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Biomedical subjects

J Minowada

Publications and source records attributed to J Minowada.

At least 73 records · Page 4Linked to original sources

Establishment of leukemia cell lines, BALM-6, BALM-7 and BALM-8 with B-cell characteristics from a patient with acute lymphoblastic leukemia.

Three leukemia cell lines, BALM-6, -7 and -8 were established from the bone marrow of a patient with acute lymphoblastic leukemia. Based on immunophenotypic and the cytogenetic analysis and on the expression of immunoglobulins on both the cell surface and in the cytoplasm, BALM-6, BALM-7 and BALM-8 are clonal leukemic cell populations of B cell origin.

Adult↗

Hodgkin's disease derived cell lines: a review.

A number of so-called "HD cell lines" have been established over the last 10-15 years (Table 1). Or those 15 cell lines we studied, only the cell lines CO, DEV, HD-70, HDLM, KM-H2, L-428, L-540 and SUP-HD1 can be regarded to represent true HD cell lines. According to the immunostaining results and molecular genetic data, these 8 cell lines can be assigned either to the T-cell lineage (CO, HDLM, L-540) or B-cell lineage (DEV, HD-70, KM-H2, SUP-HD1). With the data currently available, the cell lineage origin of L-428 cannot be unequivocally determined, but appears to be lymphoid. All but one of these eight HD cell lines have been established from patients with the nodular sclerosis subtype. Therefore, the conclusions drawn from the in vitro studies are limited to this histological subtype of HD. It is conceivable that culture conditions select for a particular type of cell that will survive. The state of differentiation of these HD cell lines remains unclear due to the incomplete expression of T- or B-cell antigens. The in vitro cells and the in vivo H-RS cells share, however, the expression of the unique activation markers CD15, CD25, CD30, CD71 and HLA-DR. Recently published data indicate that the HD cell lines express and produce a large number of cytokines. Multiple non-random chromosomal abnormalities and the expression of various proto-oncogenes are also new and exciting findings and certainly deserve further study. In summary, although the cultured cells are not unequivocally proven to be the direct progeny of in vivo H-RS cells, several continuous HD cell lines have been established that display a variety of phenotypical features identical or similar to those of their presumed in vivo counterparts. Surface marker, molecular genetic and other features suggest a T- or B-cell derivation. An extrapolation of these conclusions would point to a lymphoid origin of H-RS cells. Whether H-RS cells can originate from other cell types such as monocytes/macrophages or reticulum cells, cannot be answered with the currently available HD cell lines.

Adolescent↗

The immunomodulatory role of IFN-alpha or maltose-stabilized IFN-alpha on T-cell activation.

The effects of human interferon-alpha (IFN-alpha) or maltose-stabilized IFN-alpha (MS-IFN-alpha) on IL-2 production by PHA- or anti-CD3 mAb-stimulated MOLT 16 cells, a human leukemic T cell line, were studied. MS-IFN-alpha is an IFN-alpha-containing powder in which maltose was used as an excipient, and has been shown to have a positive effect on human immunodeficiency virus (HIV)-infected patients. In this study, MS-IFN-alpha powder was dissolved in a culture medium and used for the experiments. IL-2 production by PHA- or anti-CD3 mAb-stimulated MOLT 16 cells was augmented by coculturing with IFN-alpha or MS-IFN-alpha. The augmentation of IL-2 production by IFN-alpha or MS-IFN-alpha was completely abrogated by rabbit anti-IFN-alpha antibody. We have previously shown that IL-2 production by PHA-stimulated MOLT 16 cells is augmented by coculturing with IL-1. Furthermore, IL-2 production by PHA-stimulated MOLT 16 cells was also augmented by human TNF-alpha in a dose-dependent manner. The TNF-alpha-induced augmentation was completely abrogated by rabbit anti-TNF-alpha antibody. Interestingly, both IFN-alpha and MS-IFN-alpha synergized with rIL-1 alpha or TNF-alpha resulting in IL-2 production being augmented far more effectively than either cytokine alone.(ABSTRACT TRUNCATED AT 250 WORDS)

Antibodies, Monoclonal↗

Inhibitory versus stimulatory effects of natural human interferon-alpha on proliferation of lymphocyte subpopulations.

