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Biomedical subjects

K Tani

Publications and source records attributed to K Tani.

At least 91 records · Page 5Linked to original sources

[Review of cancer gene therapy].

Since the first introduction of gene-marking technology to the clinical field in 1989 by Rosenberg et al, more than 4,000 patients have participated gene therapy clinical trials worldwide. Most of those patients had malignancies. Nearly 90% of clinical trials, however, are still in phase I-II stage, and only 3 protocols are in the phase III stage in early 2000. As current clinical gene therapy protocols are intended essentially to examine the safety and feasibility of the new strategy, more careful and steady steps may be required before these clinical trials really produce clinical benefits. Focused on cancer gene therapy, direct and indirect approaches are undertaken. In the direct approach, HSV-TK, HLA-B7, or p53 tumor suppressor gene therapies are the three major approaches historically. In for the indirect approach, cytokine or adhesion molecule gene-transferred tumor cells or immunocompetent cells are considered to be promising to enhance patients' antitumor immunity. In particular, we have concentrated on developing immuno gene therapy using GM-CSF-transduced autologous tumor cells. We have already recruited three patients with stage IV renal cell cancer. In all patients, peripheral blood T cells were mobilized after vaccination with GM-CSF-transduced tumor cells, and two of the three patients showed the persistence of cytotoxic T cells against autologous tumor cells. Clinically, one patient has been followed up with stable disease for more than one year since the start of vaccination. Further clinical studies are required to obtain conclusive results.

Carcinoma, Renal Cell↗

Transcription factor Sp3 activates the liver/bone/kidney-type alkaline phosphatase promoter in hematopoietic cells.

The promoter region of the liver/bone/ kidney-type alkaline phosphatase gene was examined to define the cis-acting regulatory sequences and transcription factors responsible for its expression in hematopoietic cells. Transient transfection experiments revealed that regions deleted up to -154 base pairs upstream from the transcription initiation site had significant activities to induce bacterial chloramphenicol acetyltransferase gene. The shortest DNA fragment was found to contain three GC boxes in addition to a TATA box. Electrophoretic mobility shift assay and Southwestern analysis showed that Sp3 could bind to the fragment. Western blot analysis also detected Sp3 protein in eluate from the DNA probe mixed with the nuclear extracts. Through the use of Drosophila Schneider cells that lack the Sp1 family of transcription factors, Sp3 was shown to activate the basal promoter in a dose-dependent manner. When the amount of Sp3 was limited, the most proximal GC box was found to be critical for the basal promoter activity.

Alkaline Phosphatase↗

Increased incidence of autoantibodies to interleukin-1a in rheumatoid arthritis with interstitial lung disease.

OBJECTIVE: To clarify the clinical significance of autoantibodies (auto-Ab) to interleukin-1alpha (IL-1alpha) in rheumatoid arthritis (RA) with interstitial lung disease (ILD), we examined the IL-1alpha auto-Ab level in serum of patients with RA with/without ILD. METHODOLOGY: We investigated the level of IL-1alpha auto-Ab in serum of 70 patients with RA with/without ILD and 40 control patients (CP). Levels of IL-1alpha auto-Ab were measured by radioimmunoassay, and serum was regarded as IL-1alpha auto-Ab positive at an auto-Ab level of more than 5 ng/mL. RESULTS: Interleukin-1alpha auto-Ab was detected in the serum of 30 out of 70 RA patients (42.9%), and six out of 40 CP (15%) (P < 0.05). Interleukin-1alpha auto-Ab were detected in the serum of 18 out of 32 patients with RA with ILD (56.2%) and 12 out of 38 patients with RA without ILD (31.5%). The positive rate of these autoantibodies in RA with ILD was significantly higher than that in RA without ILD (P < 0.05). Although C-reactive protein, immunoglobulin G, rheumatoid factor and rheumatoid arthritis particle agglutination levels in serum from patients with RA with ILD were not significantly different between the IL-1alpha auto-Ab-positive and -negative groups, the lactate dehydrogenase level (LDH) and AaDO, in the IL-1alpha auto-Ab-positive group were significantly higher than those in the negative group (LDH: P < 0.001, AaDO2: P < 0.05). CONCLUSION: These results suggest that IL-1alpha auto-Ab are generated in response to the immunoinflammatory process of ILD in RA, and these autoantibodies may neutralize and regulate the IL-1alpha activity.

