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S Hietanen

Publications and source records attributed to S Hietanen.

16 recordsLinked to original sources

Mutations of TP53 do not correlate with the sensitivity to paclitaxel--a study using 27 gynaecological cancer cell lines.

The correlation between inactivation of the TP53 gene through mutation or the presence of high-risk human papillomavirus (HPV) DNA and intrinsic paclitaxel sensitivity was studied in 27 gynaecological cancer cell lines. IC(50) values, as a measure of drug sensitivity, were determined using a 96-well clonogenic assay. TP53 mutations were investigated with polymerase chain reaction-single-strand conformation polymorphism (PCR-SSCP) and direct DNA sequencing. HPV status was studied with PCR using HPV consensus primers. TP53 mutations were found in 7/11 vulvar SCC cell lines. Only 2/9 endometrial and 1/7 ovarian cancer cell lines carried TP53 mutations. One vulvar and one endometrial cancer cell line were HPV-positive; both carrying HPV type-16 DNA. Thus, TP53 was functionally normal in 3/11 vulvar, 6/9 endometrial and 6/7 ovarian cancer cell lines. The IC(50) values for paclitaxel were 0.60-2.9, 0.49-2.3 and 0.40-3.4 nM in the vulvar, endometrial and ovarian cancer cell lines, respectively. No correlation could be demonstrated between inactivation of the TP53 gene and paclitaxel sensitivity in vitro; the cell lines were evaluated as one group or according to their anatomical origin or histology. Previous reports have given inconclusive results, partly due to the cell types used, i.e. normal, cancerous or transformed cells. Our results support the view that paclitaxel sensitivity of tumour-derived cancer cell lines is not related to the TP53 status.

Antineoplastic Agents, Phytogenic↗

Activation of p53 in cervical carcinoma cells by small molecules.

In over 90% of cervical cancers and cancer-derived cell lines, the p53 tumor suppressor pathway is disrupted by human papillomavirus (HPV). The HPV E6 protein promotes the degradation of p53 and thus inhibits the stabilization and activation of p53 that would normally occur in response to HPV E7 oncogene expression. Restoration of p53 function in these cells by blocking this pathway should promote a selective therapeutic affect. Here we show that treatment with the small molecule nuclear export inhibitor, leptomycin B, and actinomycin D leads to the accumulation of transcriptionally active p53 in the nucleus of HeLa, CaSki, and SiHa cells. Northern blot analyses showed that both actinomycin D and leptomycin B reduced the amount of HPV E6-E7 mRNA whereas combined treatment with the drugs showed almost complete disappearance of the viral mRNA. The combined treatment activated p53-dependant transcription, and increases in both p21(WAF1/CIP1) and Hdm2 mRNA were seen. The combined treatment resulted in apoptotic death in the cells, as evidenced by nuclear fragmentation and PARP-cleavage indicative of caspase 3 activity. These effects were greatly reduced by expressing a dominant negative p53 protein. The present study shows that small molecules can reactivate p53 in cervical carcinoma cells, and this reactivation is associated with an extensive biological response, including the induction of the apoptotic death of the cells.

Antibiotics, Antineoplastic↗

Collagenase-3 (MMP-13) is expressed by tumor cells in invasive vulvar squamous cell carcinomas.

