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N Kyprianou

Publications and source records attributed to N Kyprianou.

At least 55 records · Page 3Linked to original sources

Induction of apoptosis in androgen-independent human prostate cancer cells undergoing thymineless death.

Previous studies have demonstrated that androgen responsive human prostate cancer cells can be induced to undergo programmed cell death after androgen ablation. By contrast, androgen-independent human prostate cancer cells do not activate this apoptotic pathway in response to androgen ablation. In the present study, two androgen-independent human prostatic cell lines, PC-3 and DU-145, were used as in vitro model systems to investigate the possibility of induction of programmed cell death in response to non-androgen ablative cytotoxic drugs. Treatment of these cells with the fluorinated pyrimidines, 5-fluoro-2-deoxyuridine or trifluorothymidine, resulted in a significant decrease in cell viability, over a period of 96 hr of exposure to the drugs, as determined by the trypan blue exclusion assay. The characteristic DNA fragmentation into a nucleosomal ladder and induction of expression of specific apoptosis-related genes, such as TRPM-2/SGP-2, and TGF-beta 1, but not the growth-related genes, c-myc, c-fos, and p53, temporally correlated with activation of apoptotic cell death in both systems. Simultaneous treatment with exogenous thymidine completely abrogated the fluoropyrimidine-induced cytotoxic effect in both cell lines, as well as the nucleosomal fragmentation of DNA, indicating that this apoptotic process is due to the induction of "thymineless" state. These results suggest that androgen-independent human prostate cancer cells retain the ability to activate the apoptotic cascade, after treatment with cytotoxic drugs that induce a "thymineless" state.

Apoptosis↗

Partial growth suppression of human prostate cancer cells by the Krev-1 suppressor gene.

A series of functional studies were performed to assess the potential role of the ras-related transformation suppressor gene, Krev-1, in suppressing prostate cancer cell growth. Three human prostate cancer cell lines, PC-3, TSU-Pr1, and DU-145 were transfected with a plasmid containing the Krev-1 cDNA and a neomycin resistance gene. Selected G418-resistant clones were isolated and expanded into cell lines. All cloned transfectants exhibited a significant reduction in their in vitro growth rates, i.e., longer doubling times, when compared to the parental cell lines. Molecular analysis of the Krev-1 cloned transfectants revealed that they all contained variable copy numbers of the Krev-1 gene and expressed high levels of Krev-1 mRNA transcript, as shown by Southern and Northern analysis, respectively. To determine whether the biological properties associated with tumorigenicity were changed in these Krev-1 transfectants, their growth characteristics were examined on the basis of their ability to a) form colonies in soft agar, and b) produce tumors in SCID mice. The majority of the Krev-1 transfectants from the PC-3 and TSU-Pr1 cell lines showed a substantially reduced ability to form colonies in soft agar and produced significantly smaller tumors when inoculated into SCID mice. In contrast, there was no significant reduction in the soft agar colony-forming ability or in vivo tumorigenicity of the DU-145 Krev-1 transfectants. These results suggest that the Krev-1 suppressor gene induces partial suppression of the malignant phenotype of human prostate cancer cells containing activated ras oncogenes.

Adenocarcinoma↗

Apoptosis: therapeutic significance in the treatment of androgen-dependent and androgen-independent prostate cancer.

To improve survival in men with metastatic prostatic cancer, a therapeutic modality that can effectively eliminate androgen-independent cancer cells is needed desperately. Combination of such an effective modality with androgen ablation could affect all of the heterogeneous populations within prostate tumors of individual patients, thus optimizing the chances of complete cure. Such a therapeutic approach will probably require two types of agents, one with antiproliferative activity affecting the small number of dividing androgen-independent cells and one with the capacity to increase the rate of cell death among the non-proliferating androgen-independent prostatic cancer cells present, i.e. the majority. Androgen-responsive human prostate cancer cells are able to undergo programmed cell death after androgen ablation (even if the cells are not in the proliferative cell cycle). Androgen-independent human prostate cancer cells, however, do not activate this apoptotic pathway of cell death in response to androgen ablation. In contrast, androgen-independent human prostate cancer cells can be induced to undergo apoptosis following such alternative treatment modalities as: (a) non-androgen ablative cytotoxic drugs, such as fluorinated pyrimidines, which result in the "thymine-less state", and (b) ionizing irradiation. The apoptotic effect induced by radiation can be significantly potentiated by post-irradiation treatment of the cells with suramin. In contrast, this radiation induced apoptosis can be substantially inhibited by pretreatment of cells with suramin, probably through suramin's ability to arrest proliferating cells in the GO/Gl phase of the cell cycle. These results suggest that treatment of prostate cancer patients with suramin prior to irradiation is likely to inhibit radiation palliation.(ABSTRACT TRUNCATED AT 250 WORDS)

