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Biomedical subjects

W D Peterson

Publications and source records attributed to W D Peterson.

At least 19 recordsLinked to original sources

Isolation and characterization of a spontaneously immortalized human breast epithelial cell line, MCF-10.

Two sublines of a breast epithelial cell culture, MCF-10, derived from human fibrocystic mammary tissue exhibit immortality after extended cultivation in low calcium concentrations (0.03-0.06 mM) and floating transfers in low calcium (MCF-10F), or by trypsin-Versene passages in the customary (normal) calcium levels, 1.05 mM (MCF-10A). Both sublines have been maintained as separate entities after 2.3 years (849 days) in vitro and at present have been in culture for longer than 4 years. MCF-10 has the characteristics of normal breast epithelium by the following criteria: (a) lack of tumorigenicity in nude mice; (b) three-dimensional growth in collagen; (c) growth in culture that is controlled by hormones and growth factors; (d) lack of anchorage-independent growth; and (e) dome formation in confluent cultures. Cytogenetic analysis prior to immortalization showed normal diploid cells; although later passages showed minimal rearrangement and near-diploidy, the immortal cells were not karyotypically normal. The emergence of an immortal culture in normal calcium media was not an inherent characteristic of the original tissue from which MCF-10 was derived since reactivated cryo-preserved cells from cultures grown for 0.3 and 1.2 years in low calcium were incapable of sustained growth in normal calcium.

Animals

The HuT series of 'carcinogen-transformed' human fibroblast cell lines are derived from the human fibrosarcoma cell line 8387.

In 1977 Kakunaga reported the carcinogen-induced transformation of the diploid human fibroblast cell line KD into focus-forming, morphologically altered cells. Cell lines were developed from 15 individual foci. These exhibited an infinite lifespan in culture and all those that were tested (7/7) formed malignant tumors (sarcomas) in athymic mice. The existing cell lines, designated HuT-11 to HuT-14, have been studied intensively during the past decade as examples of human fibroblasts malignantly transformed by treatment with a chemical carcinogen, 4-nitroquinoline-1-oxide. Recently, in comparing the HuT-11, HuT-12 and HuT-14 cell lines with KD cells, McCormick and Maher (Mutat. Res., 199, 273-291, 1988) found evidence that the malignant cells could not have been derived from the latter. But, this did not rule out the possibility that as the target cells for his original study of carcinogen-induced transformation, Kakunaga had inadvertently used cells from some other, unidentified normal individual. Since the donor of such cells would not be known and the original cell line was not available, it would be impossible to determine the degree of identity between such a target cell line and the HuT cell lines. However, in the course of examining methods for such testing, we recently became aware that the isozyme pattern of these HuT cell lines was identical to that of the human fibrosarcoma-derived cell line 8387 established in 1966. We here report that the HuT cell lines and the 8387 cell line also exhibit an identical series of HLA determinants and identical restriction fragment length polymorphisms (RFLPs). Assuming that each of these three assays measures independently inherited characteristics, the chance that an unrelated donor of the fibroblasts that gave rise to the HuT cell lines happened to possess characteristics identical to those of the patient whose fibrosarcoma gave rise to the 8387 cell line is 1 x 10(-8). Therefore, we conclude that 8387 cells are the source of the malignant cells designated HuT from Kakunaga's original transformation experiment. Additional RFLP analysis, using a probe made from M13 bacteriophage DNA which detects a hyperpolymorphic 'minisatellite' pattern in human DNA, also showed that DNA from HuT-14 cells and from 8387 cells exhibit identical banding patterns, indicating that the cell lines were taken from the same individual. The latter banding patterns differed from that observed with DNA from KD cells.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Enhanced G2 chromatid radiosensitivity, an early stage in the neoplastic transformation of human epidermal keratinocytes in culture.

A deficiency in DNA repair, manifest as enhanced chromatid radiosensitivity during the G2 phase of the cell cycle, together with a proliferative stimulus such as that provided by active oncogenes may be necessary and sufficient for the malignant neoplastic transformation of human keratinocytes in culture. Normal epidermal keratinocytes established as continuous cell lines by transfection with pSV3-neo or infection with adeno 12-SV40 hybrid virus developed enhanced G2 chromatid radiosensitivity after 18 passages in culture. In contrast to cells from primary or secondary culture, these cells could be transformed to malignant neoplastic cells by infection with Kirsten murine sarcoma virus containing the Ki-ras oncogene or in one line by the chemical carcinogen, N-methyl-N'-nitro-N-nitrosoguanidine; both of these agents produced a marked proliferative response. Cytological heterogeneity and karyotypic instability characterized the cells during their progression to neoplasia. These results are interpreted in terms of a mechanism for neoplastic transformation.

