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Biomedical subjects

F A Offner

Publications and source records attributed to F A Offner.

29 records · Page 2Linked to original sources

Transforming growth factor-beta synthesis by human peritoneal mesothelial cells. Induction by interleukin-1.

Peritoneal mesothelial cells are uniquely located to regulate cellular events in the peritoneal cavity and are a potentially important source for various cytokines. The present study was designed to elucidate the capacity of human peritoneal mesothelial cells (HPMCs) to synthesize and secrete the transforming growth factor (TGF)-beta isoforms 1, 2, and 3 and to characterize their regulation by inflammatory cytokines. HPMCs constitutively released appreciable amounts of TGF-beta 1 and low amounts of TGF-beta 2 as detected by specific immunoassays. TGF-beta 1 levels secreted within 48 hours (45 +/- 8.9 pg/10(5) cells) were 60-fold higher than TGF-beta 2 levels (0.9 +/- 0.1 pg/10(5) cells), respectively. Treatment of HPMCs with interleukin (IL)-1 beta (10 ng/ml) resulted in a significant increase of both TGF-beta 1 (mean, 5-fold; P < 0.001) and TGF-beta 2 (mean, 6-fold; P < 0.01) generation. After 48 hours of IL-1 beta treatment the levels were 185 +/- 17.1 pg/10(5) cells for TGF-beta 1 and 5.3 +/- 1.5 pg/10(5) cells for TGF-beta 2, respectively. Neither tumor necrosis factor (TNF)-alpha nor interferon (IFN)-gamma (both 10 ng/ml) affected TGF-beta 1 or TGF-beta 2 synthesis by HPMCs. TGF-beta 3 could not be detected in any of the supernatant media. Stimulation of HPMCs with IL-1 beta increased steady-state levels of TGF-beta 1- and TGF-beta 2-specific mRNA. Western blot analysis of supernatants revealed the presence of an immunoreactive band at 25 kd. Indirect competition assays confirmed receptor-binding activity of HPMC-derived TGF-beta. Appreciable amounts of TGF-beta were present in a bioactive form. Our results demonstrate that HPMCs synthesize the TGF-beta isoforms 1 and 2 and that the levels of mRNA and protein release can be up-regulated by the proinflammatory cytokine IL-1 beta.

Base Sequence↗

IL-6 secretion by human peritoneal mesothelial and ovarian cancer cells.

Malignant ascites of epithelial ovarian cancer patients contains high levels of interleukin 6 (IL-6). The present study was conducted to compare the secretion of IL-6 by seven different human ovarian cancer cell lines (OVCA) and cultured human peritoneal mesothelial cells (HPMC) and to examine the regulation of its production by other cytokines. IL-6 was detected in supernatant medium of all mesothelial cell cultures (8/8) and 6/7 ovarian cancer cell lines. Levels of IL-6 secreted by HPMC (median 27,100 pg/1 x 10(5) cells; range 3870-168,200) were 590-fold higher (P < 0.01) than those secreted by OVCA (median 46 pg/1 x 10(5) cells; range 0-16,450). Treatment with TNF-alpha or IL-1 beta (both 10 ng/ml) for both types of cells and both cytokines resulted in a significant (P < 0.05) elevation of IL-6 production. In OVCA IL-6 secretion was increased 7- and 39-fold and in HPMC 6- and 8-fold, respectively. Under TNF-alpha treatment IL-6-levels secreted by HPMC were 149-fold higher (P < 0.01) than those generated by OVCA. Similarly, IL-1 beta-induced IL-6 levels were 102-fold higher in HPMC (median 288,800 pg/1 x 10(5) cells; range 93,125-552,800) than in OVCA. IFN-gamma (10 ng/ml) increased IL-6 generation in OVCA (6-fold) but not HPMC. The proliferation of both cell types however, was significantly (P < 0.05) inhibited by IFN-gamma. Our results suggest that peritoneal mesothelial cells may be a prominent source of IL-6 in ovarian cancer-related ascites.

Ascites↗

Interaction of human malignant melanoma tumor spheroids with endothelium and reconstituted basement membrane: modulation by RGDS.

