Literature DB >> 3093627

Tumor necrosis factor and lymphotoxin induce differentiation of human myeloid cell lines in synergy with immune interferon.

G Trinchieri, M Kobayashi, M Rosen, R Loudon, M Murphy, B Perussia.   

Abstract

We show that the cytotoxins tumor necrosis factor (TNF) or lymphotoxin (LT), at concentrations of approximately 10(-11) M induce monocytic differentiation of human myeloid cell lines. After 5 d of culture in the presence of rTNF and LT, a significant proportion of the myeloid cell lines express monocyte differentiation antigens and ANAE activity, and become able to reduce nitroblue tetrazolium (NBT) and mediate low levels of ADCC against tumor target cells. These markers of differentiation, however, are maximally induced when rIFN-gamma, at concentrations as low as 4 U/ml, is present simultaneously with the cytotoxins, and the two classes of cytokines act synergistically to induce terminal differentiation. The appearance of monocytic antigens is accompanied by acquisition of morphology and other functional properties of mature monocytic cells, such as chemiluminescence and phagocytosis, and by expression of FcR for monomeric IgG. A decrease in cell proliferation accompanies induced differentiation, and is not due to the cytotoxic properties of TNF or LT, as indicated in simultaneous analysis of surface phenotype and cell cycle. The lack of cytotoxicity of TNF on the HL-60 cell line is also demonstrated by the enhancing effect of TNF on HL-60 cell growth and nucleoside uptake in the first 2 d of culture. These data show that the cytotoxins TNF and LT mediate complex effects on cells of the myelomonocytic lineage and, in synergy with IFN-gamma, can fully induce immature myeloid cells to differentiate into cells with phenotypic, functional, and proliferative characteristics of terminally differentiated myelomonocytic cells.

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Year:  1986        PMID: 3093627      PMCID: PMC2188407          DOI: 10.1084/jem.164.4.1206

Source DB:  PubMed          Journal:  J Exp Med        ISSN: 0022-1007            Impact factor:   14.307


  60 in total

1.  Lymphocyte antibody lymphocytolytic interaction (LALI) with special emphasis on HL-A.

Authors:  G Trinchieri; M De Marchi; W Mayr; M Savi; R Ceppellini
Journal:  Transplant Proc       Date:  1973-12       Impact factor: 1.066

2.  Lymphocyte in vitro cytotoxicity: lymphotoxins of several mammalian species.

Authors:  T W Williams; G A Granger
Journal:  Nature       Date:  1968-09-07       Impact factor: 49.962

3.  An endotoxin-induced serum factor that causes necrosis of tumors.

Authors:  E A Carswell; L J Old; R L Kassel; S Green; N Fiore; B Williamson
Journal:  Proc Natl Acad Sci U S A       Date:  1975-09       Impact factor: 11.205

4.  Primary structure of human lymphotoxin derived from 1788 lymphoblastoid cell line.

Authors:  B B Aggarwal; W J Henzel; B Moffat; W J Kohr; R N Harkins
Journal:  J Biol Chem       Date:  1985-02-25       Impact factor: 5.157

5.  Human lymphotoxin. Production by a lymphoblastoid cell line, purification, and initial characterization.

Authors:  B B Aggarwal; B Moffat; R N Harkins
Journal:  J Biol Chem       Date:  1984-01-10       Impact factor: 5.157

6.  Human tumour necrosis factor: precursor structure, expression and homology to lymphotoxin.

Authors:  D Pennica; G E Nedwin; J S Hayflick; P H Seeburg; R Derynck; M A Palladino; W J Kohr; B B Aggarwal; D V Goeddel
Journal:  Nature       Date:  1984 Dec 20-1985 Jan 2       Impact factor: 49.962

7.  Lineage infidelity of a human myelogenous leukemia cell line.

Authors:  A Palumbo; J Minowada; J Erikson; C M Croce; G Rovera
Journal:  Blood       Date:  1984-11       Impact factor: 22.113

8.  Cloning and expression of cDNA for human lymphotoxin, a lymphokine with tumour necrosis activity.

Authors:  P W Gray; B B Aggarwal; C V Benton; T S Bringman; W J Henzel; J A Jarrett; D W Leung; B Moffat; P Ng; L P Svedersky
Journal:  Nature       Date:  1984 Dec 20-1985 Jan 2       Impact factor: 49.962

9.  Gamma interferon and lymphotoxin, released by activated T cells, synergize to inhibit granulocyte/monocyte colony formation.