Animals

Suppression of lymphocyte proliferation by a nonspecific factor produced by the Burkitt lymphoma-derived lymphoblast cell line.

The DAUDI lymphoblast cell line derived from a patient with Burkitt lymphoma was obtained from two different sources. One of these (DAUDI-I) produced a factor that inhibited lymphocyte proliferation in both human and mouse regardless of the stimulator, i.e. allogeneic lymphocytes or mitogens. Glutaraldehyde treatment eliminated production of the factor and demonstrated that DAUDI-I was capable of stimulating normal lymphocytes in MLR. A second DAUDI cell line (DAUDI-S) did not produce the inhibitory factor and was capable of MLR stimulation.

Animals

Cytotoxicity of human peripheral lymphocytes in cell-mediated lympholysis; antibody-dependent cell-mediated lympholysis and natural cytotoxicity assays after mixed lymphocyte culture.

Lymphocytes that have been purified by Ficoll-Hypaque centrifugation lose antibody-dependent and natural cytotoxic activities upon culture in tissue culture medium supplemented with human plasma. However, stimulation of peripheral lymphocytes in the mixed leukocyte culture (MLC) appears to enhance killer (K) and natural killer (NK) activities in addition to generating cytotoxic T ymphocytes. Enhancement of NK and antibody dependent activities appears to correlate with cell division as measured by 3H-thymidine uptake. However, elimination of dividing cells in the MLC by addition of 5-bromodeoxyuridine has no effect on NK and K cells activities. Since this treatment abolishes cell-mediated lympholysis mediated by cytotoxic T lymphocytes, it is a useful probe for determining the relative activities of NK, K, and cytotoxic T lymphocyte effector cells after lymphocyte stimulation.

Antibody-Dependent Cell Cytotoxicity

Expression of human T lymphocyte antigens by killer cells.

K cells, the effectors of antibody-dependent cell-mediated cytotoxicity, were found to express human T but not B lymphocyte antigens detected by rabbit anti-HTLA and anti-HBLA. Pretreatment of effector cells with anti-HTLA+C inhibited ADCC by specifically lysing K cells: no inhibition of ADCC by anti-HTLA occurred when deltaC was substituted for C. By contrast, pretreatment of effector cells with anti-HBLA nonspecifically inhibited ADCC, probably for forming antigen-antibody complexes with HBLA+ cells in effector suspensions: a) treatment with anti-HBLA deltaC was more inhibitory of ADCC than treatment with anti-HBLA+C, and b) the inhibitory effect of anti-HBLA on ADCC was either eliminated or markedly reduced if effector suspensions were first passed through a nylon fiber column, a procedure that removed most HBLA+ cells without affecting K cell activity. HTLA antigens expressed by K cells and NK cells are the same as HTLA antigens expressed by thymocytes since thymocytes completely absorb the anti-K cell and NK cell reactivity of anti-HTLA.

Animals

Biologic and antigenic characteristics of Epstein-Barr virus-related Herpesviruses of chimpanzees and baboons.

Leukocyte-transforming agents were isolated in baboon leukocytes inoculated with oral excretions from immunosuppressed chimpanzees. The transformed lymphoblasts had B cell surface markers and harbored herpes-type virus particles; 5-10% of the cells contained cytoplasmic antigens reactive with Epstein-Barr virus (EBV)-antibody-positive chimpanzee, human and baboon sera. These sera also neutralized the transforming activity of the chimpanzee virus. Long-term lymphoid cell lines were established from circulating lymphocytes of normal baboons: two from Papio cynocephalus and three from P. hamadryas. The cells had B cell surface markers, contained herpes-type virus particles and produced virus with leukocyte-transforming activity. No virus-associated nuclear antigen was detectable with reference baboon and chimpanzee sera; however, the cells reacted with selected human sera containing antibodies to EBV nuclear antigen (EBNA). Absorption experiments confirmed the specificity of this reaction. Baboon lymphoblasts produced baboon virus-associated soluble complement-fixing (CF/S) antigen. Baboon sera had CF antibodies to viral (CF/V) antigen derived from EBV but failed to react with EBV-associated CF/S antigen. Chimpanzee and baboon herpesviruses had similar in vitro host cell ranges but were different from those of EBV. Inoculation of baboons, rhesus monkeys and cottontop marmosets failed to produce detectable illness or palpable tumors.

