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Biomedical subjects

D Caracciolo

Publications and source records attributed to D Caracciolo.

43 records · Page 3Linked to original sources

Establishment and characterization of an undifferentiated human T leukemia cell line which requires granulocyte-macrophage colony stimulatory factor for growth.

A human leukemia cell line (TALL-101) was established from the bone marrow of a patient with an undifferentiated acute T cell leukemia using the conditioned medium (CM) of the human T cell leukemia virus (HTLV) II-transformed human cell line J-LB1. Immunofluorescence analysis on the original leukemic cells indicated the presence of T cell markers (Leu-1, Tdt, and T11); however, the established TALL-101 cell line expressed only antigens commonly present on progenitor cells, thymocytes, and myelomonocytic cells, but not on mature T cells. A high percentage of TALL-101 cells displayed the Tac antigen which was down-regulated upon incubation in the presence of recombinant human (rH) interleukin 2 (IL 2). Interferon (IFN)-gamma induced the appearance of class II histocompatibility leukocyte antigens (HLA) and of a T cell marker (3A1), and enhanced the expression of transferrin receptors on these cells. Further evidence for a T cell lineage of the TALL-101 cell line was provided by both chromosomic and genotypic analysis showing a translocation in chromosome 14 typical of T cell leukemias, and a rearrangement of the T-beta receptor locus. The growth-promoting activity in the J-LB1-CM was identified as granulocyte-macrophage colony stimulatory factor (GM-CSF), a growth factor which stimulates proliferation of normal myelomonocytic cells and other progenitor cells, but not known to have an effect on T cells. Dose response curves of [3H]thymidine incorporation and growth indicated that TALL-101 cells were sensitive to very low concentrations of rHGM-CSF, 5 ng/ml inducing maximal proliferation in chemically defined medium. The TALL-101 cell line is strictly GM-CSF-dependent for growth: upon depletion of GM-CSF from the culture medium, the cells stop proliferating immediately and die within 1 to 2 wk. The overall data, showing that GM-CSF is able to support the growth of a highly undifferentiated T cell leukemia, strongly suggests that this factor might have similar growth promoting effects on other immature T cell leukemias, and possibly, on normal T cell progenitors.

Antigens, Differentiation, T-Lymphocyte↗

Tumor-derived growth factors that support proliferation and differentiation of normal and leukemic hemopoietic cells.

The conditioned media of 34 human tumor cell lines were screened for the ability to induce granulocyte-macrophage colonies in vitro in bone marrow cultures, to stimulate proliferation of a murine IL-3 dependent hemopoietic cell line (32D clone 3) and to stimulate thymidine incorporation in suspension cultures of acute myelogenous leukemia cells. Twelve tumor cell lines produced factors that were active in these assays. The conditioned medium of the glioblastoma cell line U87 MG was characterized in detail and found to contain G-CSF and GM-CSF. Cloning and sequencing of the U87 MG G-CSF indicated that it was derived from G-CSF b mRNA, which encodes a protein with a deletion of 3 amino acids at residues 36-38. The gene for G-CSF was mapped to human chromosome 17 band q21, a region involved in translocations frequently found in acute promyelocytic leukemia. G-CSF (U87MG) was able to induce granulocytic differentiation of the total population of a murine IL-3 dependent cell line, 32D clone 3; this effect was antagonized by IL-3. GM-CSF (U87-MG) supported the proliferation without inducing differentiation of two growth factor-dependent leukemic cell lines, TALL 101 and AML-193.

Animals↗

Growth factor requirements of childhood acute leukemia: establishment of GM-CSF-dependent cell lines.