Adult↗

p125 is a novel mammalian Sec23p-interacting protein with structural similarity to phospholipid-modifying proteins.

COPII-coated vesicles are involved in protein transport from the endoplasmic reticulum to the Golgi apparatus. COPII consists of three parts: Sar1p and the two protein complexes, Sec23p-Sec24p and Sec13p-Sec31p. Using a glutathione S-transferase fusion protein with mouse Sec23p, we identified a novel mammalian Sec23p-interacting protein, p125, which is clearly distinct from Sec24p. The N-terminal region of p125 is rich in proline residues, and the central and C-terminal regions exhibit significant homology to phospholipid-modifying proteins, especially phosphatidic acid preferring-phospholipase A1. We transiently expressed p125 and mouse Sec23p in mammalian cells and examined their interaction. The results showed that the N-terminal region of p125 is important for the interaction with Sec23p. We confirmed the interaction between the two proteins by a yeast two-hybrid assay. Overexpression of p125, like that of mammalian Sec23p, caused disorganization of the endoplasmic reticulum-Golgi intermediate compartment and Golgi apparatus, suggesting its role in the early secretory pathway.

Amino Acid Sequence↗

The common marmoset as a target preclinical primate model for cytokine and gene therapy studies.

Nonhuman primate models are useful to evaluate the safety and efficacy of new therapeutic modalities, including gene therapy, before the inititation of clinical trials in humans. With the aim of establishing safe and effective approaches to therapeutic gene transfer, we have been focusing on a small New World monkey, the common marmoset, as a target preclinical model. This animal is relatively inexpensive and easy to breed in limited space. First, we characterized marmoset blood and bone marrow progenitor cells (BMPCs) and showed that human cytokines were effective to maintain and stimulate in culture. We then examined their susceptibility to transduction by retroviral vectors. In a mixed culture system containing both marmoset stromal cells and retroviral producer cells, the transduction efficiency into BMPCs and peripheral blood progenitor cells (PBPCs) was 12% to 24%. A series of marmosets then underwent transplantation with autologous PBPCs transduced with a retroviral vector carrying the multidrug resistance 1 gene (MDR1) and were followed for the persistence of these cells in vivo. Proviral DNA was detectable by polymerase chain reaction (PCR) in peripheral blood granulocytes and lymphocytes in the recipients of gene transduced progenitors up to 400 days posttransplantation. To examine the function of the MDR1 gene in vivo, recipient maromsets were challenged with docetaxel, an MDR effluxed drug, yet the overall level of gene transfer attained in vivo (<1% in peripheral blood granulocytes) was not sufficient to prevent the neutropenia induced by docetaxel treatment. Using this model, we safely and easily performed a series of in vivo studies in our small animal center. Our results show that this small nonhuman primate, the common marmoset, is a useful model for the evaluation of gene transfer methods targeting hematopoietic stem cells.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Hypothetical protein KIAA0079 is a mammalian homologue of yeast Sec24p.

The Sec23p-Sec24p complex is a component of COPII-coated vesicles that mediate protein transport from the endoplasmic reticulum in yeast. The mammalian hypothetical protein KIAA0079 (KIAA0079p) exhibits sequence similarity to yeast Sec24p. KIAA0079p was co-eluted with mammalian Sec23p on gel filtration. In vitro binding experiments revealed that the C-terminal region of KIAA0079p binds to the N-terminal region of mammalian Sec23p. Overexpression of KIAA0079p caused a defect in protein export from the endoplasmic reticulum. These results support the idea that KIAA0079p is a functional homologue of yeast Sec24p.

Animals↗

Schizophrenia and the serotonin-2A receptor promoter polymorphism.

