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V Frascogna

Publications and source records attributed to V Frascogna.

2 recordsLinked to original sources

n-3 polyunsaturated fatty acids decrease mucosal/epidermal reactions and enhance antitumour effect of ionising radiation with inhibition of tumour angiogenesis.

The purpose of this study was to evaluate the effect of n-3 polyunsaturated fatty acids (n-3 PUFAs) on normal tissue (lip mucosa) and tumour growth when combined with ionising radiation. The oral region (snout) of C57 black mice was irradiated with 16.5 Gy and n-3 PUFAs (100 microl) were injected intravenously for 2 weeks. After exposure to irradiation, the degree and duration of the acute reactions decreased significantly when mice were treated with n-3 PUFAs as compared to the control group. Interestingly, the range of the reactions in the n-3 PUFAs-treated group compared favourably to the group receiving amifostine (27.5 mg/kg i.v.). the effect of n-3 PUFAs was further evaluated in HEP-2 human carcinoma xenograft transplanted in nude mice. An inhibition of tumour growth was observed when mice were treated with n-3 PUFAs alone and this effect was maximal when combined with irradiation. Similar results were obtained using eicosapentaenoic acid. The effect of n-3 PUFAs was associated with inhibition of angiogenesis and tumour proliferation, and significantly decreased expression of cyclooxygenase-2. In conclusion, n-3 PUFAs administration decrease mucosal response, while moderately enhancing the antitumour effect of irradiation. The magnitude of the differential effect suggests that n-3 PUFAs need to be further investigated in the clinic.

Animals↗

The olivacine S16020 enhances the antitumor effect of ionizing radiation without increasing radio-induced mucositis.

The combination of a novel topoisomerase II inhibitor, S16020, and ionizing radiation (IR) was investigated with the aim of assessing normal tissue tolerance using a mouse mucosal lip model and antitumor activity in a human carcinoma (HEP2) cell line. No increase of acute mucosal reactions was seen when combining S16020 with IR as compared with IR alone. Using clonogenic cell survival assay, a marked enhancement of HEP2 cell killing was found when S16020 was combined with irradiation. Additional in vivo combination of S16020-IR was able to increase markedly the antitumor efficacy as compared with S16020 or irradiation alone. Interestingly, the radiosensitization effect in vivo was observed at relatively low and nontoxic concentrations of S16020, and no dose-effect relationship was found beyond 30 mg/kg. In conclusion, the combination of IR and S16020 seems promising to enhance antitumor activity without increasing deleterious effect in normal tissues and to provide the basis for a new radio-chemotherapy combination.

Animals↗