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Biomedical subjects

W Bollag

Publications and source records attributed to W Bollag.

At least 19 recordsLinked to original sources

RARalpha antagonist Ro 41-5253 inhibits proliferation and induces apoptosis in breast-cancer cell lines.

Ro 41-5253 is a RARalpha-selective antagonist that binds RARalpha but does not induce transcriptional activation and does not influence RAR/RXR heterodimerization and DNA binding. This retinoid inhibits proliferation and induces apoptosis in MCF-7 and ZR-75.1 estrogen-receptor-positive breast-carcinoma cells in a dose-dependent way. The anti-proliferative effect is more evident in ZR-75.1 cells than in MCF-7 cells and is probably mediated by anti-AP1 activity, a mechanism known to be implied in the action of several retinoids. In the induction of apoptosis also ZR-75.1 cells are more sensitive to treatment with Ro 41-5253 than MCF-7 cells. In ZR-75.1 cells an apoptotic/hypodiploid DNA peak is already evident after 2 days of incubation, whereas in MCF-7 cells it appears only after 4 days. The highest percentage of apoptotic cells, for both cell lines, is reached after 6 days of treatment. The apoptosis pathway is p53-independent and bcl-2 downregulation seems to be correlated with an increase in TGF-beta1 protein. The MDA-MB-231 estrogen-receptor-negative cell line is poorly responsive to Ro 41-5253 treatment, both in terms of proliferation inhibition and apoptosis induction. Ro 41-5253 has proliferation-inhibiting and apoptosis-inducing properties that are not mediated by transcriptional activation from retinoic-acid response elements. This retinoid antagonist seems to be a compound that exerts an anti-tumor activity but does not induce the toxic side effects of retinoids and might, therefore, be considered as a candidate for cancer therapy.

Apoptosis

High-level expression of the retinoic acid receptor beta gene in normal cells of the uterine cervix is regulated by the retinoic acid receptor alpha and is abnormally down-regulated in cervical carcinoma cells.

Retinoic acid (RA) is essential for regulation of epithelial cell differentiation. The intracellular effects of RA are mediated by RA-binding nuclear receptors, including the RA receptors (RARs) alpha, beta, and gamma. The ligand-activated receptors induce the transcription of target genes by binding to RA-responsive elements in the promoter regions. One target gene is the RAR beta gene, which encodes a potential tumor suppressor. Loss of RA inducibility of RAR beta gene expression is assumed to play a role in the development of several types of human carcinomas, including carcinomas of the uterine cervix. We have analyzed RAR beta gene expression in normal cervical cells and in cervical carcinoma cell lines. The results show that the RAR beta mRNA levels are high and RA inducible in the primary keratinocytes, whereas they are low and not inducible or only slightly inducible by RA in all of the cervical carcinoma cell lines analyzed. The basal and the RA-induced RAR beta mRNA levels tend to increase with senescence of the normal cells. Fusion of primary ectocervical keratinocytes with HeLa cervical carcinoma cells revealed that the characteristics of RAR beta gene expression of the normal cells are dominant over that of the tumor cells. Using synthetic retinoids with receptor-preferential agonist activities and a RAR alpha-specific antagonist, we show that RAR alpha is the major endogenous RAR subtype for induction of RA-dependent RAR beta gene expression. Taken together, our results indicate that abnormal downregulation of RAR beta gene expression may be an important step in the multifactorial process of cervical carcinogenesis.

Blotting, Northern

Effects of all-trans-retinoic acid and 13-cis-retinoic acid on breast-cancer cell lines: growth inhibition and apoptosis induction.

Interest has been increasingly focused on all-trans-retinoic acid (tRA) and 13-cis-retinoic acid (13cRA) in cancer chemoprevention and treatment. We have examined the in vitro effects of these 2 retinoic acids (RAs) on human breast-cancer cell lines MCF-7 and ZR-75.1 (both estrogen-receptor-positive, ER+) and MDA-MB-231 (estrogen-receptor-negative, ER-), in terms of inhibition of proliferation and induction of apoptosis. Both retinoic acids exerted an evident dose-dependent growth inhibition, although in the ER- cell line the anti-proliferative effect was obtained only with the highest concentration used; the anti-proliferative activity of tRA was more evident than 13cRA on all 3 tested cell lines. tRA and 13cRA induced apoptosis in MCF-7 and MDA-MB-231 cell lines, but not in ZR-75.1. The apoptotic phenomenon was clearly time-dependent, and in our experience it was not related to the arrest in a specific phase of cell cycle. After treatment with RAs the levels of bcl-2 were reduced in MCF-7, while in ZR-75.1 and in MDA-MB-231 no treatment-related modifications were observed. An analysis of estrogen-receptor status, used as a marker of differentiation, demonstrated that after treatment with RAs the levels of estrogen receptor (ER) decreased in ZR-75.1 only. Our study indicates that the anti-proliferative effects of RAs are sustained by induction of apoptosis in MCF-7 and MDA-MB-231 cells, while in ZR-75.1 cells an induction of differentiation without apoptosis was the prevalent mechanism of growth inhibition. Our results encourage further studies on in vivo effects of these retinoids in breast cancer.

