Isolation of a nitric oxide inhibitor from mammary tumor cells and its characterization as phosphatidyl serine
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Summary
It is reported that the DA-3 tumor cell line, derived from the in vivo adenocarcinoma D1-DMBA-3, produces a factor that inhibits both NO production/release and cytotoxicity of LPS-activated peritoneal exudate macrophages (PEM).
- Type
- article
- Published
- 1994-09-01
- Cited by
- 85
- References
- 65
- Access
- Open access
- OpenAlex
- https://openalex.org/W2050419005
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:15237779
Keywords
Nitric oxide, Lipopolysaccharide, Macrophage, Biochemistry, Cytotoxicity
References
- Characterization of metastatic heterogeneity among subpopulations of a single mouse mammary tumor: heterogeneity in phenotypic stability.
- Gas chromatography and lipids : a practical guide
- Manual of macrophage methodology : collection, characterization, and function
- Inhibition of lymphokine-induced macrophage microbicidal activity against Leishmania major by liposomes: characterization of the physicochemical requirements for liposome inhibition.
- Insertion of fluorescent phosphatidylserine into the plasma membrane of red blood cells. Recognition by autologous macrophages.
- Effect of a chimeric anti-ganglioside GD2 antibody on cell-mediated lysis of human neuroblastoma cells.
- Macrophage activation for tumor cytotoxicity: development of macrophage cytotoxic activity requires completion of a sequence of short-lived intermediary reactions.
- Macrophage stimulation by bacterial lipopolysaccharides. III. Selective unresponsiveness of C3H/HeJ macrophages to the lipid A differentiation signal.
- Expansion of immunoregulatory macrophages by granulocyte-macrophage colony-stimulating factor derived from a murine mammary tumor.
- A SIMPLE, SPECIFIC SPRAY FOR THE DETECTION OF PHOSPHOLIPIDS ON THIN-LAYER CHROMATOGRAMS.
- Quantitative estimation of sialic acids. II. A colorimetric resorcinol-hydrochloric acid method.
- Traces of bacterial lipopolysaccharide suppress IFN-gamma-induced nitric oxide synthase gene expression in primary mouse macrophages.
- Phosphatidylserine enhances the ability of epidermal Langerhans cells to induce contact hypersensitivity.
- Activated macrophages destroy intracellular Leishmania major amastigotes by an L-arginine-dependent killing mechanism.
- L-arginine is required for expression of the activated macrophage effector mechanism causing selective metabolic inhibition in target cells.
- Growth inhibition of Francisella tularensis live vaccine strain by IFN-gamma-activated macrophages is mediated by reactive nitrogen intermediates derived from L-arginine metabolism.
- Epidermal growth factor suppresses nitric oxide and hydrogen peroxide production by keratinocytes. Potential role for nitric oxide in the regulation of wound healing.
- Aberrant glycosylation in cancer cell membranes as focused on glycolipids: overview and perspectives.
- Protein measurement with the Folin phenol reagent.
- Shedding of GD2 ganglioside by human neuroblastoma
Cited by
- Influence of Breast Cancer on Thymic Function in Mice
- Suppression of macrophage function by substances with a molecular weight lower than 3000 Da in B16 melanoma-conditioned medium.
- Phosphatidylserine induces apoptosis in adherent cells
- The hemicellulose preparation, Natramune (PDS-2865), increases macrophage phagocytosis and nitric oxide production and increases circulating human lymphocytes levels.
- 3 Brain Phosphatidylserine: Metabolism and Functions
- Regulation of cancer metastasis by stress pathways
- Nitric oxide: physiological roles, biosynthesis and medical uses.
- Therapy of cancer metastasis by activation of the inducible nitric oxide synthase
- Phosphatidylserine translocation in mammalian cells
- A Novel Phosphatidylserine-binding Peptide Motif Defined by an Anti-idiotypic Monoclonal Antibody
- CD4+, but not CD8+, T cells from mammary tumor-bearing mice have a down-regulated production of IFN-gamma: role of phosphatidyl serine.
- Immunomodulatory role of flagellin in antigen-presenting cells
- Dichotomy of Nitric Oxide in Cancer Biology and its Therapeutic Implications
- Decreased accumulation of immune regulatory cells is correlated to the antitumor effect of IFN-γ overexpression in the tumor.
- Interleukin 12 primes macrophages for nitric oxide production in vivo and restores depressed nitric oxide production by macrophages from tumor-bearing mice: implications for the antitumor activity of interleukin 12 and/or interleukin 2.
- Cutting edge: differential effect of apoptotic versus necrotic tumor cells on macrophage antitumor activities.
- Functional analysis of Chinese hamster phosphatidylserine synthase 1 through systematic alanine mutagenesis.
- Does [meso‐1,2‐Bis(2,6‐dichloro‐4‐hydroxyphenyl)ethylenediamine]‐dichloro‐platinum(II) Act as an Immune Response Modifier? Part III: Progressively Growing MXT‐M‐3,2 Breast Cancer Stimulates the Proliferation of Phagocytes in B6D2F1 Mice
- Nitric oxide synthases: roles, tolls, and controls.
- Surfactant phospholipid metabolism
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