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Biomedical subjects

K Shimoda

Publications and source records attributed to K Shimoda.

At least 73 records · Page 4Linked to original sources

Analysis of the granulocyte colony-stimulating factor receptor gene structure using PCR-SSCP in myeloid leukemia and myelodysplastic syndrome.

The membrane-proximal cytoplasmic region of the granulocyte colony-stimulating factor receptor (G-CSFR) is known to be essential for the proliferation signal, with a more distal region being required for the differentiation signal. Such a separation of functional domains raises the possibility that mutations occurring at these regions may contribute to cell proliferation in the absence of differentiation, this being the most important characteristic in acute leukemia cells. Therefore, we analysed the structural abnormalities at the transmembrane and cytoplasmic region of G-CSFR in a significant number of patients with various myeloid malignancies. When we examined the genomic DNA of G-CSFR obtained from 41 patients with acute myelogenous leukemia (AML), 18 with chronic myelogenous leukemia (CML), 7 with myelodysplastic syndrome (MDS), 2 with chronic myelomonocytic leukemia and 1 with chronic neutrophilic leukemia, we found a polymorphism in 3 patients, but no significant pathogenic mutations in any patients. The screening for this polymorphism in 100 hematologically normal controls revealed that it may be useful as a linkage marker for population and family studies, because the heterozygosity index is at a high level (0.055). While there have been several reports discussing the leukemogenic potential of mutations in the cytokine/hematopoietin receptor superfamily, genetic alterations in the transmembrane and cytoplasmic region of G-CSFR do not seem to play a pathogenic role in leukemia.

Humans↗

Carbonyl reduction of timiperone in human liver cytosol.

This in vitro study using human liver enzymes was undertaken in order to compare the mechanism of metabolic reduction of timiperone, a potent butyrophenone neuroleptic, with that of haloperidol. Conversion of timiperone to reduced timiperone in liver cytosol was confirmed. The carbonyl reductase inhibitors (menadione IC50 5-18 microM; ethacrynic acid IC50 26-51 microM) potently inhibited both timiperone reductase and haloperidol reductase activity, while 4-methylpyrazole (alcohol dehydrogenase inhibitor) had no effect and phenobarbital (aldehyde reductase inhibitor) had a weak inhibitory effect. The formation of reduced timiperone was highly correlated with the formation of reduced haloperidol(r = 0.87, n = 6, P < 0.02). Timiperone reductase activity was approximately 40% lower than haloperidol reductase activity (at a substrate concentration of 100 microM, two-tailed t-test, P < 0.05). The Michaelis-Menten constant (Km) and maximum velocity (Vmax) of reduced timiperone formation were much lower than reduced haloperidol formation (K(m) values: 29.7 +/- 15.1 versus 381.3 +/- 1.1 microM, n = 3, P < 0.01; Vmax: 0.81 +/- 0.19 versus 6.00 +/- 1.47 nmol/mg/min; n = 3, P < 0.05). However, the ratio Vmax/K(m) (clearance) for timiperone was 1.3-2.4 times higher than for haloperidol, indicating that metabolic clearance of timiperone by carbonyl reductase may be similar to or slightly higher than for haloperidol.

Alcohol Oxidoreductases↗

Effects of anxiety disorder on impairment and recovery from stroke.

The effect of anxiety disorder on recovery from impairment following stroke was examined in 142 patients with acute stroke who had follow-up evaluations. Anxiety disorder significantly interacted with depression to influence the severity and course of depression, outcome of activities of daily living, and social functioning. Anxiety disorder, however, did not affect cognitive impairment, which was influenced only by major depression. These data suggest that the existence of anxiety disorders plays an important role in the prognosis of patients with poststroke depression. These data also suggest that depression and anxiety disorder may have different mechanisms.

Aged↗

An immortalized, type-1 astrocyte of mesencephalic origin source of a dopaminergic neurotrophic factor.

Rat embryonic d 14 (E14) mesencephalic cells, 2.5% of which are glioblasts, were incubated in medium containing 10% of fetal bovine serum for 12 h and subsequently expanded in a serum-free medium using basic fibroblast growth factor (bFGF) as the mitogen. On a single occasion, after more than 15 d in culture, several islets of proliferating, glial-like cells were observed in one dish. The cells, when isolated and passaged, proliferated rapidly in either a serum-free or serum-containing growth medium. Subsequent immunocytochemical analysis showed that they stained positive for GFAP and vimentin, and negative for A2B5, O4, GalC, and MAP2. Serum-free conditioned medium (CM) prepared from these cells caused a fivefold increase in survival and promoted neuritic expansion of E14 mesencephalic dopaminergic neurons in culture. These actions are similar to those exerted by CM derived from primary, mesencephalic type-1 astrocytes. The pattern of expression of the region-selective genes; wnt-1, en-1, sis showed that 70% of the cells were heteroploid, and of these, 50% were tetraploid. No apparent decline in proliferative capacity has been observed after 25 passages. The properties of this cell line, named ventral mesencephalic cell line one (VMCL1), are consistent with those of an immortalized, type-1 astrocyte. The mesencephalic origin of the cell line, and the pattern and potency of the neurotrophic activity exerted by the CM, strongly suggest that the neurotrophic factor(s) identified are novel, and will likely be strong candidates with clinical utility for the treatment of Parkinson's disease.

