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Biomedical subjects

E Fenig

Publications and source records attributed to E Fenig.

At least 37 records · Page 2Linked to original sources

Expression of the apoptosis-related oncogenes bcl-2, bax, and p53 in Merkel cell carcinoma: can they predict treatment response and clinical outcome?

Chemotherapy and radiation therapy act predominantly through the induction of apoptosis in malignancies. Merkel cell carcinoma, an aggressive malignancy with prominent apoptosis, has proved to be sensitive to both modes to a certain degree. We used immunohistochemical methods to examine 25 Merkel cell carcinomas and 8 of their lymph node metastases to assess the status of the antiapoptotic gene bcl-2 and 2 proapoptotic genes, wild-type p53 and bax. All tumors showed prominent bax immunopositivity; 76% were positive for bcl-2, and only 28% were positive for p53, the latter presumably reflecting mutated p53. No statistically significant relationship was found between tumor immunopositivity and therapy response or survival. The widespread bax immunopositivity and the apparently low rate of p53 mutations, as suggested by the low rate of p53 immunopositivity, may be related to the presence of prominent apoptosis in Merkel cell carcinoma. The finding of bcl-2 immunopositivity in 76% of the tumors suggests that some of the tumor cells may be resistant to apoptosis-inducing agents.

Adult↗

Conservative treatment of adenocarcinoma of the endometrium in young patients. Is it appropriate?

Few reports have suggested that nulliparous young patients with endometrial cancer may be treated conservatively to preserve fertility. We present a young nulliparous woman with a well differentiated adenocarcinoma of the endometrium treated with progestins. Since she did not respond, a definite operation was performed revealing involvement of the uterine isthmus, thus necessitating adjuvant radiotherapy.

Adenocarcinoma↗

Overexpression of basic fibroblast growth factor (FGF-2) downregulates Bcl-2 and promotes apoptosis in MCF-7 human breast cancer cells.

Basic fibroblast growth factor (bFGF, FGF-2), a classical transforming factor, mitogen, and survival factor in multiple cell types, and has a paradoxic role in mammary epithelial cell transformation and proliferation. We have also demonstrated that recombinant FGF-2 uncharacteristically promotes cell death in MCF-7 human breast cancer cells. In this study, we investigated the effects of FGF-2 overexpression on survival in the same MCF-7 cells. In eight breast cancer cell lines and two nontransformed mammary epithelial cell lines, we demonstrated that high levels of Bcl-2 are only expressed in cells with undetectable levels of FGF-2 on western blot. In retrovirally transduced MCF-7 cells expressing both cytoplasm- and nucleus-localizing FGF-2 species and ones expressing only cytoplasm-localizing FGF-2 species, Bcl-2 levels were strongly decreased at both the mRNA and protein levels. Immunoprecipitation of Bax demonstrated a decreased association of Bax with Bcl-2 in these cells. Levels of Bax did not correlate with expression of FGF-2 in the 10 cell lines or in MCF-7 cells. The clonogenic potential of MCF-7 cells in tissue culture was decreased by the expression of FGF-2 and was additively suppressed by the chemotherapeutic agents etoposide and 5-fluorouracil in a dose and time dependent manner. MCF-7 cells overexpressing FGF-2 had a greater rate of programmed cell death at baseline and in response to etoposide and 5-fluorouracil in a TUNEL assay by immunofluorescent microphotography and by flow cytometric quantitation. The pro-apoptotic effect of FGF-2 overexpression on the chemosensitivity of these cells was confirmed by quantitative morphologic determination. These data demonstrate that the expression of FGF-2 downregulates Bcl-2 and promotes programmed cell death in MCF-7 human breast cancer cells.

Antimetabolites, Antineoplastic↗

Sentinel-node guided lymph-node dissection for merkel cell carcinoma.

Merkel cell carcinoma is an aggressive neuroendocrine skin tumour. Treatment is still debatable. Merkel cell carcinoma resembles malignant melanoma in its cutaneous presentation and its embryonic origin; both have unpredictable biological behaviour, early regional lymph node involvement, early distant metastases and a high recurrence rate. In light of these common features, we used pre-operative lymphoscintigraphy, intraoperative lymph-node mapping and sentinel-node biopsy-a well-described technique for the treatment of melanoma-in a 60-year-old man with Merkel cell carcinoma in the right buttock. Following frozen section identification of a metastatic first-order sentinel node, radical right groin dissection was performed. All the other lymph nodes in this basin proved to be disease-free, including the second-order sentinel node and Cloquet node. The patient is now being treated with adjuvant chemotherapy and radiotherapy. This case shows that sentinel-node guided dissection is applicable to Merkel cell carcinoma.