Androgens↗

Rare incidence of human papillomavirus types 16 and 18 in primary and metastatic human prostate cancer.

OBJECTIVES: The reported data regarding the incidence and significance of human papillomavirus (HPV) in prostate cancer have been inconsistent. In the present study the incidence of HPV 16 and 18 was evaluated in an expanded series of primary as well as metastatic prostate cancer specimens, in order to evaluate a potential role of HPV infection in development and progression of prostate cancer. This is the first study attempting to establish the significance of HPV in metastatic prostate cancer. METHODS: The presence of high risk human papillomaviruses HPV 16 and 18 was analyzed using the polymerase chain reaction (PCR) amplification method and Southern blot hybridization analysis in a total of 61 prostatic tissue specimens: 43 primary prostate adenocarcinoma formalin-fixed, paraffin-embedded specimens, with varying degrees of differentiation (mean Gleason score 5.8, range 3 to 9); 17 pelvic lymph nodes positive for metastatic deposits; and 1 normal prostate specimen. RESULTS: This human papillomavirus typing indicates that only 1 out of the 43 prostatic specimens analyzed was positive for HPV 16 and 1 metastatic lymph node was positive for HPV 18, as revealed by Southern analysis. These results demonstrate the infrequent detection of HPV 16 and 18 DNA in all the primary prostatic adenocarcinoma specimens and metastatic lymph nodes analyzed in this study population. CONCLUSIONS: The negative HPV status for primary and metastatic prostate cancer demonstrated in this study provides a strong argument against an etiological role of HPV infection in the development and progression of the disease.

Adenocarcinoma↗

Homozygous deletion and frequent allelic loss of chromosome 8p22 loci in human prostate cancer.

Allelic loss studies have been instrumental in identifying tumor suppressor gene loci in a variety of cancers. In this study we analyzed prostate cancer specimens from 52 patients for allelic loss using 8 polymorphic probes for the short arm of chromosome 8. Overall, 32 of 51 (63%) informative tumors showed loss of at least one locus on chromosome 8p. The most frequently deleted region is observed at chromosome 8p22-8p21.2. Loss of one allele is identified in 14 of 23 (61%) tumors at D8S163, in 15 of 32 (47%) tumors at lipoprotein lipase, and in 20 of 29 (69%) tumors at MSR, all on 8p22. Loss of one allele is identified in 16 of 27 (59%) tumors at D8S220 at 8p21.3-8p21.2. In addition to frequent loss of one allele at the MSR locus, one metastatic prostate cancer sample demonstrated homozygous deletion of MSR sequences. Loci telomeric and centromeric to this region are largely retained. A chromosome 8p deletion map is constructed and defines the smallest region of overlap to a 14-cM interval at 8p22 between D8S163 and lipoprotein lipase, flanking the MSR locus. Evidence of chromosome 8q multiplication at locus D8S39 was detected in 5 of 32 (16%) tumors, all of which demonstrated loss with at least one probe on chromosome 8p. This study extends the previous finding of frequent loss of chromosome 8p in prostate cancer by defining a common region of loss of heterozygosity at 8p22 and a homozygous deletion of the MSR locus contained within this region. This is the first homozygous deletion identified in the genome of a human prostate cancer and the highest rate of loss yet reported on chromosome 8p in cancer. These results strongly suggest the presence of a tumor suppressor gene in this region which is frequently inactivated in prostate cancer.

Alleles↗

Combined antitumor effect of suramin plus irradiation in human prostate cancer cells: the role of apoptosis.

