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Biomedical subjects

Y Niitsu

Publications and source records attributed to Y Niitsu.

At least 181 records · Page 10Linked to original sources

[Glutathione S transferases-pi].

It has been known that many drug resistant factors including p-glycoprotein related to anticancer drug resistance. It is assumed that Glutathione s-transferase (GST) is one of the resistant factors. In this present study, we examined the relationship between GST (especially GST-pi) and drug resistance, and also possibility of overcoming of drug resistance for GST-pi related drug resistance. We studied whether GST-pi directly related to anticancer drug resistance by transfection of GST-pi antisense cDNA into human colonic cancer cell line (M 7609). By transfection, cytosolic GST-pi concentrations decreased and sensitivity for adriamycin increased. It was confirmed that GST-pi directly related to some anticancer drug resistance including adriamycin. Moreover, we also have found that ketoprofen, which is an inhibitor of GST-pi activity, increased Adriamycin sensitivity. That is, partial overcoming of drug resistance was obtained. In future, it will be expected that GST-pi inhibitors etc are tried for overcoming of drug resistance.

Animals↗

[TGF-beta and platelet].

In the present paper, we investigated the pathophysiological implication of TGF-beta from megakaryocytes or megakaryoblasts in the development of myelofibrosis. In the bone marrow of myelofibrosis, proliferation of megakaryocytes is often noticed. We therefore investigated the TGF-beta expression in the bone marrow megakaryocytes from 12 chronic myeloproliferative disorder patients with myelofibrosis by immunohistochemical analysis. About all the specimen showed strong positivity for TGF-beta. In order to examine whether megakaryoblasts produce TGF-beta, we then measured TGF-beta activity in the conditioned medium (CM) of megakaryoblasts from a patient with acute megakaryoblastic leukemia who had profound myelofibrosis. The CM showed strong collagen synthesis stimulating activity which was nullified by addition of anti TGF-beta antibody. Since TGF-beta exists as latent form in platelets, TGF-beta was considered to be altered from active to latent form during megakaryocytes differentiation. In this context, MEG-01, a megakaryoblastic cell line which produces active TGF-beta was underwent differentiation to produce platelet-like bleb with TPA treatment. During the differentiation, MEG-01 showed the decrease of active TGF-beta production and increase of latent TGF-beta together with the production of LTBP. These results suggest that megakaryoblasts produce active TGF-beta and may may cause myelofibrosis, while more differentiated megakaryocytes produce latent TGF-beta. Mechanism by which megakaryoblast escape from negative autocrine of active TGF-beta was also investigated. MEG-01 was found to express mutated p53 which is considered to be responsible for impaired signal transduction of TGF-beta.

Blood Platelets↗

[Liver cirrhosis in primary hemochromatosis and Wilson's disease].

Iron is an essential element in all living cells because it serves machineries for biological oxidation including hemoglobin, cytochrome c oxidase, etc. Copper is also essential for mammalian life since copper is the prosthetic element of several life-essential enzymes. Although intracellular excessive iron and copper were usually sequestrated in ferritin and metallothionein molecules, accumulation of excess iron and copper may also cause severe tissue injury by including oxyradicals and lipid peroxidation and eventually bring about tissue fibrosis such as liver cirrhosis. Hemochromatosis and Wilson's disease are known as iron and copper accumulation disorders, respectively. In this chapter, we review the cirrhosis in hemochromatosis and Wilson's disease.

Hemochromatosis↗

Interleukin-6 enhances hepatic transferrin uptake and ferritin expression in rats.

To explore a mechanism of interleukin (IL)-6-induced hypoferremia in rats, iron metabolism was investigated both in vivo and in vitro. Recombinant IL-6 was intraperitoneally administered to male Wistar rats and the serial change of parameters related to iron metabolism was examined. After administration of IL-6, plasma IL-6 concentration increased rapidly, reached its maximum in 1 hr and thereafter decreased quickly. Plasma IL-6 3 hr after IL-6 injection (50 micrograms/kg) was 3 units/ml, which is a concentration capable of inducing hepatic 125I-labeled transferrin uptake in vitro using isolated hepatocytes. Plasma iron concentration and transferrin saturation had decreased to approximately one third of the initial level within 3 hr and then recovered. Total iron binding capacity remained unchanged for 6 hr, then began to decrease. Red blood cell count and hemoglobin concentration showed no remarkable changes during this period. By ferrokinetic study with plasma that contained iron 59-labeled transferrin, the plasma iron disappearance half time, calculated from the disappearance curve, was significantly shortened from 55 min to 22 min by IL-6 treatment (p < 0.01). The ferritin concentration in the liver was increased significantly after the administration of IL-6 (p < 0.001), but transiently decreased in the spleen. The plasma ferritin showed a gradual increase during the 6-hr period after IL-6 injection. The uptake of 125I-labeled diferric transferrin by isolated hepatocytes was increased by IL-6 treatment and this increment was inhibited by addition of 100-fold excess unlabeled transferrin. On the other hand, no significant increment of 125I-labeled diferric transferrin uptake was observed in Kupffer cells.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

A role for the fyn oncogene in metastasis of methylcholanthrene-induced fibrosarcoma A cells.

