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Biomedical subjects

T Kunisada

Publications and source records attributed to T Kunisada.

At least 73 records · Page 4Linked to original sources

Effects of simulated microgravity on human osteoblast-like cells in culture.

Physiological strain plays an important role in maintaining the normal function and metabolism of bone cells. It is well know that the mineral content of astronauts' bones decreases during spaceflight. Thus, gravity is one of the important factors in the musculoskeletal system. The vector-free horizontal clinostat has been used to simulate conditions of microgravity for examining such effects on cells in culture. We analyzed the effects of simulated microgravity using a horizontal clinostat on cultured osteoblast-like cells (HuO9 cell line). Total cellular protein, which was measured as an indication of cell proliferation, was not significantly inhibited under simulated microgravity conditions. No morphological changes were detected under microgravity conditions by phase-contrast microscopy. However, the alkaline phosphatase (ALP) activity and osteocalcin production of the HuO9 cells decreased significantly under microgravity conditions. Our data indicate that simulated microgravity directly inhibits some differentiation phenotypes and some functions of osteoblasts. On the other hand, the addition of 1,25-dihydroxyvitamin D3 (1,25-(OH)2-D3) increased ALP activity under simulated microgravity conditions, although the total activity of ALP in the cells treated with 1,25-(OH)2-D3 was still lower under simulated microgravity conditions than that in the control cells. However, the cells under simulated microgravity conditions showed a greater enhancement of ALP activity by treatment with 1,25-(OH)2-D3.

Alkaline Phosphatase↗

Enteric neurons express Steel factor-lacZ transgene in the murine gastrointestinal tract.

The cells that express Steel factor (SLF) in the gastrointestinal (GI) tract were studied using SLF-lacZ transgenic mice. Expression, detected by beta-galactosidase histochemistry, was evident in cells between the circular and longitudinal muscle layers in the GI tract. Double staining with antibodies specific for the neural markers, PGP 9.5, MAP2 and c-Ret, showed that SLF-lacZ positive cells were enteric neurons. Enteroglia did not express SLF-lacZ. The distribution of expressing cells was complimentary to the expression of c-Kit in myenteric interstitial cells.

Animals↗

Cell-cycle-dependent expression of the STK-1 gene encoding a novel murine putative protein kinase.

We have cloned a novel putative serine/threonine kinase-encoding gene, designed STK-1, from murine embryonic stem (ES) cell and testis cDNA libraries. The kinase most closely related to STK-1 is Xenopus laevis XLP46 protein kinase which shows 71% amino-acid identity to STK-1 between their kinase domains. Nevertheless, STK-1 is conserved throughout phylogeny with hybridizing sequences being detected in DNA from mammals, amphibians, insects and yeast. STK-1 mRNA is detected in testis, intestine and spleen, tissues that contain a large number of proliferating cells, but not in other tissues. All cell lines tested expressed STK-1 mRNA with levels being dependent upon proliferation rates. In NIH 3T3 cells, STK-1 is expressed in a cell-cycle-dependent fashion. These findings suggest a role for STK-1 in cell growth.

3T3 Cells↗

Neural and skin cell-specific expression pattern conferred by steel factor regulatory sequence in transgenic mice.

We have produced transgenic mice expressing a lacZ reporter gene under the control of a fragment of a Steel factor (SLF). The function of this gene is essential for the development of hematopoietic cells, germ cells, melanocytes and pacemaker cells of the intestine. The expression of the transgene, containing 2 kb DNA 5' regulatory sequence, was restricted to neural and skin tissues in appropriate spatial and temporal pattern compared with endogenous SLF mRNA expression. This indicates that the regulatory elements necessary for the neural and skin specific expression are present in this 2 kb DNA sequence, although strong position-dependence of transgene expression was observed. As we could not detect transgene expression in hematopoietic tissues and germ cells after extending 10 kb upstream, elements important for these organs must reside in other regions. Our results indicate that neural crest derived enteric ganglion cells provide SLF to the neighboring pace maker cells expressing c-kit, the receptor for SLF. Cells expressing the transgene in the intestine are ganglion cells derived from neural crest since homozygosity for the lethal spotting (Is) mutation results in loss of such ganglion cells in transgenic mice. We have also shown that the dermal papillae of the hair follicle expresses the transgene, suggesting its roles to support the c-kit dependent growth and development of melanocytes in the hair follicle.