Tumor-cell extravasation involves sequential adhesive interactions with vascular endothelium and the subendothelial basement membrane. We have established a 3-dimensional model in vitro to simulate these events and to elucidate targets of the anti-cell-adhesive synthetic peptide RGDS. Tumor spheroids of the melanoma cell line ST-ML-12 served as models of tumor-cell emboli and were transferred onto human umbilical vein endothelial cells. To imitate the vascular anatomy, the latter were grown on reconstituted basement membranes produced by dextran-stimulated bovine corneal endothelial cells. RGDS did not affect the homotypic aggregation of the tumor cells and only minimally inhibited the attachment of the spheroids to the reconstituted vessel. A short-term (20 min) inhibition of adhesion to denuded basement membranes was observed. The attachment was closely associated with damage to the endothelial cells by oxygen-derived free radicals. RGDS retarded endothelial injury for up to 3 hr. The most prominent effect was observed after penetration of the endothelium. RGDS suppressed the emigration of tumor cells from the attached tumor-cell cluster in a dose- and time-dependent fashion. After 12 hr, the inhibitory effect progressively declined. This was not due to loss of activity of the peptide, indicating a resistance mechanism in the melanoma cells. On purified components of the basement membrane, RGDS effectively inhibited the initial spheroid attachment to fibronectin and collagen IV but had no effect on attachment to laminin. By contrast, subsequent migration was significantly suppressed on all substrata. Our model permits the study of dynamic cell-cell and cell-extracellular-matrix interactions and indicates that RGDS might predominantly act on early tumor-cell locomotion after penetration of the endothelium.

Basement Membrane↗

[Proliferative activity and p53 expression in transitional cell carcinoma of the urinary bladder].

Mutations of the p53 gene are important mechanisms in malignant transformation and are associated with dysregulation of normal cell growth. In the present study the expression of mutated p53-protein and proliferating cell nuclear antigen (PCNA) was investigated in a series of 31 human transitional cell carcinomas (TCC) by immunohistochemistry (IHC). The number of PCNA-positive cells and the pattern of expression was distinct in normal urothelium being confined to the basal cell layer. In dysplastic urothelium and in Carcinoma in situ (CIS) PCNA-immunoreactive nuclei were irregularly distributed throughout all layers. In tumor cell complexes the pattern of PCNA-immunoreactivity was different in papillary and primary infiltrating TCCs. Densitometric quantification of the intensity of the PCNA-reactivity using image analysis revealed an increase from normal to dysplastic urothelium and from dysplastic urothelium to invasive tumors. 21/31 (68%) of the tumors and tumor-associated CIS showed overexpression of p53 varying in percentage, pattern and reaction intensity. The percentage of PCNA-positive cells was higher in tumors overexpressing p53. Double IHC showed colocalization of both molecules in a significant proportion of tumor cells suggesting a link of p53 overexpression and the abnormal proliferative activity. The present results show that p53 over-expression is found in a significant percentage of TCCs and indicate a close association with a defective growth regulation resulting in increased PCNA-levels and enhanced cellular proliferation.

Analysis of Variance↗

Interaction of human malignant melanoma (ST-ML-12) tumor spheroids with endothelial cell monolayers. Damage to endothelium by oxygen-derived free radicals.

Clinical and experimental observations suggest that tumor-induced endothelial cell injury may be one of several initial events in the establishment of tumor metastases. To test this hypothesis, the authors have analyzed the interaction of malignant melanoma (ST-ML-12) multicenter tumor spheroids with endothelial cell monolayers in a three-dimensional coculture system. After 1.5 hours of interaction, the authors observed a toxic effect on endothelial cells in the perispheroid region. The latter was demonstrated by testing membrane integrity with the fluorescent probes acridine orange/ethidium bromide and resulted in sensitivity to shear stress of the damaged cells. The endothelium then underwent a regenerative cycle to replace the denuded halo. Addition of the oxygen radical-scavenging enzyme superoxide dismutase to the culture medium prevented this endothelial cell damage in a dose-dependent manner for up to 12 hours. By contrast, catalase, deferoxamine mesylate, allopurinol, and the proteinase inhibitors soybean trypsin inhibitor and aprotinin were not protective under the same conditions. The endothelial damage was dependent on the attachment of the spheroids. Medium conditioned by ST-ML-12-spheroids proved to be ineffective. A similar, but less prominent, deleterious effect was seen when human peritoneal mesothelial cells were used in place of the human umbilical vein endothelial cells. Spheroids of the uroepithelial cell line HU-609 were used as control. No toxicity was observed in these cocultures. Melanin biosynthesis is associated with the production of oxygen-derived free radicals. The results suggest a possible implication of these free radicals in metastasis formation of malignant melanoma.