Collagenase-3 (MMP-13) is a human matrix metalloproteinase specifically expressed by invading tumor cells in squamous cell carcinomas (SCCs) of the head and neck. Here, we have further elucidated the role of MMP-13 in tumor invasion by examining its expression in invasive malignant tumors of the female genital tract. Using in situ hybridization, expression of MMP-13 mRNA was detected in 9 of 12 vulvar SCCs, primarily in tumor cells, but not in intact vulvar epithelium, in cervical SCCs (n = 12), or in endometrial (n = 11) or ovarian adenocarcinomas (n = 8). MMP-13 expression was especially abundant in vulvar carcinomas showing metastasis to lymph nodes and was associated with expression of membrane type 1 MMP by tumor cells and gelatinase-A (MMP-2) by stromal cells, as detected by immunohistochemistry. MMP-13 mRNAs were detected in 9 of 11 cell lines established from vulvar carcinomas and in 4 of 6 cell lines from cervical carcinomas, whereas endometrial (n = 10) and ovarian (n = 9) carcinoma cell lines were negative for MMP-13 mRNA. No correlation was detected between MMP-13 expression and p53 gene mutations in vulvar SCC cell lines. However, MMP-13 expression was detected in 5 of 6 vulvar and cervical SCC cell lines harboring HPV 16 or 68 DNA. These results show that MMP-13 is specifically expressed by malignantly transformed squamous epithelial cells, including vulvar SCC cells, and appears to serve as a marker for their invasive capacity.

Adult↗

Expression of cell-cycle proteins p53, p21 (WAF-1), PCNA and Ki-67 in benign, premalignant and malignant skin lesions with implicated HPV involvement.

A series of 120 biopsies from benign (verruca vulgaris and keratoacanthoma), premalignant (actinic keratosis and extragenital Bowen's disease) and malignant (squamous cell carcinoma) skin lesions were studied immunohistochemically for the expression of cell-cycle proteins p53, p21 (WAF-1), PCNA and Ki-67. The presence of human papillomavirus (HPV) DNA in these samples had been analysed previously using in situ hybridization (ISH) and PCR. Moderate to intense expression of both PCNA and Ki-67 was present in most of the lesions studied. PCNA staining was extensive in the epidermis underneath the layers where abundant HPV DNA staining was shown in HPV DNA-positive verrucas. In keratoacanthomas, p21 and PCNA expression remained low, despite intense p53 expression. In actinic keratosis, only half of the specimens showed overexpression of p53 associated with moderate or intense expression of PCNA. In extragenital Bowen's lesions, all these cell-cycle markers were overexpressed, but in squamous cell carcinomas, they were heterogeneously expressed and showed no correlation with tumour differentiation. Our results suggest a mechanism by which HPV can reactivate the host genes (leading to cell proliferation) to support its own DNA replication. Also p21 might start keratinocyte differentiation in areas where HPV DNA replication starts. Cell proliferation remained active in actinic keratosis and Bowen's lesions, emphasizing the precancer character of these lesions in contrast with the benign nature of keratoacanthoma and verruca vulgaris.

Bowen's Disease↗

Anti-proliferative effect of retinoids and interferon-alpha-2a on vaginal cell lines derived from squamous intra-epithelial lesions.

A panel of retinoids (all-trans-, 13-cis-, 19-cis retinoic acid and acitretin), and interferon-alpha-2a was tested for the capacity to modulate the proliferation of UT-DEC-1 (HPV-33-positive) and UT-DEC-2 (HPV-16-positive) cell lines derived from vaginal intra-epithelial neoplasias (VAIN). At concentrations 10(-6) to 10(-8) M, all retinoids inhibited the growth of early-passage UT-DEC cell lines, but also of normal vaginal keratinocytes and fibroblasts. The inhibition was significantly reduced in late-passage UT-DEC cells. The effect on proliferation was essentially equal for all retinoids in high (1.8 mM)-Ca2+ medium, but decreased markedly in low (0.09 mM)-Ca2+ medium. Interferon-alpha-2a at 1000 IU/ml had an additive growth-inhibitory effect in the low- and in the high-Ca2+ medium. No consistent decrease in HPV E6-E7 mRNA levels could be associated either with retinoid or with interferon effect in either cell line. The expression of TGFbeta1 and TGFbeta2 mRNA increased 2- to 3-fold by 10(-6) M 13-cis-RA treatment in early- and in late-passage cells of both cell lines. TGFbeta1 at 0.1 to 1.0 ng/ml also inhibited the proliferation of both cell lines, and was more effective at early passage, but the inhibition was not dependent on calcium concentration. Neutralizing anti-TGFbeta antibodies partially relieved the proliferation inhibition by 13-cis-RA. The results show that the calcium-associated regulation of growth by the tested retinoids was seen in normal vaginal cells and in early pre-neoplastic cells, but was significantly reduced in cells with higher-grade phenotype, while also suggesting that the loss of responsiveness to retinoids and TGFbeta may play a role in the progression of squamous intra-epithelial neoplasia.