Carcinoma, Merkel Cell↗

Role of radiation therapy in the management of cutaneous malignant melanoma.

Traditionally, cutaneous malignant melanoma is regarded as a radioresistant tumor. Recently, however, an increasing number of clinical studies have refuted this notion. The authors examined the role of radiation therapy in the palliative and/or adjuvant treatment of cutaneous malignant melanoma. The records of 69 patients with cutaneous malignant melanoma were reviewed. Twenty-five patients with extensive regional lymph node involvement received adjuvant radiation therapy after primary surgical treatment, and the remainder received palliative radiation therapy. The therapeutic significance of fraction size was analyzed. In the palliative radiation therapy group, the response rate was 52% with a fraction size < or = 300 cGy and 35% with a larger fraction size (p > 0.05, NS). Local regional control rates after adjuvant radiation therapy using conventional fractionation and larger fraction size were 87% and 82%, respectively (p > 0.05, NS). Radiation therapy is effective in the management of cutaneous malignant melanoma. It plays an important role in the palliation of metastatic disease and as an adjuvant treatment. No advantage in using a large fraction size over conventional dose schedules was found.

Adult↗

Tailoring treatment for classical Kaposi's sarcoma: comprehensive clinical guidelines.

Classical Kaposi's sarcoma (CKS) is a rare indolent proliferative disease which is particularly prevalent among Jews of Ashkenazi and Mediterranean origin. To define guidelines for its comprehensive management, we conducted a retrospective analysis of 123 patients, focusing mainly on treatment modalities. The CKS-related mortality was 4% (5 patients). Of the 39 patients for whom observation only was the primary approach, 15 (38%) remained progression-free for 1-83 months (median, 4 months). Twenty-nine of the 52 (56%) patients who underwent surgery as the primary approach remained recurrence-free for 1-162 months (median, 15 months). Radiotherapy achieved an objective response in 74 courses (85%), including 50 (58%) complete responses. Symptomatic relief was reported in 95% of the patients. Vinblastine (27 series) achieved an objective response in 73% of series, including 22% complete responses. Multivariate analysis of time to progression with observation alone identified immunosuppression as the only significant independent factor that predicted disease progression. Our study suggests that observation alone may be sufficient for immunocompetent asymptomatic patients; symptomatic resectable lesions are suitable for simple excision; and more advanced disease or unresectable lesions require radiotherapy. If disease is extensive or the other approaches fail, chemotherapy is appropriate. Tailoring the treatment for CKS is an integrative process, requiring good understanding of the role of each available modality in the different clinical disease settings.

Adult↗

Ascorbic acid inhibits apoptosis induced by X irradiation in HL60 myeloid leukemia cells.

Exposure of cells to ionizing radiation can cause apoptosis. Since antioxidants have been shown to protect against radiation-induced apoptosis, in this study we have evaluated the putative protective effect of ascorbate against radiation-induced apoptosis as well as the production of peroxides in the cells. HL60 cells transport the oxidized form of ascorbic acid, dehydroascorbic acid (DHA), and accumulate reduced ascorbate. Exposure of the cells to 5-40 Gy X radiation resulted in induction of apoptosis. Preincubation of the cells with DHA reduced the level of apoptosis after exposure to 5-20 Gy. Exposure of the cells to 5 or 20 Gy X radiation did not affect the intracellular concentration of peroxides, while phorbol myristate acetate (PMA), which is known to induce production of H(2)O(2) in cells (and served as a control), resulted in an increase in peroxides and a decrease in intracellular ascorbate. Irradiation of the cells with 1-3 Gy resulted in up-regulation of expression of BCL2 without affecting the level of apoptosis. At higher doses of radiation, enhanced BCL2 expression did not prevent radiation-induced apoptosis. Loading of the cells with ascorbate prior to their exposure to 1-3 Gy X radiation did not affect the enhanced BCL2 expression observed in the irradiated cells. At higher doses of radiation, ascorbate decreased apoptosis and restored the level of BCL2 in the cells. Exposure of the cells to 3-20 Gy X radiation enhanced the cell surface expression of TNFRSF6 (formerly known as Fas/APO-1) antigen and enhanced anti-TNFRSF6 antibody-induced apoptosis of the cells. Ascorbate loading did not affect expression of TNFRSF6 and did not overcome the anti-TNFRSF6 antibody-induced apoptosis. In conclusion, our data demonstrate that exposure of HL60 cells to radiation enhanced BCL2 and TNFRSF6 expression. Ascorbate did not affect BCL2 or TNFRSF6 expression. We therefore conclude that it protects HL60 cells against radiation-induced apoptosis, although the mechanisms of protection must still be elucidated.

