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G Lizard

Publications and source records attributed to G Lizard.

At least 37 records · Page 2Linked to original sources

Induction of similar features of apoptosis in human and bovine vascular endothelial cells treated by 7-ketocholesterol.

Cholesterol oxides have numerous cytotoxic effects and those oxidized in the C7 position have been shown to induce apoptosis in bovine aortic endothelial cells (BAEC). The aim of the present study was to determine whether apoptosis also occurs in human vascular endothelial cells (HUVEC) treated with 7-ketocholesterol. To this end, cultured BAEC and HUVEC were incubated for 48 h with 7-ketocholesterol (concentration range 5-80 micrograms/ml) and the characteristics of cell death were assessed by various methods: counting of adherent and non-adherent cells; analysis of DNA fragmentation pattern; and morphological study by light, fluorescence, and electron microscopy. The 7-ketocholesterol treatment was accompanied by a decrease in the number of adherent cells and an increase in the number of non-adherent cells. Apoptotic cells, recognized by fragmented and/or condensed nuclei after staining with Hoechst 33342 or Giemsa, were mainly detected among non-adherent cells, and agarose gel electrophoresis revealed a typical internucleosomal DNA fragmentation among 7-ketocholesterol-treated cells. The DNA fragmentation was no longer detected when HUVEC and BAEC were simultaneously incubated with 0.5 mmol/l zinc chloride, which is known to inhibit Ca2+/Mg(2+)-dependent endonucleases. Finally, the ultrastructural abnormalities observed by electron microscopy in both 7-ketocholesterol-treated HUVEC and BAEC were remarkably similar and were mainly characterized by condensed chromatin, altered mitochondria, disturbed organization of the cytoskeleton, and vacuoles containing myelin figures and/or cell debris; apoptotic bodies were also frequently detected. It is concluded that 7-ketocholesterol constitutes a potent inducer of apoptosis in endothelial vascular cells of both bovine and human origin, suggesting that cholesterol oxides may be involved in the early steps of the atherosclerotic process in humans.

Animals↗

Detection of human papillomavirus DNA in genital lesions by enzymatic in situ hybridization with Fast Red and laser scanning confocal microscopy.

Human papillomavirus (HPV) infection with potentially oncogenic types 16 or 18 is common in genital lesions especially in uterine carcinomas. In such lesions, in situ hybridization with non-radioactive probes is a powerful tool for the histopathologist to detect and type HPV DNA either on cell deposits or on tissue sections. The use of an immunohistochemical method involving alkaline phosphatase and Fast Red TR salt/naphthol AS-MX phosphate is proposed for use with conventional bright-field or fluorescence microscopy as well as by laser scanning confocal microscopy. The alkaline phosphatase-Fast Red reaction has the advantage of producing a red precipitate that permits the detection of in situ hybridization signals by bright-field microscopy, and of obtaining a strong red fluorescence characterized by a lack of bleaching when excited by a green light. Therefore, the alkaline phosphatase-Fast Red reaction is well adapted for observations by fluorescence and confocal microscopy, the latter method allowing the detection, in tissue sections of cervical intraepithelial lesions, of small punctate and large diffuse hybridization signals, considered as integrated and episomal states of HPV DNA respectively. The combination of in situ hybridization with the alkaline phosphatase-Fast Red reaction and confocal microscopy is particularly convincing when hybridization signals are of small size and/or of low fluorescence intensity, especially if they are present in various focal planes; in such conditions, infected cells are easily detected by three-dimensional reconstruction. Therefore, this combination is a suitable method for identifying and characterizing HPV DNA in cells and tissue sections.

Coloring Agents↗

Comparative evaluation of the antiproliferative effect of cyclosporin A and gamma-interferon on normal and HPV-transformed keratinocytes by cell counting, MTT assay and tritiated thymidine incorporation.

