REGULATION OF ALBUMIN SYNTHESIS BY HORMONES AND AMINO-ACIDS IN PRIMARY CULTURES OF RAT HEPATOCYTES

REGULATION OF ALBUMIN SYNTHESIS BY HORMONES AND AMINO-ACIDS IN PRIMARY CULTURES OF RAT HEPATOCYTES
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DOI:
10.1152/ajpendo.1987.252.3.e291
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发表时间:
1987-03-01
影响因子:
--
通讯作者:
JEFFERSON, LS
JEFFERSON, LS
中科院分区:
其他
文献类型:
--
作者:
HUTSON, SM;STINSONFISHER, C;JEFFERSON, LS

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Culture conditions necessary for optimizing albumin secretion were studied in rat hepatocytes maintained in a chemically defined, serum-free medium. Amino acid analysis of the culture medium, which was based on a 1:1 mixture of Ham''s F12:Dulbecco''s modified Eagle''s medium (unsupplemented medium), revealed that certain essential amino acids were depleted from this medium over a 24-h incubation. Rates of albumin secretion were significantly higher and better maitained when the medium was supplemented with additional amino acids (supplemented medium). Moreover, selective removal of an essential amino acids resulted in an immediate decrease in total protein and albumin synthesis and after 48 h a further selective decrease in albumin synthesis. Linear rates of albumin secretion were observed over a wide variety of experimental conditions, but secretion was not strictly proportional to cell number. Maximal rates of secretion were obtained at plating densities of 2-3 .times. 106 cells/60 mm culture dish. Albumin secretion also increased with time in culture reaching a maximum on days 3 and 4. When added singly, either infusion or dexamethasone increased rates of albumin secretion in a dose-dependent manner, but both hormones and an adequate supply of amino acids were necessary for maximal rates of secretion as well as long-term maintenance of the hepatocytes (> 3-4 days). In the presence of dexamethasone the dose-response curve for insulin was shifted toward physiologic insulin concentrations. Changes in rate of albumin secretion in response to added hormones in supplemented media were found to parallel changes in albumin synthesis and relative amounts of albumin mRNA. Changes in gene transcription were probably involved.