Biomedical subjects
E Chu
Publications and source records attributed to E Chu.
Resistance of a human ovarian cancer line to 5-fluorouracil associated with decreased levels of 5-fluorouracil in DNA.
Two human ovarian cancer cell lines were established from a patient before (PEO1) and after (PEO4) the onset of resistance to 5-fluorouracil (5-FU)/cisplatin-based chemotherapy. Using growth inhibition assays, we determined that the PEO4 line was almost 5-fold more resistant to 5-FU than the PEO1 line. The addition of either 1 or 20 microM leucovorin did not enhance the growth-inhibitory effects of 5-FU against the resistant PEO4 line. In characterizing the potential mechanisms of 5-FU resistance, we found no differences in thymidylate synthase activity between the two lines using both the 5-fluoro-2'-deoxyuridine-5'-monophosphate-binding and catalytic assays. A 4-hr exposure to 1 microM 5-FU resulted in greater ternary complex formation in the resistant line, and we observed no differences between the two lines in 5-FU incorporation into RNA. However, a 4-hr exposure to 1 microM [3H]5-FU resulted in a 3-fold decrease in 5-FU accumulation in the DNA of the resistant PEO4 line. Cesium sulfate gradient centrifugation was used to more accurately separate and analyze for DNA-incorporated 5-FU metabolites and confirmed that the absolute level of 5-FU in the DNA of the PEO4 cells was markedly decreased (6.5-fold) compared with that of the sensitive PEO1 cell line. Moreover, time course studies demonstrated that the accumulated 5-FU in the DNA of the PEO4 cells was more rapidly removed compared with that in the PEO1 cells. Our findings suggest that decreased 5-FU levels in DNA, in part due to an enhanced removal from DNA, represent a mechanism by which the human ovarian cancer PEO4 line expresses decreased sensitivity to 5-FU.
Karyotypic analysis of diploid or near diploid metastatic Harvey ras transformed rat embryo fibroblasts.
The hypothesis of tumor progression proposed by Nowell [P. C. Nowell, Science (Wash. DC), 194: 23-28, 1976] states that one mechanism for the development of the metastatic phenotype could be the induction of chromosomal instability. We have developed a new experimental system for studying the induction of the metastatic phenotype using early passage fibroblasts which become metastatic in nude mice after transformation with the Harvey ras oncogene [R. J. Muschel et al., Am. J. Pathol., 121: 1-8, 1985; R. Pozzatti et al., Science (Wash. DC), 232: 223-227, 1986]. Since the early passage fibroblasts themselves are diploid, we reasoned that this might be a system in which karyotypic change after tumor formation or metastasis might easily be evaluated. Thus, we performed cytogenetic analysis on multiple metastases and tumors which had been derived from cells transformed with the cellular Harvey ras1 oncogene and compared their karyotypes. The karyotypes of the cells isolated from 5 tumors and 14 metastases were, as far as we could determine, identical to those of the injected cells. This could easily be evaluated because of the two clones studied one was diploid; the other has a trisomy of chromosome 4 without any other detectable abnormality. These results suggest that in this system using nude mice, selection for a necessary or even advantageous chromosomal aberration does not occur during tumor formation or metastasis. Furthermore, they indicate that the presence of the ras gene itself does not induce chromosomal rearrangements or aneuploidy and that a cell can be both tumorigenic and metastatic yet remain diploid.
Role of Ia antigens and interleukin 1 in T-cell proliferation to phytohemagglutinin.
Highly purified human T cells were obtained by a four-step purification procedure which included: removal of plastic adherent cells, rosetting with sheep red cells, passage over nylon-wool columns, and treatment with mouse monoclonal antibodies to human Ia antigens and complement. The resulting T cells did not proliferate to phytohemagglutinin (PHA). Purified human interleukin 1 (IL-1) could not substitute for accessory cells in supporting a PHA response. Reconstitution with as little as 0.03% adherent cells resulted in a proliferative response to PHA. T-Cell proliferation to PHA was supported by monocytes, by Ia+ Epstein-Barr virus-transformed lymphoblastoid B-cells lines, and by Ia- cultured human dermal fibroblasts but not by Ia-containing liposomes. Addition of anti-Ia antibodies to monocyte-containing cultures did not inhibit the T-cell proliferative response to PHA. These results suggest that Ia antigen expression by accessory cells is neither necessary nor sufficient to support T-cell proliferation to PHA and that IL-1 is not sufficient to support the proliferation of T cells to PHA.