Acitretin↗

p53 mutations and presence of HPV DNA do not correlate with radiosensitivity of gynecological cancer cell lines.

OBJECTIVE: The correlation between p53 tumor suppressor gene mutations and the presence of high-risk human papillomavirus (HPV) DNA with the in vitro radiosensitivity of gynecological malignancies was studied in 26 cell lines derived from gynecological cancers of 23 patients. METHODS: Comparison of the intrinsic radiosensitivity was performed with mean inactivation dose (D) determined with the 96-well plate clonogenic assay. p53 mutations were investigated with polymerase chain reaction and single-strand conformation polymorphism (PCR-SSCP) analysis and direct DNA sequencing, and the presence of HPV DNA was studied with PCR using HPV consensus primers. RESULTS: p53 mutations were found in 6 of 10 vulvar squamous cell carcinoma (SCC) lines. Nine vulvar and 1 vaginal SCC cell lines were HPV DNA negative and 1 vulvar cell line was HPV 16 positive. All 4 cervical SCC lines were HPV positive and possessed the wild-type p53. Three cell lines expressed HPV 16 and 1 HPV 68. Among 10 endometrial cancer cell lines, 2 cell lines with mutant p53 and 1 HPV 16 positive cell line were found. No correlation could be demonstrated between inactivation of the p53 gene and radiosensitivity in vitro; the cell lines were evaluated as one group or according to their anatomical origin or histology. CONCLUSION: Our results indicate that inactivation of the p53 gene through mutation or binding with HPV DNA does not increase the resistance of gynecological malignancies to ionizing radiation in vitro.

DNA, Viral↗

Human papillomavirus type 33 DNA and E6-E7 transcripts in late passages of the UT-DEC-1 vaginal keratinocyte cell line.

Transcription of human papillomavirus (HPV) type 33 early region was analysed in the UT-DEC-1 keratinocyte cell line, which has been derived from a HPV-33-containing mild vaginal dysplasia. Fifteen cDNA clones from transcripts from the E6-E7 open reading frames were constructed and analysed. Most clones represented viral transcripts spliced within the E6 open reading frame, probably encoding the E7 protein. Interestingly, a less abundant unspliced transcript species with coding capacity for the full length E6 protein was found, reported here for the first time for the malignancy-associated HPV type 33.

Base Sequence↗

Characterization of keratin and cell cycle protein expression in cell lines from squamous intraepithelial lesions progressing towards a malignant phenotype.

Two cell lines derived from vaginal intraepithelial neoplasias (VAINs) expressing human papillomavirus (HPV) 33 (VAIN I, UT-DEC-1) and 16 (VAIN II, UT-DEC-2) E6-E7 mRNA were studied in organotypic culture for their keratins and cell cycle regulatory proteins in relation to replicative aging. Early-passage UT-DEC-1 and UT-DEC-2 cells reproduced epithelial patterns consistent with VAIN. Cells from later passages resembled full-thickness intraepithelial neoplasia (UT-DEC-1) and microinvasive cancer (UT-DEC-2). The morphological changes were compatible with these cell lines' ability for anchorage-independent growth at later passages. Simple epithelial keratins were aberrantly expressed in both cell lines. K18 (absent in normal vaginal keratinocytes) and K17 expression increased in UT-DEC-1 and UT-DEC-2 cells at late passages. No marked differences in expression of p53 (wild type in both cell lines), mdm-2 or PCNA were detected in parallel with progression. The expression of p21WAF1/cip1 localized mostly to the upper half of the epithelium at early passage and was more intense in the HPV 16-positive UT-DEC-2 cell line expressing K10. In Northern blot analyses, the transcription pattern of the HPV 33 E6-E7 of the UT-DEC-1 cell line changed during later passages, whereas that of the HPV 16 E6-E7 of the UT-DEC-2 cell line remained unaltered. The present characterization of the phenotype of these cell lines derived from natural squamous intraepithelial lesions shows an association between simple epithelial-type keratin expression and progressive changes in growth and morphology, but fails to demonstrate consistent changes in the expression of cell cycle regulatory proteins studied in parallel with progression.

