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Biomedical subjects

C Di Padova

Publications and source records attributed to C Di Padova.

8 recordsLinked to original sources

Bile and biliary lipid secretion in rats with hexachlorobenzene-induced porphyria. Effect of S-adenosyl-L-methionine administration.

We investigated liver morphology and biliary function in vivo in rats made porphyric by hexachlorobenzene (HCB). In one group of HCB rats we also evaluated whether S-adenosyl-L-methionine (SAMe), administered during the last 15 days of HCB treatment, attenuated liver injury and the accumulation of porphyrins (HCB + SAMe group). In HCB rats we found: (a) a 100% increase in liver weight; (b) a 500-fold increase in total liver porphyrins (TLP); (c) significantly increased serum bilirubin and cholesterol levels; (d) unchanged total bile flow (TBF) but enhanced levels of the bile acid independent fraction (BAIF); and (e) decreased excretion in bile of bile acids (BA), phospholipids (PL) and cholesterol (CHO) (58, 65 and 47%, respectively, expressed as mmol/min per kg liver). SAMe was found to partially reverse HCB-related effects. TLP levels were about 65% lower in HCB + SAMe treated rats than in HCB rats. However, while SAMe restored bile CHO excretion to control values, it did not influence bile excretion of BA, PL, or BAIF. In conclusion, HCB-induced porphyria was characterized by a complex derangement of liver morphology and biliary function that was unrelated to the extent of porphyrin accumulation in the liver.

Animals

Cicloxilic acid and the bile lipids in oral contraceptive users.

Cholesterol supersaturation of gallbladder bile induced by oral contraceptives is significantly reduced by the administration of cis-2-hydroxy-2-phenyl-cyclohexane-carboxilic acid (cicloxilic acid), a choleretic substance which has been demonstrated to exert an antilithogenic effect in the rat and in man.

Adolescent

[Bile secretion].

The canaliculus is the primary site for the formation of bile. Here, active secretion of bile acids creates an osmotic gradient between bile and blood, crossed passively by water and solutes. Numerous experimental data point to the existence of a canalicular bile fraction that is independent of the active transport of bile acids and related to active sodium secretion. The bile ducts are not mere conduits for the passage of bile, but can also change its volume and composition by means of both absorption and secretion. Nervous, vascular, hormonal and pharmacological factors serve to modify bile secretion. In most cases, however, their mechanism of action is virtually unknown.

Adenosine Triphosphate