Animals↗

Glyceraldehyde-3-phosphate dehydrogenase mRNA expression in hepatocellular carcinoma.

Glyceraldehyde-3-phosphate dehydrogenase (G3PDH) is often used as a control gene for mRNA expression, however it has been proposed to be overexpressed in all hepatocellular carcinomas (HCC). Equal amounts of tumor and paired normal (T/N) RNA, based on OD260/280 nm, were compared using ethidium bromide staining, poly-T probing, gene-specific dot blot and Northern blots using control probes G3PDH, actin and histone H4. Using mRNA blots 13/20 surgical HCC pairs did not overexpress G3PDH. Those 7/20 intact samples which did appear to overexpress G3PDH on Northern blot could not be detected by poly-T probing of dot blots. The apparent overexpression was not specific for the control gene G3PDH nor for the malignancy HCC. It may represent partial mRNA degradation, or the presence of as yet unknown substances which interfere with absorption at 260/280 nm. We advise caution in selecting human T/N pairs for differential gene expression studies. For HCC, no clinicopathological variables, including cirrhosis, predicted whether a T/N sample pair was likely to be balanced or not.

Carcinoma, Hepatocellular↗

[Niceritrol decreases serum phosphate levels in chronic hemodialysis patients].

Since phosphorus retention in hemodialysis (HD) patients is known to be an important factor in the development of secondary hyperparathyroidism and renal osteodystrophy, phosphate binders have been needed for the control of serum phosphate levels (P). However, the calcium-containing phosphate binders that have been used widely can cause a rise in serum calcium levels and cause secondary hypoparathyroidism. We have recently experienced decreases in P after the administration of niceritrol (NT), a prodrug of nicotinic acid, for the treatment of low HDL-cholesteremia (HDL-C) in HD patients. The aim of the present study was to assess the mechanism of the P-lowering effect of NT in comparison with nicomol (NC), another prodrug of nicotinic acid. NT (750 mg/day) or NC (600 mg/day) was given orally to 10 or 14HD patients respectively. Blood samples were collected before the first dialysis of each week for the determination of serum urea nitrogen (UN), Cr, Ca, P, total cholesterol (TC), triglyceride (TG) and HDL-C. Serum nicotinic acid concentration (NAC) by gas chromatograph mass-spectrometry method was determined before, 4 weeks and 8 weeks after the administration of these drugs. After NT administration, P was decreased from 6.2 +/- 0.4 mg/dl to 5.1 +/- 0.4 mg/dl (1st week, p < 0.001, Mean +/- SE) and 4.5 +/- 0.3 mg/dl (2nd weeks, p < 0.001) with no change in UN, Cr or Ca levels; these significant decreases in P lasted for 8 weeks. NAC increased significantly after NT administration from 25.5 +/- 1.3 ng/ml to 549.8 +/- 102.2 ng/ml (4 weeks, p < 0.01) and 431.7 +/- 51.4 ng/ml (8 weeks, p < 0.01). HDL-C also increased (33.6 +/- 4.0 mg/dl vs 42.7 +/- 4.6 mg/dl, p < 0.05), but TC and TG did not change. In contrast, no significant changes were observed in P, NAC and HDL-C after NC administration. These discrepancies could be ascribed to the differences in serum NAC levels. These data suggest that NT could be useful for the control of P in HD patients. However further studies are needed to confirm the mechanism of the P-lowering effect of NT.

Anticholesteremic Agents↗

Reduced expression of the CXC chemokine hIRH/SDF-1alpha mRNA in hepatoma and digestive tract cancer.

