone marrow cells of normal individuals and myeloid disorders, with or without in vitro stimulation by myeloid cell growth factors, i.e. G-CSF, GM-CSF and IL-3, were examined as markers for myeloid cell differentiation in both mononuclear cell (MNC) and polymorphonuclear cell (PMN) fractions. Without any stimulation, ALP mRNA was expressed only in PMNs, G-CSFR mRNA in PMNs were expressed stronger than in MNCs; both MPO and defensin mRNA were expressed to the same degree in both fractions. With stimulation, the ALP mRNA expression in both fractions was strongly enhanced by G-CSF, but the expression was inhibited by GM-CSF and/or IL-3. MPO mRNA expression was stimulated by G-CSF and/or GM-CSF in MNCs. G-CSFR mRNA expression was enhanced by G-CSF in both fractions. Defensin mRNA expression was inhibited by G-CSF. In cases of myelodysplastic syndrome and chronic myelogenous leukaemia which display a suppressed maturation of myeloid cells, our results demonstrated an almost normal response to these growth factors. Our results suggest that studies on these myeloid marker mRNA expressions would provide more knowledge about the differentiation state and cytokine reactivity of myeloid cells in normal individuals as well as various disorders.

Adult↗

A role of GAGs in ECM on morphogenesis of megakaryocytes.

The morphogenesis of megakaryocytes that results in the formation of cytoplasmic processes is thought to be the final maturation step before liberation of platelets. We studied the in vitro effects of glycosaminoglycans (GAGs) which are abundant in the bone marrow extracellular matrices, on the morphogenesis of murine megakaryocytes and compared them with those of thrombopoietic cytokines. Heparin, heparan sulfate, chondroitin-6 sulfate, and dermatan sulfate promoted the formation of megakaryocytic processes. Hyaluronic acid failed to support this phenomenon, suggesting that sulfated GAGs in extracellular matrices are involved in the morphogenesis of megakaryocytes. Sulfated GAGs began to act on megakaryocytes with a higher ploidy (16N-32N) from 6 to 24h after incubation, whereas neither rhIL-6 nor rhIL-11 affected this early phase. Our findings indicate that sulfated GAGs promote the morphogenesis of murine megakaryocytes and participate in thrombopoiesis in a different manner from that of cytokines such as rhIL-6 and rhIL-11.

Animals↗

Role of Na(+)-Ca2+ exchanger in agonist-induced Ca2+ signaling in cultured rat astrocytes.

We have previously demonstrated that activation of the Na(+)-Ca2+ exchanger in the reverse mode causes Ca2+ influx in astrocytes. In addition, we showed that the exchange activity was stimulated by nitric oxide (NO)/cyclic GMP and inhibited by ascorbic acid. The present study demonstrates that the Na(+)-Ca2+ exchanger is involved in agonist-induced Ca2+ signaling in cultured rat astrocytes. The astrocytic intracellular Ca2+ concentration ([Ca2+]i) was increased by L-glutamate, noradrenaline (NA), and ATP, and the increases were all attenuated by the NO generator sodium nitroprusside (SNP). SNP also reduced the ionomycin-induced increase in [Ca2+]i. The NA-induced Ca2+ signal was also attenuated by S-nitroso-L-cysteine and 8-bromo cyclic GMP, whereas it was enhanced by 3,4-dichlorobenzamil, an inhibitor of the Na(+)-Ca2+ exchanger. Treatment of astrocytes with antisense, but not sense, deoxynucleotides to the sequence encoding the Na(+)-Ca2+ exchanger enhanced the ionomycin-induced increase in [Ca2+]i and blocked the effects of SNP and 8-bromo cyclic GMP in reducing the NA-induced Ca2+ signal. Furthermore, the ionomycin-induced Ca2+ signal was enhanced by removal of extracellular Na+ and pretreatment with ascorbic acid. These findings indicate that the Na(+)-Ca2+ exchanger is a target for NO modulation of elevated [Ca2+]i and that the exchanger plays a role in Ca2+ efflux when [Ca2+]i is raised above basal levels in astrocytes.

Adenosine Triphosphate↗

A case of cutaneous malignant fibrous histiocytoma.

A 54-year-old Japanese man with cutaneous malignant fibrous histiocytoma on the back is reported. He not only had a past history of thyroid cancer 1 year prior to the onset of the skin tumor, but also had simultaneous bladder cancer. Despite the early, wide resection, the prognosis was rapid and progressive. Histologically, the primary lesion of the skin tumor was difficult to differentiate from dermatofibrosarcoma protuberans; however, the recurrent and the metastatic lesions changed in appearance.

Fatal Outcome↗

Interleukin-6 and granulocyte colony-stimulating factor synergistically increase peripheral blood progenitor cells in myelosuppressive mice.

We previously reported a successful peripheral blood stem cell harvest by co-administration of recombinant human (rh) interleukin-6 (IL-6) and rh granulocyte colony-stimulating factor (G-CSF) in normal mice. In the present study, to evaluate further the utility of this observation for autologous peripheral blood stem cell transplantation, we examined the effects of rhIL-6 and rhG-CSF on peripheral blood granulocyte-macrophage colony-forming units (CFU-GM) in carboplatin (CBDCA)-induced and irradiation-induced myelosuppressive mouse models. After CBDCA administration, blood cell counts decreased to the nadir, and then recovered to a normal level. In this recovery phase, the peripheral CFU-GM level increased to 3.8-fold higher than the pretreatment level. Administration of rhIL-6 (10 microgram/day) alone induced a 40-fold increase in peripheral CFU-GM from the normal level at day 14. In combination with rhG-CSF (0.35 microgram/day), which alone induced a 74-fold increase, rhIL-6 synergistically increased the CFU-GM level by 1200-fold. In irradiated mice, similar results were observed. Administration of rhIL-6 at 3 and 10 microgram/day significantly increased CFU-GM. Interestingly, in combination with rhG-CSF, a lower dose of rhIL-6 (1 microg/day) could induce CFU-GM increase. We also examined CFU-GM distribution in bone marrow, spleen and peripheral blood. Cytokine administration induced not only a change of CFU-GM distribution, but also an increase in total CFU-GM counts per mouse. These results suggest that co-administration of rhIL-6 and rhG-CSF may be useful for autologous peripheral blood stem cell transplantation.

Animals↗

Effect of recombinant human granulocyte colony-stimulating factor on combination therapy with aztreonam and clindamycin for infections in neutropenic patients with hematologic diseases.

The present multicenter study was performed to evaluate the effect of recombinant human granulocyte-colony stimulating factor (rhG-CSF) on combination therapy using aztreonam (AZT) and clindamycin (CLDM) to treat severe infection in neutropenic patients with hematologic diseases. Forty-three neutropenic patients with infections (rhG-CSF group) were treated with AZT (2 g) and CLDM (600 mg) 2-3 times daily as well as rhG-CSF (Lenograstim or Filgrastim: 2-5 mu/kg/day). The clinical efficacy of this regimen was compared to that obtained in 44 febrile neutropenic patients, with hematologic diseases, who received only AZT and CLDM in a previous study (historical control group). The overall efficacy rate was 69.8% (30/43) in the rhG-CSF group and 65.9% (29/44) in the historical control group. Although the neutrophil count was significantly increased and C-reactive protein tended to be lower in the rhG-CSF group, the daily maximum body temperature profiles of the 2 groups were nearly the same. These results suggest that rhG-CSF is of little benefit in the treatment of single infectious episodes in neutropenic patients, and that appropriate antibiotic therapy is more important.

Acute Disease↗