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N Auersperg

Publications and source records attributed to N Auersperg.

At least 37 records · Page 2Linked to original sources

Telomeric instability and reduced proliferative potential in ovarian surface epithelial cells from women with a family history of ovarian cancer.

OBJECTIVE: Increased telomeric instability in normal ovarian surface epithelium may contribute to ovarian carcinogenesis in women from families with a high frequency of breast/ovarian cancer. To test this hypothesis, we compared proliferative potential, mean telomeric length, and telomerase activity in SV-40 large T-antigen transfected cell lines derived from normal ovarian surface epithelium of women with and without a familial history of breast/ovarian cancer. METHODS: Telomeric instability was examined in SV-40 large T-antigen transfected cell lines of normal ovarian surface epithelium from patients with (FHIOSE, N = 5) and without (NFHIOSE, N = 11) a history of familial breast/ovarian cancer. The duration and total attainable number of population doublings, mean telomeric length, rate of telomeric loss, and telomerase activity were determined by cell counts, Southern blot analysis, and PCR ELISA. RESULTS: FHIOSE cells attained fewer population doublings than NFHIOSE cells and doubled at approximately half the rate of NFHIOSE cells, indicating a reduced proliferative capacity in FHIOSE cells. While telomerase activity was not detected in FHIOSE or NFHIOSE cell lines, mean telomeric lengths in FHIOSE were generally 1 kb shorter than in NFHIOSE cells and the rate of telomeric loss as a function of population doublings was up to threefold greater in FHIOSE cells. CONCLUSIONS: Increased telomeric instability and reduced growth potential suggest greater proximity to replicative senescence in ovarian surface epithelium from women with a familial history of breast/ovarian cancer. Consequently, an accumulation of genetic aberrations due to accelerated cellular aging may contribute to the enhanced susceptibility for malignant transformation and earlier onset in heritable ovarian cancer.

Cell Division↗

alphavbeta3 and vitronectin expression by normal ovarian surface epithelial cells: role in cell adhesion and cell proliferation.

The alphavbeta3 integrin and its ligand vitronectin are expressed by differentiated epithelial ovarian carcinomas and carcinoma cell lines in culture. Moreover, alphavbeta3/vitronectin interaction influences adhesion and migration of ovarian carcinoma cells in culture. For a better understanding of the behavior of these carcinomas, it appeared necessary to study the characteristics of their normal counterpart, the ovarian surface epithelium (OSE). The present study showed that normal cultured human OSE cells, like the carcinoma cells, have the ability to synthesize vitronectin. The vitronectin receptor, alphavbeta3 integrin, is also expressed by OSE cells and is localized in focal contacts close to paxillin, a focal contact-specific protein, and p125(FAK), a cytoskeletal and signaling molecule. This localization suggested an active participation of the integrin in the adhesion and/or proliferation of OSE cells. Indeed, the use of a blocking antibody demonstrated that alphav integrins promote OSE cell adhesion on vitronectin but not on fibronectin and that these integrins are required for maximal proliferative activity. The results suggest a role of the alphavbeta3/vitronectin system in normal OSE physiology and demonstrate that the expression of this system by well-differentiated ovarian carcinomas reflects the retention of normal cell properties.

Adult↗

Comparison of c-met expression in ovarian epithelial tumors and normal epithelia of the female reproductive tract by quantitative laser scan microscopy.

The transmembrane tyrosine kinase receptor c-met with its ligand, hepatocyte growth factor/scatter factor (HGF/SF), acts as a mitogen, motogen, and morphogen in many normal epithelia. HGF/SF-met signaling has also been implicated in neoplastic progression and metastasis. In this study, immunofluorescence staining and quantitative laser scanning confocal microscopy were used to measure c-met expression in ovarian surface epithelial tumors from 17 oophorectomy specimens. These specimens were from patients aged 25 to 81 (mean age, 52) and included 10 malignant tumors, 4 borderline tumors, and five benign tumors including a Brenner tumor. For comparison, c-met expression was measured in normal tissues from the same patients, including 4 ovarian surface epithelia, 4 fallopian tube epithelia, 2 endometria, and 3 endocervical epithelia, as well as 3 cases of endometriosis. Relative pixel intensity values of c-met expression ranged from 0.4 in a normal ovarian surface epithelium to 22.3 in a borderline serous tumor. Malignant tumors (mean, 9.6) and borderline tumors (mean, 12.9) had higher average c-met expression levels than normal tissues (mean, 3.6) and endometriosis (mean, 1.8). The expression levels of benign tumors were intermediate (mean, 7.9). Among the normal tissues, c-met expression in fallopian tubes (mean, 8.2; range, 3.4-12.9) was higher than that of the other normal epithelia (mean, 1.6; range, 0.4-4.3). In eight cases where both normal and malignant tissues were sampled, c-met expression was significantly greater in malignant than in normal epithelia (P = 0.01). These findings indicate that c-met plays a role in the biology of the normal tissues examined. They confirm that its expression increases in the malignant progression of ovarian surface epithelial tumors, and suggest that increases comparable to those in frankly malignant carcinomas have already been reached in borderline lesions, ie, early in the neoplastic process.