Cell Communication↗

Characterization of the new bladder cancer cell line HOK-1: expression of transitional, squamous and glandular differentiation patterns.

The new continuous cell line HOK-1 derived from a grade-III transitional-cell bladder carcinoma with foci of squamous and glandular differentiation was shown to retain this phenotypical heterogeneity for more than 45 passages in vitro. Electron microscopy revealed transitional as well as a considerable proportion of squamous carcinoma and adenocarcinoma cells. PAS-positive mucus was detected in numerous cells. These features were principally maintained when grown as multicellular spheroids and in nude mice. More pronounced signs of differentiation (i.e., expression of cytokeratins 10 and 11, formation of glandular structures) were found in xenograft tumours. Independently, cytokeratins 13, 18 and 19 were detected in vitro and in vivo, reflecting the urothelial origin. The line forms distinct colonies in soft agar, expresses Lewis-x and Lewis-y antigens and reacts with monoclonal antibodies (MAbs) against CEA, beta-HCG and URO-5. Cytogenetic analysis revealed several related clones with a rearrangement at chromosome 1 and loss of one X chromosome as common karyotypic changes in all clones. DNA content, as quantified by image analysis, showed a DNA stemline close to 2c. The new cell line HOK-1 can be used as an in vitro model to study the mechanisms of heterogeneous differentiation patterns in bladder cancer.

Aged↗

AL 721: a potent membrane modulating agent of human T-lymphocytes?

This report deals with AL 721, a reputedly potent membrane fluidizing agent. A correlation has been sought between the effects of AL 721 on membrane fluidity and mitogen responsiveness of human peripheral blood lymphocytes. The AL 721-induced increase in membrane "fluidity", as measured by fluorescence polarisation with 1,6-diphenyl-1,3,5-hexatriene, was found to be an artefact arising from lipid uptake by monocytes. Mitogen responses were enhanced by inclusion of AL 721 in the serum-free culture medium. However, this observation is more likely explained by provision of lymphocytes with nutritional lipids required for optimal growth in vitro, than altered responsiveness of "fluidized" lymphocytes.

Adolescent↗

Peritoneal mesothelial cells as a significant source of ascitic immunostimulatory protein 90K.

The tumor associated antigen 90K is known to possess cytokine-like modulatory properties on the cellular immune system, whereby accessory cells are the primary target of this molecule. In 67 ovarian cancer patients presenting with significant amounts of ascites, immunostimulatory protein 90K was detected in all ascitic fluid samples examined. Furthermore, 90K levels correlated to ascitic s-IL-2R content. To elucidate the source of protein 90K in ascitic fluid; its in vitro release was investigated in primary cultured normal human peritoneal mesothelial cells (HPMC). Peritoneal mesothelium was found to produce five-fold more 90K than ovarian cancer cells. Release of protein 90K was significantly increased by treatment with IFN-gamma in both mesothelial and ovarian cancer cells. In contrast neither IL-1 beta nor TNF-alpha treatment consistently influenced the secretion of 90K in either cell type.

Adult↗

Modulation of CA-125 release by inflammatory cytokines in human peritoneal mesothelial and ovarian cancer cells.

In the present study the modulatory effects of inflammatory cytokines, interleukin-1 beta (IL-1 beta), tumor necrosis factor-alpha (TNF-alpha) and interferon-gamma (IFN-gamma), on CA-125 release in established ovarian cancer cell lines and in human peritoneal mesothelial cells (HPMC) both grown as monolayers, were investigated. The purity of mesothelial cell cultures were confirmed by the positivity of the cells for vimentin and cytokeratins 8 and 18, and their negativity for markers CD34 and CD68, thus excluding contamination by endothelial cells and macrophages. The preliminary results of CA-125 measurements in the culture medium clearly indicated differences in the pattern of CA-125 expression and release between normal and malignant cells under the influence of inflammatory cytokines. Furthermore, it seems that normal mesothelial cells play a crucial role as a source of CA-125 found in ascitic fluid or in pleural effusions and possibly even in the serum since secretion of this tumor marker into the culture medium was found to be significantly higher in HPMC than in ovarian cancer cells.

CA-125 Antigen↗