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Biomedical subjects

Yasuhito Terui

Publications and source records attributed to Yasuhito Terui.

14 recordsLinked to original sources

INNO-406, a novel BCR-ABL/Lyn dual tyrosine kinase inhibitor, suppresses the growth of Ph+ leukemia cells in the central nervous system, and cyclosporine A augments its in vivo activity.

Central nervous system (CNS) relapse accompanying the prolonged administration of imatinib mesylate has recently become apparent as an impediment to the therapy of Philadelphia chromosome-positive (Ph+) leukemia. CNS relapse may be explained by limited penetration of imatinib mesylate into the cerebrospinal fluid because of the presence of P-glycoprotein at the blood-brain barrier. To overcome imatinib mesylate-resistance mechanisms such as bcr-abl amplification, mutations within the ABL kinase domain, and activation of Lyn, we developed a dual BCR-ABL/Lyn inhibitor, INNO-406 (formerly NS-187), which is 25 to 55 times more potent than imatinib mesylate in vitro and at least 10 times more potent in vivo. The aim of this study was to investigate the efficacy of INNO-406 in treating CNS Ph+ leukemia. We found that INNO-406, like imatinib mesylate, is a substrate for P-glycoprotein. The concentrations of INNO-406 in the CNS were about 10% of those in the plasma. However, this residual concentration was enough to inhibit the growth of Ph+ leukemic cells which expressed not only wild-type but also mutated BCR-ABL in the murine CNS. Furthermore, cyclosporine A, a P-glycoprotein inhibitor, augmented the in vivo activity of INNO-406 against CNS Ph+ leukemia. These findings indicate that INNO-406 is a promising agent for the treatment of CNS Ph+ leukemia.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Blockade of bulky lymphoma-associated CD55 expression by RNA interference overcomes resistance to complement-dependent cytotoxicity with rituximab.

Recently, anti-CD20 (rituximab) and anti-Her2/neu (trastuzumab) antibodies have been developed and applied to the treatment of malignant lymphoma and breast cancer, respectively. However, bulky lymphoma is known to be resistant to rituximab therapy, and this needs to be overcome. Fresh lymphoma cells were collected from 30 patients with non-Hodgkin's lymphoma, the expression of CD20 and CD55 was examined by flow cytometry, and complement-dependent cytotoxicity (CDC) assays were carried out. Susceptibility to CDC with rituximab was decreased in a tumor size-dependent manner (r=-0.895, P<0.0001), but not in a CD20-dependent manner (r=-0.076, P=0.6807) using clinical samples. One complement-inhibitory protein, CD55, contributed to bulky lymphoma-related resistance to CDC with rituximab. A decrease in susceptibility to CDC with rituximab was statistically dependent on CD55 expression (r=-0.927, P<0.0001) and the relationship between tumor size and CD55 expression showed a significant positive correlation (r=0.921, P<0.0001) using clinical samples. To overcome the resistance to rituximab by high expression of CD55 in bulky lymphoma masses, small interfering RNA (siRNA) was designed from the DNA sequence corresponding to nucleic acids 1-380 of the CD55 cDNA. Introduction of this siRNA decreased CD55 expression in the breast cancer cell line SK-BR3 and in CD20-positive cells of patients with recurrent lymphoma; resistance to CDC was also inhibited. This observation gives us a novel strategy to suppress bulky disease-related resistance to monoclonal antibody treatment.

Antibodies, Monoclonal↗

Differential regulation of eotaxin-1/CCL11 and eotaxin-3/CCL26 production by the TNF-alpha and IL-4 stimulated human lung fibroblast.