Serotonin-2A (5-HT2A) receptors have received much investigative attention in schizophrenia because (1) several studies have shown a decrease in the number of 5-HT2A receptors in the prefrontal cortex of postmortem brains of schizophrenic patients; (2) atypical antipsychotic drugs are antagonists for 5-HT2A receptors; and (3) a positive association between a T to C polymorphism at position 102 of the 5-HT2A receptor gene and schizophrenia has been reported. A G to A polymorphism at position -1438 of the 5-HT2A receptor gene was studied in 119 schizophrenic patients and 106 healthy control subjects, all of whom were Japanese. The genotype and allele frequencies did not differ between the patients and control subjects. Furthermore, the genotype frequency did not differ according to diagnostic subtype, family history, age at onset of illness, or daily dosage of antipsychotic medication. Our results suggest that the polymorphism does not contribute to the etiology or clinical characteristics of schizophrenia. However, the gene is greater than 20 kbp in length, and thus it is possible that other areas that affect expression of the gene may vary. We found that the -1438G/A variant was in linkage disequilibrium with the T102C polymorphism.

Adult↗

Significant expression of G-CSF-induced gene-1 (GIG-1) protein in myeloid cells and NK cells.

The granulocyte colony-stimulating factor (G-CSF)-induced gene, GIG-1, was originally cloned from G-CSF-stimulated bone marrow mononuclear cells obtained from a patient with chronic myelogenous leukemia (CML). We have characterized the GIG-1 gene and its protein product. Expression of GIG-1 mRNA was elevated by treatment with G-CSF in normal bone marrow mononuclear cells, as well as in some cases of blast cells obtained from patients with acute myelogenous leukemia (AML) and CML. Western blot analysis with anti-GIG-1 peptide antiserum showed the molecular mass of GIG-1 product was about 17 kDa. Immunostaining of the hematopoietic cells demonstrated that GIG-1 product was mainly localized to the cytoplasm of both myeloid and natural killer (NK) cells. These results suggested that GIG-1 protein is an integral component that is accumulated during the differentiation of myeloid cells toward the stage of mature neutrophils. Expression of GIG-1 gene in mature neutrophils was tightly regulated and reactivation of GIG-1 gene by G-CSF in mature neutrophils may represent a compensation process for the protein lost through the activation of these cells, thus implying an important role for this protein in host defense mechanisms.

Antigens, CD34↗

Comparison of suppressive effects of a new anti-inflammatory compound, FR167653, on production of PGE2 and inflammatory cytokines, human monocytes, and alveolar macrophages in response to endotoxin.

FR167653 [1-[7-(4-fluorophenyl)-1,2,3,4-tetrahydro-8 (4-pyridyl) pyrazoro [5-1-c] [1,2,4] triazin-2-yl]-2-phenylethanedion sulfate monohydrate] was developed to inhibit proinflammatory cytokine production. However, the effects of FR167653 on prostanoid production are unclear. We investigated the effect of FR167653 on proinflammatory cytokine and prostaglandin (PG) production by lipopolysaccharide (LPS)-stimulated human peripheral blood monocytes and alveolar macrophages (AM) from the same individuals, and compared the effects in monocytes and AM. FR167653 inhibited interleukin-1beta and tumor necrosis factor alpha production. The effect on PGE2 production was assessed by four parameters. FR167653 inhibited PGE2 synthesis and LPS induction of cyclooxygenase activity. Western and Northern blot analyses revealed that LPS induction of cyclooxygenase-2 expression was attenuated by this compound. The suppression in monocytes was greater than that in AM. We concluded that the reduction of LPS-induced PGE2 synthesis by FR167653 was due to inhibition of cyclooxygenase-2 production. These results show that FR167653 may be therapeutically useful for inhibiting production of both inflammatory cytokines and PG production in inflammatory diseases.

Anti-Inflammatory Agents, Non-Steroidal↗

A variable-number-tandem-repeat of the serotonin transporter gene and anxiety disorders.