Mechanisms of human T cell response to mitogens: IL 2 induces IL 2 receptor expression and proliferation but not IL 2 synthesis in PHA-stimulated T cells.
Human peripheral blood T cells were purified by a four-step procedure which included depletion of plastic-adherent cells, rosetting with sheep red blood cells, nylon wool passage, and treatment with mouse monoclonal antibodies to human Ia antigens plus complement. The purified T cells completely failed to proliferate to phytohemagglutinin (PHA). Bacterially derived recombinant human interleukin 2 (IL 2) reconstituted the proliferative response of resting T cells to PHA. The optimal concentration of IL 2 required was 100 to 200 U/ml. IL 2 alone caused no T cell proliferation. Both PHA and IL 2 needed to be present together for the proliferation of T cells to occur. Incubation of T cells with either PHA or IL 2 alone for up to 18 hr, followed by washing, then by the addition of the reciprocal reagent, resulted in no T cell proliferation. Expression of IL 2 receptors and of Ia antigens, as assessed by indirect immunofluorescent staining, revealed that both PHA and IL 2 needed to be present for Tac and Ia antigen expression by T cells. T cells incubated with PHA and IL 2 for 18 to 42 hr acquired responsiveness to IL 2. These T cells remained absolutely dependent on IL 2 for proliferation to occur. In contrast to T cells stimulated with PHA in the presence of monocytes, T cells stimulated with PHA and IL 2 released no detectable IL 2. The failure of IL 2 secretion was not caused by down-regulation of IL 2 production by IL 2 itself, because the addition of IL 2 to cultures of T cells stimulated with PHA in the presence of monocytes did not interfere with IL 2 production. These results indicate that IL 2 is a sufficient signal to induce the expression of its receptor in PHA-stimulated T cells and subsequent proliferation but is not sufficient to cause endogenous IL 2 release.
Analysis of antigen uptake and presentation by Epstein-Barr virus-transformed human lymphoblastoid B cells.
Epstein-Barr virus-transformed human B cells (EBV-B cells), but not resting B cells or B cells activated by T cell-derived factors, have been shown to support the proliferation of tetanus toxoid (TT)-specific autologous T cell clones in response to TT antigen. The accessory cell function of EBV-B cells was compared to that of monocytes with regard to antigen uptake and processing. After an 18-h incubation period with 125I-labeled TT, the amount of radioactivity associated with the cells (approximately 50 ng/10(7) cells) and the percentage of cells containing radiolabeled material (approximately 50%) were equivalent for EBV-B cells and monocytes. Like with monocytes, EBV-B cells pulsed with TT for 18 h or more were equivalent in their capacity to induce T cell proliferation to EBV-B cells to which soluble TT was added for the duration of the culture period. The requirements for antigen uptake and presentation to T cells were similar for both EBV-B cells and monocytes. Both processes were energy dependent, inhibited by cold (4 degrees C), 2-deoxyglucose, and azide, and both required no de novo protein synthesis as they were not affected by pretreatment of the cells with the irreversible protein inhibitor pactamycin . Trypsin treatment of antigen-pulsed EBV-B cells and monocytes followed by fixation for 1 min in 0.03% paraformaldehyde completely abolished the capacity of both cell types to induce T cell proliferation. In both EBV-B cells and monocytes, antigen presentation, but not antigen uptake, was inhibited by the addition of the lysosomotropic agent chloroquine during the antigen-pulse period suggesting that the mechanisms of antigen processing are similar for both cell types. Vacuoles positive for acid phosphatase with an electron microscopic structure similar to that of lysosomes were found in EBV-B cells but not in resting B cells or B cells activated by T cell-derived factors. The present observations indicate that EBV-B cells take up antigen and process it in a fashion similar to monocytes. The presence of lysosomes appears to correlate with the capacity of B cells to present antigen.
Cytogenetic studies in ovarian cancer.