Carcinoma in Situ↗

Type I diabetic pregnancy and subclinical human papillomavirus infection.

It has been suggested that diabetic pregnancy is an immunosuppressive state. To determine whether the possible immunosuppression in pregnant diabetics might result in an increased risk for human papillomavirus (HPV) infection, we studied exfoliated cells from the uterine cervix, vagina, and posterior commissure of the vulva by means of dot blot hybridization with use of a probe cocktail of HPV types 11, 16, and 18 under low stringency and by means of consensus primer-mediated polymerase chain reaction (PCR) targeted to the HPV L1 and E1 regions. For this study, samples from 31 pregnant diabetics whose glucose levels had been reasonably well controlled were analyzed during the first trimester; samples from 27 of these patients were analyzed again during the third trimester. Fifty-one healthy pregnant women were included as controls. Only one of the pregnant diabetics was positive for HPV DNA. The L1 PCR products of the first and third trimester samples from this patient were sequenced, and both were found to represent HPV 61. Three of the pregnant controls were positive for HPV: two were positive for HPV 16, and one was positive for HPV 6. The 95% confidence limits for the prevalence of HPV were calculated to be 0.1%-16.7% for the diabetics and 1.2%-16.2% for the controls. The 95% confidence limits for the difference between the groups were -11.6%-6.3%. These results suggest that pregnant diabetics do not have an increased risk of developing HPV infection, at least when their glucose levels remain well controlled.

Adult↗

[Catatonia].

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Adult↗

Rapid and effective detection of mutations in the p53 gene using nonradioactive single-strand conformation polymorphism (SSCP) technique applied on PhastSystem.

The polymerase chain reaction-single-strand conformation polymorphism (PCR-SSCP) method is a powerful tool for the screening of genetic alterations, including single-base substitutions. In the present study, the conventional SSCP technique was modified on the semiautomated electrophoresis system (PhastSystem) for the detection of mutations in the p53 tumor suppressor gene. The SSCP running conditions were optimized for three PCR-amplified DNA fragments, spanning exons 5 through 9 of the p53 gene, using the PCR-products derived from the CaSki and HaCaT cells as the normal and mutant controls, respectively. The optimized SSCP protocols were tested on nine human vulvar and vaginal carcinoma-derived cell lines. The optimizing experiments indicated that the running temperature and gel density can affect significantly the electrophoretic mobility and resolution of single-stranded DNA molecules. Because the gel temperature is the most important parameter affecting the conformation and thus electrophoretic mobility of single strands, one of the most important advantages of the SSCP technique on the PhastSystem is that the running temperature is controlled precisely. In addition to the fast electrophoretic separation, the PhastSystem also offers the use of a silver staining method allowing direct visualization of DNA with high detection sensitivity. Thus, the important advantage of this modified SSCP technique is the short time required for analysis, including electrophoresis and DNA detection. It is concluded that the SSCP method applied on the PhastSystem has the advantages of simplicity, efficiency, speed and reproducibility, and is suitable for clinical diagnostic purposes.

Base Sequence↗

Human papillomavirus in vulvar and vaginal carcinoma cell lines.