We compared three techniques, the MTT tetrazolium assay, cell counting, and tritiated thymidine ([3H]TdR) incorporation assay to measure the antiproliferative effect of cyclosporin A (CsA) and interferon-gamma (IFN-gamma) on normal human skin keratinocyte cultures (NHK) used at the second passage and human papilomavirus type 16- and 18-transformed cell lines (EK16 and EK18) exposed continuously to the drugs for 3 days. The three techniques showed that under CsA (0.5 and 8 micrograms/ml) and IFN-gamma (5 and 160 U/ml) treatments the cells remained viable and that the growth of keratinocytes was inhibited. For IFN-gamma, the MTT colorimetric assay consistently underestimated its growth inhibitory activity as compared to cell counting or [3H]TdR incorporation, whatever the cells used. For high doses of CsA, MTT and cell counting gave similar percentages, of inhibitory activity whatever the cells; MTT underestimated this activity as compared to [3H]TdR incorporation only in NHK and EK18 cells, whereas similar results were obtained with EK16 cells. In conclusion, this investigations shows that MTT sensitivity differed with the drug and also according to the keratinocyte cultures. The MTT test is clearly not appropriate for study of IFN-gamma treatment whatever the keratinocytes used. Such discrepancies indicate that the MTT test should be done with care on cultures to measure the effects of drugs on cell growth; the growth inhibition should be carefully considered and it would be best if two different methods were used.

Adult↗

[Flow cytometry measurement of DNA fragmentation in the course of cell death via apoptosis. New techniques for evaluation of DNA status for the pathologist].

Cell death by apoptosis is characterized by DNA fragmentation in 200-250 and/or 30-50 kb followed or not by internucleosomal DNA fragmentation in 180-200 pb. Such characteristics have been used to distinguish between necrotic and apoptotic cells, and also to identify and quantify apoptotic cells by flow cytometry. In the case of internucleosomal DNA fragmentation, the analysis of DNA content constitutes the easiest method to identify apoptotic cells giving an hypoploid cell population commonly called "Sub G1". The identification of the "Sub G1" does not depend on the dyes used; however according to the method of cell fixation and permeabilization, of the divalent cations (Ca2+, Mg2+) present in the staining buffers and of the use of trypsin, the "Sub G1" population may be more or less difficult to identify. To detect apoptotic cells whatever the pattern of DNA fragmentation, the most commonly used methods are either in situ nick-translation or TUNEL (TdT dUTP Nick End Labelling). Thus, flow cytometry offers a wide range of attractive techniques to characterize apoptotic cells but it requires the use of methodological controls for validating results.

Apoptosis↗

Evaluation of the cytotoxic effects of some oxysterols and of cholesterol on endothelial cell growth: methodological aspects.

The effects of various oxysterols (7 beta-hydroxycholesterol, 7-ketocholesterol, 19-hydroxycholesterol, cholesterol-5 alpha, 6 alpha-epoxide, and 25-hydroxycholesterol) and of cholesterol were investigated on cell growth of bovine aortic endothelial (BAE) cells by cell counting, MTT reduction, and 3H-thymidine incorporation in a 5 to 80 micrograms/ml concentration range. By cell counting, a dose related decrease in the number of adherent cells was observed with oxysterols; MTT reduction also indicated a decreased number of viable cells, and both method give similar IC50. A lower 3H-thymidine incorporation was generally detected with oxysterols but no effect on 3H-thymidine incorporation was found with 25-hydroxycholesterol. With cholesterol, no modification of cell growth was shown by cell counting and 3H-thymidine incorporation, whereas an important decrease in MTT reduction was observed. Noteworthy, with the highest cholesterol concentration no change in cellular morphology occurred, and no modification of mitochondrial activity was found with Rhodamine 123. It is concluded that MTT and 3H-thymidine incorporation are not suitable for the evaluation of a putative toxicity of cholesterol and 25-hydroxycholesterol, respectively. Therefore, cell counting seems the most accurate method to determine the effects of oxysterols and of cholesterol on endothelial cell growth.

