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Biomedical subjects

L Schweigerer

Publications and source records attributed to L Schweigerer.

At least 37 records · Page 2Linked to original sources

[Type 1 neurofibromatosis. Molecular and clinical aspects].

The pathogenesis of neurofibromatosis type 1 (NF1) is poorly understood. However, molecular studies have identified the NF1 gene and specific mutations that contribute to the development of NF1 have been found in afflicted patients. These mutations probably result in a loss of function of the NF1 gene product, a protein named neurofibromin which is thought to attenuate exaggerated growth of neuroectodermal tissues. The results of basic research could shed new light on our understanding of the clinical symptoms of NF1 and result in new approaches to diagnosis and therapy.

DNA Mutational Analysis↗

Matrix metalloproteinase-2 and tissue inhibitor of metalloproteinase-2 expression in paediatric tumour cells. Effects of tumour cell proliferation modulators on gelatinolytic activity.

We have examined the expression of 72-kDa gelatinase/type IV collagenase or matrix metalloproteinase-2 (MMP-2) and its inhibitor, tissue inhibitor of metalloproteinase-2 (TIMP-2), in various cell lines derived from paediatric tumours. In a neuroblastoma model system of tumour progression, the expression level of MMP-2 mRNA was higher in the more malignant cell line. Surprisingly, MMP-2 was not expressed in the highly malignant rhabdomyosarcoma A-204 cell line. TIMP-2 showed higher expression levels in the 007 and U-2OS tumour cell lines than in the more malignant ones, WAC2 and A-204 cells. We have also determined the effect of some tumour cell proliferation modulators on gelatinolytic activity. While basic fibroblast growth factor and retinoic acid produced no apparent change in gelatinolytic activity, genistein induced in partial inhibition of gelatinolytic activity.

Cell Division↗

Genistein, a dietary ingested isoflavonoid, inhibits cell proliferation and in vitro angiogenesis.

Consumption of a plant-based diet can prevent the development and progression of chronic diseases that are associated with extensive neovascularization. To determine whether prevention might be associated with dietary derived angiogenesis inhibitors, we have fractionated urine of healthy human subjects consuming a plant-based diet and examined the fractions for their abilities to inhibit the proliferation of vascular endothelial cells. One of the most potent fractions contained several isoflavonoids, which we identified by gas chromatography-mass spectrometry and subsequently synthesized. Of all synthetic compounds, the isoflavonoid genistein was the most potent and inhibited endothelial cell proliferation and in vitro angiogenesis at half maximal concentrations of 5 and 150 mumol/L, respectively. Moreover, genistein inhibited the proliferation of various tumor cells. Genistein excretion in urine of subjects consuming a plant-based diet is in the micromolar range, which is 30-fold higher than that of subjects consuming a traditional Western diet. The high concentrations of genistein in urine of vegetarians and our present results suggest that genistein may contribute to the preventive effect of plant-based diet on chronic diseases, including solid tumors, by inhibiting neovascularization and tumor cell proliferation. Thus genistein may have important applications in the treatment of solid tumors and angiogenic diseases.

Animals↗

The endogenous oestrogen metabolite 2-methoxyoestradiol inhibits angiogenesis and suppresses tumour growth.

The formation of new blood vessels (angiogenesis) is critical for the growth of tumours and is a dominant feature in various angiogenic diseases such as diabetic retinopathy, arthritis, haemangiomas and psoriasis. Recognition of the potential therapeutic benefits of controlling pathological angiogenesis has led to a search for angiogenesis inhibitors. Here we report that 2-methoxyoestradiol, an endogenous oestrogen metabolite of previously unknown function, is a potent inhibitor of endothelial cell proliferation and migration as well as angiogenesis in vitro. Moreover, when administered orally in mice, it strongly inhibits the neovascularization of solid tumors and suppresses their growth. Unlike the angiostatic steroids of corticoid structure, it does not require the co-administration of heparin or sulphated cyclodextrins for activity. Thus, 2-methoxyoestradiol is the first steroid to have high antiangiogenic activity by itself. Our results suggest that this compound may have therapeutic potential in cancer and other angiogenic diseases.

2-Methoxyestradiol↗

Modulation of bovine microvascular endothelial cell proteolytic properties by inhibitors of angiogenesis.

