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L Desser-Wiest

Publications and source records attributed to L Desser-Wiest.

16 recordsLinked to original sources

Reciprocal relationship between the levels of the hepatic nuclear binding sites for T3 and DNA replication in the liver of the rat: a possible unifying concept.

Administration of low levels of thyroid hormone (T3), subsequent to adrenalectomy, cause a pronounced proliferative response in rat liver, as judged by enhanced DNA replication. Adrenalectomy of the rat causes a reduction in the maximal nuclear binding capacity for T3 in the liver, similar to that produced by 70% hepatectomy of the rat, the former decrease lagging approximately 12 h after the latter. Similar kinetics are reported for the enhancement of hepatic nuclear DNA synthesis in these two groups of animals. Both of these effects in either group of surgically-treated animals are obviated by the injection of dexamethasone. Other reports are cited indicating that a reciprocal cause-and-effect relationship may exist between the lowering of the hepatic nuclear maximal binding capacity for T3 and subsequent enhanced hepatic DNA replication in a number of other rat model systems. It is suggested that enhanced hepatic cell proliferation in the rat may be effected by either raising the circulating levels of the thyroid hormones or by lowering the levels of the hepatic nuclear binding sites for these agents.

Adrenalectomy↗

[Growth regulation and tumor promotion in the rat liver by steroid hormones].

Corticosterone both inhibits cell proliferation in the liver of adult rats and synchronizes division of liver cells after partial hepatectomy. By adrenalectomy, corticosterone can be eliminated from the circulation at least for certain time. Additionally it can be inactivated in the liver cell by competitive inhibition of its cytoplasmatic receptor. Both these procedures lead to an increased cellular proliferation. The influence of these processes on the development of chemically induced liver tumors has been investigated. Animals died significantly earlier from hepatomas, when they had been treated with both diethylnitrosamine and steroids belonging to the group of gestagens, androgens and estrogens (which stimulate proliferation). Therefore, a tumor-promoting effect of these substances can be assumed.

Adrenal Cortex Hormones↗

The proliferation activity of the rat thymocytes after partial hepatectomy.

The influence of partial hepatectomy, unilateral nephrectomy and shamoperation on thymocyte proliferation capacity in male rats was investigated. The wet weight and the cell number declines significantly after partial hepatectomy. A stimulation of mitotic activity and H3TdR incorporation on day 3 to day 6 was also observed in partially hepatectomized animals. The polyamine content of the thymocytes was transiently decreased 2 days post partial hepatectomy and shamoperation. Thereafter the amine concentrations increased and remained elevated in the case of partially hedatectomized animals. No significant changes in the content of histamine were observed.

Animals↗

Inhibition and stimulation of rat thymocytes in vitro by partial hepatectomy.

Male Sprague Dawley rats were partially hepatectomized. At different times after operation, their thymocytes were isolated and incubated for 5 hours at 37 degrees C in an RPMI medium with 10% rat control serum and their incorporation of 3HTdR was then determined. 1 and 2 days after partial hepatectomy, the thymocytes incorporate much less 3H TdR; from day 3 to day 10 a stimulation of proliferation was observed. Thymocytes of control animals incorporate much less 3HTdR when incubated with sera from animals 1 day to 4 days post partial hepatectomy. Corticosterone, cortisol, testosterone, alpha-fetoglobulin, putrescine, sperimidine, spermine and cadaverine do not influence the incorporation of labelled thymidine into control thymocytes during an incubation of 5 hours.

Animals↗

Corticosterone in serum of adrenalectomized male rats.

Following total adrenalectomy of adult male rats, the corticosterone level in the sera declines in the first and second postoperative day from 4.79+/-1.66 mug to 0.56+/-0.24 per 100 ml. On the third postoperative day the value increases to 1.7+/-0.67 mug/100 ml and attains again control level on the 14th p.o. day (5.4+/-3.3 mug/100 ml). Stress, but not 10 i.u. of ACTH causes a further increase of the corticosterone content in the serum reaching 14.3+/-3.5 mug/100 ml, this value representing a much lower amount of hormone in comparison to stressed control animals (36.35+/-2.4 mug/ml). In adrenalectomized and castrated animals no corticosterone could be detected 14 days p.o.; nor do stress or ACTH cause any change.

Adrenalectomy↗

[The influence of adrenalectomy on DNA-synthesis in the liver after partial hepatectomy and on corticosterone concentration of the serum in rats (author's transl)].

UNLABELLED: Problemacy: In an earlier paper we have reported the influence of adrenalectomy on DNA-synthesis in rat liver and found that during the first 2 days the incorporation of H3 thymidine is elevated). (DESSER-WIEST 1974). Therefore we have examined the DNA-synthesis in regenerating live of rats with and without adrenals. MATERIAL AND METHODS: 300 g male rats were adrenalectomized and 14 days later 2/3 hepatectomized. One group of animals were bled and the concentration of corticosterone in serum was determined by a radioprotein-binding method (SPATH and JOZAN 1972). The other group of animals were injected with H3thymidine at 9 a.m. All animals were killed between 10:00 a.m. and 10:15 a.m. The incorporation of H3thymidine was determined by the method of BURTON (1969). In adrenalectomized animals, the onset of liver regeneration was found to be retarded for 18 hours, the maximum of DNA-synthesis was depressed. RESULTS: The corticosterone concentration of the serum was 17,8 mug/100 ml serum in contro animals and was undetectable in animals during the first and second day after adrenalectomy, thereafter the steroid level increased. A third of the amount found in control animals was found 14 days after operation. Partial hepatectomy, caused an increase of the corticosterone level in serum of animals with and without adrenals. In castrated and adrenalectomized animals no corticosterone in serum was found. The importance of corticosterone for liver regeneration is discussed.

Adrenalectomy↗

[Corticosterone, a synchronizing factor for liver cells].

The clone Fu 5 a of the Reuber Hepatoma cell line was incubated with corticosterone for 48 hours. The incorporation of labelled thymidine into DNA was inhibited to 10%. After this time corticosterone was removed from the medium. The DNA-synthesis increased for ten hours, the maximum was sixteen times higher than in the controls. The conclusion drawn was that corticosterone is able to block liver cells in a part of G1 phase of the cell cycle, so that the cells become synchronous.

Carcinoma, Hepatocellular↗

Promotion of liver tumors by steroid hormones.

Corticosterone inhibits proliferation of rat liver cells, but it can be inactivated by blocking its cytoplasmic receptors in liver cells with other steroids (progesterone). High levels of progesterones in animals lead to stimulated proliferation in the liver. Abnormally high proliferation in the liver may promote malignant transformation or may make it possible for smaller amounts of hepatocarcinogenic substances to induce tumors in a shorter time than normal.

Animals↗

Effect of steroid hormones on liver cells in culture.

A variety of liver and hepatoma cell lines were incubated in the presence of corticosterone. DNA synthesis was inhibited in some but not all cell lines. One of them, the Fu 5a clone of the Reuber hepatoma cell line, was subjected to corticosterone for 48 h. Incorporation of labeled thymidine into DNA was inhibited up to 10%. Afterward, corticosterone was removed. DNA synthesis then increased 16-fold relative to controls. It was concluded that corticosterone blocks these cells in late G1 phase of the cell cycle and thus leads to synchronization.

Animals↗