Adenocarcinoma↗

Expression of the messenger RNA for gonadotropin-releasing hormone and its receptor in human cancer cell lines.

The presence of gonadotropin-releasing hormone (GnRH) binding sites in biopsy samples of human epithelial ovarian cancer and ovarian tumor cell lines as well as the demonstration of the inhibitory effects of GnRH analogues on the growth of these cells raised the possibility that GnRH is produced locally by ovarian cancer cells. In order to investigate an autocrine/paracrine regulatory mechanism in human carcinomas, we have studied the expression of GnRH and GnRHR mRNA in human ovarian epithelial cell lines (OVCAR-3 and SKOV-3), human choriocarcinoma cell line (JEG-3) and human hepatocarcinoma cell line (HepG 2). Using primers corresponding to published human GnRH and GnRHR cDNA sequences, predicted PCR products were obtained from these cell lines by reverse transcription-polymerase chain reaction (RT-PCR) and confirmed by Southern hybridization. Sequencing analysis of GnRH PCR products showed that their sequences have 100% identity to the published human GnRH cDNA sequence. These results indicated that GnRH and GnRHR genes are expressed in all the cell lines tested in the present study, and strengthen the concept that GnRH may act as an autocrine regulator on the growth of cancer cells.

Blotting, Southern↗

Transfection of rat ovarian surface epithelium with erb-B2/neu induces transformed phenotypes in vitro and the tumorigenic phenotype in vivo.

The neu/cerb-B2 gene is frequently amplified and/or overexpressed in human epithelial ovarian cancers. We have established an inbred animal model for ovarian cancer that mimics aspects of human ovarian cancer by transducing a spontaneously immortalized rat ovarian surface epithelial cell line in culture with ecotropic retroviruses expressing a mutated rat neu/c-erb-B2 oncogene. Transfectants expressing neu at a high level exhibited altered morphology and behavior in two-dimensional and three-dimensional culture in Matrigel, could be cloned in soft agar, and were more invasive through a Matrigel membrane than control transfectants transduced with a similar retrovirus expressing the beta-galactosidase gene. When injected intraperitoneally, neu-expressing transfectants produced highly invasive, rapidly growing tumors that coated the peritoneal cavity and induced ascites formation. Furthermore, neu transfectants could be grown as solid tumors when injected subepithelially into the ovary. The neu-transfected cells also formed tumors when injected subcutaneously into the mammary fat pad, although they grew relatively poorly and often regressed. Transfectants expressing beta-galactosidase failed to produce tumors at any of the sites injected. A second rat ovarian surface epithelial cell line was similarly transduced with the neu/c-erb-B2-expressing retrovirus. However, transformed phenotypes and tumorigenicity were not induced in this cell line. These experiments show directly that overexpression of neu in an established line of rat ovarian epithelium is extremely oncogenic. This animal model system may prove useful for the study of ovarian cancer biology in immunocompetent animals.

Animals↗

The biology of ovarian cancer.

The biology of ovarian cancer broadly defined covers essentially all aspects of the disease from how it arises to how it responds to chemotherapy, often becomes refractory to treatment, and ultimately kills the patient. In this article, we take the liberty of discussing many of these issues to some degree in context of the "natural/clinical" history/biology of the disease. We focus on concepts of how the disease develops, efforts to identify histologic changes that may precede the development of overt ovarian cancer, efforts to define how the growth and function of the normal ovarian surface epithelium are regulated to gain insights into how aberrant function of these pathways may contribute to the initiation of the disease, molecular biological studies on clinical ovarian cancer specimens, efforts to experimentally induce the malignant transformation of ovarian surface epithelial cells, and efforts to understand why ovarian cancer is often initially responsive to chemotherapy but ultimately becomes refractory.