Apoptosis↗

Basic fibroblast growth factor downregulates Bcl-2 and promotes apoptosis in MCF-7 human breast cancer cells.

Basic fibroblast growth factor (bFGF) is a mitogen and a survival factor in fibroblasts and endothelial cells. It acts as an angiogenesis factor in breast cancer, but paradoxically inhibits proliferation in several breast cancer cell lines. In this study, we investigated the effects of bFGF on the survival of MCF-7 human breast cancer cells in order to determine if these effects were also opposite to those in fibroblasts. Incubation of NIH 3T3 cells with bFGF for 24 h caused an approximately 30% increase in day 12 +/- 2 adherent colonies while causing an approximately 50% decrease in MCF-7 colony formation. Incubation of NIH 3T3 cells with bFGF prior to etoposide or 5-fluorouracil treatment caused a proportionally smaller decrease in colony forming efficiency as a result of drug treatment, while preincubation of MCF-7 cells with bFGF caused a similar but opposite additive increase in drug-induced diminution of colony forming efficiency. These effects on MCF-7 cells were observed at variable times of incubation and doses of etoposide to 1 microM and 5-fluorouracil to 200 microM and at variable times of incubation and concentrations of bFGF to 1 ng/ml. Incubating with bFGF after drug exposure had similar effects on the reduction of cloning efficiency. The effects of bFGF were similar on programmed cell death, as determined by morphologic characteristics of apoptosis on 400 cell counts and FITC-dUTP 3'-OH DNA end labeling. Basic FGF promoted apoptosis and increased the rate of drug-induced cell death with both etoposide and 5-fluorouracil. While recombinant bFGF affected Bcl-2 protein and mRNA levels in NIH 3T3 cells only marginally and variably and had no discernible effects on Bax protein levels, it markedly downregulated Bcl-2 mRNA and protein levels in MCF-7 cells and caused an increase in Bax protein levels. These changes resulted in a decreased association of Bcl-2 with immunoprecipitable Bax and an increased association of Bax with immunoprecipitable Bcl-2 in MCF-7 cells treated with bFGF. These data suggest that bFGF may cause different phenotypic responses in breast cancer cells from those in surrounding cells and offer one possible mechanism through opposite regulation of Bcl-2 and Bax. Inhibition of colony formation by bFGF was observed in several breast cancer cells lines, demonstrating that this effect demonstrated in MCF-7 cells was more universal.

3T3 Cells↗

Overexpression of basic fibroblast growth factor in MCF-7 human breast cancer cells: lack of correlation between inhibition of cell growth and MAP kinase activation.

Basic fibroblast growth factor (bFGF, FGF-2) is progressively lost from mammary epithelial cells as they become malignant. To investigate the effects of restoring the expression of bFGF in breast cancer cells, we constructed MCF-7 cells that permanently overexpress 18-kD cytoplasm-localizing bFGF (MCF-7/deltaA(FGF)(18) cells) and cells that express both the 18-kD along with the 22- and 24-kD nucleus-localizing bFGF peptides (MCF-7/NCF(FGF)(18,22,24) cells), using retroviral transduction. These stable cell constructs grew more slowly and had a larger fraction of their populations in the G0/G1 phase of the cell cycle than control cells. All forms of bFGF were eluted from MCF-7/NCF(FGF)(18,22,24) cell monolayers with 2 M NaCl, in contrast to fibroblasts that were demonstrated to secrete only the 18-kD bFGF isoform. High-affinity binding of 18-kD 125I-bFGF to these cells was significantly decreased, probably because of competitive binding by the autocrine-secreted bFGF. Recombinant 18-kD bFGF that was previously demonstrated in our laboratory to inhibit proliferation, activate MAP kinase, and induce the cyclin-dependent kinase inhibitor p21WAF1/CIP1 in MCF-7 cells, further inhibited MCF-7/deltaA(FGF)(18) cells but had no effect on MCF-7/NCF(FGF)(18,22,24) cells. The total cellular content of the high-affinity FGF receptors 1-3 was unchanged, but FGF receptor 4 was decreased in MCF-7/NCF(FGF)(18,22,24) cells. Both cell types overexpressing bFGF isoforms had elevated levels of the cyclin-dependent kinase inhibitor p27Kip1 but not that of p21WAF1/CIP1. In MCF-7/deltaA(FGF)(18) cells, FGFR1 and MAP kinase were constitutively phosphorylated. Exogenous recombinant 18-kD bFGF did not accentuate these effects but did induce an increase in the levels of p21WAF1/CIP1 corresponding to the further inhibition induced by exogenous bFGF in these cells. In MCF-7/NCF(FGF)(18,22,24) cells, FGFR1 and MAP kinase were not phosphorylated at baseline nor upon stimulation with recombinant bFGF, and exogenous bFGF only had a minimal effect on low steady-state p21WAF1/CIP1 levels. However, stimulation of these cells with phorbol ester or insulin did result in MAP kinase phosphorylation. While growth-inhibited in the G1 phase of the cell cycle, MCF-7/NCF(FGF)(18,22,24) cells retained active isoforms of cdk2 and the hyperphosphorylated form of Rb. These data suggest that high molecular weight forms of bFGF overexpressed in MCF-7 cells do not activate the receptor-mediated MAP kinase pathway, and do not induce p21WAF1/CIP1 in an autocrine manner, but inhibit proliferation through other, possibly direct nuclear signalling mechanisms.