Analysis of Variance↗

[Quantification of protein p53 expression by image analysis in 58 cases of colon carcinoma. Study of correlations between sex, age, histology, Dukes stage, DNA content and lymph node invasion].

The analysis of p53 expression has been performed on 58 cases of colonic carcinomas. p53 expression was revealed by immunohistochemistry with the monoclonal antibody DO.7, and its quantification was performed by image analysis on deparaffinized tissue sections treated by microwaves. p53 expression evaluated by images analysis has been compared to visual estimation performed under light microscopy, and an excellent correlation was found between the two methods. No statistical significant relationships were found between the proportion of tumours expressing p53, sex, age (< 70 or > 70 years), histology (well, intermediate or poorly differentiated) and DNA index (< 1.3 or > 1.3) whereas the proportion of tumors expressing p53 was significantly higher in case of metastatic behaviour as well as in the C stage of Dukes classification. p53 expression was also significantly more important in colonic carcinomas with DNA index higher than 1.3 and in case of metastatic behaviour. According to these data, the metastatic behaviour is correlated both with the proportion of tumors expressing p53 and with the level of p53 expression.

Age Factors↗

Differences of reactivity to interferon gamma in HeLa and CaSki cells: a combined immunocytochemical and flow-cytometric study.

We characterized the changes induced by treatment for 48 h with 100 U/ ml interferon gamma (IFN-gamma) on HeLa and CaSki cells, derived from human uterine carcinomas and containing human papillomavirus (HPV) type 16 and HPV type 18 respectively, by studying cell growth, cell morphology, the cell cycle and expression of epidermal growth factor (EGF) receptor, filaggrin-profilaggrin and MHC class II antigen, HLA-DR. The response of the two cell lines to IFN gamma differed in some cases. In both cell lines, the cells remained viable; cell growth was similarly inhibited as shown by cell counts. Signs of morphological changes were essentially observed in HeLa cells. The cell cycle phases, analyzed by flow cytometry were more disturbed in CaSki than in HeLa cells; the proportion of CaSki cells in S phase increased and those in G2 + M decreased. Expression of EGF receptors related to proliferation increased only in CaSki cells while expression of filaggrin-profilaggrin, a marker of differentiation, and HLA-DR, a marker of epithelial cell immune response, was enhanced in both cell lines. The presence of filaggrin-profilaggrin being unexpected in these cells, the specificity of the reaction with the monoclonal antibody AKH1 was confirmed by immunoblotting. In conclusion, our results show that the two cell lines reacted differently to IFN gamma although they are of similar origin and the different antigens studied may be useful to predict the progression of lesions infected with HPV towards malignancy or the reactivity to IFN gamma of such lesions. However, enhanced synthesis of EGF receptors is probably independent of the antiproliferative effect of IFN gamma but an increase in HLA-DR antigen expression by epithelial cells, which corresponds to an immune response favored by IFN gamma, could act synergistically with cell growth inhibition and differentiation to exclude tumoral and/or HPV-infected cells.

Biomarkers, Tumor↗

Induction of apoptosis in endothelial cells treated with cholesterol oxides.