We isolated human intercrine reduced in hepatomas (hIRH) as a mRNA whose expression was reduced in differential displays from human hepatocellular carcinoma. hIRH is equivalent to the alpha-chemokine SDF-1alpha/PBSF. We have previously demonstrated on Northern blot analysis that although hIRH mRNA expression is common in human normal tissues, it is absent from pre-malignant colonic adenomas and from 27 human malignant cell lines. However, there are no reports on the mRNA status of hIRH in other human cancers. The present study was designed to investigate semi-quantitatively the expression of hIRH/SDF-1alpha mRNA in hepatocellular carcinoma and digestive tract cancers by reverse transcription-polymerase chain reaction (RT-PCR). The expression of hIRH/SDF-1alpha in the majority of cancer tissues analyzed was markedly reduced compared with that in adjacent non-cancer tissue. RT-PCR was more sensitive than Northern blots in the detection of hIRH mRNA. The average (mean +/- SE) tumor/normal (T/N) ratio determined by RT-PCR was 0.40 +/- 0.07 in 10 pairs of hepatoma, 0.38 +/- 0.09 in 14 pairs of colon cancers, 0.43 +/- 0.07 in 10 pairs of esophageal cancers and 0.70 +/- 0.09 in 26 pairs of gastric cancers. As a control, the mean G3PDH T/N ratio was 1.16 +/- 0.06. The distribution of T/N ratios was significantly different between gastric cancer and the other cancers, but there was no correlation between hIRH/SDF-1alpha expression and clinicopathological characteristics in gastric cancer. Our findings demonstrate that hIRH/SDF-1alpha expression is reduced in the majority of gastrointestinal tumors.

Adult↗

Effect of the chimeric soluble granulocyte colony-stimulating factor receptor on the proliferation of leukemic blast cells from patients with acute myeloblastic leukemia.

The biological roles of the soluble granulocyte colony-stimulating factor (G-CSF) receptor, which arises as a result of alternative RNA splicing, are as yet unknown. In this study, we examined the in vitro effect of a chimeric protein composed of the extracellular region of a murine G-CSF receptor and the human IgG1 Fc region because a human natural soluble G-CSF receptor was not available. First, we found that this chimeric soluble G-CSF receptor could inhibit the biological activity of G-CSF on normal bone marrow colony formation. Because G-CSF also plays an important role in the proliferation of leukemic blast cells, we next examined the effect of the soluble G-CSF receptor on leukemic blast colony formation in 10 acute myeloblastic leukemia cases. Although G-CSF stimulated the proliferation of leukemic progenitor cells to form leukemic blast colonies, the chimeric soluble G-CSF receptor completely inhibited this stimulatory effect. Furthermore, the chimeric soluble G-CSF receptor also inhibited spontaneous leukemic blast colony formation in two cases. Because a high concentration of G-CSF was observed in the supernatants of leukemic blast cells from these two cases, it seems likely that the soluble G-CSF receptor cut off the autocrine growth mechanism of leukemic blast cells mediated by G-CSF. These findings suggest the possibility that the soluble G-CSF receptor could be used in a clinical application for acute myeloblastic leukemia patients in the future.

Animals↗

Jak1 plays an essential role for receptor phosphorylation and Stat activation in response to granulocyte colony-stimulating factor.

The proliferation and differentiation of neutrophils is regulated by granulocyte-specific colony-stimulating factor (G-CSF). G-CSF uses a receptor of the cytokine receptor superfamily and, in common with all members of the family, induces the tyrosine phosphorylation and activation of members of the Janus protein tyrosine kinase (Jak) family. In both myeloid cells and a human fibrosarcoma cell line expressing the G-CSF receptor, G-CSF induces the tyrosine phosphorylation and activation of Jak1, Jak2, and Tyk2. In addition, G-CSF induces the tyrosine phosphorylation of the receptor and members of the signal transducers and activators of transcription (Stat) family, including Stat3, as well as Stat1 and Stat5, depending on the cells involved. Using mutant cell lines lacking various Jaks, we show here that Jak1 is critical for G-CSF-mediated Stat activation, whereas Jak2 or Tyk2 are either not required or play redundant or ancillary roles. In the absence of Jak1, G-CSF induces activation of Jak2 and Tyk2, but fails to induce receptor tyrosine phosphorylation and induces dramatically reduced levels of Stat activation. A kinase-inactive Jak2, when overexpressed in cells lacking endogenous Jak2, can suppress Jak1 activation, receptor phosphorylation, and Stat activation, suggesting competition in the receptor complex either for Jak1 binding or substrates. Because the requirement for Jak1 is very similar to that previously shown for interleukin-6 signaling, the data support the concept that the G-CSF receptor and gp130 are both structurally and functionally similar.

Animals↗

Jaks and Stats in cytokine signaling.

