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Biomedical subjects

K Takatsuki

Publications and source records attributed to K Takatsuki.

At least 37 records · Page 2Linked to original sources

Acute myelomonoblastic leukemia carrying the PEBP2beta/MYH11 fusion gene.

As recurrent chromosome abnormalities in leukemia are highly associated with particular subtypes, the genetic events of specific chromosome alteration must be associated with leukemogenesis and characteristics of the disease. The chromosomal breakpoints involved in inv(16) and t(16;16) have been shown to generate the fusion gene PEBP2beta(CBFbeta)/MYH11. The PEBP2beta/MYH11 fusion transcripts in all 8 patients with M4Eo, 2 of 18 with M4, and one CML in the blastic phase were detected by using RT-PCR and Southern blotting. We demonstrated the marked expression of CD34 and c-KIT (CD117) antigens in myelomonoblastic leukemia cells from all patients carrying this fusion gene, which was in contrast to the patients with M4 but without the fusion gene. These results indicate that immunophenotypic analysis is useful for detection of leukemia with the fusion gene, and that the PEBP2beta/MYH11 fusion gene is involved in immature cells expressing CD34 and c-KIT antigens.

Artificial Gene Fusion↗

[Psychiatric studies of chemotherapy and chemotherapy-induced nausea and vomiting of patients with lung or thymic cancer].

Psychiatric studies were made on 26 inoperable patients with lung cancer or thymic cancer to exam the possible correlation of chemotherapy and chemotherapy-induced nausea and vomiting. All patients were informed of their disease and how to undergo the therapy. Psychiatric tests of CMI (Cornell Medical, Index), MAS (Manifest Anxiety Scale), SDS (Self-Rating Depression Scale) and QOL questionnaire were performed just before the chemotherapy. SDS and QOL questionnaire were also done after chemotherapy. The patients were given chemotherapy including CDDP (80 mg/m2) and anti-emetic agents of 30 mg of azasetron, 750 mg of methylprednisolone and 1,800 mg of domperidone. The patients showing neurosis, anxiety or depression had significantly high nausea scores, so we concluded that psychiatric support was needed to improve these patients' QOL in chemotherapy.

Aged↗

Proliferation of adult T cell leukemia/lymphoma cells is associated with the constitutive activation of JAK/STAT proteins.

Human T cell leukemia/lymphotropic virus type I (HTLV-I) induces adult T cell leukemia/lymphoma (ATLL). The mechanism of HTLV-I oncogenesis in T cells remains partly elusive. In vitro, HTLV-I induces ligand-independent transformation of human CD4+ T cells, an event that correlates with acquisition of constitutive phosphorylation of Janus kinases (JAK) and signal transducers and activators of transcription (STAT) proteins. However, it is unclear whether the in vitro model of HTLV-I transformation has relevance to viral leukemogenesis in vivo. Here we tested the status of JAK/STAT phosphorylation and DNA-binding activity of STAT proteins in cell extracts of uncultured leukemic cells from 12 patients with ATLL by either DNA-binding assays, using DNA oligonucleotides specific for STAT-1 and STAT-3, STAT-5 and STAT-6 or, more directly, by immunoprecipitation and immunoblotting with anti-phosphotyrosine antibody for JAK and STAT proteins. Leukemic cells from 8 of 12 patients studied displayed constitutive DNA-binding activity of one or more STAT proteins, and the constitutive activation of the JAK/STAT pathway was found to persist over time in the 2 patients followed longitudinally. Furthermore, an association between JAK3 and STAT-1, STAT-3, and STAT-5 activation and cell-cycle progression was demonstrated by both propidium iodide staining and bromodeoxyuridine incorporation in cells of four patients tested. These results imply that JAK/STAT activation is associated with replication of leukemic cells and that therapeutic approaches aimed at JAK/STAT inhibition may be considered to halt neoplastic growth.

Adult↗

Persistent clonal proliferation of human T-lymphotropic virus type I-infected cells in vivo.

