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Reversal by ribo- and deoxyribonucleosides of dehydroepiandrosterone-induced inhibition of enzyme altered foci in the liver of rats subjected to the initiation-selection process of experimental carcinogenesis
Authors:Garcea  Renato; Danio  Lucia; Frassetto  Serenella; Cozzolino  Patrizia; Ruggiu  Maria E; Vannini  Maria G; Pascale  Rosa; Lenzerini  Luciano; Simile  Maria M; Puddu  Marco; Feo  Francesco
Institution:Istituto di Patologia generale dell' Università di Sassan Via P. Manzella 4, 07100 Sassari, Italy
Abstract:The effect of dehydroepiandrosterone (DHEA) on the activityof NADPH-producing enzymes and the development of enzyme-alteredfoci has been investigated in the liver of female Wistar ratssubjected to an initiating treatment (a necrogenic dose of diethylnitrosaimine)followed, 15 days later, by a selection treatment a 15-dayfeeding of a diet containing 0.03% 2-acetylamlnofluorene (2-AAF),with a partial hepatectomy at the midpoint of this feeding].At the end of the selection treatment all rat groups received,for 15 days, a basal diet containing, when indicated, 0.05%phenobarbital (PB) and/or 0.6% DHEA. The effect of DHEA on theactivity of NADPH producing enzymes was also studied in normalrats fed, for 15 days, a diet containing 0.6% DHEA and in theirpair-fed controls. DHEA caused a 43–58% inhibition ofglucose-6-phosphate dehydrogenase (G6PD) and, respectively,338–420% and 21–24% increases in malic enzyme (ME)and isocitric dehydrogenase activities in all rat groups. Thiswas coupled with a great fall in the production of ribulose-5-phosphate,while no change in NADP+/NADPH ratio occurred. Hepatocytes,isolated from DHEA-treated rats, exhibited a very low activityof hexose monophosphate shunt (HMS), which was not stimulatedby methylene blue, an exogenous oxidizing agent that markedlystimulated HMS activity in control hepatocytes. DHEA causeda great fall in the percentage of liver occupied by {gamma}-glutamyltranspeptidase(GGT)-positive foci, in the rats subjected to the initiation- selection treatments. PB enhanced the development of thesefoci, an effect which was completely overcome by DHEA. In addition,focal cells no longer expressed a G6PD activity higher thanthat of surrounding liver in DHEA-treated rats, but exhibiteda high histochemical reaction for ME. DHEA also caused a greatfall in labelling index of GGT-positive foci. Starting at theend of 2-AAF feeding, a mixture of ribonucleosides (RNs) ofadenine, cytosine, guanine and uracil and of deoxyribonucleosides(DRNs) of adenine, cytosine, guanine and thymine were injectedi.p. every 8 h for 12 days to the rats subjected to the initiation- selection treatments plus PB. Rats were killed 3 days afterthe end of RN and DRN treatments. These treatments completelyovercome the DHEA effect on the development of GGT-positivefoci and DNA synthesis by the focal cells, without affectingG6PD activity of both whole liver and putative preneoplasticfoci. Experiments with labeled nucleosides revealed that RNsand DRNs produced derivatives that were incorporated into liverDNA. These data indicate that liver of DHEA-treated rats produceenough NADPH for reduction of RNs to DRNs and growth. The antipromotingeffect of DHEA could depend on a relative deficiency of nudeosidesfor DNA synthesis, caused by a great fall in pentose phosphateproduction.
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