A tightly controlled increase in extracellular proteolysis, restricted both in time and space, is an important component of the angiogenic process, while anti-proteolysis is effective in inhibiting angiogenesis. By focussing on the plasminogen activator (PA)-plasmin system, the objective of the present studies was to assess whether previously described inhibitors of angiogenesis modify bovine microvascular endothelial cell proteolytic properties. We demonstrate that although synthetic angiostatic steroids (U-24067 and U-42129), heparin, suramin, interferon alpha-2a, and retinoic acid are all inhibitors of in vitro angiogenesis, each of these agents has distinct effects on the plasminogen-dependent proteolytic system. Specifically, angiostatic steroids and interferon alpha-2a reduce urokinase-type PA (u-PA) and PA inhibitor-1 activity, while heparin and retinoic acid increase u-PA activity. Suramin reduces cell-associated u-PA activity and greatly increases PAI-1 production at doses which induce monolayer disruption. These findings demonstrate that a spectrum of alterations in extracellular proteolysis is associated with anti-angiogenesis, and that anti-angiogenesis and anti-proteolysis are not necessarily correlated. A reduction in extracellular proteolysis would be expected to reduce invasion, whereas an increase in proteolysis might modulate the activity of inhibitory cytokines, which in turn could reduce endothelial cell proliferation and migration and inhibit angiogenesis. The spectrum of effects on different elements of the PA system observed in response to the agents assessed suggests that the role of modulations in extracellular proteolytic activity in anti-angiogenesis is likely to be varied and complex.

Adrenal Cortex↗

Ascorbic acid is cytotoxic for pediatric tumor cells cultured in vitro.

2 mM Ascorbic acid has a potent cytotoxic effect on neuroblastoma, osteosarcoma, retinoblastoma, and rhabdomyosarcoma cells cultured in vitro. At a lower concentration (0.2 mM), ascorbic acid remains highly cytotoxic for neuroblastoma, osteosarcoma and retinoblastoma cells, but it has a stimulatory effect on the growth of rhabdomyosarcoma cells.

Antineoplastic Agents↗

Genistein, a dietary-derived inhibitor of in vitro angiogenesis.

Consumption of a plant-based diet can prevent the development and progression of chronic diseases that are associated with extensive neovascularization; however, little is known about the mechanisms. To determine whether prevention might be associated with dietary-derived angiogenesis inhibitors, we have fractionated urine of healthy human subjects consuming a plant-based diet and examined the fractions for their abilities to inhibit the proliferation of vascular endothelial cells. Using gas chromatography-mass spectrometry, we showed that one of the most potent fractions contained several isoflavonoids, which we subsequently synthesized. Of all synthetic compounds, the isoflavonoid genistein was the most potent and inhibited endothelial cell proliferation and in vitro angiogenesis at concentrations giving half-maximal inhibition of 5 and 150 microM, respectively. As we have previously demonstrated, genistein concentrations in urine of subjects consuming a plant-based diet are in the micromolar range, while those of subjects consuming a traditional Western diet are lower by a factor of > 30. The high excretion of genistein in urine of vegetarians and our present results suggest that genistein may contribute to the preventive effect of a plant-based diet on chronic diseases, including solid tumors, by inhibiting neovascularization. Thus, genistein may represent a member of a new class of dietary-derived anti-angiogenic compounds.

Adrenal Cortex↗

A plasma membrane redox system in human retinoblastoma cells.

Y79 human retinoblastoma cells have a high capacity to reduce ascorbate autooxidation rates through the reduction of the ascorbate free radicals generated in the oxidation process. Responsible of this capacity is a plasma membrane redox system, which might be functionally related to the Na+/H+ antiporter. Ascorbate has cytotoxic effect on Y79 cells in long-term incubations in the presence of limited amounts of serum in the medium.

Ascorbic Acid↗

Plasma membrane redox activity correlates with N-myc expression in neuroblastoma cells.

In different neuroblastoma cell lines and transfected clones, an increasing plasma membrane redox activity correlates with amplification and enhanced expression of the N-myc oncogene. Furthermore, plasma membrane redox activity is partially inhibited by retinoic acid in neuroblastoma cells with multiple copies of the N-myc oncogene but not in neuroblastoma cells with only one copy of this gene.