Suramin has recently surfaced as a potential antineoplastic agent on the basis of its ability to exert a cytostatic effect on human prostate carcinoma cells. Radiotherapy for the treatment of prostate cancer has long been known as an alternative medical therapeutic approach, but the molecular mechanism involved in radiation-induced toxicity in prostatic tumors is poorly defined. In these studies, the antitumor effect of suramin and irradiation, either as individual treatments or in combination, was investigated in human prostate cancer cells. Two androgen-independent prostate cancer cell lines, DU-145 and PC-3, were used as in vitro model systems to study the underlying molecular mechanisms of these two therapeutic modalities. A cytostatic effect on cell growth was observed when cells were exposed to suramin alone, while treatment with irradiation alone resulted in significant cell death as determined by the Trypan blue exclusion assay. Suramin treatment prior to irradiation inhibited this radiation-induced cell death. In contrast, exposure of cells to suramin following irradiation enhanced the cytotoxic effect of ionizing radiation. Temporal analysis of the molecular events involved in radiation-induced toxicity revealed the characteristic fragmentation of DNA into a nucleosomal ladder (a hallmark of apoptosis) and enhanced expression of specific programmed cell death-associated genes (TRPM-2 and TGF-beta), preceding the dramatic decrease in cell number. These results indicate that radiation-induced cell death proceeds via the apoptotic pathway. Further studies have demonstrated that activation of programmed cell death by ionizing radiation is substantially inhibited by pretreatment of the cells with suramin. This study suggests that the relative timing of this combination treatment may have significant therapeutic implications in the treatment of advanced prostate cancer.

Apoptosis↗

Collagen-induced morphogenesis and expression of the alpha 2-integrin subunit is inhibited in c-erbB2-transfected human mammary epithelial cells.

The c-erbB2 (or Her2) oncogene is amplified and/or overexpressed in a significant proportion of breast cancers. To assess the role of the c-erbB2 oncogene in mammary tumorigenesis, we have transfected the corresponding human c-erbB2 cDNA into an immortalized human mammary epithelial cell line, MTSV1-7, that was derived from luminal epithelial cells cultured from milk. Three transfectants expressing different levels of the c-erbB2 gene product have been isolated which form colonies in agar and produce tumours in nude mice with high efficiency. We have observed that MTSV1-7 cells form three-dimensional structures in collagen gels and that alpha 2 beta 1-integrin plays a crucial role in the process of morphogenesis. We now find that the c-erbB2 transfectants exhibit an impaired ability to undergo morphogenesis in collagen gels as compared with the parental cell line or the control neomycin transfectant, and that the degree of impairment is related to the level of c-erbB2 expression. Moreover, overexpression of the c-erbB2 product was found to be correlated with a specific decrease in the expression of alpha 2-integrin subunit and in the alpha 2-mRNA. The breast cancer cell line SKBr3, which carries multiple copies of the c-erbB2 gene and overexpresses the 185-kDa product, was also found to express very low levels of the alpha 2-integrin protein and mRNA. Our results confirm the involvement of the alpha 2 beta 1-integrin in collagen-induced morphogenesis of mammary epithelial cells and suggest that the c-erbB2 gene product may inhibit this morphogenesis by inhibiting the expression of the alpha 2-integrin subunit.

Breast↗

Isolation of azatyrosine-induced revertants from ras-transformed human mammary epithelial cells.