Hematopoiesis is regulated through the binding of cytokines to receptors of the cytokine receptor superfamily. Although lacking catalytic domains, members of the cytokine receptor superfamily mediate ligand-dependent activation of protein tyrosine phosphorylation through their association and activation of members of the Janus kinase (Jak) family of protein tyrosine kinases. The activated Jaks phosphorylate the receptors which creates docking sites for SH2-containing signaling proteins which are tyrosine phosphorylated following their association with the complex. Among the substrates of tyrosine phosphorylation are members of the signal transducers and activators of the transcription family of proteins (Stats). Various cytokines induce the tyrosine phosphorylation and activation of one or more of the seven family members. The pattern of Stat activation provides a level of cytokine individuality that is not observed in the activation of other signaling pathways. The role of various Stats in the biological responses to cytokines has been assessed through the analysis of receptor mutations which disrupt Stat activation and more recently by disruption of the genes in mice. Our results have demonstrated that the activation of Stat5a and Stat5b by erythropoietin is critical for the activation of a number of immediate early genes but is not required for a mitogenic response. Mice in which the genes for Stat4 and Stat6 are disrupted are viable but lack functions that are mediated by interleukin 12 (IL-12) or IL-4, respectively, suggesting that these Stats perform very specific functions in immune responses.

Animals↗

Stimulation of prostaglandin production by quinolone phototoxicity in Balb/c 3T3 mouse fibroblast cells in vitro.

Sparfloxacin (SPFX) and levofloxacin (LVFX) with ultraviolet-A (UVA) irradiation have been reported to induce skin inflammation due to phototoxicity in Balb/c mice. We examined the production of arachidonic acid metabolites induced by quinolone phototoxicity in Balb/c 3T3 mouse fibroblast cells in vitro. The cells were simultaneously treated with SPFX or LVFX at 1, 10, or 100 microM and UVA irradiation for 5 min (0.5 J/cm2). They were then cultured in quinolone-free medium for 24 hr, and the concentrations of prostaglandin E2 (PGE2), 6-ketoprostaglandin F1 alpha (6-keto-PGF1 alpha), and leukotriene B4 (LTB4) in the incubation medium were measured. Furthermore, the effect of quinolone photoproducts on the production of the inflammatory mediators and that of indomethacin on PGE2 level were also examined. Treatment with SPFX at 100 microM plus UVA irradiation markedly increased levels of PGE2 and 6-keto-PGF1 alpha, but not that of LTB4. SPFX or LVFX alone at up to 100 microM, 10 microM SPFX, or 100 microM LVFX, or less plus UVA irradiation, or UVA-preirradiated quinolone up to 100 microM had no effect. Indomethacin even at 0.1 microM completely inhibited the PGE2 elevation induced by 100 microM SPFX with UVA. These results suggest that PGs released from dermal fibroblasts in the simultaneous presence of quinolone and UVA could contribute in part to the development of skin inflammation in vivo.

3T3 Cells↗

Lack of chondrotoxicity of ofloxacin otic solution on the auditory ossicle cartilages of juvenile guinea pigs.

The effect of 0.3% otic solution of ofloxacin on the cartilages constituting the epiphyses of the auditory ossicles and the wall of the auditory tube was histologically examined after 30-day repeated intratympanic administration to juvenile male guinea pigs aged 4 weeks. Ofloxacin showed no chondrotoxicity for the cartilages and, in some but not all animals, reduced haemorrhage and neutrophil infiltration in the tympanic cavity, compared with that of the control. Further, the articular cartilage of the humeral trochlea and femoral condyle also showed no change.

Animals↗

Significance of monitoring plasma levels of amitriptyline, and its hydroxylated and desmethylated metabolites in prediction of the clinical outcome of depressive state.

The clinical significance of monitoring the plasma levels of amitriptyline and its metabolites in prediction of the clinical outcome of depressive episode was investigated in 49 inpatients. Discriminant analysis of drug concentrations (at two weeks after initiation of drug treatment) and clinical outcome revealed that increasing the plasma levels of amitriptyline, cis-isomers of hydroxylated metabolites (Z-10-hydroxyamitriptyline and Z-10-hydroxynortriptyline) predicted a better clinical outcome, while increasing of plasma levels of nortriptyline and trans-isomers of hydroxylated metabolites (E-10-hydroxyamitriptyline and E-10-hydroxynortriptyline) were shown to predict a poor clinical outcome in the depressive episode of the subjects, and that clinical outcome of approximately 73% of the subjects could be correctly predicted.

Adult↗

Lack of IL-4-induced Th2 response and IgE class switching in mice with disrupted Stat6 gene.