Clonal proliferation of human T-lymphotropic virus type I (HTLV-I)-infected cells has been detected by Southern blot analysis and inverse PCR in patients with adult T-cell leukemia, patients with HTLV-I-associated diseases, and even in asymptomatic carriers. Combining inverse PCR with long PCR, we amplified the genomic DNA regions flanking the integration sites of the HTLV-I provirus to detect clones of infected cells. Inverse long PCR revealed that increased virus load was associated with an increase of both the number of cells in each clone and the number of clones. Clonal proliferations were found in both CD4- and CD8-positive cells in a carrier and a patient with HTLV-I-associated neuropathy/tropical spastic paraparesis. These HTLV-I-infected clones persisted over several years in the same carriers, and, moreover, most of the persistent clones were CD4 positive in a HTLV-I carrier. These findings indicate that HTLV-I infection plays an important role in the clonal expansion of lymphocytes and the prolonged survival of CD4-positive cells in vivo. Surviving T-lymphocytes may be susceptible to genetic changes, leading to the onset of leukemia.

Adult↗

The V1/V2 region of human immunodeficiency virus type 1 modulates the sensitivity to neutralization by soluble CD4 and cellular tropism.

A primary isolate (KMT) of human immunodeficiency virus type 1 (HIV-1) resistant to recombinant soluble CD4 (rsCD4) was isolated from an HIV-1-infected individual and grown in a T lymphoid cell line. KMT isolate passaged on CEM cells (KMT/CEM) was still resistant to rsCD4. The V1/V2 and V3 regions of the viral envelope glycoprotein are thought to be involved in various biological phenotypes. To determine the exact envelope region of the KMT isolate responsible for sensitivity to rsCD4 and cellular tropism, we performed sequence analysis of KMT and KMT/CEM isolates. Sequence analysis of the KMT isolate showed that the sequence of the V3 region was relatively homogeneous, whereas a considerable heterogeneity of the V1/V2 region was noted. In contrast, the sequences of the V1 to V3 regions were homogeneous in KMT/CEM isolates. Analysis of NL4-3-based recombinant viruses with amplified sequences of the V1 to V3 regions from KMT and KMT/CEM isolates showed that the V1/V2 region modulated the sensitivity to rsCD4. A change in resistance to rsCD4 by the V1/V2 region was associated with the ability of the isolate to replicate in macrophages and efficiently replicate in T lymphoid cell lines. A change to an isolate sensitive to rsCD4 was associated with reduced replication efficiency in T lymphoid cell lines. Our results suggest that the V1/V2 region is involved in modulating the sensitivity to rsCD4, macrophage tropism, and replication efficiency in T lymphoid cell lines.

Amino Acid Sequence↗

Apoptosis resistance of blood cells from patients with paroxysmal nocturnal hemoglobinuria, aplastic anemia, and myelodysplastic syndrome.

Bone marrow (BM) hypoplasia is a major cause of death in paroxysmal nocturnal hemoglobinuria (PNH). However, little is known about the molecular events leading to the hypoplasia. Considering the close pathologic association between PNH and aplastic anemia (AA), it is suggested that a similar mechanism operates in the development of their BM failure. Recent reports have indicated apoptosis-mediated BM suppression in AA. It is thus conceivable that apoptosis also operates to cause BM hypoplasia in PNH. If this is the case, PNH clones need to survive apoptosis and show considerable expansion leading to clinical manifestations. We report here that granulocytes obtained from 11 patients with PNH were apparently less susceptible than those from 20 healthy individuals to both spontaneous apoptosis without any ligands and that induced by anti-FAS (CD95) antibody in vitro. The patients' BM CD34+ cells were also resistant to apoptosis induced by treatment with tumor necrosis factor-alpha, interferon-gamma, and subsequently with anti-FAS antibody. In lymphocytes, the pathologic resistance was not discriminated from inherent resistance to apoptosis. Granulocytes from 13 patients with AA and 12 patients with myelodysplastic syndrome (MDS) exhibited similar resistance to apoptosis. CD34+ cells from MDS-BM also showed similar tendency. Thus, the comparative resistance to apoptosis supports the pathogenic implication of apoptosis in marrow injury of PNH and related stem cell disorders.

Adult↗

Characterization of proviral DNA from an individual with long-term, nonprogressive infection with HIV-1 and nonrecoverable virus.