Authors:  M Murphy; R Loudon; M Kobayashi; G Trinchieri
Journal:  J Exp Med       Date:  1986-07-01       Impact factor: 14.307

10.  Cytotoxicity mediated by soluble antigen and lymphocytes in delayed hypersensitivity. 3. Analysis of mechanism.

Authors:  N H Ruddle; B H Waksman
Journal:  J Exp Med       Date:  1968-12-01       Impact factor: 14.307

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  53 in total

1.  Maximum likelihood estimation with binary-data regression models: small-sample and large-sample features.

Authors:  Roland C Deutsch; John M Grego; Brian Habing; Walter W Piegorsch
Journal:  Adv Appl Stat       Date:  2010-02

2.  Inhibition of tumour necrosis factor and natural cytotoxic cell lytic activities by a spleen cell-elaborated factor.

Authors:  Y Lin; P G Case; P Q Patek
Journal:  Immunology       Date:  1988-04       Impact factor: 7.397

3.  Tumor necrosis factor inhibits MYC expression in HL-60 cells at the level of mRNA transcription.

Authors:  M Krönke; C Schlüter; K Pfizenmaier
Journal:  Proc Natl Acad Sci U S A       Date:  1987-01       Impact factor: 11.205

4.  Ex vivo expansion of tumor-draining lymph node cells using compounds which activate intracellular signal transduction. II. Cytokine production and in vivo efficacy of glioma-sensitized lymphocytes.

Authors:  C D Rice; N G Baldwin; R T Biron; H D Bear; R E Merchant
Journal:  J Neurooncol       Date:  1997-03       Impact factor: 4.130

5.  Transcriptional and posttranscriptional regulation of macrophage-specific colony stimulating factor gene expression by tumor necrosis factor. Involvement of arachidonic acid metabolites.

Authors:  M L Sherman; B L Weber; R Datta; D W Kufe
Journal:  J Clin Invest       Date:  1990-02       Impact factor: 14.808

6.  An in vitro-differentiated human cell line as a model system to study the interaction of Neisseria gonorrhoeae with phagocytic cells.

Authors:  C R Hauck; D Lorenzen; J Saas; T F Meyer
Journal:  Infect Immun       Date:  1997-05       Impact factor: 3.441

Review 7.  The interleukins in acquired disease.

Authors:  M Malkovský; P M Sondel; W Strober; A G Dalgleish
Journal:  Clin Exp Immunol       Date:  1988-11       Impact factor: 4.330

8.  Biological response of guinea pig peritoneal macrophages to platelet-activating factor.

Authors:  H Hayashi; I Kudo; S Nojima; K Inoue
Journal:  Lipids       Date:  1991-12       Impact factor: 1.880

9.  Synergic action between tumor necrosis factor and endotoxins or poly(A.U) on cultured bovine endothelial cells.

Authors:  P A van de Wiel; R H Pieters; A van der Pijl; N Bloksma
Journal:  Cancer Immunol Immunother       Date:  1989       Impact factor: 6.968

10.  Antimetastatic effect of endogenous tumor necrosis factor induced by the treatment of recombinant interferon gamma followed by an analogue (GLA-60) to synthetic lipid A subunit.

Authors:  I Saiki; H Maeda; J Murata; N Yamamoto; M Kiso; A Hasegawa; I Azuma
Journal:  Cancer Immunol Immunother       Date:  1989       Impact factor: 6.968

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