Allergic asthma and allergic dermatitis are chronic inflammatory diseases and are characterized by an accumulation of eosinophils at sites of inflammation. Eotaxin-1/CCL11 and eotaxin-3/CCL26 are members of the CC chemokine family, which are known to be potent chemoattractants for eosinophils. We observed that a human lung fibroblast, HFL-1 produces eotaxin-1 and -3 in response to TNF-alpha plus IL-4 stimulation, accompanied with NF-kappaB and STAT6 activation. We explored which signaling pathways are operative in the production of eotaxin-1 and -3 using several inhibitors. Eotaxin-1/CCL11 production was inhibited by a p38 mitogen-activated protein kinase (MAPK) inhibitor, SB203580, but not by the MEK (MAPK/ERK kinase) inhibitors, PD98059 and U0126. In contrast, eotaxin-3/CCL26 production was inhibited similarly by PD98059 as well as U0126 and SB203580. In addition, two proteasome inhibitors, N-acetyl-leucyl-leucyl-norleucinal (ALLN) and bortezomib with significant inhibitory activity on NF-kappaB activation, inhibited eotaxin-1/CCL11 production with IC50 8 microM for ALLN and IC50 16 nM for bortezomib. In contrast, eotaxin-3/CCL26 production was not inhibited significantly up to 10 microM of ALLN (IC50 16 microM) and up to 10 nM of bortezomib (IC50 11 nM), giving inhibition of eotaxin-3/CCL26 less sensitive than eotaxin-1/CCL11 production by the proteasome inhibitors. Synergistic inhibition was observed among lower doses of SB203580 and proteasome inhibitors, particularly in the eotaxin-1/CCL11 production. No such prominent synergism was found on the eotaxin-3/CCL26 production. The suppression of eotaxin family production by these inhibitors may be efficacious against allergic diseases.

Asthma↗

Element array by scanning X-ray fluorescence microscopy after cis-diamminedichloro-platinum(II) treatment.

Minerals are important for cellular functions, such as transcription and enzyme activity, and are also involved in the metabolism of anticancer chemotherapeutic compounds. Profiling of intracellular elements in individual cells could help in understanding the mechanism of drug resistance in tumors and possibly provide a new strategy of anticancer chemotherapy. Using a recently developed technique of scanning X-ray fluorescence microscopy (SXFM), we analyzed intracellular elements after treatment with cis-diamminedichloro-platinum(II) (CDDP), a platinum-based anticancer agent. The images obtained by SXFM (element array) revealed that the average Pt content of CDDP-resistant cells was 2.6 times less than that of sensitive cells, and the zinc content was inversely correlated with the intracellular Pt content. Data suggested that Zn-related detoxification is responsible for resistance to CDDP. Of Zn-related excretion factors, glutathione was highly correlated with the amount of Zn. The combined treatment of CDDP and a Zn(II) chelator resulted in the incorporation of thrice more Pt with the concomitant down-regulation of glutathione. We propose that the generation of an element array by SXFM opens up new avenues in cancer biology and treatment.

Antineoplastic Agents↗

[An autopsied case of metastatic endocrine carcinoma of the pancreas with primary site difficult to identify].

A 40-year-old man suffering from right cheek swelling was first diagnosed with ameloblastoma or anaplastic poorly-differentiated carcinoma of the head and neck region. He received 2 courses of CDDP/TXT chemotherapy (cisplatin 75 mg/m2, docetaxel 80 mg/m2) and achieved a partial response, but his carcinoma of the pancreas recurred. He also achieved a partial response with 2 courses of CBDCA/TXL regimen (carboplatin AUC=6, paclitaxel 200 mg/m2), but later died from his progressive disease. The autopsy revealed a pathological diagnosis of metastatic endocrine carcinoma of the pancreas. This case was close to a cancer with an unknown primary (CUP) site, and several favorable sub-sets of CUP have been identified, which are responsive to systemic chemotherapy. Poorly-differentiated neuroendocrine carcinomas like this case are highly sensitive to chemotherapy, and a careful pathological diagnosis may clarify its sensitivity to chemotherapy and the prognosis.

Adult↗

Combination chemotherapy (cyclophosphamide, doxorubicin, and vincristine with continuous-infusion cisplatin and etoposide) and radiotherapy with stem cell support can be beneficial for adolescents and adults with estheisoneuroblastoma.

BACKGROUND: Adolescent-onset and adult-onset esthesioneuroblastoma is a rare disease and is considered incurable. In many patients, local resection and radiation are chosen as clinical therapy with or without chemotherapy. It was reported previously that local resection and radiotherapy led to temporary remission and, in many patients, recurrent disease. Although combination with chemotherapy has been regarded as promising, an effective regimen has not been established. In the current study, the authors investigated the effect and tolerability of the combination of chemotherapy, radiotherapy, and peripheral blood stem cell transplantation (PBSCT). METHODS: The study population included 12 patients with adolescent-onset and adult-onset esthesioneuroblastoma classified as Kadish Stage A-D. The patients received two cycles of combination chemotherapy, which consisted of cyclophosphamide, doxorubicin, and vincristine (CAD) with continuous-infusion cisplatin and etoposide (CVP). This was combined with radiotherapy with or without PBSCT. RESULTS: Nine of 12 patients (75%) obtained more than a partial response after only 2 cycles of chemotherapy. After radiation with or without PBSCT, six patients obtained a complete remission (CR). The longest survival was > 3 years. All patients who underwent PBSCT obtained a CR. The most severe side effects were loss of sodium and potassium induced by cisplatin-related renal tubular distress. Those abnormalities were temporary, and all patients recovered. CONCLUSIONS: The chemotherapy regimen with CADO and CVP does not require continuation for a long time and is very effective and tolerable for patients with adolescent-onset and adult-onset esthesioneuroblastoma. The combination with radiotherapy and PBSCT may lead to a CR without facial disfigurement. In this report, the authors discuss the feasibility and efficacy of this multidisciplinary approach.