Signal transducers and activators of transcription (Stats) are activated by tyrosine phosphorylation in response to cytokines, and are thought to mediate many of their functional responses. Stat6 is activated in response to interleukin (IL)-4 and may contribute to various functions including mitogenesis, T-helper cell differentiation and immunoglobulin isotype switching. To evaluate the role of Stat6, we generated Stat6-null mice (Stat6 -/-) by gene disruption in embryonic stem cells. The mice were viable, indicating the lack of a non-redundant function in normal development. Although naive lymphoid cell development was normal, Stat6 -/- mice were deficient in IL-4-mediated functions including Th2 helper T-cell differentiation, expression of cell surface markers, and immunoglobulin class switching to IgE. In contrast, IL-4-mediated proliferation was only partly affected.

Animals↗

Effect of antioxidants, anti-inflammatory drugs, and histamine antagonists on sparfloxacin-induced phototoxicity in mice.

We examined the effects of antioxidants, anti-inflammatory drugs, and histamine antagonists on auricular inflammation and retinal degeneration induced by the phototoxicity of sparfloxacin (SPFX), a quinolone antibacterial agent. Catalase (CAT), dimethyl sulfoxide (DMS0), dexamethasone (DM), indomethacin (IM), phenidone (PD), AA-861 (AA), pyrilamine maleate (PY), or cimetidine (CM) was continuously administered to female Balb/c mice using microosmotic pumps for 72 hr and intraperitoneally once before SPFX administration. The mice were given a single oral administration of 50 or 100 mg/kg SPFX and irradiated with ultraviolet-A (UVA) light at 1.5 mW/cm(2) for 4 hr. SPFX administration plus UVA irradiation induced thickening and inflammation of the auricular skin and retinal degeneration in the eye. CAT and DMS0 significantly inhibited the auricular thickening only 4 hr after SPFX administration. DM, IM, and PD also inhibited this toxicity from 4 to 48 or 72 hr. On the other hand, PY and CM showed no effect on this change. With regard to the eye, CAT and DMSO completely inhibited the occurrence of retinal degeneration and IM and PD tended to decrease its incidence, whereas DM, AA, PY, and CM showed no or an exacerbating effect. These results suggest that reactive oxygen species contribute to the initiation of auricular inflammation and retinal degeneration and that cyclooxygenase products are also involved in the initiation and later progression of auricular inflammation. They also show that histamine and 5-lipoxygenase products are not involved in either phototoxic lesion.

Animals↗

Laparoscopic repair of a colonic perforation sustained during colonoscopy.

A patient who sustained a colonic perforation during therapeutic colonoscopy was treated successfully by laparoscopic repair. Laparoscopy was performed 5 h after polypectomy. Fecal matter was not identified in the peritoneal cavity. Local peritonitis was mild. The laceration was oversewn with five sutures using the extracorporeal endoscopic knot technique. The appendix epiploica was then anchored over the lesion. The postoperative recovery was rapid and uneventful. Laparoscopic surgery may become a useful tool for the safe, effective, and minimally invasive management of iatrogenic colonic perforation.

Colon↗

Subcloning of three osteoblastic cell lines with distinct differentiation phenotypes from the mouse osteoblastic cell line KS-4.

Three distinct osteoblastic cell lines (KS418, KS460, and KS483) were subcloned from the mouse osteoblastic KS-4 cells, which possessed the abilities not only to differentiate into mature osteoblasts, but also to support osteoclast differentiation in coculture with spleen cells. The order of the magnitude of the basal alkaline phosphatase (ALP) activity was KS483 > KS418 > KS460. KS483 cells were also more differentiated than KS418 and KS460 in terms of ALP activity and osteocalcin production, when cultured in growth medium containing 10% fetal bovine serum. In long-term culture, KS418 and KS483 apparently differentiated into mature osteoblasts and formed calcified nodules without addition of beta-glycerophosphate. Electron microscopic analysis demonstrated that calcification occurring in the nodules was initiated in the matrix vesicles as observed in bone formation in vivo. Nodule formation and mineral deposition occurred simultaneously in the presence of beta-glycerophosphate, but the former always preceded the latter without addition of beta-glycerophosphate. In contrast, KS460 cells did not show time-dependent increases of ALP activity, type I collagen expression and osteocalcin production, which were induced by treatment with recombinant osteogenic protein-1 (OP-1). The three cell lines similarly supported osteoclast differentiation in coculture with spleen cells in response to 1,25-dihydroxyvitamin D3. These results indicate that the three cell lines subcloned from the original KS-4 cells represent phenotypically distinct osteoblasts during osteoblast differentiation, but are equipped similarly with the capacity to support osteoclast differentiation. The subcloned cells of the KS-4 series may provide useful systems in which to study osteoblast differentiation and function.

Actins↗