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T Koike

Publications and source records attributed to T Koike.

At least 19 recordsLinked to original sources

Severe aplastic anemia associated with thymic carcinoma and partial recovery of hematopoiesis after thymectomy.

Aplastic anemia has been a rare complication of thymic tumors documented in only a few cases. We now report that a previously healthy, 72-year-old woman had a well-differentiated squamous cell thymic carcinoma and severe aplastic anemia, as detected on a simultaneous basis. After extirpation of the thymic carcinoma, hematological recovery was achieved. While cyclosporine (CyA), prednisolone (PSL), and methenolone improved hematological data even more, a partial and stable remission has been sustained for 22 months. The patient's serum prior to the surgery had a suppressive effect on the formation of colonies of erythroid and nonerythroid colonies, as determined using the patient's bone marrow cells and compared with the patient's serum after the surgery and normal AB serum. This case report concerns a patient in whom we observed simultaneous occurrence of a thymic tumor and a sever marrow aplasia for which we describe our therapeutic approach.

Aged↗

The effects of lansoprazole on erosive reflux oesophagitis are influenced by CYP2C19 polymorphism.

BACKGROUND: The acid suppressive effect of lansoprazole is influenced by the P450 2C19 (CYP2C19) polymorphism. AIM: To investigate whether the CYP2C19 genotype is related to the healing of erosive reflux oesophagitis during treatment with lansoprazole. METHODS: Eighty-eight Japanese patients with erosive reflux oesophagitis were treated with a daily oral dose of 30 mg lansoprazole for 8 weeks. The CYP2C19 genotype, Helicobacter pylori infection status and serum pepsinogen I/II ratio were assessed before treatment. At 4 and 8 weeks, the healing of erosive reflux oesophagitis was evaluated endoscopically. RESULTS: The healing rates were 57.1%, 69.2% and 72.7% at 4 weeks and 77.4%, 95.0% and 100% at 8 weeks in homozygous extensive metabolizers, heterozygous extensive metabolizers and poor metabolizers, respectively. At 8 weeks, the healing rate of erosive reflux oesophagitis was significantly lower in homozygous extensive metabolizers than in the other two groups (P < 0.05). The H. pylori status and serum pepsinogen I/II ratio had less influence than CYP2C19 polymorphism on the healing rate of erosive reflux oesophagitis. CONCLUSIONS: The therapeutic effect of lansoprazole on erosive reflux oesophagitis is influenced by the CYP2C19 genotype status. Therefore, a test of CYP2C19 genotype may be useful for the medical treatment of reflux oesophagitis with lansoprazole.

2-Pyridinylmethylsulfinylbenzimidazoles↗

Cerebral imaging by magnetic resonance imaging and single photon emission computed tomography in systemic lupus erythematosus with central nervous system involvement.

OBJECTIVE: To assess the significance of magnetic resonance imaging (MRI) and single photon emission computed tomography (SPECT) abnormalities in patients with systemic lupus erythematosus (SLE). METHODS: Forty-four patients with SLE were retrospectively analysed. Patients were classified into three groups [1 and 2: patients with central nervous system (CNS) manifestations before and after starting high-dose steroid therapy, respectively; 3: patients without CNS manifestations. MRI was performed in all 44 patients and SPECT in 31. RESULTS: Abnormal findings in MRI were found in 19 patients. MRI abnormalities were significantly more frequent in patients with CNS manifestations than in those without [71 vs 17%, odds ratio (OR) 11.9, confidence interval (CI) 2.8-49.9, P=0.0003]. After the initiation of steroid therapy, patients with CNS manifestations also had an increased frequency of abnormal MRI. No correlation was found between SPECT findings and CNS manifestations. However, patients with CNS manifestations after starting steroids showed a markedly increased frequency of abnormal MRI and SPECT compared with those without CNS manifestations (80 vs 7%; OR 56, CI 4.4-719, P=0.0003). The positive predictive value of abnormality in both techniques in developing CNS manifestations after starting steroids was 89%. CONCLUSION: MRI findings correlated with CNS manifestations in SLE. Where there is a high suspicion of CNS involvement, the combination of MRI and SPECT may be useful in predicting CNS manifestations after starting steroid therapy.

Adolescent↗

Effects of deicing salt on the vitality and health of two spruce species, Picea abies Karst., and Picea glehnii Masters planted along roadsides in northern Japan.