A number of reports associate human papillomavirus (HPV) with cervical cancer and cancer cell lines derived from this tumour type. Considerably fewer reports have focused on the role of HPV in carcinomas from other sites of female anogenital squamous epithelia. In this study we have tested for the presence of HPV in eight low-passage vulvar carcinoma cell lines and one extensively passaged cell line, A431. One cell line from a primary vaginal carcinoma was included. The presence of the HPV was evaluated by the polymerase chain reaction (PCR), by Southern blot analysis and by two-dimensional gel electrophoresis. General primer-mediated PCR was applied by using primers from the L1 region, E1 region and HPV 16 E7 region. Southern blot hybridisation was performed under low-stringency conditions (Tm = -35 degrees C) using a whole genomic HPV 6/16/18 probe mixture and under high stringency conditions (Tm = -18 degrees C) with the whole genomic probes of HPV 16 and 33. HPV 16 E6-E7 mRNA was assessed by ribonuclease protection assay (RPA). HPV was found in only one vulvar carcinoma cell line, UM-SCV-6. The identified type, HPV 16, was integrated in the cell genome and could be amplified with all primers used. Also E6-E7 transcripts were found in these cells. Five original tumour biopsies were available from the HPV-negative cell lines for in situ hybridisation. All these were HPV negative with both the HPV 6/16/18 screening probe mixture under low stringency and the HPV 16 probe under high stringency. The results indicate that vulvar carcinoma cell lines contain HPV less frequently than cervical carcinoma cell lines and suggest that a significant proportion of vulvar carcinomas may evolve by an HPV-independent mechanism.

Adult↗

Isolation of two keratinocyte cell lines derived from HPV-positive dysplastic vaginal lesions.

Explant cultures were started from human papillomavirus (HPV)-infected genital lesions in order to isolate and propagate abnormally differentiating cells from squamous intraepithelial neoplasia. A medium with high calcium concentration was used to induce terminal differentiation of cells from surrounding normal epithelium. Two cell lines with extended life-spans were established. The UT-DEC-1 cell line was derived from an HPV-33-positive mild vaginal dysplasia (VAIN I). In cultured UT-DEC-1 cells, HPV 33 DNA was detected with Southern-blot hybridization and the polymerase chain reaction (PCR) technique. The restriction pattern of HPV 33 changed during early passages and flow cytometric analysis detected a decrease in chromosomal DNA content. HPV 33 RNA from the E6-E7 region could be amplified by PCR at late passage. UT-DEC-2 cell line was derived from an HPV-16-positive moderate vaginal dysplasia (VAIN II). HPV 16 DNA was also detected in cultured cells by the PCR technique. The senescence of normal keratinocytes and growth selection in favor of aneuploid cells was observed by flow cytometric analysis at subsequent passages. Karyotype analysis showed clonal chromosomal abnormalities in both cell lines. To date, UT-DEC-1 cells have undergone 40 and UT-DEC-2 cells 25 passages. This study shows that the isolation of HPV-infected dysplastic cells can be achieved by culturing the cells in a medium with high calcium concentration. The cell lines presented provide the opportunity of evaluating the early stages of squamous-cell carcinogenesis.

Adult↗

Hormonal treatments and epithelial ovarian cancer risk.

Exogenous sex hormones are widely used by women either for pregnancy prevention, as part of infertility treatment, or for treatment of menopausal symptoms. The role of these hormones in the development of ovarian cancer has been vastly explored. The protective effect of combined oral contraceptive pill is confirmed in multiple studies, but it is not clear whether this protection also covers women with a genetic predisposition to ovarian cancer. There is no conclusive evidence of infertility treatments increasing ovarian cancer risk, but infertility as such is a risk factor. Currently available data suggest that long-term users of hormone replacement therapy may have a slightly increased risk for ovarian cancer compared to women who have never used estrogen. The risk might particularly involve the endometrioid type of ovarian cancer. Most data on ovarian cancer and estrogen comes from epidemiological studies, since the normally high concentrations of estrogens in ovarian tissue and follicular fluid make direct biologic studies on the effects of exogenous estrogens on the ovarian cell difficult. This review discusses the risk of ovarian cancer associated with the use of sex steroid hormones, with special emphasis on the possible risk associated with estrogens.

Animals↗