Cell Transformation, Neoplastic↗

Spatiotemporal changes in cytokeratin expression in the neonatal rat ovary.

Ovarian granulosa cells are derived embryologically from two keratin-positive epithelia of mesodermal origin, the ovarian rete and the ovarian surface epithelium. In the rat, presumptive granulosa cells still express keratin at birth but as they acquire functions related to oocyte support and steroidogenesis in the maturing ovary they lose this epithelial differentiation marker. Using double-label immunofluorescence microscopy, we examined the distribution of keratin-expressing granulosa cells in rat ovaries on days 1-10 postpartum in relation to (i) laminin and collagen type IV in follicular basement membranes, (ii) the zona pellucida, and (iii) 3 beta-hydroxysteroid dehydrogenase activity. Keratin was present in most (pre)granulosa cells on days 1-3. As the cells became multilayered in growing follicles, keratin was retained by granulosa cells adjacent to follicular basement membranes but disappeared from cells that were displaced towards follicular centers. From day 7 on, large follicles lacked keratin altogether. Laminin was a consistent component of follicular basement membranes at all ages, while collagen IV varied and diminished in parallel with keratin. 3 beta-Hydroxysteroid dehydrogenase was demonstrable in stromal interstitial cells from day 7 on. Zona pellucida first appeared in primary follicles adjacent to keratin-positive cells and subsequently became surrounded with keratin-negative granulosa cells in growing follicles. The results suggest different roles for laminin and collagen IV in follicular basement membranes and support the hypothesis that keratin expression by granulosa cells depends on paracrine interactions with the ovarian stroma. In early growing follicles, these interactions may be interrupted by physical removal from the vicinity of the basement membranes as the granulosa cells become multilayered. In the more mature follicles, the loss of keratin from all granulosa cells suggests that the required stromal signals cease, perhaps as the perifollicular stroma differentiates into the theca.

Animals↗

Increased E-cadherin expression in ovarian surface epithelium: an early step in metaplasia and dysplasia?

Ovarian surface epithelium (OSE), the source of common epithelial carcinomas, is a simple mesothelium that during carcinogenesis acquires complex epithelial characteristics normally found in tubal, endometrial, and endocervical epithelia. These characteristics include the intercellular adhesive molecule E-cadherin. We examined cryostat sections of 12 normal ovaries by immunofluorescence and immunocytochemistry to determine whether E-cadherin is a component of normal OSE that is retained in ovarian cancers or whether it, like many other epithelial characteristics, is acquired in the course of metaplasia and neoplastic progression. E-cadherin expression by OSE varied with its location within the ovary and with cell shape. It was present inconsistently on the ovarian surface but was increased in surface invaginations and particularly in epithelial inclusion cysts. Independent of location, E-cadherin was most prominent in columnar, variable in cuboidal, and absent in flat OSE. This relationship to cell morphology accounts for the increased E-cadherin expression in inclusion cysts, which are sites of frequent metaplastic and dysplastic changes. These results suggest that the morphologic variation of OSE reflects differences in E-cadherin-mediated intercellular adhesion. Thus, the appearance of this adhesion molecule in columnar OSE may represent an early step in the increased commitment to epithelial phenotypes that accompanies metaplasia and neoplastic progression of OSE.

Adenocarcinoma↗

Applying the herpes simplex virus thymidine kinase/ganciclovir approach to ovarian cancer: an effective in vitro drug-sensitization system.

Ovarian cancer is a major clinical problem with no rewarding treatment protocol currently available. In other malignancies transfer of the herpes simplex virus thymidine kinase (HSV-tk) gene into tumor cells using a viral vector followed by administration of ganciclovir (GCV) provides a potentially effective strategy for treatment. In this work human ovarian epithelial cancer cell lines were infected with a recombinant adenoviral vector expressing the HSV-tk (AdRSV-tk) and were rendered sensitive to doses of GCV that were 100-200 times less than for untransfected cells. A strong bystander effect was noted with significant killing at a ratio of infected:uninfected cells of only 1:20 and maximal killing at 1:3. Normal human ovarian surface epithelial cells were also highly sensitive to the AdRSV-tk/GCV system. This study demonstrates the potential efficacy of the HSV-tk/GCV approach in ovarian cancer gene therapy.

Adenoviridae↗

Autonomy of the epithelial phenotype in human ovarian surface epithelium: changes with neoplastic progression and with a family history of ovarian cancer.