In northern Japan, the growth of Picea abies Karst., and Picea glehnii Masters, which have been planted along the highways, is often suppressed due to several environmental stresses. To examine the adverse effects of deicing salt, the primary source of stress,we measured needle life span, photosynthetic capacity, and water potential and transpiration rate of the two spruce species at a site with damaged trees, near the roadside and a site with healthy trees, located far from the highway. Results from the analysis showed large amounts of sodium and chlorine in the soil and snow at the damaged site. These elements had accumulated in the needles of the spruce. Moreover, physiological traits of the spruce, at the damaged site were also affected. Therefore, we concluded that poor physiological traits might be attributed to an accumulation of deicing salt in the needles, resulting in the suppression of tree growth.

Absorption↗

Granular lymphocyte proliferative disorder after autologous peripheral blood stem cell transplantation for multiple myeloma.

A 57-yr-old woman with multiple myeloma underwent tandem autologous peripheral blood stem cell transplantation (APBSCT). Fever, anemia, and thrombocytopenia, followed by the proliferation of granular lymphocytes in the peripheral blood occurred, after a second APBSCT. Clonal rearrangement of the T-cell receptor was detected using Southern blot analysis of peripheral blood samples. Granular lymphocyte proliferative disorders (GLPD) were diagnosed. After steroid therapy, the symptoms resolved. Lymphocytosis did not recur after the discontinuation of steroids. There have been a few reports of GLPD after solid organ and allogeneic hematopoietic stem cell transplantations. We report a first case of GLPD after APBSCT.

Clone Cells↗

Venous thromboembolism in the antiphospholipid syndrome: management guidelines for secondary prophylaxis.

Venous thromboembolism (VTE) in patients suffering from the antiphospholipid syndrome (APS) has been reported in almost any location of the vessel tree and the risk of recurrences has been found in several studies to be more closely associated with the presence of lupus anticoagulant than with the positivity for anti-cardiolipin antibodies. The thrombophilic state of APS raises the problem of the secondary prophylaxis to avoid VTE recurrences. For APS patients with VTE, published data appear to support a longer warfarin treatment if compared with the standard management of antiphospholipid (aPL)-negative patients with VTE. The question of how long oral anticoagulant treatment should be continued for APS patients, however, remains unanswered. Concerning the intensity of anticoagulation, several authors recommend a target international normalized ratio (INR) between 3.0 and 4.0 to efficiently protect from VTE recurrences. A recent decision analysis study does support such a suggestion. On the contrary, in a few prospective studies regimens with lower target INRs appear to be effective, and some authors therefore recommend a target INR of between 2.0 and 3.0. Specific large and prospective trials are needed to address this question. Until such information becomes available, individualized treatment according to the patient's individual risk factors for both bleeding and thrombosis is the general practice.

Administration, Oral↗

Oxidized low-density lipoprotein as a risk factor of thrombosis in antiphospholipid syndrome.

Beta2-Glycoprotein I (beta2-GPI) is a major antigen for anticardiolipin antibodies (aCL, Abs) present in patients with antiphospholipid syndrome (APS). We recently reported that oxidized LDL(oxLDL) is subsequently targeted by beta2-GPI and anti-beta2-GPI auto-Abs and that-carboxyl variants of 7-ketocholesteryl esters, such as 7-ketocholesteryl-9-carboxynonanoate (oxLig-1) and 7-ketocholesteryl-12-carboxy (keto) octadodecanoate (oxLig-2), are ligands for beta2-GPI (J Lipid Re 2001; 42: 697; J Lipid Res 2002; 43: 1486). These beta2-GPI ligands provide an electrostatic interaction between oxLDL and beta2-GPI followed by forming stable complexes (such as Schiff base adducts). The omega-carboxyl function in these ligand is responsible for beta2-GPI binding to oxLDL and the oxLDL-beta2-GPI complexes are anti-beta2-GPI auto-Ab-dependently taken up by macrophages (i.e., by phagocytosis). Our recent observations are consistent with the evidence that beta2-GPI co-localizes with lymphocytes and mononuclear cells in human athero-plaques. Thus, autoimmune thrombogenesis (atherogenesis) is linked to interaction of anti-beta2-GPI Abs with the beta2-GPI-oxLDL complexes. We propose an alternative idea, that an immune response against the beta2-GPI-oxLDL complexes may be involved in mechanisms in the development of atherosclerosis, which has been explained by the theory of 'the response to injury'.