Highly purified natural human interferon-alpha (IFN-alpha) inhibited in a dose-dependent manner the proliferation of human peripheral blood lymphocytes (PBL) stimulated with T-cell mitogen concanavalin A (Con A) or with interleukin-2 (IL-2). Contrary to this inhibitory effect, IFN-alpha at the same concentrations significantly increased proliferation of PBL stimulated with B-cell mitogen bacterial lipopolysaccharide (LPS) or with IL-3, and even spontaneous proliferation of PBL was enhanced by IFN-alpha. Proliferation of Con A-stimulated PBL depleted of CD8+ cells was sensitive to the inhibitory action of IFN-alpha, while proliferation of the Con A-stimulated CD4+ cell-depleted PBL was not affected by IFN-alpha. The inhibitory effect of IFN-alpha on PBL proliferation was due to neither inhibition of IL-2 receptor (IL-2R) expression, activation of suppressor cells, nor inhibition of lymphokine production. Rather, IFN-alpha augmented production of IL-1 and IL-2 by PBL. These results show that the suppressive effect of natural IFN-alpha on Con A-induced proliferation of PBL is due to a direct growth-inhibitory effect on CD4+ T cells, and that IFN-alpha simultaneously augments production of lymphokines. This could in turn lead to the increased proliferation of IFN-alpha-resistant cell populations.

CD4 Antigens↗

A novel human homeobox gene lies at the chromosome 10 breakpoint in lymphoid neoplasias with chromosomal translocation t(10;14).

The translocation t(10;14)(q24;q11) is an acquired change seen in 4% to 7% of T-cell acute lymphoblastic leukemias (T-ALL). We previously demonstrated that the translocation juxtaposes the T-cell receptor (TCR) delta-chain gene in chromosome 14q11 with a novel region in chromosome 10q24 and is likely catalyzed by recombinases normally involved in the generation of immunoglobulin and TCR diversity. We now present the sequence of a gene on chromosome 10 that lies immediately telomeric of the breakpoints in nine new ALL patients with acquired rearrangements in 10q24. The gene is a novel human homeobox gene and is expressed in leukemic cells from ALL patients with rearrangements in a defined chromosome 10 breakpoint cluster region, but not in other adult tissues or cell lines. This new gene has been designated HOX11. Our results strongly support a role for homeobox genes in oncogenesis and may represent the first example of a human cancer in which deregulated expression of an unaltered homeobox gene is involved in tumorigenesis.

Amino Acid Sequence↗

Protein kinase C of a human megakaryoblastic leukemic cell line (MEG-01). Analysis of subspecies and activation by diacylglycerol and free fatty acids.

Protein kinase C (PKC) from a human megakaryoblastic leukemic cell line (MEG-01) was resolved into two fractions by hydroxyapatite column chromatography, which are indistinguishable from the brain type II (beta I/beta II) and type III (alpha) subspecies, by biochemical and immunoblot analysis. In the presence of both phosphatidylserine and diacylglycerol, several free unsaturated fatty acids (FFA's), such as arachidonic, oleic, linoleic and linolenic acids, further enhanced the enzyme activation, and allowed the enzyme to exhibit almost full activity at nearly basal levels of Ca2+ concentration. The concentration of unsaturated FFA's giving rise to the maximum enzyme activation was around 2 x 10(-5) M. Palmitic and stearic acids were inactive. The result implies that, in addition to diacylglycerol, the receptor-mediated release of unsaturated FFA's from membrane phospholipids may also take part in the activation of PKC.

Arachidonic Acid↗

Identification and characterization of a colon-cancer-associated antigen expressed on leukemia-lymphoma cell lines.

A total of 72 human leukemia-lymphoma cell lines were studied for reactivity with the monoclonal antibody (MAb) A7, an anti-human colon-cancer-cell-associated antigen reagent, by indirect membrane immunofluorescence. Nine of the 72 cell lines expressed the antigen recognized by A7 MAb. Five of the 34 T-cell lines, 2 of the 21 B-cell lines, and 2 of the 3 non-lymphoid-non-myeloid cell lines were reactive with A7 MAb. By means of SDS-PAGE and immunoblotting, the antigens isolated from both colon cancer cell lines (WiDr, SW1116 and LoVo) and leukemia cell lines (A3/KAWAKAMI, H9, RPMI 8226 and SPI-801) showed an identical MW of 42-43 kDa. The non-glycosylated antigen recognized by A7 MAb, which was expressed on both the colon cancer line (SW1116) and the leukemia line (H9) in the presence of tunicamycin, also showed an identical MW of 36 kDa. However, the quantity of the antigen in the leukemia cells was significantly lower than in the colon cancer cells. Although expression of this colon-cancer-associated antigen in the non-colon cancer cells is real, the significant expression of this antigen in colon-cancer cells makes it useful for clinical monitoring of colon cancer patients.

Antibodies, Monoclonal↗

Natural human interferon-alpha augments interleukin-2 production by a direct action on the activated IL-2-producing T cells.