Non-transformed revertant clones were isolated from the ras-transformed MTSV1-7 (ras) cell line, after treatment with the antibiotic azatyrosine. Azatyrosine significantly inhibited the growth of the ras-transformed cells but not of the normal MTSV1-7. After 7 days of azatyrosine treatment, approximately 30% of MTSV1-7 (ras) cells survived, and revertant cell lines were selected by random cloning. The azatyrosine-induced revertants (six clones) were considered non-transformed on the basis of (a) their substantially reduced ability to form colonies in soft agar, and (b) their inability to produce tumours in nude mice. Molecular analysis of the revertants revealed that each contains multiple copies of the v-H-ras gene and expresses high levels of v-H-ras mRNA, and all revertants sustain elevated levels of p21ras protein. Thus, the revertant phenotype induced by azatyrosine does not result from inactivation of v-H-ras oncogene or inhibition of its expression. In vivo guanine nucleotide binding to p21ras in the revertant cell lines demonstrated binding of both GTP and GDP, indicating that reversion to the non-transformed phenotype was not due to inability of p21ras to bind GTP. The expression of the human K-rev-1 gene, a known tumour-suppressor gene in ras-transformed NIH3T3 cells, was studied in the isolated azatyrosine revertants. All six revertants showed a significant increase in the K-rev-1 transcript levels compared with the ras-transformed MTSV1-7 cells. These results suggest that tumorigenic transformation of human mammary epithelial cells by v-H-ras may be influenced by the level of expression of the tumour-suppressor gene, K-rev-1.

Alanine↗

Programmed death of nonproliferating androgen-independent prostatic cancer cells.

Androgen ablation induces an energy-dependent process of programmed death in nonproliferating androgen-dependent prostatic cancer cells which involves fragmentation of genomic DNA into nucleosomal oligomers catalyzed by nuclear Ca2+, Mg(2+)-dependent endonuclease enzymes activated following a sustained elevation in intracellular free Ca2+ (Cai). In contrast, androgen-independent prostatic cancer cells are not induced to undergo such programmed cell death by androgen ablation. One explanation for the inability of androgen ablation to induce programmed death of androgen-independent prostatic cancer cells is that such ablation does not result in a sustained elevation in Cai in these cells. This raises the issue of whether androgen-independent prostatic cancer cells can be induced to undergo programmed death if an elevation in the Cai is sufficiently sustained by nonhormonal means. To test this possibility, androgen-independent, highly metastatic Dunning R-3327 AT-3 rat prostatic cancer cells were chronically exposed in vitro to the calcium ionophore ionomycin to sustain an elevation in their Cai. These studies demonstrated that an elevation of Cai as small as only 3-6-fold above baseline can induce the death of these cells if sustained for greater than 12 h. Temporal analysis demonstrated that the death of these cells does not require cell proliferation and involves Ca(2+)-induced fragmentation of genomic DNA into nucleosome-sized pieces as the commitment step in this process. These results demonstrate that even nonproliferating androgen-independent prostatic cancer cells can be induced to undergo programmed cell death if a modest elevation in the Cai is sustained for a sufficient time. These observations identify Cai as a potential target for therapy for androgen-independent prostatic cancer cells.

Calcium↗

Efficient immortalization of luminal epithelial cells from human mammary gland by introduction of simian virus 40 large tumor antigen with a recombinant retrovirus.

When defined in terms of markers for normal cell lineages, most invasive breast cancer cells correspond to the phenotype of the common luminal epithelial cell found in the terminal ductal lobular units. Luminal epithelial cells cultured from milk, which have limited proliferative potential, have now been immortalized by introducing the gene encoding simian virus 40 large tumor (T) antigen. Infection with a recombinant retrovirus proved to be 50-100 times more efficient than calcium phosphate transfection, and of the 17 cell lines isolated, only 5 passed through a crisis period as characterized by cessation of growth. When characterized by immunohistochemical staining with monoclonal antibodies, 14 lines showed features of luminal epithelial cells and of these, 7 resembled the common luminal epithelial cell type in the profile of keratins expressed. These cells express keratins 7, 8, 18, and 19 homogeneously and do not express keratin 14 or vimentin; a polymorphic epithelial mucin produced in vivo by luminal cells is expressed heterogeneously and the pattern of fibronectin staining is punctate. Although the cell lines have a reduced requirement for added growth factors, they do not grow in agar or produce tumors in the nude mouse. When the v-Ha-ras oncogene was introduced into two of the cell lines by using a recombinant retrovirus, most of the selected clones senesced, but one entered crisis and emerged after 3 months as a tumorigenic cell line.

Animals↗

Activation of programmed cell death by recombinant human tumor necrosis factor plus topoisomerase II-targeted drugs in L929 tumor cells.