Cholesterol oxides have a wide range of cytotoxic effects on vascular cells. Therefore, 7-ketocholesterol, 7 beta-hydroxycholesterol, 19-hydroxycholesterol, cholesterol 5 alpha, 6 alpha-epoxide, and 25-hydroxycholesterol, identified in various foodstuffs and human tissues, were chosen to compare and characterize the mode of cell death they induce, apoptosis or necrosis, on bovine aortic endothelial cells. The toxic potency differed from one compound to another, and 7 beta-hydroxycholesterol and 7-ketocholesterol exhibited the most potent effects. Cytotoxicity was accompanied by a decreased number of adherent cells, an increased number of non-adherent cells, and an enhanced permeability to propidium iodide. By electron and fluorescence microscopy performed after staining with Hoechst 33342, apoptotic cells with fragmented and condensed nuclei were identified mainly among non-adherent cells. By flow cytometry, cells with a lower DNA content than cells in the G0/G1 phase were apparent, giving a characteristic sub-G1 peak. Quantification of apoptosis evaluated either by the proportion of apoptotic cells identified by fluorescence microscopy after staining with Hoechst 33342 or by the percentage of cells present in the sub-G1 peak indicated that the ability of cholesterol oxides in inducing apoptosis was in the following order: 7 beta-hydroxycholesterol > 7-ketocholesterol > 19-hydroxycholesterol > cholesterol 5 alpha, 6 alpha-epoxide > 25-hydroxycholesterol. By using electrophoresis on agarose gel, typical internucleosomal DNA fragmentations were detected; they were no longer observed when bovine aortic endothelial cells were simultaneously incubated with 0.5 mmol/L zinc chloride, known to inhibit Ca2+/Mg2+-dependent endonucleases. None of the cholesterol-oxide-induced apoptotic features described above were noted with cholesterol. It is concluded that cholesterol oxides constitute a new class of cholesterol derivatives that can induce cell death by apoptosis in cultured endothelial cells.

Animals↗

Effect of lipid transfer activity and lipolysis on low density lipoprotein (LDL) oxidizability: evidence for lipolysis-generated non-esterified fatty acids as inhibitors of LDL oxidation.

Low density lipoproteins (LDL) were modified in vitro in the presence of lipid transfer activity and lipolysis, which induced alterations in the size and lipid composition of LDL particles but not in their antioxidant content. Subsequently, modified LDL were oxidized with copper sulfate and the extent of LDL oxidation was evaluated. Lipid transfer activity alone, or in combination with lipolysis, led to a significant reduction of LDL oxidability as compared with starting homologous LDL. Furthermore, the combined effect of lipid transfers and lipolysis reduced LDL oxidability to a significantly greater extent than did lipid transfers alone. Consistent results were obtained by measuring either the formation of lipid peroxides, the appearance of thiobarbituric acid reactive substances (TBARS), the disappearance of polyunsaturated fatty acids (PUFA), or the generation of cholesterol oxides. Non-esterified fatty acids (NEFA) arose as putative candidates in reducing oxidation susceptibility of LDL: NEFA-containing LDL were less oxidizable; the enrichment of LDL with either oleic acid or linoleic acid reduced significantly their oxidability; the oxidation susceptibility of either in vitro modified LDL or LDL isolated from normal or analbuminemic patients significantly increased after reduction of their NEFA content with fatty acid-poor albumin. After NEFA depletion, small-sized LDL resulting from the combined effects of lipid transfer and triglyceride hydrolysis activities became more oxidizable than large-sized LDL treated with lipid transfer activity alone. In addition, the PUFA to total fatty acid ratio and the oxidability of modified LDL varied accordingly after NEFA depletion, showing that in the present study not only lipoprotein-bound NEFA but also the total fatty acid composition of LDL could account for alterations in their oxidability.

Chromatography, High Pressure Liquid↗

Kinetics of plasma membrane and mitochondrial alterations in cells undergoing apoptosis.

Programmed cell death or apoptosis is characterized by typical morphological alterations. By transmission electron microscopy, apoptotic cells are identified by condensation of the chromatin in tight apposition to the nuclear envelope, alteration of the nuclear envelope and fragmentation of the nucleus, whereas integrity of the plasma membrane and organelles is preserved. Conversely cells undergoing necrosis display an early desintegration of cytoplasmic membrane and swelling of mitochondria. In this study we assessed by flow cytometry the sequential alterations of forward angle light scatter, 90 degrees light scatter, and fluorescence associated with fluorescein diacetate, rhodamine 123, and propidium iodide in two human B cell lines undergoing apoptosis induced by the topoisomerase II inhibitor VP-16. The kinetics of these modifications were compared to those of cells undergoing necrosis induced by sodium azide. At the same time intervals, cells were examined by transmission electron microscopy and by UV microscopy after staining with Hoechst 33342. We report that sequential changes in light scatters and fluorescein diacetate are similar in cells undergoing apoptosis or necrosis, whereas apoptosis is characterized by a slightly delayed decrease of mitochondrial activity as assessed by rhodamine 123 staining. Surprisingly a part of cells undergoing apoptosis displayed an early uptake of propidium iodide followed by a condensation and then a fragmentation of their nuclei. It is concluded that uptake of propidium iodide is a very early marker of cell death which does not discriminate between necrosis and apoptosis. Along with biochemical criteria, nuclear morphology revealed by staining with Hoechst 33342 would seem to be of the most simple and most discriminative assay of apoptosis.