A small proportion of individuals infected with HIV-1 known as long-term nonprogressors (LTNPs) remain healthy and immunologically normal, with stable numbers of CD4+ lymphocytes, for prolonged periods without the administration of antiretroviral agents. The long terminal repeat (LTR) of HTV-1 proviral DNA of an LTNP from whom virus was consistently not recoverable has now been isolated by a nested polymerase chain reaction (PCR) method and shown to contain a total of 38 point mutations, only four of which affect promoter and enhancer elements, compared with the IIIB strain of HIV-1. Almost the entire HIV-1 proviral DNA was then isolated from the proband by a long PCR approach. Restriction enzyme digestion of the proviral DNA revealed no large deletions in the gag, pol, or env genes, although the loss of an Nco I site was apparent. Amplification of the env gene by long PCR also yielded a product apparently identical in size to that obtained with HIV-1 strain IIIB. Analysis by long PCR of HIV-1 proviral DNA from LTNPs with nonrecoverable virus may clarify the mechanism of long-term nonprogression and contribute to the development of HIV-1 vaccines.

Acquired Immunodeficiency Syndrome↗

A novel human CC chemokine PARC that is most homologous to macrophage-inflammatory protein-1 alpha/LD78 alpha and chemotactic for T lymphocytes, but not for monocytes.

By searching the expressed sequence tag (EST) database, we identified partial cDNA sequences encoding a polypeptide with significant sequence identity to the human CC chemokine macrophage-inflammatory protein-1 alpha (MIP-1 alpha)/LD78 alpha. We determined the complete cDNA sequence that contained a reading frame of 89 amino acids with 61% identity to human MIP-1 alpha/LD78 alpha. The mRNA was expressed constitutively at high levels in human lung and at low levels in some lymphoid tissues. Furthermore, the mRNA was strongly induced in several human cell lines, including monocytic U937 cells, by PMA. From these results, we designated this novel CC chemokine as PARC from pulmonary and activation-regulated chemokine. In situ hybridization analyses showed that alveolar macrophages, follicular dendritic cells in the germinal centers of regional lymph nodes, and peripheral blood monocytes stimulated with LPS express PARC mRNA. Using the human CC chemokine yeast artificial chromosome contig that we constructed recently, we mapped the PARC gene (SCYA18) within one of the two subregions of the CC chemokine gene cluster at chromosome 17q11.2. To investigate its biologic activity, the PARC protein was expressed in insect cells. PARC was chemotactic for both activated (CD3+) T cells and nonactivated (CD14-) lymphocytes, but not for monocytes or granulocytes. Binding analysis using PARC fused with alkaline phosphatase-(His)6 showed the presence of a single class of receptors for PARC on lymphocytes with a Kd of 1.9 nM and 590 sites/cell. Thus, PARC is a novel CC chemokine with a close phylogenic relationship with MIP-1 alpha/LD78 alpha, but with a highly selective activity on lymphocytes.

Amino Acid Sequence↗

Molecular cloning of a novel human CC chemokine liver and activation-regulated chemokine (LARC) expressed in liver. Chemotactic activity for lymphocytes and gene localization on chromosome 2.

Partial overlapping cDNA sequences likely to encode a novel human CC chemokine were identified from the GenBank Expressed Sequence Tag data base. Using these sequences, we isolated full-length cDNA encoding a protein of 96 amino acid residues with 20-28% identity to other CC chemokines. By Northern blot, this chemokine was mainly expressed in liver among various tissues and strongly induced in several human cell lines by phorbol myristate acetate. We thus designated this chemokine as LARC from Liver and Activation-Regulated Chemokine. We mapped the LARC gene close to the chromosomal marker D2S159 at chromosome 2q33-q37 by somatic cell and radiation hybrid mappings and isolated two yeast artificial chromosome clones containing the LARC gene from this region. To prepare LARC, we subcloned the cDNA into a baculovirus vector and expressed it in insect cells. The secreted protein started at Ala-27 and was significantly chemotactic for lymphocytes. At a concentration of 1 microg/ml, it also showed a weak chemotactic activity for granulocytes. Unlike other CC chemokines, however, LARC was not chemotactic for monocytic THP-1 cells or blood monocytes. LARC tagged with secreted alkaline phosphatase-(His)6 bound specifically to lymphocytes, the binding being competed only by LARC and not by other CC or CXC chemokines. Scatchard analysis revealed a single class of receptors for LARC on lymphocytes with a Kd of 0.4 nM and 2100 sites/cell. Collectively, LARC is a novel CC chemokine, which may represent a new group of CC chemokines localized on chromosome 2.