The mechanism of death induced by recombinant human tumor necrosis factor (rHuTNF) in L929 tumor cells of C3H mice was investigated. Treatment with rHuTNF led to fragmentation of DNA into nucleosomal oligomers and to induction of the expression of TRPM-2, a programmed cell death-associated gene. Both events preceded cell death by several hours. Treatment with DNA topoisomerase II inhibitors accelerated both the rHuTNF-mediated DNA fragmentation and the elevation in TRPM-2 messenger RNA levels. These results suggest that rHuTNF exerts its cytotoxicity on L929 cells by activating programmed cell death, leading to apoptosis, and that topoisomerase II inhibitors enhance rHuTNF-mediated cytotoxicity by accelerating this process.

Animals↗

Programmed cell death during regression of the MCF-7 human breast cancer following estrogen ablation.

To study the mechanism of regression of human mammary cancer following estrogen ablation, estrogen-responsive MCF-7 human mammary adenocarcinoma cells were inoculated into ovariectomized female nude mice supplemented with exogenous 17 beta-estradiol (E2) via an E2 implant. Implants were then removed when MCF-7 tumors were 400 mm3 in size. Removal of the E2 implants resulted in a 50% tumor regression by 2 weeks following E2 ablation. Associated with this regression is a rapid (i.e., within 1 day following E2 ablation) enhanced expression of the transforming growth factor beta 1 and TRPM-2-genes, two genes the expression of which has been previously demonstrated to be enhanced in a variety of cell types induced to undergo programmed cell death (i.e., apoptosis). The enhanced expression of transforming growth factor beta 1 and TRPM-2 is not a nonspecific response since the expression of other genes, like c-fos, c-H-ras, and pS2, decrease following E2 ablation. Fragmentation of tumor DNA into nucleosomal oligomers and histological appearance of apoptotic bodies are characteristic early events that precede the dramatic reduction in tumor volume following E2 ablation. These results demonstrate that the regression of MCF-7 human mammary cancers in nude mice following estrogen ablation is due to a sequence of biochemical and morphological changes that result in both the cessation of cell proliferation and activation of programmed death or apoptosis of these MCF-7 cancer cells. Clarification of the biochemical pathway involved in the activation of this programmed cell death should identify new targets of therapy for even estrogen-independent human mammary cancer cells.

Animals↗

Programmed cell death as a new target for prostatic cancer therapy.

To increase survival of men with metastatic prostatic cancer, a modality that can effectively eliminate androgen independent cancer cells is desperately needed. By combining such an effective modality with androgen ablation, all of the heterogeneous populations of tumour cells within a prostatic cancer patient can be affected, thus optimizing the chances of cure. Unfortunately, such effective therapy for the androgen independent prostatic cancer cell is not yet available. This therapy will probably require two types of agents, one having antiproliferative activity affecting the small number of dividing androgen independent cells, and the other able to increase the low rate of cell death among the majority of non-proliferating (ie interphase) androgen independent prostatic cancer cells present. Androgen dependent prostatic epithelial cells can be made to undergo programmed death by means of androgen ablation, even if the cells are not in the proliferative cell cycle. Androgen independent prostatic cancer cells retain the major portion of this programmed cell death pathway, only there is a defect in the pathway such that it is no longer activated by androgen ablation. If the intracellular free Ca2+ is sustained at an elevated level for a sufficient time, androgen independent cells can be induced to undergo programmed death. The long term goal is therefore to develop some type of non-androgen ablative method that can be used in vivo to induce a sustained elevation in Ca2+ in androgen independent prostatic cancer cells. To accomplish this task, a more complete understanding of the biochemical pathways involved in programmed cell death is urgently needed. At present, studies are focusing on the mechanism involved in the Ca2+ elevation in the normal and malignant androgen dependent cell induced following androgen ablation and the role of the TRPM-2 protein in this process.

Adenocarcinoma↗

Genetic instability and the acquisition of metastatic ability by rat mammary cancer cells following v-H-ras oncogene transfection.