Animals↗

Apoptosis without decrease of cell DNA content.

Apoptosis of human B cells and murine T and B cells was analyzed by DNA agarose gel electrophoresis, clamped homogeneous electric field, measurement of cell DNA content by flow cytometry, transmission electron microscopy and by UV microscopy. Apoptosis was induced by etoposide (an inhibitor of topoisomerase II), by the calcium ionophore ionomycin or by cross-linking of membrane immunoglobulins (Ig) with anti-Ig-antibodies. Two types of apoptosis could be defined. Apoptosis resulting in small DNA fragments (180-200 base pairs and multiples thereof) was associated with a typical 'ladder' in agarose gel electrophoresis and a decrease in cell DNA content assessed by flow cytometry. Conversely apoptosis with large DNA fragments (100-150 kilobase pairs) was only demonstrated by clamped homogeneous electric field but was not associated with decreased cell DNA content or the observation of DNA ladders. Nuclear condensation without fragmentation was more frequent when apoptosis generated large DNA fragments. The type of apoptosis appears to be an intrinsic property of each cell type.

Apoptosis↗

Isolation of mature olfactory neurones using retrograde labelling and flow cytometry.

Currently we can observe an increasing interest for epithelial olfactory neurones. Several laboratories are involved in elucidation of the odorant-molecule recognition process and transduction cascade which brings information to the olfactory bulb. Others use this model, unique in mammals, to accumulate new knowledge on the neurogenesis phenomenon. Here we describe a simple and efficient method to purify mature olfactory neurone populations extracted from the nasal cavity. The approach relies on retrograde axonal tracing followed by flow cytometry sorting. For this purpose we inject a fluorescent dye (Fast Blue or diI C18(3)) in the olfactory bulb of adult rats. Seven days later, we extract the nasal turbinates and separate the mucosa from the subjacent lamina propria. The tissue is enzymatically dissociated and the labelled cells are sorted with a flow cytometer. Purification of the mature olfactory neurones varies from 80 to 99%.

Amidines↗

Protective effect of zinc on keratinocyte activation markers induced by interferon or nickel.

Zinc therapies exert beneficial effects in several cutaneous pathologies through their antiinflammatory properties, but target cells and mechanisms of action are still uncertain. We wondered whether markers of the keratinocyte activation state, such as the expression of immune surface antigens (ICAM-1 and HLA-DR) and the production of TNF-alpha, frequently detected in inflammatory reactions, may be reduced by zinc. For this purpose, we used normal human keratinocytes derived from plastic skin surgery and cultured in low-calcium medium (MCDB153). We studied the effects of ZnSO4 (12.5 to 50 microM) alone or in combination with IFN-gamma (5 U/ml), a mediator of inflammation produced by activated T-cells, or nickel (5-10 micrograms/ml), a sensitizing metal hapten. Using FACS analysis, we showed that the combination of zinc with nickel or the addition of ZnSO4 24 h before IFN-gamma or NiSO4 treatments reduced ICAM-1 expression on the keratinocyte surface (p < 0.01). However, zinc did not modify the IFN-gamma induced expression of HLA class II antigen on keratinocytes. Zn2+ could also reduce the TNF-alpha secretion of keratinocytes stimulated by IFN-gamma or Ni2+ during 48 h. Taken together, these data indicate that zinc can directly reduce some keratinocyte activation markers frequently observed in vivo; this action may be involved in the antiinflammatory effect of Zn(2+)-associated therapies in cutaneous inflammatory reactions.