Expression of various oncogenes (ras, myc, erbB2, src, fyn, yes and sis) in a high-metastatic clone (MH-02) derived from a murine methylcholanthrene-induced fibrosarcoma A (Meth A) was compared with those of its parent clone (ML-01) by Northern blot analysis. Two oncogenes, fyn, belonging to the tyrosine-kinase family, and sis, belonging to the cellular-growth-factor family, were found to have higher signals (3.6-fold and 1.8-fold respectively) in MH-02 than in ML-01 cells. To explore the possibility that higher expression of these oncogenes is involved in enhanced metastasis of the MH-02 clone, ML-01 was transfected by a fyn vector and the metastatic potential of the transfectant was examined. Mice administered fyn-transfected ML-01 cells had significantly increased metastatic nodules in the lung, as compared with those whose ML-01 cells were transfected with control vector without the fyn gene. The result indicates that the fyn gene is one of the factors governing the metastatic potential of Meth A cells.

Animals↗

Regulation of iron metabolism in HepG2 cells: a possible role for cytokines in the hepatic deposition of iron.

In chronic inflammation it is reported that serum iron is depleted and hepatic iron is increased because of reticuloendothelial system iron blockade. However, recent studies indicate that hepatic parenchymal cells increase the uptake of transferrin-bound iron after in vivo stimulation with bacterial lipopolysaccharide, suggesting that endotoxemia itself or lipopolysaccharide-induced production of inflammation-related cytokines may also be responsible for this phenomenon. In this study the actions of inflammation-related cytokines on the synthesis of iron-binding proteins (transferrin and ferritin) and transferrin receptor and the uptake of transferrin-bound iron were investigated in a human hepatoblastoma cell line, HepG2, which is the most commonly used cell line for examining the regulation of hepatic protein synthesis by cytokines. The cells were exposed to interleukin-1 beta, interleukin-6 or tumor necrosis factor-alpha separately for 24 hr. In each cytokine treatment group, the level of transferrin, which is secreted into the conditioned medium, was found to be decreased compared with that of untreated cells. On the other hand, the biosynthesis of ferritin was markedly elevated after the same treatment. This increase in ferritin by cytokine treatment was diminished when deferoxamine was used concomitantly to deplete intracellular chelatable iron. After stimulation with interleukin-1 beta, interleukin-6 or tumor necrosis factor-alpha, 59Fe-labeled transferrin uptake into the cells was increased by 36%, 48%, or 18%, respectively, and this uptake was inhibited by the addition of excess unlabeled transferrin. A binding study with 125I-labeled diferric transferrin revealed that the three cytokines increased the number of transferrin receptors on the cell surface by 1.15-fold to 1.35-fold.(ABSTRACT TRUNCATED AT 250 WORDS)

Carcinoma, Hepatocellular↗

Individual diversity of IL-6 generation by human monocytes with lentinan administration.

Effect of in vivo administration of lentinan on IL-6 generation by human peripheral blood monocytes was examined using 5 healthy volunteers. Monocytes isolated from them before and 3 days after intravenous administration of 2 mg lentinan per person were cultured for 2 days and then the levels of IL-6 in the supernatants of cultured monocytes were determined. In vivo lentinan administration elicited an increase in IL-6 generation by monocytes in 3 of 5 cases. Failure to increase IL-6 generation by monocytes in two cases is characteristic of lentinan, since these monocytes generated an apparent level of IL-6 in response to lipopolysaccharide, a potent monocyte activator. Thus, it was demonstrated that lentinan was capable of augmenting IL-6 generation by human monocytes and that there was individual difference in their responsiveness to lentinan.

Acute-Phase Proteins↗

Production and characterization of specific asialoglycoprotein receptor antibodies.