Amino Acid Sequence↗

Leukocyte depletion and ONO-5046, a specific inhibitor of granulocyte elastase, prevent a stress-induced decrease in gastric prostaglandin I2 in rats.

To examine whether activated leukocytes may impair the endothelial production of prostaglandin (PG) I2, an important cytoprotective agent in gastric mucosa, we investigated the effects of leukocyte depletion and ONO-5046, a specific inhibitor of granulocyte elastase, on the gastric level of this prostaglandin and gastric mucosal injury in rats subjected to water-immersion restraint stress (WIR). Gastric 6-keto-PGF1 alpha was increased after 30 min of WIR, followed by a decrease to below baseline after 6 h of stress. Gastric levels of 6-keto-PGF1 alpha in leukopenic animals or animals pretreated with ONO-5046 after 1 h of stress were significantly higher than those of controls, levels after 6 h of stress were not lower than those preceding stress. Leukocytopenia or ONO-5046 significantly inhibited WIR-induced gastric mucosa lesion formation. Iloprost, a stable derivative of PGI2, prevented stress-induced lesions. These results suggest that activated leukocytes may play an important role in stress-induced gastric mucosal lesion formation by inhibiting production of PGI2.

6-Ketoprostaglandin F1 alpha↗

Effect of human urinary thrombomodulin on endotoxin-induced intravascular coagulation and pulmonary vascular injury in rats.

Adult respiratory distress syndrome (ARDS) and disseminated intravascular coagulation (DIC) are serious complications of sepsis. Thrombomodulin, an important endothelial anticoagulant, binds thrombin to generate activated protein C (APC). To determine whether thrombomodulin purified from human urine (urinary thrombomodulin, UTM) is useful for the treatment of DIC and ARDS in sepsis, we examined the effect of UTM on endotoxin (ET)-induced coagulation abnormalities and pulmonary vascular injury in rats. Intravenous administration of UTM prevented the ET-induced pulmonary accumulation of leukocytes and the increase in pulmonary vascular permeability, as well as ET-induced histological changes such as leukocyte infiltration and pulmonary interstitial edema. On the other hand, dansyl-Glu-Gly-Arg-chloromethyl ketone-treated factor Xa (DEGR-Xa), a selective inhibitor of thrombin generation, did not prevent these effects of ET. UTM did not prevent ET-induced pulmonary accumulation of leukocytes and pulmonary vascular injury in rats pretreated with DEGR-Xa. Our findings suggest that UTM attenuates ET-induced coagulation abnormalities and pulmonary vascular injury. Furthermore, the latter effect may be dependent on the capacity of UTM to activate protein C.

Amino Acid Chloromethyl Ketones↗

Plasma levels of soluble E-selectin in patients with disseminated intravascular coagulation.

The plasma level of soluble E-selectin (sE) reflects the activation of endothelial cells induced by cytokines such as tumor necrosis factor-alpha and interleukin-1 in vitro. These cytokines are important in the development of coagulation abnormalities in patients with sepsis. We compared the plasma levels of sE in patients with infections suspected of having disseminated intravascular coagulation (DIC) (n = 33) and in patients with underlying disorders other than infections, including solid tumors (n = 28), obstetric disorders (n = 13), hematologic malignancies (n = 13), and liver disease (n = 9), to clarify the involvement of cytokines in the development of coagulation abnormalities in patients with sepsis. Plasma levels of sE in patients with infection were significantly higher than in patients with the other underlying disorders. The plasma level of sE was also significantly higher in patients with infection with DIC (114.6 +/- 77.9 ng/ml, n = 21) than in patients with infection without DIC (54.5 +/- 53.1 ng/ml, n = 12, P < 0.02). There was no significant difference in sE level between patients with the other underlying disorders with and without DIC. The plasma level of sE was significantly correlated with the serum level of FDP(E) in patients with infection. The plasma level of sE was significantly higher in patients with infection with organ failure compared to patients without organ failure. There was no significant difference between patients with the other underlying disorders with and without organ failure. Plasma levels of tumor necrosis factor-alpha and interleukin-6 were detected in only 12.1% and 20.0% of patients with infections, respectively. These observations strongly suggest that plasma levels of sE reflect the activation of endothelial cells induced by cytokines, which may lead to DIC and organ failure in the presence of sepsis. Furthermore, determination of plasma level of sE may be useful for detecting the endothelial activation induced by cytokines in the pathologic conditions of sepsis, even when plasma levels of cytokines cannot be detected.