1. A polymorphism of the variable-number-tandem-repeat (VNTR) in the second intron of the serotonin transporter (ST) gene, which has been reported to be associated with major depression, was studied in anxiety disorders. 2. The VNTR of the human ST gene was compared between 103 patients with anxiety and 106 controls. 3. The frequency of the allele containing 12 copies of the VNTR element (STin2.12) was significantly higher in the combined patient group (p = 0.027), and among patients with OCD (p = 0.0326), and GAD (p = 0.0123), in comparison with in controls. 4. The presence of the STin2.12 allele was significantly associated with the risk of combined anxiety disorders (odds ratio = 2.06, 95% CI 1.09-3.90), OCD (10.2, 1.34-77.4), and GAD (3.61, 1.23-10.6).

Adolescent↗

Photoautotrophic cultures of the host and transformed cells of Marchantia polymorpha under controlled incident light intensity.

Photoautotrophic cultures of the host and transformed cells of the liverwort, Marchantia polymorpha, were examined. In cultures in flat glass flasks under various light intensities, it was found that the growth rates of both the cells increased with increase in light intensity in the range of 0 to 25 W/m2, but further increase in light intensity caused photoinhibition of the growth of the cells. Cultures of both the types of cells under light-controlled conditions using an externally illuminated bioreactor were carried out taking into consideration the inhibition of cell growth by excessive light and the light intensity distributions in the cell suspensions. In these cultures, 2.1 (transformed cells) and 3.3 (host cells) kg dry cell weight per m3 were harvested at culture times of 9.0 and 10 d, respectively. These values were larger than those obtained in cultures of the respective cells at a fixed incident light intensity of 25 W/m2.

Journal Article↗

Genetic fusion of chemokines to a self tumor antigen induces protective, T-cell dependent antitumor immunity.

We converted a model, syngeneic, nonimmunogenic tumor antigen into a vaccine by fusing it with a proinflammatory chemokine. Two chemokines, interferon inducible protein 10 and monocyte chemotactic protein 3, were fused to lymphoma Ig variable regions (sFv). The sFv-chemokine fusion proteins elicited chemotactic responses in vitro and induced inflammatory responses in vivo. Furthermore, in two independent models, vaccination with DNA constructs encoding the corresponding fusions generated superior protection against a large tumor challenge (20 times the minimum lethal dose), as compared with the best available protein vaccines. Immunity was not elicited by controls, including fusions with irrelevant sFv; fusions with a truncated chemokine that lacked receptor binding and chemotactic activity; mixtures of free chemokine and sFv proteins; or naked DNA plasmid vaccines encoding unlinked sFv and chemokine. The requirement for linkage of conformationally intact sFv and functionally active chemokine strongly suggested that the mechanism underlying these effects was the novel targeting of antigen presenting cells (APC) for chemokine receptor-mediated uptake of antigen, rather than the simple recruitment of APC to tumor by the chemokine. Finally, in addition to superior potency, these fusions were distinguished from lymphoma Ig fusions with granulocyte-macrophage colony-stimulating factor or other cytokines by their induction of critical effector T cells.

Animals↗

IL-2/LAK therapy for refractory acute monoblastic leukemia relapsing after unrelated allogeneic bone marrow transplantation.

Leukemia relapse is a major cause of treatment failure after allogeneic bone marrow transplantation. We administered recombinant interleukin-2 (rIL-2) to a patient who relapsed after unrelated allogeneic bone marrow transplantation (uBMT). While the number of peripheral blood monoblastic leukemia cells increased after administration of rIL-2, the patient achieved durable remission for 5 months after low-dose chemotherapy followed by adoptive transfer of engrafted graft-derived lymphokine-activated killer (LAK) cells. Following the disappearance of the blast cells, however, both cutaneous and liver GVHD were exacerbated. Administration of rIL-2 and adoptive transfer of graft-derived LAK cells are considered to be possible choices for the treatment of acute leukemia relapsing after uBMT when donor leukocyte transfusion is not available.