Monoclonal antibodies (MoAbs) were produced by immunizing BALB/c mice with asialoglycoprotein receptor (AGPR) purified from human liver. The purity of AGPR was confirmed by SDS-polyacrylamide gel electrophoresis and by amino acid sequence. An enzyme-linked immunoassay revealed 24 monoclonal antibodies which reacted with human AGPR. By Western blot analysis, all antibodies recognized the 46 kDa human AGPR under the non-reduced conditions and four MoAbs recognized reduced protein. Two MoAbs reacted with AGPR derived from rat, rabbit and mouse liver under both non-reduced and reduced conditions, suggesting that we could obtain antibodies which reacted with AGPR epitopes shared by different species. In immunohistochemical studies, 30201-MoAb reacted with human liver tissue but not with other tissues. This antibody immunoprecipitated two major bands of 46 kDa and 39 kDa from [35S]-methionine metabolically labeled human hepatoma HepG2 cells. The determinant recognized by 30201-MoAb is a common epitope of AGPR which is present in different species and in both the precursor and maturation forms of the receptor.

Amino Acid Sequence↗

Lysosome labilizers potentiate the antitumor effects of tumor necrosis factor-alpha.

Enhancement of in vitro cytotoxic activity of tumor necrosis factor-alpha (TNF-alpha) was observed in combination with lysosome labilizers, particularly with urokinase-type plasminogen activator (u-PA), tissue-type plasminogen activator (t-PA) and lipoprotein lipase (LPL). The concentration of TNF-alpha resulting in 50% cytotoxicity to L929 cells was only 20-30% of the value for TNF-alpha alone, when used in combination with a nontoxic dose of u-PA, t-PA or LPL. Furthermore, combined intravenous (i.v.) administration of TNF-alpha (3.5 x 10(5) U/mouse) and u-PA (300 IU/mouse) markedly increased the in vivo antitumor activity of TNF-alpha to Meth A tumors transplanted into BALB/c mice; the tumor weight in co-administered mice was about 40% of that in mice given TNF-alpha alone on day 6. The combination therapy of TNF-alpha (7.0 x 10(4) U/mouse, i.v.) and u-PA (300 IU/mouse, i.v.) was also effective for L929 tumors in Crj:CD-1(1CR)-nu nude mice compared with the conventional therapy with TNF-alpha alone. These results suggest that the combination of TNF-alpha and lysosome labilizers is a promising antitumor therapeutic regimen with clinical potential.

Animals↗

Augmented expression of a type IV collagen-binding protein in a highly metastatic murine fibrosarcoma clone.

The adhesive properties of highly and weakly metastatic murine sarcoma (Meth A) clones were investigated. A highly metastatic clone, MH-02, preferentially adhered to type IV collagen-coated plastic dishes and to bovine pulmonary arterial endothelial cell-coated plastic dishes as compared to a weakly metastatic clone, ML-01. Pretreatment of MH-02 and ML-01 cells with antisera against MH-02 cells resulted in almost equivalent adhesiveness to type IV collagen. Preincubation of 125I-radiolabeled tumor cells with the antisera against MH-02 significantly reduced the arrest of MH-02 cells in the lung, but ML-01 cells were not affected. The number of pulmonary metastatic nodules of MH-02 cells was reduced to the same level as that of ML-01 cells by preincubation of the tumor cells with the antisera in an experimental metastasis experiment. These results indicated that the high metastatic ability of MH-02 can be attributed to its preferential adhesiveness to type IV collagen. The type IV collagen-binding proteins of MH-02 and ML-01 were analyzed by sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE) and autoradiography. Among several proteins which bound to type IV collagen, expression of a protein with a molecular weight of 29 kD was significantly greater in MH-02 than in ML-01. These results suggest that the greater adhesion of highly metastatic MH-02 cells to type IV collagen is due to enhanced expression of the type IV collagen-binding 29 kD protein.

Animals↗

Enhanced antitumor effect of recombinant human tumor necrosis factor in combination with recombinant human granulocyte colony-stimulating factor in BALB/c mice.

The synergistic antitumor effect of tumor necrosis factor (TNF) and granulocyte colony-stimulating factor (G-CSF) was investigated. G-CSF was administered subcutaneously to BALB/c mice inoculated with Meth-A cells at a dose of 2.5 micrograms/day for 5 consecutive days. When TNF (1 x 10(3) U) was administered intravenously to mice which had been pretreated with G-CSF, tumor growth showed a 74.1% inhibition 17 days after the tumor cell inoculation, compared to that of untreated mice. In this experiment, G-CSF significantly (P < 0.025) enhanced the antitumor effect of TNF. The in vitro cytotoxicity of TNF (10 U/ml) towards Meth-A cells was increased about 5.2-fold in the presence of neutrophils (E/T = 50) as compared to the cytotoxicity obtained with TNF alone. A combination of TNF and G-CSF (50 ng/ml) in the presence of neutrophils, resulted in a 2.1 times greater cytotoxicity against Meth-A cells as compared to that obtained without G-CSF. Significant augmenting effects of G-CSF on superoxide (O2-) production by TNF-stimulated neutrophils were observed. These observation suggest that the neutrophil plays an important role in the antitumor action of TNF on Meth-A cells, and that the antitumor effect of TNF is enhanced by combination with G-CSF.