Biomarkers↗

Role of granulocyte elastase in indomethacin-induced gastric mucosal lesion formation in rats.

To investigate whether granulocyte elastase may be involved in indomethacin-induced gastric mucosal injury, we examined the effects of the granulocyte elastase inhibitors ONO-5046 and L-658,758 on gastric mucosal lesion formation in rats given indomethacin. Both gastric mucosal lesion formation and gastric mucosal vascular damage were markedly attenuated in animals with leukocytopenia and in those given granulocyte elastase inhibitors. The administration of indomethacin significantly increased gastric myeloperoxidase activity, a measure of leukocyte accumulation, 3 hours after the administration of indomethacin compared with activity in animals receiving saline solution. The administration of ONO-5046 or L-658,758 significantly prevented this increase. Histologic examinations revealed submucosal edema and marked infiltration by leukocytes, as well as widespread necrosis with loss of surface epithelium. ONO-5046 and L-658,758 markedly prevented these histologic changes. Although cimetidine significantly prevented mucosal lesion formation, it did not inhibit either granulocyte elastase release from activated neutrophils in vitro or gastric accumulation of leukocytes in vivo. These results suggest that granulocyte elastase as well as gastric acid may play an important role in the pathologic process by which indomethacin induces gastric mucosal lesions.

Animals↗

Differential glycosylation of Bence Jones protein and kidney impairment in patients with plasma cell dyscrasia.

Although Bence Jones protein (BJP) is generally accepted to be critically involved in the pathogenic process of kidney impairment in patients with myeloma, patients with BJP do not always have kidney dysfunction. As proteins often undergo glycosylation and alter their molecular nature, it is expected that the heterogeneity in kidney dysfunction can be explained at least partly by the differential affinity to the kidneys of BJP dependent on its glycosylation. Accordingly, we analyzed the structures of carbohydrates of urine BJP biochemically to correlate the structure with kidney function. BJP was obtained from 16 patients with myeloma, 2 patients with light chain amyloidosis, a patient with plasma cell leukemia, and a patient with Waldenstrom's macroglobulinemia. All BJP had five forms of oligosaccharides: three forms of biantennary oligosaccharides and two forms of triantennaries. The three biantennaries correspond to previously reported oligosaccharides on only lambda-type BJP, whereas the triantennaries are novel oligosaccharides found on BJP. Among the five oligosaccharides, the triantennary oligosaccharide Gal(beta)1-4GlcNAc(beta)1-2Man(alpha)1-6 [Gal(beta)1-GlcNA(beta)1-4(Gal(beta)1-4GlcNAc(beta) 1-2)Man(alpha)1-3]Man(beta)1-4GlcNAc(beta)1-4GlcNAc showed a significant negative correlation with the serum creatinine level (p = 0.015 by Spearman's correlation test, R = 0.744). Thus determination of BJP glycosylation may be useful for the evaluation of kidney impairment in patients with BJP.

Bence Jones Protein↗

Novel role of prostacyclin in stress-induced gastric mucosal lesion formation in rats.

