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P Belchetz

Publications and source records attributed to P Belchetz.

9 recordsLinked to original sources

Different patterns of allelic loss (loss of heterozygosity) in recurrent human pituitary tumors provide evidence for multiclonal origins.

Sporadic human pituitary tumors are benign adenomas of monoclonal origin. This implies that they arise from de novo somatic mutation(s) within a single pituitary cell. The availability of original and recurrent/regrown tumors from the same patient allowed testing of the prediction that recurrent/regrown tumors have identical genetic abnormalities as the original tumor sample. We used PCR amplification, from archival slide-extracted DNA, to allelotype microsatellite polymorphisms as an indication of clonality and confirmed this by X chromosome inactivation analysis in samples from women. Tumors from 33 of 49 (67%) patients with two or more specimens showed loss of heterozygosity (LOH) of at least one marker in at least one of their samples. Two patterns of LOH were observed. In pattern A in 14 of 33 (42%) of patients, the LOH pattern of the first tumor was preserved in the second recurrent sample, with some recurrent tumors also showing additional LOH. In these patients, the original and second tumors are presumed to arise from the same original clone with or without progressive accumulation of LOH. In pattern B [19 of 33 (58%) patients], LOH seen in the first tumor was not preserved in the second or subsequent tumors, as evidenced by retention of heterozygosity compared with the first tumor. The simplest explanation is that the second tumor, although still monoclonal, arises from another independently abnormal clone. This was confirmed by X chromosome inactivation analysis in all 11 women where this was informative. These results show that initial and recurrent tumors, of a benign tumor type, are frequently derived from separate independent clones. This suggests that either: (a) more than one abnormal clone is present from the outset though only one dominates; or (b) several clones arise independently at different times. In both scenarios, the initiating event(s) that predisposes to transformation might result in multiclonal hyperplasia, possibly as a consequence of exogenous stimulation.

Adolescent↗

Response of luteinizing hormone from columns of dispersed rat pituitary cells to a highly potent analogue of luteinizing hormone releasing hormone.

The response of LH from a perfused column of dispersed rat anterior pituitary cells to LH releasing hormone (LH-RH) and the analogue, D-Ser(But)6-desGly10-Proethylamide9-LH-RH (Hoe 766), was investigated. Dose-response curves showed non-parallelism between LH-RH and the analogue. but it was evident that the analogue was considerably more potent. After a single pulse of LH-RH, LH output returned to basal values in 8 min; this was prolonged to 20 min in the case of the analogue. During this 20 min the cells were refractory to pulses of LH-RH but pulses of the analogue maintained output of LH. During constant-dose perfusion with either synthetic LH-RH or the analogue, output of LH rapidly reached a peak and then gradually fell over several hours to approach baseline values. However, a pulse of 50 mmol potassium chloride/l was still able to release LH at this time. The data are consistent with the view that this analogue of LH-RH is highly potent and is strongly bound by the LH-RH receptor. Furthermore, since it desensitizes the LH-RH receptor, it appears that continued turnover of either LH-RH or the analogue at the receptor is necessary for output of LH to be maintained.

Animals↗

Identification of inhibitory and stimulatory control of prolactin secretion in the rhesus monkey.

In the unanesthetized, ovariectomized rhesus monkey, gonadotropin secretion is episodic while prolactin (Prl) release is relatively constant. Under pentobarbital anesthesia, however, Prl secretion also becomes pulsatile in synchrony with the discharges of LH. This finding suggests that the anesthesia has unmasked normally inhibited Prl releasing stimuli which are driven by the circhoral 'clock' that also times the discharges of GnRH.

Animals↗

The sites of action of estradiol and phentolamine in the inhibition of the pulsatile, circhoral discharges of LH in the rhesus monkey (Macaca mulatta).

Pulsatile LH secretion was re-established in ovariectomized monkeys bearing hypothalamic lesions by an intermittent infusion of LHRH. The administration of estradiol to such animals resulted in a prompt cessation of these pulsatile discharges of LH and a resultant decline in the mean plasma concentration of the gonadotropin. The time course of this inhibition of LH secretion was indistinguishable from that observed after estrogen administration to ovariectomized animals with intact nervous systems. In contrast, phentolamine did not interrupt the pulsatile LH discharges occasioned by the hourly administration of exogenous LHRH to the lesioned animals. These results are consistent with the conclusion that the acute negative feedback action of estradiol on circhoral LH release in the monkey is at the level of the pituitary gland, whereas the inhibitory action of phentolamine on this mode of LH secretion is at a neural site.

Animals↗

Growth hormone response to diazepam, clonidine and glucagon in patients with epilepsy.

The differing actions of phenytoin, carbamazepine and sodium valproate on growth hormone release were studied in 20 patients with recently diagnosed epilepsy using diazepam, clonidine and glucagon as stimulatory tests of growth hormone response. The results are compared with the growth hormone response obtained pre treatment, and those from 20 control patients and 11 patients with chronic treated epilepsy. There was a reduction in growth hormone response to diazepam in both treated and untreated patients with epilepsy compared to controls. Treatment with phenytoin resulted in a significant increase in growth hormone release after diazepam and glucagon, whilst sodium valproate reduced the growth hormone response to diazepam.

Adult↗