Animals↗

Intracellular metabolism and cytotoxicity of transferrin-neocarzinostatin conjugates of differing molar ratios.

Transferrin-neocarzinostatin (NCS) conjugates with differing molar ratios of drug to protein were synthesized and their intracellular metabolism was investigated. The conjugate mixtures of transferrin-NCS were separated by DEAE-Sephacel column chromatography. The separated molecular species were examined with respect to binding affinity to transferrin receptor, cytotoxicity and intracellular metabolism using the human leukemia cell line, K562. Transferrin-NCS conjugate is capable of binding to transferrin receptors specifically and its reactivity became weaker as the ratio of bound NCS to transferrin was increased. Transferrin-6NCS did not bind measurably to the receptor. On the other hand, the cytotoxicity was augmented when the number of NCS molecules bound per molecule of transferrin was increased to 4NCS/transferrin, while transferrin-5NCS and transferrin-6NCS species exhibited low activity. Examination of the kinetics of metabolism by pulse chase study using 125I-labeled ligand indicated that unconjugated transferrin and transferrin-NCS conjugates were internalized in similar ways, although the degradation of internalized conjugate was more marked in the case of transferrin-4NCS than transferrin-1NCS. Thus, the molar ratio of transferrin-drug conjugate could be optimized with respect to both the binding activity to receptor and the intracellular metabolic pathway.

Animals↗

Abnormal hepatic iron accumulation in LEC rats.

The LEC (Long-Evans cinnamon) rat is a mutant strain displaying hereditary hepatitis and spontaneous hepatocellular carcinoma, and shows abnormal hepatic copper accumulation similar to that occurring in Wilson's disease. We evaluated the iron metabolism of LEC rats compared to LEA (Long-Evans agouti) rats. Hepatic iron and ferritin concentrations were remarkably increased depending on age in LEC rats but not in LEA rats. Increased hepatic iron is normally associated with decreased serum transferrin and total iron binding capacity in hepatic iron overload. In LEC rats, however, both serum transferrin and total iron binding capacity increased with increasing hepatic iron. This increase of serum transferrin and hepatic iron may be an additional important factor contributing to liver injury in LEC rats.

Age Factors↗

Cytokine mRNA expression of bone marrow stromal cells from patients with aplastic anaemia and myelodysplastic syndrome.

We studied mRNA expression of the cytokine granulocyte-colony stimulating factor (G-CSF), interleukin-1 beta (IL-1 beta), IL-6, IL-8 and stem cell factor of stromal cells derived from bone marrows of nine normal volunteers, eight patients with aplastic anaemia (AA) and seven patients with myelodysplastic syndrome (MDS). The proportion of endothelial cells, macrophages, fibroblast-like cells and adipocytes in stromal cells showed no differences between normal volunteers and the patients. Levels of cytokine mRNA expression were determined by reverse transcription-polymerase chain reaction. Spontaneous expression occurred and this was augmented by LPS stimulation in cells of all the normal volunteers and in most patients. When stimulated by LPS, the mean G-CSF and IL-1 beta mRNA expressions in patients with AA were significantly higher than normal volunteers, but there was one patient showing lower IL-1 beta, IL-6 and IL-8 expression with no response to LPS. LPS-induced IL-6 and IL-8 expression of two patients with MDS were significantly higher than normal. The spontaneous and LPS-induced protein concentration of G-CSF, IL-6 and IL-8 in culture supernatants from 15, 10 and four patients, correlated well with the mRNA expression. The correlation coefficients were 0 x 92, 0 x 78 and 0 x 91, respectively. In conclusion, there were a few patients whose aetiology appeared to be reduction of stromal cytokine expression in AA, but most patients with AA and MDS expressed normal or high levels of cytokine mRNA.

Adolescent↗

Increased serum level of interleukin-5 in a patient with episodic angioedema and eosinophilia syndrome.

A case of episodic angioedema and eosinophilia syndrome is reported. An 18-year-old male suffered from monthly episodes of angioedema, pruritic papules, weight gain, and fever for twelve years. During the episodes, peripheral eosinophils and serum levels of interleukin (IL)-5, an eosinophil proliferating cytokine were elevated. Extensive evaluations disclosed neither visceral involvement nor evidence of parasitic infections, collagen diseases, or neoplastic disorders. Corticosteroid treatment brought about a dramatic clinical improvement concomitant with decrement of eosinophils and serum IL-5 was observed. These observations suggest that IL-5 may be a causative factor for this pathological state.

Adolescent↗