Cytogenetic studies of ovarian cancer have been conducted in the Medicine Branch, NCI, National Institutes of Health for 5 years. A total of 72 patients were studied by direct preparation and/or 1- to 3-day short-term culture of ascites (86 samples), pleural fluid (4 samples), and tumor (2 samples). Repeat examinations (1-24 months later) were performed in 7 of the 72 patients. Forty-four patients (62%) were successfully analyzed with banding techniques: 6 patients had adenocarcinoma, 7 had serous adenocarcinoma, 13 had serous papillary adenocarcinoma, 7 had serous papillary cystadenocarcinoma, 2 had mucinous adenocarcinoma, 6 had undifferentiated or poorly differentiated adenocarcinoma, 1 had clear cell adenocarcinoma, and 2 were not classified. Of these 44 patients, 29 had received prior chemotherapy, 14 were untreated, and in 1 patient the treatment status was unknown. Aneuploidy was observed in all patients and there was considerable variation in the chromosome numbers (even within single samples), often ranging from diploidy to triploidy to tetraploidy. All 44 patients had numerical abnormalities and 39 had structural abnormalities. The chromosomes most frequently involved in structural abnormalities (in decreasing order according to the number of patients involved) were #1, #3, #2, #4, #9, #10, #15, #19, #6, and #11; the least involved chromosomes were #21 and #5. Clone formation and the number of chromosomes involved in structural abnormalities increased with duration of disease and were more extensive in patients treated with chemotherapy than in patients treated with surgery alone. Our data did not show a deletion of chromosome #6 (6q-) to be specific for ovarian cancer.
Role of interleukin 1 in antigen-specific T cell proliferation.
The role of interleukin 1 (IL 1) in human antigen-specific T cell proliferation was examined. Nylon wool-purified T cells proliferated in the presence of autologous monocytes (Mo.) pulsed for 18 h with tetanus toxoid (TT) antigen (Mo.TT). Irradiation of Mo.TT with ultraviolet (UV) light (72 J/m2) abolished their capacity to support T cell proliferation and drastically reduced their capacity to secrete IL 1 after stimulation with Staphylococcus albus. The defect in antigen presentation induced by UV irradiation of Mo.TT was reversed in a dose-dependent manner by the addition of two different preparations containing human interleukin 1 (IL 1). The first preparation consisted of supernatants of Mo. stimulated with Con A for 18 hr and in which Con A activity was blocked by alpha-D-methyl-mannoside (Mo.-Con A-Sup). The second preparation consisted of human IL 1 partially purified from supernatants of human peripheral blood mononuclear cells stimulated with S. albus. This IL 1 copurified with human leukocyte pyrogen (LP) and was termed IL 1/LP. Both IL 1-containing preparations enhanced the response of C57BL/6 mouse thymocytes to phytohemagglutinin. A rabbit antibody to human IL 1/LP inhibited the capacity of T cells to proliferate in response to Mo.TT and inhibited the capacity of Mo.-Con A-Sup to reconstitute the T cell response to UV-irradiated Mo.TT. IL 1/LP was not necessary for T cells to recognize the immunogenic moiety presented by Mo., because monolayers of UV-irradiated Mo.TT were equivalent to monolayers of unirradiated MO.TT in their capacity to adsorb TT-reactive T cells specifically. Furthermore, the addition of rabbit antibody to IL 1/LP did not interfere with the capacity of UV-irradiated Mo.TT to adsorb TT-reactive T cells. The results obtained in this study indicate that IL 1 is involved in optimal antigen-driven proliferation of human T lymphocytes.
EBV transformed B cell lines present to antigen specific T cell clones determinants different from those recognized by antibody in an HLA-DR linked restricted fashion.
Human B cells nonspecifically activated by Epstein Barr virus (EBV) can present tetanus toxoid (TT) antigen to TT specific helper T cell lines and T cell clones. Presentation of TT antigen by EBV-B cells did not require the presence of TT specific B cells and did not involve B cell surface immunoglobulins. Immunosorbent purified antibody to TT added in great excess to EBV-B cells pulsed with TT for 18 hr did not inhibit the capacity of the EBV-B cells to present TT antigen. Furthermore, EBV-B cells induced proliferation in T cells in the presence of urea denatured TT which contained less than 1% TT reactive with serum anti TT antibody. Studies of TT presentation by a panel of EBV-B cells obtained from HLA typed donors indicated that T cell recognition of TT presented by EBV-B cells was MHC restricted by products of the HLA-D region and some of which differed from serologically defined HLA-DR. These results indicate that the immunogenic moiety presented by EBV activated human B cells consists of antigenic determinants, which differ from those recognized by serum antibody, and of HLA-DR linked MHC determinants. This moiety is similar to that presented by monocytes. The implications of these findings for the amplification of the immune response by activated B cells are discussed.
