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Biomedical subjects

L Bengochea

Publications and source records attributed to L Bengochea.

7 recordsLinked to original sources

[Benzodiazepine metabolism in experimental extrahepatic cholestasis].

The aim of the present study was to determine the effect of bile flow impairment on hepatic lorazepam detoxication and its relationship with the liver microsomal membrane phospholipid composition. It was observed a decrease of phosphatidylcholine, phosphatidylinositol, phosphatidylethanolamine and sphingomyelin content and an increase of phosphatidylserine and phosphatidylglycerol. A similar activity on lorazepam detoxication was observed when cholestatic rats were compared to controls. These results suggest that there is a different modulation than the phospholipid environment play the key role in lorazepam metabolism, independently of membrane.

Animals

[Fluidity of hepatic microsomal membrane and its relation with aging].

The effect of aging on hepatic microsomal membrane phospholipid composition was studied composition was studied in both young (2 months) and mature (6 months) Wistar rats. When total microsomal phospholipid content was analysed the aged group showed a significant increment (73%). Microsomal phospholipid pattern also showed a different behavior between both groups, with a significative increase in phosphatidylcholine (62%), phosphatidylserine (124%), phosphatidylinositol (31%) and sphingomyelin (10%) and appearance of phosphatidylethanolamine and phosphatidylglycerol in the six-month group. A higher microsomal membrane fluidity in the aged animals was revealed by the increase in PC/EM index (47%). This increment jin fluidity during aging process may reflect an adaptative response resulting in changes on the enzyme activities responsible for drug and carcinogen metabolism.

Aging

[Phospholipid composition of the hepatic microsomal membrane and its relationship to bilirubin UDP glucuronyltransferase in human cholestasis].

A number of morphological and functional changes on liver cells were reported during experimental cholestasis. Some specific metabolic pathways catalyzed by "membrane bound" enzymes were described to be altered by lipid microenvironment changes. The purpose of he present study is to establish Bilirubin UDP-Glucuronyltransferase activity--a microsomal integral enzyme responsible for bilirubin conjugation--and microsomal phospholipid profile in cholestatic and normal patients. Surgical liver biopsies were taken fron five patients suffering prolonged extrahepatic cholestasis, and five patients submitted to abdominal surgery excluding hepato-biliary diseases that were considered as controls. The following biochemical parameters were determined in both groups: bilirubin concentration, alkaline phosphatase, gamma-glutamyltranspeptidase, oxalacetic and pyruvic transaminases, and pseudo-cholinesterase activities. Serum cholestatic markers showed significative increments in cholestatic patients (Table 1). Total Bilirubin UDP-Glucuronyltransferase activity was similar comparing normal and cholestatic individuals (1.11 +/- 0.66 and 1.93 +/- 0.82 nmol conjugated bilirubin/mg protein in 10 min. respectively). When final reaction product was analysed, the normal group showed 80% of bilirubin diglucuronide; but resulted undetectable in cholestatic patients yielding 100% of bilirubin monoglucuronide. Microsomal phospholipid analysis showed a decrease in phosphatidylcholine and phosphatidylethanolamine contents in the cholestatic group; probably due to the action of bile acids accumulated into the hepatic cells. Simultaneously we found an increment in phosphatidylserine and sphingomyelin levels in cholestatic patients compared to normals (Figure 1). This fact could be explained by the existence of special sites in the membrane for the latter phospholipids, protected against bile acids detersive action.(ABSTRACT TRUNCATED AT 250 WORDS)

Aged

Protein and lipid disturbances in rat liver microsomal membranes after bile duct ligation.

An analysis of proteins, phospholipids and cholesterol from liver microsomal membranes was performed in normal and post-cholestatic rats. Bile duct ligated rats showed a progressive decrease of these membrane constituents. Minor changes in peptide analysis, a marked decrease of phosphatidylcholine and phosphatidylinositol, disappearance of phosphatidylethanolamine and sphingomyelin, and a clear increment of phosphatidylserine was observed in post-cholestatic as compared to normal group. It was concluded that extra-hepatic cholestasis produces structural changes on the liver microsomes, particularly on phospholipid profile.

Animals

Liver microsomal bilirubin UDP-glucuronyltransferase disturbances in bile duct ligated rats.

The activity of bilirubin UDP-Glucuronyltransferase was determined in microsomes from normal and bile duct ligated rats. It was measured after 2 and 8 days following bile duct ligation and compared with normal rats. A decrease of 33% in the total enzyme activity was observed on day 2; a fall of 70% was founded on day 8. Bilirubin diglucuronide represented approximately 20% of total conjugates in both groups of cholestatic rats, as compared with 65% found in normals. It was concluded that bilirubin microsomal conjugating capacity is markedly altered during cholestasis. This can be attributed to microsomal membrane damage produced by stagnant bile.

Animals