Adolescent↗

Dual role of sumoylation in the nuclear localization and transcriptional activation of NFAT1.

The nuclear import of nuclear factor of activated T cells (NFAT) transcription factors is critical for regulating NFAT activity. Here we demonstrate that the sumoylation of NFAT1 defines a novel mechanism of the nuclear anchorage and transcriptional activation downstream from the known mechanism of calcineurin-mediated dephosphorylation and nuclear import. We show that Lys(684) and Lys(897) of NFAT1 can be sumoylated. The sumoylation at Lys(684) is required for NFAT1 transcriptional activity and subsequent sumoylation of Lys(897), whereas the sumoylation of Lys(897) is only required for nuclear anchorage. Because Lys(897) of NFAT1 is not conserved among other members of the NFAT family, we propose that sumoylation of Lys(897) may provide a mechanism for NFAT1 isotype-specific regulation of nuclear anchorage and transcriptional activation. Furthermore, we found that treatment with both ionomycin and phorbol 12-myristate 13-acetate ensured efficient nuclear anchorage with the recruitment of NFAT1 into the SUMO-1 bodies, whereas treatment with ionomycin alone induced nuclear translocation of NFAT1 but not recruitment into the SUMO-1 bodies. Our results suggest that the recruitment of NFAT1 into SUMO-1 bodies may be required for the progressive transcriptional activity of NFAT1 upon co-stimulation with ionomycin and phorbol 12-myristate 13-acetate, whereas anergic transcription stimulated by ionomycin alone may occur without recruitment into the SUMO-1 bodies.

Animals↗

[Proteasome inhibitors].

Bortezomib, one of the proteasome inhibitors, has been approved in the United States for multiple myeloma as a second-line chemotherapy. In Japan, bortezomib has been used for for phase I clinical trials for multiple myeloma. As the action mechanism, it has been proposed that bortezomib inhibits NF-kappaB via IkappaB alpha. It also demonstrated positive results for non-Hodgkin's lymphoma and non-small cell lung cancer, but not for colorectal cancer or chronic lymphocytic leukemia. The mechanism of drug resistance has been well analized. Bortezomib is very effective but still induces adverse effects including hypotension especially when there is an overdose. Medical oncologists or hematology/oncologists must exert due caution.

Boronic Acids↗

[Rituximab and hematological malignancy].

After genetic recombination with murine and human cDNA, monoclonal antibody has been produced in chimeric form. CD20 is a B cell antigen, which can be a target molecule for antibody therapy. Rituximab is an anti-CD20 monoclonal antibody that has an efficacy against B cell lymphomas. Combination therapy with CHOP regimen as well as single therapy will give rise to new treatment strategy for CD20+B cell lymphomas. Mechanism is not clarified, but induction of apoptosis, complement-mediated cell toxicity, and antibody-dependent cell toxicity are considered. Synergy with chemotherapy agents such as CHOP, ICE, DHAP and stem cell transplantation will help the patients who suffer lymphomas, CLL and Waldenstrom's macroglobulinemia. Treatment with rituximab is well tolerated and we must be careful about infusion reaction after administration.

Antibodies, Monoclonal↗

[Simultaneous detection of both non-Hodgkin's lymphoma cells and breast cancer cells in pleural effusion--a case report].

A 55-year-old woman underwent breast-conserving surgery with irradiation for Stage IIB (T2 N1 M0) breast cancer of her right breast. Thereafter, she was treated orally with oral UFT and tamoxifen. Three years following surgery, she was diagnosed as having a non-Hodgkin's lymphoma. She underwent 6 cycles of EPOCH-G (etoposide, vincristine, adriamycin, cyclophosphamide, prednisolone, G-CSF) therapy, and obtained complete remission. Two years later, her neck and inguinal lymph nodes were swollen. Biopsy confirmed the relapse of NHL. She underwent salvage chemotherapies of MST-16, carboplatin, IVAC, and CPT-11, but the disease was refractory. In May 2000, bilateral pleural effusion was detected. Cytomorphologically, the pleural fluid specimen showed both atypical lymphoid cells and adenocarcinoma cells simultaneously. Existence of double cancer in the pleural effusion has not been reported, suggesting that this case is rare.