Animals↗

The importance of doxorubicin and methotrexate dose intensity in the chemotherapy of osteosarcoma.

The relationship between dose intensity of cytotoxic agents and therapeutic results was examined in a retrospective analysis of 32 patients with non-metastatic high-grade osteosarcoma of the extremities. The average dose intensities of individual agents were 9.8 mg/m2/week for doxorubicin, 1.2 g/m2/week for methotrexate, and 10.5 mg/m2/week for cisplatinum. The dose intensities of doxorubicin and methotrexate were significantly correlated with the clinical results, while that of cisplatinum was not. These results indicate that maximal dose intensification of doxorubicin and methotrexate is an important determinant of treatment outcome for patients with osteosarcoma.

Adolescent↗

Involvement of platelet-derived growth factor receptor-alpha in hair canal formation.

Hair follicles develop and are maintained by multiple rounds of inductive events involving interactions among various cell types within the follicles and the adjacent mesenchyme. Although evidence suggests that several growth factors, cell adhesion molecules, and transcriptional regulators are involved in those cell-cell interactions, the molecular mechanisms regulating each pivotal step of hair follicle development, such as formation of the hair germ, root sheath, sebaceous gland, and hair canal, remain largely unknown. In this study, we established the antagonistic monoclonal antibody APA5 against platelet-derived growth factor (PDGF) receptor-alpha (PDGFR-alpha) and used it to investigate the role of PDGFR-alpha in neonatal skin development. In addition to the dermal mesenchyme, a known site of PDGFR-alpha expression, immunohistologic staining of neonatal skin detected transient expression of PDGFR-alpha in the perinatal epidermis for several days. On the other hand, ligands for PDGFR-alpha were detected in epithelial cells and sebaceous glands of hair follicles. To determine whether this contiguous expression of PDGF and PDGFR-alpha in neonatal skin plays a functional role, we injected APA5 into neonates to block the function of PDGFR-alpha. Consistent with the PDGF/PDGFR-alpha expression in the neonatal skin, two defects were induced by this procedure. First, hair canal formation in the epidermis was severely suppressed. Second, the growth of dermal connective tissues and of hair follicles of pelage hairs was suppressed. These results indicate that PDGF signals are involved in both the epidermis-follicle interaction and the dermal mesenchyme-follicle interaction required for hair canal formation and the growth of the dermal mesenchyme, respectively.

3T3 Cells↗

Distinct stages of melanocyte differentiation revealed by anlaysis of nonuniform pigmentation patterns.

The injection of an antagonistic anti-murine c-kit monoclonal antibody ACK2 during mouse embryonic development produced three distinctive pigmentation patterns on the coat of the offspring. Pattern 1 consisted of pigmentation in craniofacial and caudal regions and was induced by an ACK2 injection between 9.5 and 11.5 days post coitum (dpc). In pattern 2, the entire coat was unpigmented and was induced by the injection at around 13.0 dpc. Pattern 3 consisted of pigmented patches spreading ventrolaterally from the dorsoanterior trunk regions towards the anterior and posterior directions and it was induced by ACK2 administered at 14.5-15.0 dpc. We investigated the embryological basis of these nonuniform pigmentation patterns to elucidate the process of melanoblast differentiation between lineage commitment and colonization into developing hair follicles. The results showed the following. (1) Melanocyte differentiation at the embryonic stage from 10.5 to 12.5 dpc progresses in a spatially nonuniform fashion, being faster in the craniofacial and caudal regions than in the trunk; pattern 1 reflects this. (2) Melanoblasts are activated to proliferate synchronously upon entering into the epidermis; pattern 2 correlates with this process. (3) c-kit functions as a survival signal for proliferating melanoblasts in the epidermis. (4) The melanoblasts that enter developing hair follicles can survive without a c-kit signal; pattern 3 essentially represents the hair follicles colonized by these cells. Analysis of the melanoblast distribution of ls/ls embryos that bear a loss-of-function mutation in the endothelin 3 gene suggested that endothelin 3 is required for early melanoblast differentiation before entering into the epidermis, whereas proliferation in the epidermis takes place without this molecule. Based on these data, we propose 4 distinct steps of embryonic melanocyte differentiation: (1) migration in the dermis, which requires both c-kit and endothelin 3; (2) a state before epidermal entry that is resistant to anti-c-kit mAb; (3) cell proliferation after entering the epidermal layer, which requires c-kit and endothelin receptor B but not endothelin 3 and (4) integration into developing hair follicles, which renders melanoblasts resistant to anti-c-kit mAb. Thus, melanoblast differentiation proceeds by alternately repeating c-kit -dependent and c-kit-independent stages and c-kit functions as a survival factor for the proliferating melanoblasts.