Antineoplastic Agents

Trial of isotretinoin and calcitriol monitored by CA 125 in patients with ovarian cancer.

Twenty-two asymptomatic women with rising CA 125 levels after chemotherapy for ovarian cancer were entered into a trial of isotretinoin combined with calcitriol. Tumours were evaluated according to precise criteria based on serial CA 125 levels and by comparing regression slopes of CA 125 before and during therapy. There was no evidence based on CA 125 of any responses or significant change in tumour growth rate.

Antineoplastic Combined Chemotherapy Protocols

Interleukin-12 inhibits angiogenesis induced by human tumor cell lines in vivo.

Tumor cell-induced angiogenesis, i.e., new blood vessel formation within tumor tissue, is an essential requirement for the growth of solid neoplasms. Interleukin-12 (IL-12) inhibits growth of a variety of experimental tumors in vivo. We tested whether antitumor activity of IL-12 is related to the inhibition of angiogenesis induced by tumor cell lines. Angiogenesis was induced in x-ray immunosuppressed Balb/c mice by intradermal injection of the following human tumor cells: T47D, originating from mammary carcinoma; A431, derived from vulval carcinoma; and Skv, established from bowenoid papulosis, Systemic treatment of the mice with murine IL-12 significantly decreased angiogenesis induced by human tumor cells in a time-and dose-dependent manner. Preincubation of human cells in vitro with IL-12 did not inhibit tumor cell-induced angiogenesis, suggesting that the antiangiogenic capacity of IL-12 is restricted to in vivo conditions. Treatment of the mice with rat antibody against murine interferon-gamma (IFN-gamma) resulted in counteracting the antiangiogenic effect of murine IL-12. Furthermore, human IFN-gamma inhibited the angiogenic activity of human tumor cell lines. This indicates that IFN-gamma is a mediator of the antiangiogenic effect of IL-12. The results show that the mechanism of antitumor action of IL-12 may depend not only on the immunostimulatory activity of this cytokine but also on its effect on tumor cell-induced angiogenesis. IL-12 should be considered as a potential candidate for the treatment of angiogenesis-dependent malignancies.

Animals

Oral 9-cis-retinoic acid versus 13-cis-retinoic acid in acne therapy.

BACKGROUND: 9-cis-Retinoic acid (9-cis-RA) is as active as 13-cis-retinoic acid (13-cis-RA) in inhibiting the proliferation of cultured human sebocytes and in reducing the size of sebaceous glands of hamsters. OBJECTIVE: Evaluate the anti-acne effect of 9-cis-RA compared to that of 13-cis-RA in a pilot study. METHODS: Four young male patients with acne were treated in an open study consecutively with 9-cis-RA and 13-cis-RA given at similar doses. RESULTS: No beneficial effects were observed with 9-cis-RA in any of the patients whereas all responded favorably to 13-cis-RA. CONCLUSION: For the two retinoids tested, the anti-acne effect correlates with the sebosuppressive effect in humans.

Acne Vulgaris

Efficacy of oral low-dose tretinoin (all-trans-retinoic acid) in lichen planus.

BACKGROUND: Retinoids were shown to be effective in the treatment of both oral and cutaneous forms of lichen planus. OBJECTIVE: Confirm the beneficial effect of low doses of oral tretinoin in lichen planus. METHODS: Eighteen patients with lichen planus were treated in an open study for up to 19 months. Efficacy and safety data were recorded. RESULTS: Complete remission was observed in 13 (72%) and marked improvement in 4 (22%) out of 18 patients. Six patients showed moderate and 12 had no side effects. CONCLUSION: Tretinoin is a valuable drug when given at low doses to patients with lichen planus who failed to respond to other therapies.

Administration, Oral

Vitamin D3 is a potent inhibitor of tumor cell-induced angiogenesis.