Epithelial ovarian carcinomas originate in the ovarian surface epithelium (OSE). In culture, OSE undergoes epithelio-mesenchymal conversion, an event mimicking a wound response, while ovarian carcinomas retain complex epithelial characteristics. To define the onset of this increased epithelial autonomy in ovarian neoplastic progression, we examined mesenchymal conversion in OSE from 25 women with no family histories (NFH-OSE) and 13 women with family histories (FH-OSE) of breast/ovarian cancer (including 8 with mutated BRCA1 or 17q linkage) and in 8 ovarian cancer lines. After 3-6 passages in monolayer culture, most NFH-OSE exhibited reduced keratin expression and high collagen type III expression. In contrast, keratin remained high but collagen expression was lower in p. 3-6 FH-OSE. This difference was lost in SV40-transformed lines, which all resembled FH-OSE. Most carcinoma lines remained epithelial and did not undergo mesenchymal conversion. In 3-dimensional (3-D) sponge culture, NFH-OSE cells dispersed and secreted abundant extracellular matrix (ECM). FH-OSE remained epithelial and did not secrete ECM. ECM production was also reduced in SV40-transformed lines. Carcinoma lines in 3-D formed epithelial cysts, aggregates and papillae and lacked ECM. Sponge contraction (a mesenchymal characteristic) was greater in NFH-OSE than in FH-OSE both before and after SV40 transformation and was absent in the cancer lines. Our results suggest that increased autonomy of epithelial characteristics is an early indicator of ovarian neoplastic progression and that phenotypic changes indicative of such autonomy are found already in overtly normal OSE from women with histories of familial breast/ovarian cancer.

Biomarkers, Tumor↗

Long-term growth and steroidogenic potential of human granulosa-lutein cells immortalized with SV40 large T antigen.

Studies of human ovarian granulosa cells have been limited by the small numbers and short life span in culture of cells currently obtainable from clinical material. Using SV40 large T antigen, we have reproducibly immortalized freshly explanted human granulosa cells obtained through an In Vitro Fertilization Program. Of 69 independently isolated clones, 17 grew progressively into lines. In the presence of 1 mM 8-Br-cyclic AMP and 50 ng/ml pregnenolone, 15 of these 17 lines secreted progesterone. Seven lines derived from two patients were analyzed in detail. The lines differed in their responsiveness to cyclic AMP and pregnenolone, and in the timing of their steroidogenic responses. In response to cyclic AMP plus pregnenolone, progesterone secretion increased up to 20-fold. Three clones tested all responded to forskolin and cholera toxin with up to 7-fold increases in progesterone secretion. One line responded inconsistently to 1 IU/ml hCG but not to FSH. The steroidogenic responses to cyclic AMP were accompanied by morphologic cell rounding. The immortalized cell lines underwent 40-60 population doublings, thus, providing a theoretical yield of up to 10(18) cells per line. These results show that a high proportion of SV40 immortalized lines is steroidogenic. These lines provide a new experimental model for studies of cell lines that appear representative of different states of differentiation of human granulosa cells.

Antigens, Viral, Tumor↗

Assessment of tumor cell cohesion in vivo using pattern interpretation by cellular automata.

OBJECTIVE: There is abundant evidence that patterning in life sciences may be closely related to the functional properties of the constitutive elements. In order to estimate some of these functional properties by examining the static pattern evolved, pattern interpretation by cellular automata (PICA) was introduced and applied to the mechanisms of tumor growth. Previously it was shown that the estimates concerning tumor cell proliferation and motility were consistent with those obtained by other methods. STUDY DESIGN: Morphologic patterns obtained by growing two variants of the C4 cervical carcinoma cell lines with different in vitro adhesive properties in the hamster cheek pouch were evaluated by PICA. RESULTS: PICA estimates of tumor cell cohesion turned out to be significantly higher in tumors derived from the C4-I cell line (0.73 +/- 0.02 SD) with high in vitro cohesiveness than in tumors derived from the less adhesive C4-II cell line (0.32 +/- 0.04 SD; t test, P = .001). CONCLUSION: These results indicate that functional estimates concerning tumor cell cohesion obtained by PICA may be in good agreement with in vitro observations of the same cellular property and further underscore that PICA may be a useful tool for the functional interpretation of static histologic patterns.

Animals↗

Keratin expression and steroidogenesis in rat granulosa cells, transformed with the Kirsten-ras and SV40 oncogenes singly and in combination.