The production of interleukin-2 (IL-2) by Concanavalin A (ConA)-stimulated peripheral blood leukocytes (PBL) from normal human donors was enhanced by natural human interferon-alpha (IFN-alpha). The mechanism of the action of IFN-alpha on IL-2 production was studied further using cloned human leukemic T-cell lines, which produce IL-2 spontaneously and/or after mitogen stimulation. It was found that IFN-alpha alone did not stimulate IL-2 production, but increased it in the activated cells. The ability of IFN-alpha to increase IL-2 production was abrogated by the treatment of IFN-alpha preparations with specific anti-IFN-alpha antibody, and the induced IL-2 activity was completely inhibited by monoclonal antibody against human IL-2. We suggest that the augmentation by IFN-alpha of IL-2 production in the activated T cells may be one of the mechanisms attributable to the immunotherapeutic action of IFN-alpha.

Clone Cells↗

Murine interleukin 5 receptor isolated by immunoaffinity chromatography: comparison of determined N-terminal sequence and deduced primary sequence from cDNA and implication of a role of the intracytoplasmic domain.

The murine interleukin 5 receptor (IL-5R) was identified by utilizing an immobilized IL-5 and an immobilized monoclonal antibody against the murein IL-5R (designated H7 mAb). The H7 mAb immunoaffinity-purified materials from the extract of cell-surface radioiodinated T88-M cells (an IL-5-dependent early B cell line) using 3-[(3-cholamidopropyl)dimethylammonio]-1-propanesulfonate (CHAPS) were reacted with an immobilized IL-5 matrix. SDS-PAGE of the adsorbed fraction revealed a single band at approximately 60 kDa. The binding of the 60 kDa protein to the immobilized IL-5 matrix was inhibited by the excess IL-5. The CHAPS-extract depleted of the 60 kDa protein by the absorption with H7 mAb did not contain any IL-5 binding proteins. Immunoaffinity procedure provided a final 7400-fold purification, based on an estimation of the content of the 60 kDa protein (approximate purity: 20%) from the silver-stained pattern of SDS-PAGE. Actin was copurified with the 60 kDa protein at an approximate ratio of 1:1, suggesting that the intracytoplasmic domain of the IL-5R may interact with actin. Furthermore, soluble IL-5R (molecular mass: 50 kDa) was purified by the H7 mAb-immunoaffinity chromatography. The purified soluble IL-5R was capable of inhibiting the binding of IL-5 to T88-M cells. Preparative SDS-PAGE followed by electroblotting onto a membrane permitted the determination of the N-terminal sequence of the IL-5R. The determined N-terminal sequence of the IL-5R and the deduced primary sequence from recently isolated cDNA were compared.

Actins↗

Transformation of CD8+ T-cells producing a strong cytopathic effect on CD4+ T-cells through syncytium formation by HTLV-II.

Human T-cell leukemia virus type II (HTLV-II) is thought to play an important role in the development of CD8+ T-cell malignancies resembling hairy cell leukemia. In this study, dramatic cytopathic effects characterized by syncytium formation in various CD4+ T-cell lines were observed upon their cocultivation with HTLV-II infected T-cells. The HTLV-II infected T-cells, however, did not die as a result of syncytium formation. HTLV-II also transformed CD4+ T-cells and CD8+ T-cells at various coculture ratios. Furthermore, sera from anti-HTLV-II antibody-positive specific carriers inhibited syncytium formation in the CD4+ T-cells. These results suggest that HTLV-II infection may contribute to the pathogenesis of associated CD8+ T-cell malignancies.

Adult↗

Human monoclonal antibody detects a cell surface antigen expressed on hematopoietic malignant cells of lymphoid lineage.

An antigen with a molecular weight of 150 kilodaltons expressed on certain leukemia and lymphoma cells was recognized by a human monoclonal antibody (3H12), which had been established by the fusion of lymphocytes from a small cell lung cancer patient with a mouse myeloma cell line (P3U1). Peripheral blood mononuclear cells from 3 out of 4 cases with lymphoid crisis of chronic myelogenous leukemia (CML) were positively stained by 3H12, while cells from 5 cases with myeloid crisis of CML did not react to this antibody. The antibody did not show any reactivity to cells from the chronic phase of CML, other types of leukemias or normal hematopoietic cells. We further examined 29 cell lines of hematopoietic origin and found that 2 undifferentiated cells (BV-173 and K-562) reacted to the 3H12 antibody. In addition, we found that 3 out of 6 Burkitt lymphoma cells (DAUDI, RAJI and HR1K) reacted to 3H12. Taken together, these results suggest that the antigen recognized by 3H12 is a differentiation-associated antigen expressed on immature lymphoid cells, and could potentially be a reliable cell lineage marker.

Antibodies, Monoclonal↗

Modulation of methotrexate cytotoxicity with natural interferon upon human leukemia cell line HL-60.