Animals

Productive Epstein-Barr viral infection of the human lymphoblastoid cell line 6410 with release of early antigen inducing and transforming virus.

The human lymphoblastoid cell line 6410 was superinfected with P3HR-1 derived Epstein-Barr virus. Subsequent to the first cycle of infection, characterized by early (EA) and virus capsid (VCA) antigen synthesis, the culture, designated 6410-EBV, continued to synthesize VCA. Further immunofluorescence and electron microscopic examination over 18-24 months showed the 6410-EBV culture to be productively infected with EBV. Virus was recovered, in quantity, from the culture fluids and assayed for ability to induce EA synthesis in Raji cells and to transform human umbilical cord lymphocytes. The virus was found to possess both properties, in contrast to P3HR-1 virus which only induces EA. HLA and karyologic analyses of P3HR-1, 6410 and 6410-EBV cultures showed relatedness of 6410-EBV to 6410 cells and dissimilarity to P3HR-1. The biologic activity data coupled with the cytologic analyses confirm a productive infection of the target cells. The reason for differences in biologic activity between the infecting (P3HR-1) and progeny virus is unresolved. It may be speculated that the endogenous EBV genome of 6410 cells was activated and gave rise to a different strain of EBV or to a mixed progeny-parent population as a result of dual infection. Alternatively, the parent strain of virus may have been modfied as a result of interaction with the new host cell.

Antigens, Viral

T and B lymphocyte antigen-positive null cell leukemias.

To clarify the nature of null cell acute lymphoblastic leukemia (ALL) we tested null lymphoblasts and other leukemic cells for human T and B lymphocyte antigens detected by reciprocally absorbed rabbit antisera prepared against autologous T and B lymphoblast cell lines HSB-2 and SB. Blasts from 4 of 4 patients with T cell leukemia and from 2 of 10 patients with null cell leukemia expressed T cell but not B cell antigens. Blasts from 8 of 10 patients with null cell leukemia, one patient with B cell leukemia, and 3 of 3 patients with acute myelogenous leukemia expressed B cell but not T cell antigens. T lymphocyte antigen-positive null cell ALL appear to be a form of T cell ALL. B antigen-positive null cell leukemia could arise from either immature B cell precursors or from multipotential stem cells.

Adolescent

Identification of T cell lymphoma tumor antigens on human T cell lines.

All human T lymphoblast cell lines have been derived from subjects with leukemia secondary to thymic lymphoblastic lymphoma, a T cell malignancy, suggesting that such lines represent established cultures of neoplastic T cells. Based on this observation, we prepared rabbit antisera to T cell line HSB-2, removed reactivity for histocompatibility antigens and normal T cells by absorption with autocthonous B cell line CCRF-SB and normal thymocytes, and tested the absorbed antisera by complement-dependent cytotoxicity against a panel of normal and malignant cells. A representative antiserum reacted with all 4 T cell lines (mean cytotoxic index =56) and with tumor cells from 4 patients with T cell lymphoma (mean cytotoxic index = 50) but did not react with tumor cells from 6 patients with other types of leukemias (mean cytotoxic index = 2), with 3 B cell lines (mean cytotoxic index = 1), normal peripheral blood lymphocytes (mean cytotoxic index = 5), or normal thymocytes (mean cytotoxic index = 6). We conclude that appropriately absorbed antisera to human T cell lines detect T cell lymphoma tumor antigens.

Antigens, Neoplasm

Identification of cells in culture.

Most laboratories using cells cultured in vitro maintain multiple cell lines. Such lines should be monitored for species and intraspecies characteristics to prevent invalidation of research work due to incidents of cell line cross-contamination. This report describes the results obtained when 246 cell cultures were examined for evidence of cross-contamination or mislabeling. Using species-specific antigens, isoenzyme electrophoresis, and chromosomes as markers of identity, 14% of the cultures submitted were found to be contaminated by cells of another species. Of human cell lines submitted 25% were of HeLa cell origin, as determined by 2 intraspecies markers, glucose-6-phosphate dehydrogenase and chromosome analyses. The fact that, overall, nearly 30% of the cell lines examined were incorrectly designated makes the importance of cell line monitoring self-evident.

Animals