The keratins are a component of the cytoskeleton that is present in fetal and neonatal rat granulosa cells (ROG), but disappears as the cells undergo postnatal steroidogenic differentiation. Steroidogenesis is initiated in the fetus as a low level constitutive function which is cAMP responsive, but becomes responsive to gonadotrophic hormones only after birth. ROG from PMSG-primed immature rats, like mature ROG, are keratin negative, highly steroidogenic and gonadotrophin-responsive, but rapidly lose their steroidogenic capacity in culture. In such cultured cells, transformation with the Kirsten-ras oncogene (v-Ki-ras) maintains low levels of constitutive steroidogenesis and responsiveness to cAMP, and induces the expression of keratin. To determine whether similar changes would occur in cells expressing both the SV40 and v-Ki-ras, cultured ROG were transformed with SV40 early genes, with Kirsten murine sarcoma virus (KiMSV), or with both agents concurrently. Keratin was demonstrated by fluorescence microscopy and Western blots, and progesterone production by RIA. ROG transformed with SV40 alone became immortalized but secreted little steroid and lacked keratin. In contrast, three cell lines, co-transformed with SV40 plus KiMSV, acquired keratin as well as the capacity to secrete progesterone in response to cAMP, closely resembling cells transformed with Ki-ras alone. KiMSV-transformed muscle fascia fibroblasts lacked both steroidogenic potential and keratin. The results show that the complex, v-Ki-ras-induced changes in steroidogenesis and keratin expression are reproducible and tissue specific. The phenotypic resemblance between singly and doubly transformed ROG indicates that the v-Ki-ras oncogene does not act by overcoming SV40-mediated inhibition of differentiation.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

mRNA phenotyping of the major ligands and receptors of the EGF supergene family in human ovarian epithelial cells.

mRNA amplification phenotyping (MAPPing) was used to determine the level of mRNA expression of the major EGF-related ligands (EGF, TGF-alpha, and Amphiregulin) and receptors (EGF-receptor and erbB-2) of the EGF supergene family in three ovarian carcinoma lines (OVCA 429 and 433, and NIH:OVCAR-8) under serum-supplemented and reduced serum (minimal medium with 2% fetuin) growth conditions. mRNA levels of TGF-alpha, EGF-R, and erbB-2 were particularly high, and increased approximately 2-3 orders of magnitude when grown in serum, consistent with an autocrine involvement of these genes in ovarian epithelial growth in vitro. Moreover, even when grown without serum, OVCA 429 and NIH:OVCAR-8 expressed elevated levels of mRNA for erbB-2.

Amphiregulin↗

Expression of two mucin antigens in cultured human ovarian surface epithelium: influence of a family history of ovarian cancer.

OBJECTIVE: The genetic changes in hereditary ovarian cancer syndromes suggest that the phenotype of ovarian surface epithelium in women with familial ovarian cancer might be altered. To test this hypothesis, we compared two tumor markers, CA 125 and 2G3, in cultures of overtly normal epithelium from patients with and without familial ovarian cancer. STUDY DESIGN: Surface epithelia from 18 patients with no family history of ovarian cancer, five with family histories that were insufficient to be classified as familial, and seven with strong family histories were examined by immunofluorescence, immunocytochemistry, and radioimmunoassay. The influence of cell density, morphologic features, propagation in culture, and immortalization with SV40 on the expression of the markers was investigated. RESULTS: CA 125 occurred in cells with epithelial rather than atypical morphologic features. In cultures with no family history and minor family history, CA 125 was present in up to 45% cells in passage 1 but in only < 5% cells in 14 of 16 cultures by passages 3 to 4. In contrast, nine of 10 cultures with family history retained > 5% CA 125-positive cells in passages 3 to 4. This prolonged presence of CA 125 correlated with a persisting epithelial phenotype, whereas most cells with no family history and minor family history became atypical by passage 3. Immortalization eliminated CA 125 in all three types of cells. 2G3 bound to few cells in low passage, independent of family history and morphologic features. The proportion of 2G3-expressing cells increased significantly with immortalization in all cultures, independent of family history. Ovarian carcinoma lines expressed both markers. CONCLUSION: In cultures of ovarian surface epithelium 2G3 expression increases with immortalization, whereas CA 125 is lost with immortalization but correlates with epithelial cell morphologic features and with family history. The results suggest that there may be phenotypic changes in overtly normal ovarian surface epithelium of women with family histories of ovarian cancer.

Antigens, Neoplasm↗