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M Berggren

Publications and source records attributed to M Berggren.

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Uptake of glucuronides into isolated hepatocytes and their effects on glucuronide and sulphate conjugation.

Uptake studies, using radioactive labelled glucuronides, have demonstrated the ability of 4-nitrophenyl glucuronide and phenolphthalein glucuronide to enter isolated rat hepatocytes. Of these glucuronides 4-nitrophenyl glucuronide was distributed in a similar manner to O-methylglucose, whereas phenolphthalein glucuronide was bound to cellular constituents. Phenolphthalein glucuronide had an effect on theconjugation of harmol in the isolated hepatocytes when glucuronidation was found to be markedly inhibited and sulphation slightly stimulated. The glucuronidation of 4-nitrophenol, 4-methylumbelliferone and harmol in native microsomes was inhibited by phenolphthalein glucuronide. 4-Nitrophenyl glucuronide and also naphthyl glucuronide were without effect both in hepatocytes and microsomes. In control hepatocytes harmine was metabolized to form harmolsulphate mainly. Phenolphthalein glucuronide only affected this metabolic pattern to a minor extent. However, in hepatocytes from phenobarbital treated rats, where the rate of harmine metabolism is increased about five times and the main metabolite is harmol glucuronide, phenolphthalein glucuronide inhibited the formation of the conjugate with a concomitant increase in free harmol.

Animals

Isolated rat hepatocytes as an experimental tool in the study of cell injury. Effect of anoxia.

Rat hepatocytes were isolated by liver perfusion in the presence of collagenase and hyaluronidase and incubated in the absence or presence of oxygen. As a result of anoxia, there was a gradual increase in plasma membrane permeability, noted as an increase in succinate-stimulated oxygen uptake, a decrease in trypan blue exclusion frequency, a leakage of cytosolic lactate dehydrogenase activity and an increased proportion of swollen and disrupted cells. After anaerobic incubation for 30 minutes--but not for 60 minutes--there were signs of recovery from anoxic cell injury upon re-oxygenation. The changes in plasma membrane permeability properties in anoxia seemed to be preceded by a marked decrease in cellular ATP level; aerobic incubation of hepatocytes in the presence of an uncoupler of phosphorylation from respiration led to a similar decrease in cellular ATP concentration followed by similar disturbances in plasma membrane permeability properties. It is suggested that a distrubed plasma membrane function caused by a decreased energy level is of primary importance for the initiation of cell death in anoxia.

Adenosine Triphosphate