Adjuvants, Immunologic↗

Decreased prostaglandin E2 synthesis by lung fibroblasts isolated from rats with bleomycin-induced lung fibrosis.

In order to clarify the mechanism of pulmonary fibrosis, we examined the functional changes of lung fibroblasts in bleomycin (BLM)-induced pulmonary fibrosis. Lung fibroblastic cells were obtained from rat lungs after an intratracheal treatment of BLM or saline. The spontaneous proliferation of BLM-treated rat fibroblasts (BRF), which was estimated by 3H-TdR incorporation and direct cell counting, was significantly more rapid than that of normal saline-treated rat fibroblasts (NRF). Next, we investigated prostaglandin (PG) E2 synthesis by BRF and NRF, with or without stimulation by interleukin (IL)-1 alpha, and found that PGE2 production by BRF was significantly less than that by NRF. There was no significant difference in cyclooxygenase (COX) activity and COX-2 mRNA level between BRF and NRF, indicating that the change in PGE2 production was independent of COX, a rate-limiting enzyme for the production of PGE2. These results suggest that the proliferation of fibroblasts is down-regulated by PGE2 released from themselves in normal lungs in an autocrine fashion, thus the decreased PGE2 production observed in lung fibroblasts from rats with BLM-induced pulmonary fibrosis may result in the excessive fibroblast proliferation in this disorder. Overall, these findings throw some light on the mechanism of development of BLM-induced pulmonary fibrosis.

Animals↗

Abundance and distribution of bacteria carrying sltII gene in natural river water.

Direct in situ PCR with HNPP/Fast Red TR was used to enumerate bacteria carrying the sltII gene in river water. By direct in situ PCR with a sltII-specific EVS primer, 10(2)-10(5) cells ml-1 of bacteria carrying the sltII gene were detected from all sampling sites, except the site nearest to the source of the river, while 10(2)-10(4) cells ml-1 of Escherichia coli O157:H7 were detected using a direct fluorescent antibody staining method. These results indicate that such bacteria are commonly distributed in natural river water. Direct in situ PCR with HNPP/Fast Red TR is a useful tool for detecting cells carrying specific genes, such as verotoxin-producing bacteria in natural environments.

Bacterial Toxins↗

Characterization of immunoglobulin binding factor in sputum from patients with chronic airway diseases.

OBJECTIVE: Immunoglobulin binding factor (IgBF) is known to bind immunoglobulin, to interact with anti-Fc gamma-III antibodies and to be present in the lower respiratory tract of normal healthy subjects. In this study, in order to clarify the role of IgBF in respiratory diseases, we investigated whether IgBF exists in the airway of patients with chronic airway diseases. METHODOLOGY: IgBF was measured in the sputum of 28 normal subjects and 59 patients with chronic airway diseases including 37 cases of chronic bronchitis, 18 bronchiectasis, and four diffuse panbronchiolitis by enzyme-linked immunosorbent assay. RESULTS: Immunoglobulin binding factor concentration in the sputum of patients with chronic airway diseases (purulent sputum, 50.2 +/- 8.2 microg/mL; mucoid sputum, 88.6 +/- 12.8 microg/mL) was higher than that in induced sputum of normal subjects (6.3 +/- 5.5 microg/mL; P < 0.001). Immunoglobulin binding factor level in mucoid sputum was significantly higher than that in purulent sputum (P < 0.05). A significant inverse correlation was shown between the IgBF level and the elastase activity in sputum, and the concentration of IgBF purified from seminal plasma was decreased by treatment with neutrophil elastase, indicating that IgBF might be degraded by elastase. In the gel filtration chromatography of both types of sputum, IgBF was eluted in a region corresponding to a molecular weight of 27 kDa as a single peak. Western blot analysis with a monoclonal antibody to IgBF indicated that IgBF in both types of sputum had a molecular weight of 27 kDa under non-reducing conditions and of 16 kDa under reducing conditions. CONCLUSION: These results demonstrate that a high level of IgBF is present in the respiratory tract of patients with chronic airway diseases and may be related to the pathogenesis of these diseases.

Adult↗