Breast Neoplasms↗

Classic Kaposi sarcoma: experience at Rabin Medical Center in Israel.

Classic Kaposi sarcoma is an indolent cutaneous proliferative disease affecting mainly elderly people of Mediterranean and Jewish origin. The authors review the epidemiologic and clinical findings in Israeli patients with classic Kaposi sarcoma treated at the Institute of Oncology, Rabin Medical Center. A total of 123 patients were identified. The average age at diagnosis was 68 years (range, 20-90 years) and, as expected, there was a strong predominance of men (2.4:1). All but two patients were Jewish. The distribution of Ashkenazic Jews and Sephardic Jews was almost equal. Twenty-three patients (19%) had secondary malignancies that were mostly solid tumors. The clinical course was indolent and rarely fatal (4% disease-related mortality). Multivariate analysis revealed that non-Ashkenazic origin, age over 70 years, multiple lesions (>10), and immunocompromised conditions adversely affected survival. Radiotherapy for localized skin lesions yielded an 88% objective response, with symptomatic relief in 95% of patients. Chemotherapy was similarly effective (76% response rate) in patients with disseminated disease. These data demonstrate the indolent nature of classic Kaposi sarcoma which usually requires a less aggressive therapeutic approach than in the African and AIDS-related types of Kaposi sarcoma.

Adult↗

The role of radiation therapy and chemotherapy in the treatment of Merkel cell carcinoma.

BACKGROUND: Merkel cell carcinoma is a rare and highly aggressive skin tumor. The purpose of this study was to determine the role of radiation therapy and chemotherapy in the treatment of patients with Merkel cell carcinoma. METHODS: A retrospective analysis of 27 patients treated at Rabin Medical Center in Israel is presented, focusing on the treatment details. Data for 40 patients (the authors' 27 patients and an additional 13 patients from the Israeli Cancer Registry), were analyzed for prognostic factors using univariate and multivariate analyses. RESULTS: Univariate analyses revealed regional lymph node involvement and the coexistence of a second primary tumor as unfavorable prognostic factors. On multivariate analysis, only lymph node involvement showed borderline statistical significance. Radiation therapy was highly effective when given as consolidation after surgery or chemotherapy. In 11 patients irradiated effectively, only 1 (9%) in-field recurrence occurred. Radiation therapy yielded responses in 15 of 15 measurable sites (5 complete responses and 10 partial responses). Chemotherapy produced responses in 18 of 26 patients (69%), mostly complete (41%). However, in the absence of radiation therapy, the responses were short lived. CONCLUSIONS: These data support the use of combined treatment with chemotherapy followed by radiation therapy for patients with advanced locoregional Merkel cell carcinoma. In patients with metastatic disease, chemotherapy as well as radiotherapy can provide effective palliation. Further large scale investigations are warranted to confirm this approach.

Adult↗

Basic fibroblast growth factor causes growth arrest in MCF-7 human breast cancer cells while inducing both mitogenic and inhibitory G1 events.