Vitamin D3 derivative 1,25-dihydroxyvitamin D3 (1,25[OH]2D3) exerts various biological effects in cells that possess vitamin D3 receptor (VDR), including enhancement of cell differentiation and inhibition of cell proliferation. These activities of 1,25(OH)2D3 might be responsible for its anti-neoplastic effects, as shown in various experimental systems. The aim of this study was to compare the anti-angiogenic activity of 1,25(OH)2D3, retinoids, and interleukin-12 (IL-12) in an experimental tumor cell-induced angiogenesis assay in mice. Tumor cell-induced angiogenesis assay was performed in x-ray immunosuppressed BALB/c mice by intradermal injections of human tumor cell lines of different origin. The injections resulted within 3 d in a local formation of new blood vessels, and the intensity of angiogenesis correlated with the number of injected cells. Systemic treatment of the mouse recipients with 1,25(OH)2D3 significantly decreased angiogenesis, comparable to the effect of retinoids (all-trans retinoic acid [RA], 9-cis RA and 13-cis RA) and of IL-12. In vitro preincubation of the cells with all compounds (except IL-12) led to the inhibition of their angiogenic capability in vivo. Moreover, combination of 1,25(OH)2D3 and retinoids resulted in a synergistic inhibition of angiogenesis. The results strongly suggest that anti-angiogenic compounds with relatively low toxicity (e.g., 1,25(OH)2D3, retinoids, and IL-12) and their combinations could be beneficial in the treatment of some angiogenesis-associated malignancies.

Animals

Retinoids, interferon alpha, 1,25-dihydroxyvitamin D3 and their combination inhibit angiogenesis induced by non-HPV-harboring tumor cell lines. RAR alpha mediates the antiangiogenic effect of retinoids.

Retinoids combined with interferon alpha-2a (IFN alpha) or 1,25-dihydroxyvitamin D3 [1,25(OH)2D3] have shown marked synergistic inhibitory effects on angiogenesis induced by tumor cell lines harboring DNA of oncogenic human papillomaviruses (HPV) type 16 or 18. This report demonstrates comparable effects of these compounds on angiogenesis induced by non-HPV-bearing transformed cell lines, including breast carcinoma (T47D) and vulval carcinoma (A431) cell lines. Systemic treatment of mice with all-trans retinoic acid, 13-cis retinoic acid, 9-cis retinoic acid, IFN alpha or 1,25(OH)2D3 significantly decreased tumor cell-induced angiogenesis (TIA). In vitro pretreatment of T47D and A431 cells with these compounds also led to inhibition of their angiogenic capability when tested in the TIA assay. The inhibitory effects of retinoids could be counteracted by a selective antagonist of the nuclear retinoic acid receptor RAR alpha, suggesting a RAR alpha mediated mechanism of angiogenesis inhibition. The antiangiogenic effect of retinoids could be significantly enhanced by combination with IFN alpha or 1,25(OH)2D3. The results provide a further basis for the use of combinations of retinoids with IFN alpha or 1,25(OH)2D3 in the treatment of angiogenesis-dependent malignancies.

Animals

Synergistic effect of retinoids and interferon alpha on tumor-induced angiogenesis: anti-angiogenic effect on HPV-harboring tumor-cell lines.

Various retinoids and interferons exert anti-tumor effects both in experimental studies and in clinical trials. Recent reports indicate that they have a synergistic antineoplastic activity. Our study aimed to determine whether these synergistic anti-tumor effects are related to inhibition of tumor-cell-induced angiogenesis. A further aim was to compare the anti-angiogenic activity of various retinoids including 9-cis retinoic acid, a ligand for nuclear retinoic acid receptor RXR, given alone and in combination with interferon alpha-2a (IFN alpha-2a). An in vivo experimental model of cutaneous angiogenesis in the mouse was used. Angiogenesis was induced by intradermal injection of HPV16- or HPV18 DNA-harboring tumor-cell lines. All-trans retinoic acid (all-trans RA), 13-cis retinoic acid (13-cis RA) and 9-cis retinoic acid (9-cis RA) as well as IFN alpha-2a applied to mice intraperitoneally for 5 consecutive days before induction of angiogenesis resulted in significant inhibition of angiogenesis. Combination of retinoids with IFN alpha-2a led to a synergistic inhibition of angiogenesis, as compared to the effects of the drugs given alone. Similar results were obtained when tumor cells were preincubated in vitro with the compounds, before injection into untreated mice. Our findings on synergistic anti-angiogenic effects of retinoids and IFN alpha-2a could explain, at least partially, the anti-tumor efficacy of combined therapy with these agents, and provide support for the role of angiogenesis in tumor growth.

Animals

Experimental basis of cancer combination chemotherapy with retinoids, cytokines, 1,25-dihydroxyvitamin D3, and analogs.