Antigens, Surface↗

Analytical methods for evaluation on whole cells of human papillomavirus infection.

Analytical methods for evaluation on whole cells of human papillomavirus infection. Human papillomavirus (HPV) infection is currently identified by the presence of viral DNA using molecular biology. As in situ hybridization is valuable for HPV-DNA detection mainly with non-isotopic probes, we evaluated the sensitivity of various techniques, using as models three cell lines containing different copy numbers of HPV DNA/cell (CaSki with 600 copies of HPV 16, SiHa with 1-2 copies of HPV 16, HeLa with 10-50 copies of HPV 18). Epifluorescence microscopy and flow cytometry allowed detection of 600 copies in CaSki cells; in addition, cell fixation was found to influence the fluorescent intensity. Several procedures were assayed to increase the sensitivity of in situ hybridization. The use of biotinylated HPV-16 oligonucleotides as probes was not effective, because only CaSki cells were positive. After amplification of HPV-16 or -18 DNA sequences with polymerase chain reaction (PCR) on whole cells in suspension and hybridization with plasmid probes, fluorescent hybridization spots were found in CaSki and HeLa cells by both epifluorescence microscopy and flow cytometry. The various procedures applied for revelation of DNA-DNA hybrids (use of phycoerythrin or cyanine instead of fluorescein, Pinkel's 3-step amplified system of fluorescein) did not enhance the sensitivity of in situ hybridization. HPV DNA was very effectively detected by cell examination under a laser-scanning confocal microscope, since 1-2 copies of HPV 16 were observed in SiHa cells without previous PCR amplification. Thus, the efficacy of in situ hybridization for HPV detection may be conditioned by different factors. Laser-scanning microscopy represents an alternative to the use of PCR amplification. These techniques are potentially useful to study single genes.

DNA Probes, HPV↗

Evaluation of multidrug resistant phenotype by flow cytometry with monoclonal antibodies and functional tests.

Multidrug resistant (MDR) phenotype is characterized by a defect in drug accumulation caused by overexpression of a transmembrane glycoprotein, the P-glycoprotein (P-gp). MDR phenotype can be characterized either with monoclonal antibodies raised against P-gp or with functional tests, most often based on the incorporation of fluorescent compounds. In the present study, data obtained with the monoclonal antibodies C219, JSB1 and MRK16 are compared to those of functional tests performed by flow cytometry including uptake of daunorubicin (DNR), Rhodamine 123 (Rh 123) or Hoechst 33342. Sensitive and resistant cell lines K562S, K562R, KBA1 and KB31, derived either from a human chronic myeloid leukemia or from a human epithelial carcinoma, were used. In resistant cells, P-gp expression was revealed with either the monoclonal antibodies C219, JSB1 or MRK-16. The most specific results were obtained with MRK-16. With functional tests, no matter which dyes were used, the fluorescence was always stronger in sensitive than in resistant cells. However, with DNR and Hoechst 33342, an incorporation of these dyes was exhibited in resistant cells. This phenomenon was not observed with Rh 123, which makes it possible to distinguish clearly between sensitive and resistant cells and to detect as few as 1% of resistant cells. Because of its high sensitivity, the functional test involving incorporation of Rh 123 was successfully used in acute myeloid leukemia to detect multichemoresistant cells.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

[Agents inducing cell death of the vascular wall].

Arterial wall is constituted by endothelial cells, smooth muscle cells and fibroblasts. A number of agents are capable of inducing damages in these cells leading either to apoptosis or necrosis involved in various pathologies. Such agents are constituted by: bacterial endotoxins, mediators and modulators of immunitary and/or inflammatory systems, drugs, reactive oxygen metabolites, free radicals, cholesterol oxidation derivatives included or not in lipoproteins. The study of the mechanisms of action implied in cell death would permit a better understanding of vascular diseases and open new therapeutic perspectives.