Antigen-Antibody Complex↗

Aminoguanidine pyridoxal adduct is superior to aminoguanidine for preventing diabetic nephropathy in mice.

Aminoguanidine inhibits the formation of advanced glycation end-products, and has been extensively examined in animals. However, administration of aminoguanidine decreases the hepatic content of pyridoxal phosphate. In order to avoid this problem, we developed an aminoguanidine pyridoxal Schiff base adduct and examined its efficacy in vitro as well as in a model of diabetic nephropathy. Mice with streptozotocin-induced diabetes were treated with aminoguanidine or aminoguanidine pyridoxal adduct for 9 weeks. An in vitro study was also performed to assess the antioxidant activity of aminoguanidine and its pyridoxal adduct. Neither drug altered glycemic control. Aminoguanidine pyridoxal adduct significantly improved urinary albumin excretion by 78.1 % compared with the diabetic control, and also had a better preventive effect on the progression of renal pathology than aminoguanidine did. Inhibition of glycation by both drugs was similar, but the antioxidant activity of the pyridoxal adduct was far superior. These findings suggest that aminoguanidine pyridoxal adduct may be superior to aminoguanidine, as it not only prevents vitamin B6 deficiency but is also better at controlling diabetic nephropathy, as this adduct inhibits oxidation as well as glycation.

Animals↗

Ex vivo expansion of human UC blood primitive hematopoietic progenitors and transplantable stem cells using human primary BM stromal cells and human AB serum.

BACKGROUND: In vitro maintenance and expansion of human hematopoietic stem cells is crucial for many clinical applications, and investigators have been using xenogeneic, especially murine, stromal cells for stem-cell expansion. In addition, many such culture systems utilize FCS-containing medium or serum-free medium that contains human- or animal-derived proteins. However, the possible transmission of infectious diseases has led to a debate about the safety of the delivery of grafts expanded in culture using cells and proteins of allogeneic or xenogeneic origin. Using primary human BM stromal cells, we have established an AB serum-based co-culture system to expand human primitive progenitors and transplantable stem cells. METHODS: Cord blood CD34+ cells were cultured on a monolayer of human BM-derived primary stromal cells with thrombopoietin (TPO), stem-cell factor (SCF) and flt3/flk2 ligand (FL) in the presence of either FCS or AB serum. One to three weeks later, cells were examined for total cells, CD34+ cells, CD34+ CD38- cells, and clonogenic progenitors. SCID mouse reconstituting cell (SRC) activity was also studied. RESULTS: Three weeks of culture with TPO, SCF, and FL supported more than a 250-fold expansion of CD34+ cells, CD34+ CD38- cells and CFU-C, regardless of the kind of serum used. SRC assay revealed that transplantable stem cells were moderately expanded as well. DISCUSSION: This ex vivo expansion system should prove valuable in clinical settings in which stromal cells and serum are available from recipients or stem-cell donors.

ADP-ribosyl Cyclase↗

Significance of magnetic resonance imaging in the diagnosis of nodular regenerative hyperplasia of the liver complicated with systemic lupus erythematosus: a case report and review of the literature.

Nodular regenerative hyperplasia of the liver (NRH), characterized by multiple hepatic nodules in the absence of fibrosis, is a rare but important complication of systemic lupus erythematosus (SLE) associated with non-cirrhotic portal hypertension. The diagnosis of NRH is based on the pathological examination, and radiological findings of NRH are poorly documented. We report a case of a 40-year-old woman with SLE complicated with NRH. Sixteen years after diagnosis of SLE, esophageal varices were incidentally found and diagnosis of portal hypertension due to NRH was made by magnetic resonance imaging (MRI) and confirmed by needle liver biopsy. Although MRI showed the lesions as significant nodules, neither computed tomography nor ultrasonography could demonstrate the nodules. However, serial MRI showed significant enlargement of the nodules for 2 years Because NRH may lead to portal hypertension with life-threatening variceral haemorrhage in patients with SLE, MRI is a useful, non-invasive examination to screen the patients for its presence and follow-up. We reviewed the literature regarding NRH in SLE and discuss the management of the affected patients.

Adult↗

Glucose-6-phosphate dehydrogenase in rat lung alveolar epithelial cells. An ultrastructural enzyme-cytochemical study.