When nonmetastatic dimethylbenzanthracene-induced rat mammary cancer cells (RMC1) were transfected with a control plasmid containing the neomycin resistance gene (i.e., Neo/Only), none of the five clonal Neo/Only transfectants isolated and characterized was metastatic, only one of five had a single structural chromosomal abnormality, and only one of five had a single numerical chromosomal change not present in the untransfected parental RMC1 cells. In contrast, when RMC1 cells were transfected with a plasmid containing both the neo resistance and mutated v-H-ras oncogene (i.e., Neo/Ras), four of nine clonal Neo/Ras transfectants isolated and characterized were highly metastatic, and all nine had multiple structural and/or additional numerical chromosomal abnormalities. The frequency of transfectants which had structural and/or additional numerical chromosomal changes in Neo/Ras transfectants was significantly higher than that in Neo/Only transfectants (P less than 0.05). In addition, seven of nine Neo/Ras transfectants had structural abnormalities in chromosome 1, whereas none of five Neo/Only transfectants had such abnormalities (P less than 0.05). All four Neo/Ras transfectants that were highly metastatic had structural aberrations involving a gain in chromosome 4. In contrast, none of the three Neo/Ras transfectants which were of low metastatic ability had a similar aberration involving chromosome 4. Correlation between a gain in chromosome 4 and a gain of high metastatic ability was significantly (P less than 0.05). These results demonstrate that, when RMC1 cells are transfected with v-H-ras, transfectants expressing the mutated v-H-ras p21 become genetically unstable and undergo chromosomal changes. These studies suggest that, if the appropriate chromosomal changes occur, these v-H-ras transfectants acquire high metastatic ability.

9,10-Dimethyl-1,2-benzanthracene↗

Programmed cell death during regression of PC-82 human prostate cancer following androgen ablation.

To study the mechanism of regression of human prostatic cancer following androgen ablation, the androgen-responsive PC-82 human prostatic adenocarcinoma xenograft was used as a model system. Castration of male nude mice bearing PC-82 xenografts results in a 50% tumor regression by 2 wk following androgen ablation. This regression is due to a sequence of biochemical and morphological events that results in both the cessation of cell proliferation and activation of programmed death or apoptosis of the androgen-dependent prostatic cancer cells. Associated with this response are an enhanced expression of the transforming growth factor beta 1 gene, a potent inhibitor of cell proliferation, and testosterone-repressed prostatic message 2 (designated TRPM-2), a programmed cell death-associated gene. Fragmentation of tumor DNA into nucleosomal oligomers and histological appearance of apoptotic bodies are characteristic early events that preceded the dramatic reduction in tumor volume following androgen ablation. These results suggest that androgen-dependent human prostatic cancer cells, like normal prostatic cells, retain the ability to inhibit proliferation and to activate programmed cell death in response to androgen ablation. Clarification of the biochemical pathway involved in the activation of this programmed cell death should identify new targets of therapy for even androgen-independent human prostatic cancer.

Androgens↗

Relationship between metastatic ability and H-ras oncogene expression in rat mammary cancer cells transfected with the v-H-ras oncogene.

To study the relationship between metastatic ability and activated ras expression, a cloned, low metastatic, dimethylbenz(a)anthracene-induced rat mammary cancer cell line (RMC1) was transfected with the v-H-ras oncogene. Cloned transfectants were characterized as high, medium, or low expressors of the v-H-ras gene, on the basis of Southern, Northern, and Western blot analysis. Following s.c. inoculation in syngeneic rats, all transfectants produced tumors; however, the in vivo growth rate of cloned transfectants which expressed any level of v-H-ras oncogene was significantly higher (approximately 5-fold) than that observed in the untransfected RMC1 cells. Control (neo only) transfectants exhibited no change in growth rate and had a low metastatic ability comparable to that of the parental untransfected cells. Certain cloned v-H-ras expressing transfectants were highly metastatic to the lungs and lymph nodes. These highly metastatic H-ras transfectants differed widely however, in their level of H-ras expression. The lung colonization potential following i.v. inoculation was increased in all transfectants which expressed any level of v-H-ras gene. These studies suggest that while v-H-ras transfection can result in the development of metastatic ability in rat mammary cancer cells, there is no simple dose-response relationship between the level of v-H-ras expression in cloned rat mammary cancer cell transfectants and the development of experimental or spontaneous metastases.

9,10-Dimethyl-1,2-benzanthracene↗