Animals↗

Identification of the control regions for mouse c-kit gene transcription induced by retinoic acid.

The c-kit gene encodes a receptor tyrosine kinase that reveals the pleiotropic effects both in the developing embryo and in the adult animal. In this study, we characterized transcriptional control of the c-kit gene. F9 teratocarcinoma cells differentiated and expressed the c-kit gene upon exposure to retinoic acid (RA). We isolated c-kit genomic DNA from approximately 20 kb upstream to approximately 10 kb downstream of the transcribed region. We identified two control regions for c-kit gene transcription by fusing genomic sequences to bacterial chloramphenicol acetyl transferase reporter genes and introducing the resultant constructs into differentiated F9 cells. The fragments, Sac I-Apa I in the 9th intron and Xho I-Kpn I in the 13th intron induced reporter gene activities. Nucleotide sequencing of the regions showed in that there were no consensus sequences of the RA receptor or cyclic AMP-responsive elements. Cyclic AMP augmented the expression of the c-kit gene induced by RA; when combined with RA, it was less effective on the reporter gene activity. In contrast to other reports, continuous exposure to the reagents was not required for c-kit expression. These findings suggested that transcription of the c-kit gene is regulated by complex controls and that there are different control regions responsive to RA and cyclic AMP.

Animals↗

Overexpression of retinoic acid receptor alpha suppresses myeloid cell differentiation at the promyelocyte stage.

Retinoic acid receptor (RAR) alpha is required to heterodimerize with retinoid X receptor (RXRs) in order to regulate myeloid differentiation. If so, it is expected that overexpression of normal RAR alpha may perturb the RAR alpha/RXR heterodimer formation and also the differentiation of myeloid cells. We have described here the morphology and the RA response of human RAR alpha cDNA transduced murine bone marrow cells using a retroviral vector. Most of RAR alpha transduced cells displayed promyelocyte like morphology and their proportion of c-kit expressing population was increased remarkably compared with the control (Neor gene transduced cells). Furthermore, this morphology was observed even after these cells were brought into the semisolid culture containing IL-3 alone. Interestingly, immature RAR alpha transduced cells differentiated into mature granulocytes under the condition of the high concentration of RA(10(-6) M). We did not observe any effect of RAR alpha on monocytes. These results indicate that overexpression of normal RAR alpha is sufficient for inducing maturation arrest of myeloid cell lineage that is similar to the phenotype found in the acute promyelocytic leukemia bearing PML-RAR alpha translocation.

3T3 Cells↗

Cell cycle control of c-kit+IL-7R+ B precursor cells by two distinct signals derived from IL-7 receptor and c-kit in a fully defined medium.