Major histocompatibility restriction of antigen recognition by T cells in a recipient of haplotype mismatched human bone marrow transplantation.
Immune T cells proliferate in response to antigen that is recognized in association with self-Ia determinants. T cells from a patient with severe combined immunodeficiency that has been successfully reconstituted with haplotype-mismatched, maternal bone marrow were studied in an attempt to understand the development of Ia restriction of antigen recognition in man. All the patient's T cells were of maternal origin as determined by HLA typing. The patient received a series of three immunizations with tetanus toxoid (TT) antigen between the 6th and 14th week posttransplant. TT-specific T cell lines were established from the patient's peripheral blood at 6 and 8 mo posttransplantation and were maintained in culture in the presence of irradiated monocytes from the patient, TT antigen, and interleukin-2. HLA typing of the two T cell lines revealed them to be exclusively of donor origin. Both T cell lines could proliferate to TT in the presence of monocytes derived from either the patient's mother or father. In contrast, a TT-specific T cell line obtained from the patient's mother proliferated to TT in the presence of autologous monocytes, but not in the presence of monocytes derived from the patient's father. Studies using monocytes from a panel of HLA-typed donors indicated that the patient's T cell lines proliferated to TT in the presence of monocytes that expressed the paternal DR antigen (HLA-DR4) inherited by the patient but not in the presence of monocytes that expressed the paternal DR antigen (HLA-DR1) not inherited by the patient or in the presence of monocytes bearing irrelevant DR antigens. Monocytes that expressed either one of the two maternal DR antigens (HLA-DR3 and DR5) could support the proliferation of the patient's T cell lines in response to TT antigen. HLA typing of the patient's monocytes at 6 mo post-transplant revealed only recipient HLA-DR antigens (HLA-DR3 and DR4). At 12 mo posttransplant, the patient's monocytes expressed recipient HLA-DR antigens as well as the non-shared HLA-DR5 antigen of donor origin. The results of the present study indicate that T cells of human bone marrow chimera recognized antigen in the context of Ia determinants of recipient origin. The apparent recognition of antigen by the chimera's T cells in the context of donor Ia determinants that were not shared with the recipient is discussed.
Antigen presentation by human B cells: T cell proliferation induced by Epstein Barr virus B lymphoblastoid cells.
T cell proliferation in response to antigen requires the presence of an antigen-presenting accessory cell. The accessory cell most commonly associated with antigen presentation has been the macrophage (Mo). This study demonstrates that B cells in the form of Epstein Barr virus-transformed B lymphoblasts (EBV-B) are able to present tetanus toxoid (TT) to human T cells and induce proliferation of these cells. T cells freshly isolated from peripheral blood were shown to undergo blast transformation and proliferation in response to TT and irradiated EBV-B cells. Furthermore, TT-reactive T cell blasts were shown to proliferate in the presence of EBV-B cells and TT, but not with other antigens. There was a progressive increase to a plateau in T blast proliferation with increasing numbers of EBV-B cells added to the culture. The concentration of TT required for optimal antigen presentation was similar for EBV-B cells and for Mo. TT-specific cloned T cells also proliferated in response to TT and EBV-B cells and could be continuously grown in culture with TT, interleukin 2-containing supernatant, and EBV-B cells in place of autologous Mo. EBV-B cells pulsed with TT could also act as antigen-presenting cells. The proliferative response of T cell clones to TT in the presence of EBV-B cells was inhibited by antiserum to human p29,34 glycoprotein but not by anti-beta 2-microglobulin. This inhibition was shown to result from interaction with Ia-like determinants on EBV-B cells. These results indicate that B lymphoblastoid cells in man are able, like Mo, to present antigen to T cells in the context of Ia-like determinants.
The breast nodule in the full-term infant and in infants born of mothers with diabetes mellitus.
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The role for translational control of the cell cycle.
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