Glucose-6-phosphate dehydrogenase (G6PD) is the key enzyme of the pentose phosphate pathway in carbohydrate metabolism, and it plays an important role in cell proliferation and antioxidant regulation within cells in various organs. Although marked cell proliferation and oxidant/antioxidant metabolism occur in lung alveolar epithelial cells, definite data has been lacking as to whether cytochemically detectable G6PD is present in alveolar epithelial cells. The distribution pattern of G6PD within these cells, if it is present, is also unknown. The purpose of the present study was to investigate the subcellular localization of G6PD in alveolar cells in the rat lung using a newly-developed enzyme-cytochemistry (copper-ferrocyanide) method. Type I cells and stromal endothelia and fibroblasts showed no activities. Electron-dense precipitates indicating G6PD activity were clearly visible in the cytoplasm and on the cytosolic side of the endoplasmic reticulum of type II alveolar epithelial cells. The cytochemical controls ensured specific detection of enzyme activity. This enzyme may play a role in airway defense by delivering substances for cell proliferation and antioxidant forces, thus maintaining the airway architecture.

Animals↗

Water exchange rates in the diruthenium mu-oxo ion cis,cis-[(bpy)(2)Ru(OH(2))](2)O(4+).

Addition of 2 equiv of Ce(4+) to the dimeric ruthenium mu-oxo ion cis,cis-[(bpy)(2)Ru(OH(2))](2)O(4+) (formal oxidation state III-III, subsequently denoted [3,3]) or addition of 1 equiv of Ce(4+) to the corresponding [3,4] ion gave near-quantitative conversion to the [4,4] ion, confirming our recent assignment of this oxidation state as an accumulating intermediate during water oxidation by the cis,cis-[(bpy)(2)Ru(O)](2)O(4+) ([5,5]) ion. The rates of water exchange at the cis-aqua positions in the [3,3] and [3,4] ions were investigated by incubating H(2)(18)O-enriched samples in normal water for predetermined times, then oxidizing them to the [5,5] state and measuring by resonance Raman (RR) spectroscopy changes in the magnitudes of the O-isotope sensitive bands at 780 and 818 cm(-1). These bands have been assigned to Ru=(18)O and Ru=(16)O stretching modes, respectively, for ruthenyl bonds formed by deprotonation of the aqua ligands upon oxidation to the [5,5] state. An intermediate accumulated during the course of the isotope exchange reaction that gave a [5,5] ion possessing both approximately 782 and approximately 812 cm(-1) bands; this spectrum was assigned to the mixed-isotope species, (bpy)(2)Ru((16)O)(16)ORu((18)O)(bpy)(2)(4+). Kinetic analysis of solutions at various levels of oxidation indicated that only the [3,3] ion underwent substitution; the exchange rate constant obtained in 0.5 M trifluoromethanesulfonic acid, 23 degrees C, was 7 x 10(-3) s(-1), which is (10(3)-10(5))-fold larger than rate constants measured for anation of monomeric (bpy)(2)Ru(III)X(H(2)O)(3+) ions bearing simple sigma-donor ligands (X).

2,2'-Dipyridyl↗

Involvement of TLCK-sensitive serine protease in colchicine-induced cell death of sympathetic neurons in culture.

Superior cervical ganglion (SCG) cells from neonatal rats underwent apoptosis upon treatment with colchicine, a microtubule-disrupting agent. Western blotting and activity measurements showed that caspase-3 was indeed activated, but its peptide inhibitor (Ac-DEVD-CHO) neither suppressed nuclear fragmentation nor rescued the neurons from cell death. z-VAD-fmk, the general inhibitor of caspases, prevented nuclear fragmentation and delayed the cell death. Moreover, N-alpha-tosyl-L-lysine chloromethyl ketone (TLCK), but not N-alpha-tosyl-L-phenylalanine chloromethyl ketone (TPCK), prevented nuclear fragmentation and provided neuronal protection as well. The combination of both z-VAD-fmk and TLCK provided a long-term neuronal protection (>4 days), whereas neither one alone could do so, suggesting that there are both caspase-dependent and -independent pathways. TLCK-sensitive serine protease is also likely to act upstream of caspase-3 in a caspase-dependent pathway. Electron microscopic observations demonstrated that z-VAD-fmk suppressed nuclear fragmentation and improved mitochondrial swelling, but failed to prevent vesicular formation, which resulted in a slowly-occurring necrosis. More importantly, TLCK effectively blocked this abundant vesicular formation along with suppressing chromatin condensation. Thus, the combination of both conferred a nearly normal morphology, which is consistent with the results of cell survival experiments. These findings clearly indicate that TLCK-sensitive serine protease plays multiple roles in caspase-dependent and -independent pathways of colchicine-induced cell death, and suggest a novel mechanism underlying a necrotic pathway involving ER swelling and vesicular formation.