Eight permanent cell lines were established from cells of 50 consecutive patients with childhood acute leukemia. Three cell lines required growth factor-containing conditioned media. Analysis using blocking antisera and recombinant granulocytic macrophage (GM) colony-stimulating factor (CSF) identified GM-CSF as a growth factor required to establish the latter three cell lines and necessary for their continuous proliferation in chemically defined medium. Two of the GM-CSF-dependent cell lines were derived from patients with undifferentiated T- and a biphenotypic B-myelomonocytic leukemia, which suggests that GM-CSF might maintain proliferation of leukemias originating from immature progenitor cells. Cytogenetic analysis indicated that all established leukemic cell lines were aneuploid, with six lines containing chromosomal alterations related to those observed in the leukemic cells of the patient. Two patients did not have an abnormal clone identified in the marrow but did yield an aneuploid cell line. These studies indicate that GM-CSF-dependent leukemic cell lines can be established in a fraction of childhood leukemia. These cell lines lend themselves to studies aimed at the evaluation in vitro of the role of growth factors in controlling proliferation and differentiation of leukemic cells.

Acute Disease↗

MACOP-B treatment for intermediate and high-grade non-Hodgkin's lymphomas at diagnosis and in relapse.

Between October, 1984 and October, 1987 a study program was carried out to evaluate the efficacy of MACOP-B in the advanced stages of intermediate/high-grade malignancy non-Hodgkin's lymphomas (NHL). Thirty patients were treated at diagnosis: 14 with D-E-F histology (median age = 56.5 years) and 16 with G-H histology (median age = 46.5). Complete remission (CR) rate was 42.8% for the D-E-F subgroup and 81.2% for the G-H subgroup. Bone marrow involvement was the major adverse factor for CR achievement in patients with intermediate-grade NHL. Overall, disease stage, bulky presentation and the presence of systemic symptoms did not significantly affect response to therapy. Survival curves predict 73% of patients alive at 45 months (median follow-up = 30 mo.). No significant differences were seen between D-E-F (64%; median follow-up = 36 mo.) and the G-H patients (81%; median follow-up = 27 mo.). The disease-free survival curve for all patients in CR reached a plateau phase at 78% (median follow-up = 30 mo). MACOP-B was much less effective when employed in 10 patients at relapse; only 2 out of these 10 reached a durable CR, which persisted 51 and 27 mo. after MACOP-B. The remaining 8 patients had a partial response, followed closely by disease progression: 7 died, whereas 1 patient is still alive after salvage therapy with bone marrow transplant. Thus, MACOP-B proved to be effective in patients at diagnosis with G-H histology.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

GM-CSF-exposed peripheral blood progenitors as sole source of stem cells for autologous transplantation in two patients with multiple myeloma.

Two patients (aged 52 and 44) received high-dose sequential chemotherapy followed by myeloablative therapy and autotransplantation as first line treatment of a stage III multiple myeloma with high plasmacell labelling index. Autograft was performed with peripheral blood cells collected after high-dose etoposide followed by rhGM-CSF continuous infusion. During this period very high numbers of circulating hemopoietic progenitors were detected in both patients. Prompt, complete and durable hematological recovery was observed after autograft with peripheral blood stem cells. Thus, we conclude that massively released progenitors after high-dose chemotherapy and rhGM-CSF include stem cells capable of marrow reconstitution.

Adult↗

Use of peripheral blood stem cells to accelerate hemopoietic recovery following autologous bone marrow transplantation.

Twenty-one patients with high risk non-Hodgkin's lymphoma (NHL) or Hodgkin's disease (HD) underwent autologous bone marrow transplantation (ABMT). Nine out of 21 patients received in addition to bone marrow (BM) cells also peripheral blood (PB) cells collected by leucapheresis performed in the recovery phase after high-doses of either cyclophosphamide or etoposide (7 patients), or after ara-C (2 patient). All patients receiving BM + PB cells had ABMT as salvage therapy following extensive relapse or progression of their disease. The addition of PB cells to BM cells allowed a significantly faster recovery after ABMT. Median time to reach WBC greater than 1,000/microL was 14 days versus 20.5 days for patients receiving BM only. Furthermore, a reduced requirement of supportive care and a shorter period of isolation was observed. These results confirm that PB cells combined with BM cells allow a prompt hematopoietic reconstitution after myeloablation. In addition, the data demonstrate the efficacy of PB cells collected after various cytotoxic drugs, even in patients previously exposed to cytoreductive regimens.

Adolescent↗