An important goal for the investigation of the proliferation of mammalian cells is to establish a fully defined condition for culturing them in vitro. Here, we report establishment of a fully defined culture condition that supports the primary culture of normal c-kit+IL-7 receptor (IL-7R)+ B precursor cells without the aid of stromal cell lines. This defined culture condition contains IL-7, the ligand for c-kit, transferrin, insulin, and bovine serum albumin as protein components. By using the cell lines derived from RAG2(-/-) mice, which do not differentiate into c-kit- stage, we have evaluated the role of each protein in the cell cycle progression of c-kit+IL-7R+ B precursor cells. Since B precursor cells can grow without insulin, c-kit remains a sole functional receptor tyrosine kinase for their growth. While both c-kit ligand (KL) and IL-7 are the requisite molecules for sustained proliferation of B precursor cells, each molecule plays distinct roles. IL-7 starvation results in prompt arrest of the cells at G1. An accumulation of the cells in the mitotic phase was also detected. Thus, the major role of IL-7 is to regulate the G1/S transition and the process of cytokinesis of B precursor cells. Although prolonged KL starvation over 48 h resulted in accumulation of G1 cells, its effect could not be detected within 24 h, which is long enough for all the cells to complete one cell cycle. This suggests that KL might be involved in the cell cycle progression of B precursor cells in a manner that its signal could still be effective in the one or two cell cycles that follow. Although molecular nature of the signals underlying the present observation awaits future investigation, the method described in this report would provide a useful model system for investigating the signaling pathways that are involved in the cell cycle progression of B precursor cells.

Animals↗

Identification of two transcripts of AML1/ETO-fused gene in t(8;21) leukemic cells and expression of wild-type ETO gene in hematopoietic cells.

The t(8;21) is a common chromosomal abnormality, preferentially associated with acute leukemia showing features of myeloid differentiation. Recently, two genes--AML1, which has a unique runt domain, and ETO (MTG8)--have been isolated from the chromosomal breakpoint. In this study, we isolated and identified two fused transcripts from a leukemic cell line carrying t(8;21). AML1 and ETO were fused at the same position in these transcripts. One of the transcripts codes a unique domain, including two zinc finger domains and three proline- and one leucine-rich region. The other transcript codes only for one proline- and leucine-rich region but lacks zinc finger domains. We demonstrated by polymerase chain reaction (PCR) analysis that 1) these two transcripts are consistently expressed in leukemic cells with t(8;21) obtained from patients and 2) expression of AML1 was not restricted to the particular stage of hematopoietic differentiation but was present in all hematopoietic cells investigated. We also provide evidence that two wild types of ETO transcripts containing the region of the ETO gene in fused transcripts are expressed in hematopoietic cells from different lineages. The widespread expression of AML1 and ETO in hematopoietic cells suggests a fundamental role of these proteins in hematopoiesis. Furthermore, the differences in the carboxy termini of ETO may modulate the activity of fused proteins resulting from the chromosomal translocation t(8;21).

Acute Disease↗

Exogenous expression of human granulocyte colony-stimulating factor receptor in a B-lineage acute lymphoblastic leukemia cell line: a possible model for mixed lineage leukemia.

We report evidence that the granulocyte colony-stimulating factor (G-CSF) receptor is present and may be functioning on blast cells from some patients with myeloid surface antigen positive (My+) acute lymphoblastic leukemia (ALL). In the present study, a human G-CSF receptor expression plasmid was transfected into a newly established B-lineage ALL cell line 'Tanoue' and its subclone 'ST' by lipofection to investigate whether expression of the G-CSF receptor and G-CSF stimulation would induce myeloid characteristics on myeloid surface antigen negative (My-) ALL cells. The G-CSF receptor became detectable on the transfected cells (GR-Tanoue and GR-ST), with dissociation constant values of 50-130 pmol/l, and maximal binding sites (Bmax of 77-6100 sites/cell on receptor binding assays. Short term culture with recombinant human G-CSF induced myeloid differentiation (a two to three-fold increase in CD33 and CD15 expression), and a moderate 3H-thymidine uptake (stimulation index, 1.75) only in the GR-ST clone no. 15 which expressed a high number of G-CSF receptors (Bmax, 6100 sites/cell). Our data show that (a) exogenous expression of the G-CSF receptor and G-CSF stimulation can induce myeloid characteristics on ALL cells; and (b) in the G-CSF receptor-expressing cells, there is a correlation between the number of G-CSF receptors and cell responsiveness to G-CSF in either proliferation or differentiation.

Burkitt Lymphoma↗

Detection of human immunodeficiency virus-1 nucleic acid on inactivated filter paper disks by polymerase chain reaction and microtiter plate assay.