We investigated the novel role of prostacyclin (PGI2) in gastric mucosal lesion formation induced by stress in rats. Gastric 6-keto-prostaglandin F1alpha (6-keto-PGF1alpha) levels were significantly increased 30 minutes after water-immersion restraint stress (WIR). Subcutaneous indomethacin (IM) (5 mg/kg) inhibited this increase but significantly exacerbated gastric mucosal lesion formation in rats subjected to WIR. Although gastric myeloperoxidase (MPO) activity was not increased by WIR, it significantly increased with time after WIR in animals pretreated with IM. NS-398, a selective inhibitor of cyclooxygenase-2, did not inhibit the WIR-induced increase in gastric 6-keto-PGF1alpha. Neither the gastric lesion index nor gastric MPO activity were affected in animals pretreated with NS-398 and subjected to WIR. WIR-induced mucosal lesion formation was significantly inhibited in animals given iloprost, a stable analog of PGI2, and in those with nitrogen mustard-induced leukocytopenia. Iloprost prevented the gastric leukocyte accumulation and exacerbation of gastric mucosal lesions induced by IM in animals subjected to WIR. These IM-induced events also were prevented in animals subjected to WIR with nitrogen mustard-induced leukocytopenia. These observations implicate leukocytes in the process leading to gastric mucosal lesions induced by WIR. The increase in WIR-induced gastric PGI2 synthesis, mainly mediated by cyclooxygenase-1, appears important in preventing lesion formation, not only by maintaining gastric mucosal blood flow but also by inhibiting leukocyte activation.

6-Ketoprostaglandin F1 alpha↗

Role of neutrophils in spinal cord injury in the rat.

Activated neutrophils are thought to be involved in tissue injury through the release of various inflammatory mediators. To understand the role of neutrophils in spinal cord injury, the effects of nitrogen mustard-induced leukocyte depletion and the administration of an anti-P-selectin monoclonal antibody on motor disturbances observed following spinal cord compression were examined in rats. Spinal cord injury was induced by applying a 20-g weight for 20 min at the level of the 12th thoracic vertebra, resulting in motor disturbances of the hindlimbs 24 h postcompression. Motor disturbances, evaluated using Tarlov's index, an inclined-plane test and climbing ability, were markedly attenuated in rats with nitrogen mustard-induced leukocytopenia. Administration of the anti-P-selectin monoclonal antibody, by which adhesion of activated neutrophils to endothelial cells may be inhibited, also attenuated motor disturbances. Histological examination revealed that intramedullary hemorrhages observed 24 h after compression at the 12th thoracic vertebra of the spinal cord were significantly attenuated in leukocytopenic animals and those which received the anti-P-selectin monoclonal antibody. The accumulation of neutrophils at the site of compression, as evaluated by measuring the tissue myeloperoxidase activity, significantly increased with time following the compression, peaking at 3 h postcompression. Spinal cord myeloperoxidase activity did not increase in sham-operated animals. Leukocyte depletion and administration of the anti-P-selectin monoclonal antibody both reduced the accumulation of neutrophils in the damaged spinal cord segment 3 h postcompression. These observations strongly suggest that activated neutrophils play an important role in compression-induced thoracic spinal cord injury and that a P-selectin-mediated interaction between activated neutrophils and endothelial cells may be a critical step in endothelial cell injury leading to spinal cord injury.

Animals↗

Effects of interleukin-11 on carboplatin-induced thrombocytopenia in rats and in combination with stem cell factor.

The effects of interleukin-11 (IL-11) which stimulates megakaryopoiesis and thrombopoiesis and/or stem cell factor (SCF) which stimulates multiple lineage cells in the peripheral blood by an increase in marrow cellularity on hematopoietic suppression in carboplatin (CBDCA)-treated rats were determined. CBDCA was administered to rats at a dose of 35 mg/kg as a single intraperitoneal bolus on day 0. IL-11 (20 micrograms/day) was given subcutaneously for 10 days from day 5 after CBDCA treatment. IL-11 ameliorated the suppression of hematopoiesis in rats treated with CBDCA. Especially, the production of the platelets was stimulated by IL-11 more markedly than that of cells of other lineages. However, the combination of SCF and IL-11 intensified the CBDCA-induced suppression of hematopoiesis. These findings may be helpful in the design of future therapies to prevent or treat thrombocytopenia induced by chemotherapy.

Animals↗