The effect of alpha- and gamma-interferon on methotrexate cytotoxicity against human promyelocytic cell line HL-60 has been evaluated. Synergistic inhibition of proliferation is observed with the combination of methotrexate and gamma-interferon. Enhanced cytotoxic effect of methotrexate with alpha- or gamma-interferon is removed by adding thymidine to the growth medium. The depletion of folate pools caused by methotrexate is enhanced in presence of interferons, this depletion is also removed by adding thymidine to the growth media. Synchronization of HL-60 cells in 'S' phase of cell cycle caused by methotrexate is enhanced in the presence of interferons. These results suggest that specially gamma-interferon changes the cellular environment of HL-60 cells in such a way as to make methotrexate more potent cytotoxic agent to HL-60 cells causing cell death. This study also clearly indicates the biochemical role of thymidine in modulating the activity of methotrexate in combination with interferons.

Biological Transport↗

Establishment and characterization of a bi-phenotypic leukemic cell line, NALM-19, from a patient with acute leukemia.

Based on the immunophenotypic and genotypic findings, this acute leukemia cell line, designated NALM-19, is unique in that a partial expression of both B-cell and myeloid cell features are present in this single clonal leukemic cell population. It is noteworthy that two "normal" EB virus-transformed B cell lines, B239 and B240, (paired with NALM-19) were established from the same leukemic blood.

Acute Disease↗

Two t(9;22) leukemia cell lines (NALM-24 and NALM-25) with bi-phenotypic characteristics and an EBV-positive B-cell non-leukemia cell line (B262) established from a patient with acute lymphoblastic leukemia.

Based on the immunophenotypic, cytogenetic and genotypic findings, two unique leukemia cell lines, NALM-24 and NALM-25, and an EBV-transformed "normal" B-lymphoblastoid cell line (B262) from a patient with ALL were established and characterized. NALM-24 and NALM-25 are unique in that expression of both show B cell and myeloid cell features with the t(9;22) chromosome in single clonal leukemic cell populations.

Adult↗

Bi-phenotypic t(9;22)-positive leukemia cell lines from a patient with acute leukemia: NALM-20, established at the onset; and NALM-21, NALM-22 and NALM-23, established after relapse.

Four leukemia cell lines; NALM-20, established at the onset of leukemia and NALM-21, -22 and -23 established at the relapse of the disease were found to be t(9;22)-positive leukemia lines having the biphenotypic feature of B cell and myeloid cell characteristics. In addition, a polyclonal Epstein-Barr virus-transformed normal B cell line, B250, was established from the peripheral blood at the onset of the disease.

Antigens, Surface↗

Induced natural killer-like cytotoxic function in the TCR delta-1 positive human leukemic T-cell lines.

Four human leukemic T-cell lines with a T-cell receptor (TCR) gamma/delta heterodimer (MOLT-13, MOLT-14, and PEER) or beta/delta-heterodimer (DND-41), as determined by monoclonal antibody (mAb), TCR delta-1, were identified by phenotypic and genotypic analysis. Two similar human leukemic T-cell lines with a TCR alpha/beta heterodimer (CCRF-CEM and MOLT-16) were used in this study. Natural killer (NK)-like activity was investigated in the TCR gamma/delta+ cell lines and TCR alpha/beta+ cell lines induced by exogenous recombinant human IL-2 (rIL-2), or phorbol 12-myristate 13-acetate (PMA). Three (MOLT-13, MOLT-14, and DND-41 cells) of the four TCR delta-1 positive cell lines, after 48 h treatment with exogenous rIL-2 or PMA (except DND-41), showed NK-like activity to K562, but not to Daudi cells. Furthermore, when MOLT-13, MOLT-14, and DND-41 cells were co-cultured with rIL-2 or PMA, 5-20% of these cells expressed the beta-subunit of IL-2R. Treatment with rIL-2 or PMA induced the expression of the beta-subunit of IL-2R, which in turn induced IL-2R. Subsequently these cells could transmit the signal for the induction of NK-like cytotoxicity. These findings indicate that changes in the beta-subunit of IL-2R expression may be responsible for the target cell specificity of activated effector cells.

CD4 Antigens↗

Quantitative assay of terminal deoxynucleotidyl transferase (TdT) activity using monoclonal antibodies.

Terminal deoxynucleotidyl transferase (TdT) is an important marker for the diagnosis and the therapy of leukemia and lymphoma patients. In this study, we developed the quantitative method for the assay of TdT antigen in leukemic cells using a combination of monoclonal and polyclonal antibodies prepared for this enzyme. High correlation was obtained between the values measured by biochemical assay and enzyme-linked immunosorbent assay (ELISA). This method (ELISA), using antibodies to TdT, permits the rapid and quantitative estimation of TdT antigen in leukemic cells.

Antibodies, Monoclonal↗