Animals↗

Molecular cloning and characterization of a KRAB-containing zinc finger protein, ZNF317, and its isoforms.

To identify zinc finger genes in human primary cultured erythroid progenitor cells, RT-PCR was performed using primers specific for the conserved sequence in zinc finger domains of mouse Friend of GATA-1. We identified a novel Krüppel-associated box (KRAB) zinc finger gene, ZNF317. Evaluation of full-length cDNA obtained by RACE showed that it encoded a protein composed of 13 Krüppel-like zinc fingers and a KRAB domain. RT-PCR analysis revealed four alternatively splicing products (ZNF317-1 through ZNF317-4). The ZNF317 gene has seven exons and is located in human chromosome 19p13. Northern analysis revealed that ZNF317-1 and ZNF317-2 transcripts were ubiquitously expressed, whereas ZNF317-3 and ZNF317-4 transcripts were detected only in lymphocytes, spleen, and lung. Competitive RT-PCR analysis showed that the expression of ZNF317 mRNA significantly decreased during erythroid maturation. In lymphocytes, ZNF317 expression was reduced in response to mitogenic stimulation. We propose that ZNF317 may play an important role in erythroid maturation and lymphoid proliferation.

Alternative Splicing↗

Activation of protein kinase C delays apoptosis of nerve growth factor-deprived rat sympathetic neurons through a Ca(2+)-influx dependent mechanism.

The effects of protein kinase C (PKC) activation on apoptosis depend on the cell type and on the isoenzymes activated. We show that the apoptosis of nerve growth factor (NGF)-deprived rat sympathetic neurons is delayed for about 24 h by treatment with O-tetradecanoylphorbol 13-acetate (TPA). The cell death was estimated by both morphological changes and the release of a cytoplasmic enzyme into the medium. The PKC inhibitor bisindolylmaleimide inhibited the TPA-mediated delay of neuronal death. The effect of TPA was abolished in conditions of Ca(2+)-free or in the presence of both Ca(2+)/calmodulin-dependent protein kinase II and phosphatidylinositol 3-kinase inhibitors, but was not blocked by either an L- or N-type Ca(2+) channel inhibitor. These results suggest that the survival of the NGF-deprived neurons may be supported by PKC activation followed by Ca(2+) influx.

Animals↗

Isolation, structure determination, and synthesis of neodysiherbaine A, a new excitatory amino acid from a marine sponge.

[structure: see text] A new excitatory amino acid, neodysiherbaine A (2), was isolated as a minor constituent of the aqueous extract from the marine sponge Dysidea herbacea. The structure was deduced by spectroscopic methods and established unambiguously by the total synthesis. The present synthesis, including as a key step cross-coupling of the 6/5-bicyclic core with an amino acid residue, is useful in constructing its structural analogues.

Alanine↗

Activation of a novel microglial gene encoding a lysosomal membrane protein in response to neuronal apoptosis.

In an attempt to understand the molecular mechanism of microglial activation in response to neuronal death or degeneration, we have employed cerebellar cell cultures prepared from P7 rats and grown in normal K(+) (5.4 mM) medium. Under this condition, glial cells respond to degeneration and cell death of granule neurons that begins to occur at 4 days in vitro (DIV). Here we describe a novel gene, granule cell death-10 (gcd-10) that is expressed in microglia and up-regulated in an early period of granule cell death. gcd-10 is homologous to the mouse lysosomal-associated multispanning membrane protein (LAPTm5) with hematopoietic origin. Immunocytochemistry and vital staining with acridine orange revealed that GCD-10 was localized at the perinuclear area of cultured microglia and COS 1 cells infected with a GCD-10-expressing adenoviral vector. In cerebellar cell cultures, however, GCD-10 was markedly up-regulated and widely distributed to the cytoplasm, which paralleled the localization of the ED1 antigen, the lysosomal marker. In vivo, gcd-10 is expressed mainly in the brain and the spleen, and was up-regulated upon nerve injury in retina 7 days after optic nerve transection. These findings suggest that gcd-10 is involved in the dynamics of lysosomal membranes associated with microglial activation both in vitro and in vivo.

Animals↗