Adenocarcinoma↗

Leukemic cell-surface CD13/aminopeptidase N and resistance to apoptosis mediated by endothelial cells.

BACKGROUND: Attachment of leukemic cells to vascular endothelial cells induces the vascular endothelial cells to release endothelial cell-derived interleukin 8 (endothelial IL-8), which then induces leukemic cells to undergo apoptosis. NB4, a human promyelocytic leukemic cell line that expresses high levels of cell-surface CD13/aminopeptidase N, does not undergo endothelial IL-8-induced apoptosis. Consequently, we investigated the relationship between cell-surface aminopeptidase activity and endothelial IL-8 induction of apoptosis in various leukemic cell lines. METHODS: CD13/aminopeptidase N activity and IL-8-induced apoptosis were examined in leukemic cell lines. Endothelial IL-8-induced apoptosis was examined further in NB4 cells, K562 cells (human chronic myelogenous leukemic cells expressing low levels of CD13/aminopeptidase N), CD13/aminopeptidase N-transfected K562 (K562/CD13) cells that overexpress aminopeptidase, and mock-transfected K562 cells (vector only). These cells were also cocultured with a vascular endothelial cell layer to investigate the association between aminopeptidase activity and apoptosis in this system. All statistical tests were two-sided. RESULTS: Endothelial IL-8 induced apoptosis in K562 cells but not in K562/CD13 cells. A combination of an aminopeptidase inhibitor (such as bestatin) and endothelial IL-8 induced apoptosis in NB4 cells and K562/CD13 cells (2.88-fold difference [95% confidence interval [CI] = 1.82-fold to 3.94-fold], P =.004 for bestatin-treated NB4 cells and 4.31-fold difference [95% CI = 3.52-fold to 5.10-fold], P<.001 for bestatin-treated K562/CD13 cells). When aminopeptidase activity in NB4 cells was modulated by aminopeptidase inhibitors, a statistically significant correlation was found between aminopeptidase activity and the proportion of apoptotic cells induced by endothelial IL-8 (r = -.837, P<.001 by Pearson's correlation coefficient; r = -.697, P =.013 by Spearman's correlation analysis by ranks). K562/CD13 cells cocultured with vascular endothelial cells did not undergo apoptosis, but the addition of bestatin resulted in the induction of apoptosis in K562/CD13 cells (2.70-fold difference [95% CI = 1.77-fold to 3.63-fold], P<.001). Bestatin treatment increased the level of IL-8 mRNA in and the amount of IL-8 secreted by vascular endothelial cells. CONCLUSIONS: High levels of cell-surface CD13/aminopeptidase N appear to allow leukemic cells to resist endothelial IL-8-induced apoptosis. The combination of endothelial IL-8 and bestatin induce leukemic cells expressing high levels of CD13/aminopeptidase N to undergo apoptosis. Bestatin may be useful for treating patients with leukemia.

Antibiotics, Antineoplastic↗

New human myelodysplastic cell line, TER-3: G-CSF specific downregulation of Ca2+/calmodulin-dependent protein kinase IV.

We have established a new hematopoietic cell line from a patient with myelodysplastic syndrome (MDS), which was refractory anemia with excess blasts (RAEB). This cell line, designated TER-3, depends on several cytokines for long-term survival and growth, and requires interleukin-3 (IL-3) for continuous growth. Cytochemical analysis revealed that TER-3 cells are weakly dianisidine positive and nonspecific esterase positive, but peroxidase negative. The surface marker profile shows that the TER-3 cells are strongly positive for myeloid, lymphoid, and megakaryocytic antigens such as CD15, CD19, and CD61, and negative for some common multilineage antigens such as CD13, CD33, and CD34. Thus, this cell line has a multilineage phenotype, suggesting that the transformation event occurred in multipotent stem cells. Dianisidine- and nonspecific esterase-positive TER-3 cells increase with granulocyte-colony stimulating factor (G-CSF) rather than with IL-3. These results suggest that the cell line is useful for understanding the mechanism underlying G-CSF-associated hematopoietic cell differentiation and activation in the patient with MDS.

Antigens, Surface↗