Basic fibroblast growth factor (bFGF), a classical mitogen in fibroblasts and endothelial cells, inhibits the proliferation of MCF-7 and other human breast cancer cell lines. To explain this paradoxic effect, we investigated the effects of bFGF on cyclins and protein members of cyclin complexes that exert positive and negative control on the progression of cells through the G1 phase of the cell cycle. bFGF induced an increase in cyclin D1, cyclin E, and cyclin-dependent kinase 4 (cdk4) protein levels in a bFGF dose-dependent manner. However, bFGF also induced a heat-stable, transferable cytoplasmic factor in MCF-7 cells that inhibited the histone H1 kinase activity of reconstituted cyclin E-cdk2 and cyclin A-cdk2 complexes from Mv1Lu mink lung epithelial cells. The appearance of this inhibitor correlated with a bFGF dose- and time-dependent increase in the levels of cdk inhibitor p21(WAF1/CIP1) mRNA and protein. The increase in the level of p21(WAF1/CIP1) was associated with the disappearance of the rapidly migrating, activated form of cdk2 from cell lysates, dephosphorylation of the retinoblastoma protein (Rb), and a decrease in cyclin A levels. These changes were represented in the cyclin D1 and E complexes by an increased association with p21(WAF1/CIP1), proliferating cell nuclear antigen (PCNA), and the inactive form of cdk2, without an absolute change in cellular PCNA levels and by a switch in the association of cyclin D1 complexes with the hyperphosphorylated form to the dephosphorylated form of Rb. These experiments demonstrate that stimulation of MCF-7 cells with bFGF, although resulting in up-regulation of G1 proteins responsible for mitogenic events, also induces a concomitant decrease in cyclin A levels and an increase in p21(WAF1/CIP1) mRNA and protein and results in inactivation of cdk2, dephosphorylation of Rb, and a segregation of PCNA to the G1 cyclin complexes. The dual, conflicting signaling by bFGF results in a net inhibitory phenotype in these cells. These experiments suggest a pleiotropic role for bFGF in breast cancer.

Blotting, Western↗

Basic fibroblast growth factor confers growth inhibition and mitogen-activated protein kinase activation in human breast cancer cells.

The effect of basic fibroblast growth factor (bFGF) on human breast cancer cells was studied in vitro. Exposure to bFGF resulted in significant growth inhibition, decreased DNA synthesis, and accumulation of cells in G0-G1. The IC50 for growth inhibition in MCF-7 cells was 50 pg/ml, and it was abrogated by neutralizing antibodies against bFGF. Inhibition of growth by bFGF was predominant over the growth stimulatory effects of 17beta-estradiol, insulin, or epidermal growth factor. Binding and cross-linking studies of 125I-labeled bFGF in intact MCF-7 cells demonstrated 5.2 x 10(3) saturable bFGF binding sites per cell, a dissociation constant of 57 pm, and a Mr 142,000 (125)I-labeled bFGF cross-linked protein. Stimulation of MCF-7 cells with bFGF at concentrations which effected growth inhibition also resulted in activation of p42(mapk) (ERK2) and p44(mapk) (ERK1) mitogen-activated protein kinases. These data demonstrate that whereas bFGF inhibits the growth of several breast cancer cell lines, it concomitantly activates ERK1 and ERK2, generally considered to signal mitogenic rather than growth inhibitory responses. Whether there is association between these phenomena remains unknown.

Binding Sites↗

Merkel cell carcinoma in Israel.

Merkel cell carcinoma is a rare and highly malignant skin tumor. We present the first report on the clinical and epidemiologic characteristics of Merkel cell carcinoma in Israel. Our findings, including average age of 69 years at diagnosis, equal sex distribution, disease location on sun-exposed skin, and an overall 3 year survival of 58%, are consistent with the data reported in the literature. Unique findings in our study were the predominance of Ashkenazic Jews and the excessive rate of second malignancies. This initial report on Merkel cell carcinoma in Israel emphasizes the need for increased awareness of this aggressive and potentially lethal skin malignancy.

Adult↗

9-Cis retinoic acid inhibits growth of breast cancer cells and down-regulates estrogen receptor RNA and protein.