Human immunodeficiency virus type 1 (HIV-1) in cultured cells, peripheral blood samples and sera were adsorbed on filter paper disks and inactivated by heat or ethanol. Two procedures, the polymerase chain reaction (PCR) and microtiter plate assay (HMPA) were used to detect the nucleic acid. The sensitivity after different heat treatments with nested PCR for HIV-1 DNA (or nested reverse transcription-PCR for HIV-1 RNA) was identical regardless of whether the samples were examined immediately or one month later. Inactivation by ethanol treatment resulted in a slight loss of sensitivity. The HMPA proved to be as reliable and specific as the conventional PCR technique. We conclude that the heat-treated filter paper disk assay is suitable for identifying HIV nucleic acid in clinical samples sent to the laboratory from a distance, e.g. in an envelope.

Base Sequence↗

Synergistic effect of recombinant CD4-immunoglobulin in combination with azidothymidine, dideoxyinosine and 0.5 beta-monoclonal antibody on human immunodeficiency virus infection in vitro.

Data are presented which indicate that combinations of rCD4 immunoglobulin with azidothymidine, dideoxyinosine or 0.5 beta mouse monoclonal antibodies directed against the V3 region of HIV-1, were more effective in treatment of acute HIV infection in vitro than each compound alone. It is suggested that combination therapy with these compounds is more beneficial in treatment of HIV-infected patients than monotherapy, especially with respect to a reduction of the known side effects and the formation of resistant HIV strains after treatment with nucleoside analogues.

Anti-Bacterial Agents↗

Conditions required for myelopoiesis in murine spleen.

While the spleen is an active site for myelopoiesis during the late embryonal and perinatal stages, the activity is gradually lost later. However, myelopoiesis in the adult spleen can be reactivated by irradiation or various stimulants. In this study we investigated factors which determine the myelopoiesis-supporting activity in the adult spleen. To address this question, we used scid mouse because virtually no lymphocytes, which might compete in the splenic microenvironment with hematopoietic progenitors, are present there. The results demonstrated: 1. Even in scid mouse, the myelopoiesis-supporting activity in the spleen is lost within a week after birth as in normal mice. 2. While myelopoiesis does not occur in the spleen of unstimulated scid mouse by bone marrow transfer alone, myelopoiesis in the spleen is reactivated by irradiation or lipopolysaccharide (LPS) application. 3. Myelopoiesis in the spleen induced by irradiation is dependent on c-kit and its ligand steel factor (SLF), because it was suppressed completely by the monoclonal antibody (mAb) against c-kit. 4. The expression of SLF transcripts in the spleen was enhanced after irradiation. These results suggest that the factor which determines myelopoietic activity in the spleen resides primarily in the status of the splenic microenvironment.

Animals↗

Characterization of cells of the myeloid-monocytic lineage (ML-1, HL-60, THP-1, U-937) chronically infected with the human immunodeficiency virus-1.

The myeloid-monocytic cells ML-1, HL-60, THP-1 and U-937 were chronically infected (for more than 2 years) with the lymphotropic HIV-1 strain HTLV-IIIB. Reinfection experiments revealed that viruses obtained from chronically infected ML-1/HIV-1 and HL-60/HIV-1 cells show a low infectivity if tested with uninfected ML-1 and HL-60 cells in contrast to virus preparations from chronically infected THP-1/HIV-1 and U-937/HIV-1 with their corresponding uninfected cell lines. Analyses of selected cell surface markers showed a differential expression of CD4, CD8, CD11c, CD14, CD15, CD20, HLA-DR and HLA-DQ in non- or chronically infected cells. During chronical infection, the myeloid-monocytic cells lost their reactivity with peroxidase and esterase. In chronically infected cells, the steady-state levels for TNF-alpha mRNA remained unchanged while those for IL-6 decreased. The half-lives of transcripts of both TNF-alpha (t1/2: 70 min) and IL-6 (t1/2: 100 min) were nearly the same in uninfected and chronically infected HL-60 cells.

Bone Marrow↗