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Biomedical subjects

B Hocher

Publications and source records attributed to B Hocher.

58 records · Page 4Linked to original sources

Hypercortisolism with non-pigmented micronodular adrenal hyperplasia: transition from pituitary-dependent to adrenal-dependent Cushing's syndrome.

We report on a female patient with Cushing's syndrome in whom we observed the transition from pituitary dependency to adrenal dependency. Basal ACTH and cortisol values, the CRH test, the dexamethasone suppression test as well as CT of the pituitary and the adrenal gland all reflected pituitary-dependent Cushing's disease in 1985. The patient refused treatment, but presented again five years later. At that time ACTH was suppressed before and after CRH injection. Plasma cortisol did not respond to CRH. After ketoconazole therapy, ACTH was within the high normal range. The patient underwent bilateral adrenalectomy. The adrenals exhibited a bilateral micronodular hyperplasia of the zona fasciculata. In vitro examination of adrenal cells revealed a maintained ACTH response. Some weeks postoperatively, the patient died from pneumonia. Histological examination later showed a chromophobe pituitary microadenoma; ACTH was demonstrated immunohistologically in the adenoma. We postulate that some cases of pituitary Cushing's disease initially exhibit a bilateral homogeneous adrenal hyperplasia which then develops into a nodular hyperplasia; in the next stage of the disease, single micronodules may become autonomous and elevated cortisol levels suppress ACTH secretion of the pituitary adenoma.

Adenoma↗

Internalization of V2-vasopressin receptors in LLC-PK1-cells: evidence for receptor-mediated endocytosis.

The mechanism of internalization of the vasopressin-receptor (V2-subtype) of LLC-PK1-cells, a pig renal tubular cell line, is unknown. We studied internalization utilizing a novel, highly specific vasopressin analogue ((125I)-[8-p(OH)-phenylpropionyl]-LVP, 2000 Ci/mmol). Scatchard analysis performed with membranes of LLC-PK1-cells revealed a Kd of 0.8 +/- 0.2 nM and a Bmax of 366 +/- 41 fmol/mg of protein. Degradation of the ligand was excluded by RP-HPLC-analysis. Internalization was proven by the acid-wash technique, quantitative light-microscopic autoradiography and electron microscopy. The ligand was internalized in a time- and temperature-dependent manner. At 4 degrees C, no uptake was found; at 22 degrees C, after 30 min of incubation, more than 50% of the radioligand was found inside the cell. Electron microscopy demonstrated that plasma-membrane bound vasopressin receptors are internalized by receptor-mediated endocytosis via coated pits.

Animals↗

Intracellular distribution of endothelin-1 receptors in rat liver cells.

We studied the binding of (125I)-endothelin-1 as well as that of the vasopressin analogue (125I)-[8-phenylpropionyl]-LVP to purified plasma membranes, Golgi cisternae and cell nuclei from rat liver. Cell organelles were isolated by differential centrifugation and discontinuous sucrose gradients. Endothelin-1 exhibited specific binding to plasma membranes, Golgi cisternae and nuclei, while the binding of (125I)-[8-phenylpropionyl]-LVP was restricted to the plasma membranes. The number of receptors (Bmax) and the binding constants (Kd) were determined by Scatchard analysis of competition binding studies. In all cases only one class of Et-1 binding sites could be detected. The presence of Et-1 receptors on the Golgi complex either indicates that the receptor is glycosylated within the cisternae or alternatively, there exists a recycling pathway. The unexpected finding of Et-1 receptors on highly purified nuclei suggests that this peptide may exert part of its biological functions intracellularly via the nucleus.

Animals↗