All-trans retinoic acid (tRA) inhibits growth of estrogen receptor-positive (ER+) breast cancer cells in vitro, and a variety of retinoids inhibit development of breast cancer in animal models. 9-cis retinoic acid (9-cis RA) is a naturally occurring high affinity ligand for the retinoid X receptors, as well as the retinoic acid receptors (RARs). Whether 9-cis RA has a different spectrum of biological activity from tRA, which only binds RARs with high affinity, is largely unknown. We studied the effects of 9-cis RA on growth and gene expression in ER+ and ER- human breast cancer cells. 9-cis RA inhibited the growth in monolayer culture of several ER+, but not ER-, cell lines in a dose-dependent manner. Growth inhibition and morphological changes by 9-cis RA were similar to those of tRA, suggesting that the ability to bind both RAR and retinoid X receptors did not significantly augment growth inhibition or confer sensitivity to tRA-resistant lines. MCF-7 cells exposed to 9-cis RA showed a dose-dependent accumulation in G1. Northern analyses showed that RAR-alpha and RAR-beta were not significantly regulated, while RAR-gamma was up-regulated and retinoid X receptor alpha was down-regulated by 9-cis RA. Since interactions between tRA and ER-dependent transcription have recently been reported, we investigated whether these retinoids regulate expression of ER itself or estrogen-responsive genes. Both 9-cis RA and tRA induce down-regulation of ER mRNA and protein in MCF-7 cells. 9-cis RA down-regulates expression of the estrogen-responsive genes PR and pS2 in MCF-7 cells as reported previously for tRA. In several ER-positive subclones, we found that the degree of ER expression and regulation, but not always estrogen-sensitivity, correlates with the growth-inhibitory effects of 9-cis RA. Further, in an ER-, retinoid-unresponsive breast cancer cell line, induced ER expression confers responsiveness to retinoid growth inhibition. These data, combined with reports of additive growth inhibition of tRA and tamoxifen in vitro, suggest that 9-cis RA might augment the ability of tamoxifen to inhibit growth of ER+ breast cancer cells in vivo.

Breast Neoplasms↗

The use of cyclophosphamide, methotrexate, and 5-fluorouracil in the treatment of Merkel cell carcinoma.

Five patients with advanced Merkel cell carcinoma (MCC) are described. Four patients with regional lymph node involvement and one with disseminated skin metastases were treated with systemic chemotherapy, including cyclophosphamide, methotrexate, and 5-fluorouracil (CMF). The patients received a median of six cycles of CMF (range: 2 to 6), and chemotherapy was well tolerated. Four complete and one partial response were noted. Three patients are alive and are disease-free at 5, 12, and 37 months from the onset of CMF chemotherapy. Two patients died from disseminated metastatic disease at 3 and 24 months from the onset of chemotherapy. CMF chemotherapy appears to be an active regimen in the treatment of locally advanced MCC. Further experience with this combination is warranted.

Adult↗

The treatment of advanced Merkel cell carcinoma. A multimodality chemotherapy and radiation therapy treatment approach.

BACKGROUND: The optimal management of Merkel cell carcinoma has not been clearly defined. OBJECTIVE: To describe the treatment of eight patients who presented with Merkel cell carcinoma. METHODS: Eight patients with advanced locoregional Merkel cell carcinoma were seen in our institute over a 7-year period. Four patients were successfully treated by induction chemotherapy after excisional biopsy, followed by radiotherapy. Three patients died from widespread metastases and one from neutropenic sepsis induced by chemotherapy. RESULTS: These cases demonstrate the potential lethality and aggressive nature of this rare skin tumor despite its chemosensitive and radioresponsive character. In all four patients who are alive and disease-free, chemotherapy was given first and radiotherapy was given as consolidation. CONCLUSION: We suggest that a multimodality treatment approach--chemotherapy followed by radiotherapy--is indicated in patients with advanced Merkel cell carcinoma.

Adult↗

Guanosine potentiates the antiproliferative effect of cytosine-beta-D-arabinofuranoside in melanoma cell lines.

Guanosine is shown to potentiate markedly the antiproliferative effect of cytosine-beta-D-arabinoside (ara-C) on B16 F10 mouse and SKMEL-28 human melanoma cell lines. Several metabolic consequences of the synergistic interaction between ara-C and guanosine on cell growth were determined in B16 F10 mouse melanoma cells. Treatment of the cells with guanosine for 24 hr resulted in an increase in the percentage of cells in the S phase of the cell cycle, a threefold increase in intracellular GTP concentration, and an increase in the incorporation of ara-C into acid-insoluble material and phosphorylated metabolites. These findings suggest that guanosine potentiates the growth-inhibitory effect of ara-C in B16 F10 melanoma cells by increasing the intracellular concentration of its active metabolites.

Animals↗