Retinoids, cytokines as well as 1,25-dihydroxyvitamin D3 [1,25(OH)2D3] and analogs possess properties known to contribute potentially to cancer chemopreventive and chemotherapeutic effects. They induce cell differentiation, inhibit cell proliferation, suppress expression of viral oncogenes, and inhibit angiogenesis necessary for tumor growth. Since clinical combination chemotherapy of cytotoxic agents has proven superior to monotherapy, this modality might also be useful for other classes of antitumor drugs. A series of retinoids, such as all-trans-, 13-cis-, 9-cis retinoic acid, and acitretin, cytokines, 1,25(OH)2D3, and analogs have been investigated in model systems of differentiation, proliferation, viral oncogenes, and angiogenesis. The three classes of compounds have common effects but nevertheless show a variance depending on the particular representative of each class. Combination of compounds of the different classes led in the various models to a higher efficacy compared with the compounds given alone. Cytokines such as IFN alpha, IFN gamma, G-CSF, TNF alpha, IL-1, and IL-4 markedly potentiate the differentiation-inducing effect of retinoids. Cytokines as well as retinoids combined with 1,25(OH)2D3 and analogs synergistically enhanced differentiation induction in human transformed hemopoietic cell lines. On a series of human transformed epithelial cell lines a panel of cytokines, such as IFN alpha, IFN gamma, TNF alpha, TGF beta, and EGF acted synergistically with retinoids on inhibition of proliferation. This was also observed by combining retinoids with 1,25(OH)2D3 and analogs. Retinoids as well as interferons alpha and gamma have the capacity to suppress the oncogene expression of human papilloma viruses which are involved in induction and growth of certain malignancies such as cervical cancer.(ABSTRACT TRUNCATED AT 250 WORDS)

Calcitriol

Cancer combination chemotherapy with retinoids: experimental rationale.

Retinoids, cytokines as well as 1,25-dihydroxyvitamin D3 and its analogs are all classes of compounds with pleiotropic actions. They inhibit proliferation in human transformed epithelial cell lines and induce differentiation in human transformed hemopoietic cell lines. In a murine model of tumor cell-induced angiogenesis all three classes of compounds inhibit the formation of new blood vessels, necessary for supplying the growing tumor with oxygen and nutrients. Combinations of compounds from the three different classes lead to higher efficacy than the compounds administered as single agents. The effects of combinations vary depending on the individual representatives of the three classes and on the particular test models used. Additive, synergistic and potentiating effects have been observed. The results obtained in experimental systems raise hope that combination therapy might be useful in the treatment of certain human neoplastic diseases.

Animals

Cancer combination chemotherapy with retinoids: experimental rationale.

Retinoids, cytokines as well as 1,25-dihydroxyvitamin D3 and its analogs are all classes of compounds with pleiotropic actions. They inhibit proliferation in human transformed epithelial cell lines and induce differentiation in human transformed hemopoietic cell lines. In a murine model of tumor cell-induced angiogenesis all three classes of compounds inhibit the formation of new blood vessels, necessary for supplying the growing tumor with oxygen and nutrients. Combinations of compounds from the three different classes lead to higher efficacy than the compounds administered as single agents. The effects of combinations vary depending on the individual representatives of the three classes and on the particular test models used. Additive, synergistic and potentiating effects have been observed. The results obtained in experimental systems raise hope that combination therapy might be useful in the treatment of certain human neoplastic diseases.

Animals

Combination 13-cis-retinoic acid and interferon alpha-2a in the therapy of solid tumors.

Preclinical data indicate that the combination of retinoids and interferons have synergistic antiproliferative and differentiating effects in some hematologic and solid tumor models. These observations have led to clinical trials in which 13-cis-retinoic acid (13cRA) 1 mg/kg/day was combined with interferon alpha-2a (IFN alpha) 3 or 6 x 10(6) U/day. The first two such trials produced exciting results: 50% response rate in patients with previously untreated stages IB-IVA cervix cancer and 68% in patients with advanced squamous cell skin cancer. These data led to a number of additional trials of the combination, but the high response rates seen in the initial cervix and skin trials have not been duplicated in the other squamous tumors tested (head and neck, lung, pretreated cervix). In addition, trials in two nonsquamous histologies were negative (lung and melanoma). However, the regimen was not always studied in an optimal population of previously untreated patients and the negative results in pretreated cervix patients point to the relevance of this consideration. Nevertheless, the observation that the combination of 13cRA and IFN alpha (both of which bind to specific receptors and change gene expression) is able to induce regression in advanced tumors, must be regarded as highly important. Key questions to be addressed include an understanding of the biologic mechanism of specific tumor sensitivity (why some squamous tumors and not others?), and mechanisms of resistance in sensitive tumor types (e.g. cervix). Such data may lead to trials targeted to tumor types with defined biologic features having a high liklihood of clinical benefit. In the meantime, studies integrating this combination with other active treatment modalities such as radiation is warranted in cervix and skin carcinomas.

Antineoplastic Combined Chemotherapy Protocols