References of "Anticancer Research"
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See detailCytological effects of culture media conditioned B16 melanoma cells and 3T3 fibroblasts
Coucke, Paul; Siwek, B.; De Pauw-Gillet, Marie-Claire ULiege et al

in Anticancer Research (1991), 11(2), 801-804

Cytotoxic soluble fractions (M.W.<1,000) were prepared from media conditioned by mixed cultures of 3T3 fibroblasts and B16 cells. The ultrastructural analyses of cells (B16 or 3T3) treated with these ... [more ▼]

Cytotoxic soluble fractions (M.W.<1,000) were prepared from media conditioned by mixed cultures of 3T3 fibroblasts and B16 cells. The ultrastructural analyses of cells (B16 or 3T3) treated with these fractions revealed in them mitochondria swelling, blebs, broken membranes and dead cells. [less ▲]

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See detailCytotoxic and mitogenic activities in culture media conditioned by mouse B16 melanoma cells and 3T3 fibroblasts
Siwek, Brigitte; Wauthy, Jacques ULiege; Coucke, Paul et al

in Anticancer Research (1991), 11(2), 755-759

Cytotoxic (M.W.< 1000) and mitogenic (M.W.>10000) soluble factors are released into media conditioned by pure or mixed populations of mouse 3T3 fibroblasts and B16 melanoma cells cutivated in vitro. They ... [more ▼]

Cytotoxic (M.W.< 1000) and mitogenic (M.W.>10000) soluble factors are released into media conditioned by pure or mixed populations of mouse 3T3 fibroblasts and B16 melanoma cells cutivated in vitro. They are generally more active on B16 than on fibroblasts. [less ▲]

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See detailEffects of FeSO4 on B16 melanoma cells differentiation and proliferation
De Pauw-Gillet, Marie-Claire ULiege; Siwek, Brigitte; Pozzi, G. et al

in Anticancer Research (1990), 10(4), 1029-1033

The paper shows that FeS04 can increase or reduce B16 cell proliferation and melanogenesis. Vitamin C toxicity for B16 cells was reduced in the presence of FeSO4.

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See detailControl of B16 mealnoma cells differentiation and proliferation by CuSO4 and vitamin C
De Pauw-Gillet, Marie-Claire ULiege; Siwek, Brigitte; Pozzi, G. et al

in Anticancer Research (1990), 10(2A), 391-405

The paper demonstrates that the toxicity of CuSO4 in B16 melanoma cells is increased in serum-free medium and in the presence of Vitamin C. Vitamin C toxicity for B16 cells was increased in the presence ... [more ▼]

The paper demonstrates that the toxicity of CuSO4 in B16 melanoma cells is increased in serum-free medium and in the presence of Vitamin C. Vitamin C toxicity for B16 cells was increased in the presence of CUS04. [less ▲]

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See detailIdentification of cytotoxic factors in media conditioned by mouse B16 melanoma cells
Siwek, Brigitte; De Pauw-Gillet, Marie-Claire ULiege; Sabbioni, Enrico et al

in Anticancer Research (1990), 10(5B), 1390

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See detailInfluence of laminin and fibroblasts upon colony formation in the mouse by B16 melanoma cell spheroids
de Leval, Laurence; Leyh, Philippe; Grégoire, Dominique et al

in Anticancer Research (1990), 10(5B), 1447

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See detailAnalysis of tridimensional mixed cultures of mouse B16 melanoma cells and 3T3 fibroblasts.
De Pauw-Gillet, Marie-Claire ULiege; Christiane, Y.; Foidart, Jean-Michel ULiege et al

in Anticancer Research (1988), 8(1), 153-60

The interactions between invasive malignant cells and normal fibroblastic cells were studied in a cellular spheroid model in vitro. Murine B16 melanoma cells (previously cultured in monolayer for a short ... [more ▼]

The interactions between invasive malignant cells and normal fibroblastic cells were studied in a cellular spheroid model in vitro. Murine B16 melanoma cells (previously cultured in monolayer for a short period) and 3T3 mouse fibroblasts (greater than or equal to 130 passages in monolayers) were cultured under tridimensional conditions (pure or mixed spheroids). As compared to pure 3T3 or mixed spheroids, B16 spheroids were smaller and characterized by a higher proliferation rate, a lower degree of necrosis, and a less abundant extracellular matrix. Disintegration was observed in some pure 3T3 or mixed spheroids. Melanogenesis progressively increased inside B16 or mixed spheroids. By immunohistochemical methods and electron microscopy, laminin, fibronectin and collagen I, III and IV in extracellular matrix were studied in the three types of spheroids. [less ▲]

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