Cell Membrane↗

Angiogenesis and angiogenesis inhibitors in paediatric diseases.

Angiogenesis, the generation of new capillaries from existing blood vessels, is rarely observed in the healthy organism, but can present during various paediatric diseases. In this review, we describe recent progress in the understanding of pathological angiogenesis and approaches for an improved therapy of angiogenic childhood diseases.

Angiogenesis Inducing Agents↗

Identification in human urine of a natural growth inhibitor for cells derived from solid paediatric tumours.

Partially purified urine of healthy human subjects contains several fractions able to inhibit the proliferation of cultured human neuroblastoma cells. One of the most active fractions was further analysed by gas chromatography-mass spectrometry and shown to contain genistein, a substance formed in the human body from precursors obtained by diet. Synthetic genistein was able to inhibit the proliferation of human neuroblastoma cells with a half-maximal effect at 5-10 mumol l-1 concentrations. Genistein displayed similar potencies in inhibiting the proliferation of cells derived from various other solid pediatric tumours. Our results suggest that genistein is a natural antineoplastic agent present in diet and that it could be useful for the therapy of paediatric tumours.

Cell Division↗

Enhanced MYCN oncogene expression in human neuroblastoma cells is associated with altered FGF receptor expression and cellular growth response to basic FGF.

We have examined the effect of human basic fibroblast growth factor (bFGF) on the proliferation of human neuroblastoma cells with normal and enhanced MYCN oncogene expression. bFGF stimulated the proliferation of the neuroblastoma cells with enhanced, but not normal, MYCN expression. Both cell species express FGFR-1, but not FGFR-2, receptors and both harbor FGF receptor species of Mr 145.000, but they differ in their pattern of lower and higher-molecular weight FGF receptor species. Our results demonstrate that enhanced MYCN expression confers to neuroblastoma cells the ability to respond to bFGF, possibly by inducing functional FGF receptors. This mechanism may contribute to the advanced malignant phenotype of human neuroblastomas with enhanced MYCN expression.

Blotting, Northern↗

Enhanced MYCN oncogene expression in human neuroblastoma cells results in increased susceptibility to growth inhibition by TNF alpha.

Human neuroblastoma cells with normal expression of the endogenous MYCN oncogene were transfected with a vector containing an exogenous MYCN gene. The transfected cells expressed the exogenous MYCN at high levels and had acquired a phenotype resembling that of cells from advanced human neuroblastomas. Proliferation of the MYCN-transfected, but not of the untransfected, neuroblastoma cells was inhibited by low concentrations of recombinant human tumor necrosis factor alpha (TNF alpha). Our results suggest that TNF alpha could be useful for the treatment of advanced human neuroblastomas, in which high MYCN expression seems to be a causative factor.

Cell Division↗

Augmented MYCN expression advances the malignant phenotype of human neuroblastoma cells: evidence for induction of autocrine growth factor activity.

Amplification and enhanced expression of the MYCN oncogene are thought to contribute to the development and progression of human neuroblastomas. Here, we have transfected human neuroblastoma cells that harbor a single MYCN gene copy with the human MYCN gene driven by a viral enhancer/promoter, and we have compared the properties of the parental and the transfected cells. The transfected cells show an enhanced expression of the exogenous MYCN gene. Unlike the parental cells, they have acquired an increased proliferative potential, induce tumors in nude mice, grow in soft agar, and require low amounts of exogenous growth factors in order to proliferate. The MYCN-transfected, but not the parental, cells can synthesize and utilize autocrine growth factor activity. These results demonstrate that enhanced MYCN expression contributes to malignant progression of human neuroblastoma cells, conceivably by stimulating the expression of autocrine growth factor activity.

Animals↗

Fibroblast growth factor and angiogenesis.

Basic and acidic fibroblast growth factors (bFGF and aFGF, respectively) are prototypes of the family of fibroblast growth factors which also includes products of the HSTF1/KS3, INT2 and FGF5 oncogenes. bFGF and aFGF have a broad spectrum of tissue distribution, target cells and bioactivities. Both factors also stimulate the migration and proliferation of capillary endothelial cells, a process named angiogenesis. It is conceivable that bFGF and aFGF contribute in as essential manner to angiogenesis. These properties may have therapeutical implications.

Arteriosclerosis↗