Cell Death↗

Flow cytometry evaluation of the multidrug-resistant phenotype with functional tests involving uptake of daunorubicin, Hoechst 33342, or rhodamine 123: a comparative study.

Multidrug-resistant (MDR) cells are characterized by a defect in drug accumulation caused by overexpression of a transmembrane glycoprotein, the P-glycoprotein (P-gp). The MDR phenotype can be characterized either by use of monoclonal antibodies raised against P-gp or with functional tests based on the intracellular accumulation of fluorescent molecules. The aim of the present study was to compare the effectiveness of functional tests performed by flow cytometry including uptake of daunorubicin (DNR) (2 micrograms/ml), Hoechst 33342 (5 micrograms/ml), or rhodamine 123 (RH 123) (0.1 microgram/ml); and to evaluate the effect of cell death induced by heating at 60 degrees C for 2 h on incorporation of DNR and RH 123. Sensitive and resistant human hematopoietic K 562 cells expressing P-gp were identified by monoclonal antibodies C 219 and MRK-16. Fluorescence of the dyes was always higher in sensitive than in resistant cells. However, DNR and Hoechst 33342 produced a slight incorporation in resistant cells, while RH 123 showed lack of incorporation in resistant cells. Thus, RH 123 allows sensitive and resistant cells to be clearly distinguished. In case of cell death, accumulation of RH 123 and DNR were different. With RH 123, fluorescence intensity strongly decreased in sensitive cells. With DNR, fluorescence intensity was enhanced in resistant cells. Thus, when the MDR phenotype is defined by uptake of DNR or RH 123, artifactual results due to cell death may be avoided by using a dye such as propidium iodide to eliminate dead cells.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Two human melanoma cell-line variants with enhanced in vivo tumor growth and metastatic capacity do not express the beta 3 integrin subunit.

The alpha v beta 3 integrin complex is thought to play an important role in in vivo melanoma tumor growth and metastasis. However, not all human metastatic melanomas, present in lymph node biopsies, express alpha v beta 3. In this study, we have investigated the possibility that certain melanoma cell lines can grow aggressively in vivo in the absence of alpha v beta 3 expression. Established human melanoma cell lines (M3Da., M4Beu.) were isolated from an achromic skin metastasis or lymph nodes. Two stable variants (7GP, T1P26), derived from a poorly metastatic M4Beu. melanoma cell line, were isolated by sequential selection for spontaneous metastasis formation in an immunosuppressed newborn rat model. Flow-cytometry analysis shows an absence of the beta 3 integrin subunit (less than 2% of parental levels) in the two variant melanoma cell lines (7GP, T1P26) compared to M3Da. and M4Beu. cell lines which express a relatively high number of beta 3 subunits. The expression levels of the integrin subunits beta 1, beta 5, beta 6 and alpha v were found to be similar for all four melanoma cell lines. Northern blot analysis confirmed the absence of beta 3 in 7GP or T1P26 cell lines and its presence in M3Da. and M4Beu. Moreover, similar levels of alpha v transcript were present in the four melanoma cell lines. The functional effect of the absence of beta 3 was investigated by subcutaneously implanting the variants and the melanoma cell lines in nude mice. Variant 7GP and T1P26 cell lines yielded tumors which were larger and grew at a faster rate than tumors in M3Da. or M4Beu. cell lines. The beta 3 integrin subunit was not detectable on the surface of cells harvested from tumors after 20 or 35 days. Similarly, subcutaneous innoculation of the two variants into immunosuppressed newborn rats gave rise to extensive spontaneous lung metastases compared to the M4Beu. cell line. These results provide evidence that a population of melanoma cells can grow aggressively in vivo and metastasize in the absence of beta 3 or alpha v beta 3 integrin complex. Our results may have clinical relevance and suggest that certain types of melanomas in patients may grow and spread in the absence of the alpha v beta 3 integrin complex.

Animals↗