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Query: UMLS:C0027497 (nausea)
23,468 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Concentrations of the antidiuretic hormone, arginine vasopressin, were measured in 28 patients with severe hyperglycemia to determine if abnormalities in hormonal regulation of water excretion could contribute to the extreme dehydration of uncontrolled diabetes mellitus. Vasopressin levels were markedly elevated in both nonketotic and ketotic patients, indicating that vasopressin deficiency plays no role in the polyuria that accompanies hyperglycemia. Instead, the observed increases in vasopressin represent an ineffective effort to conserve water in the face of an overwhelming solute diuresis caused by the glucosuria. The reasons for such marked elevations in plasma vasopressin in these diabetic patients are multifactorial. Both groups of diabetic patients had evidence of hypovolemia, which was sufficient in magnitude to stimulate vasopressin release. Furthermore, nausea provided an independent stimulus to vasopressin secretion in many patients. Osmotic stimulation might have resulted from the large fraction of unidentified plasma solutes, but this factor alone was not sufficient to explain the markedly increased concentrations of vasopressin. Whether such elevations in vasopressin could have metabolic and/or hemodynamic effects in uncrontrolled diabetes remains to be established.
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PMID:Plasma vasopressin in uncontrolled diabetes mellitus. 10 67

Vasopressin and oxytocin are nonapeptides secreted from the neurohypophysis; increases in vasopressin are associated with nausea and vomiting in some, but not all, species. Our aim was to determine whether plasma vasopressin and oxytocin levels were altered in healthy volunteers who did or did not develop nausea during vection, an optokinetic stimulus which produces the illusion of self-motion. Vection was produced by rotating a drum with an inner surface of black and white vertical stripes around the seated stationary subject. Gastric myoelectrical activity was recorded continuously throughout the experiment with electrodes positioned on the abdominal surface. Plasma samples were obtained before vection and after drum rotation stopped when nausea and tachygastria were present. Vasopressin and oxytocin were extracted from plasma and quantified by RIA. During vection six subjects reported nausea and developed gastric dysrhythmias; six other subjects had no nausea and remained in normal 3-cpm myoelectrical rhythms. Vasopressin and oxytocin values before vection were similar in each group of subjects. One minute after vection stopped, plasma vasopressin levels were significantly greater (P less than 0.05) in subjects experiencing nausea and tachygastrias (35.4 +/- 26.7 pmol/L) than in those without symptoms (2.7 +/- 0.47 pmol/L). Oxytocin levels were unchanged by either vection or nausea. It is concluded that 1) vasopressin, not oxytocin, neurons in the magnocellular-neurohypophyseal system are activated during vection-induced nausea and gastric dysrhythmias; and 2) illusory self-motion may be used safely to study the neuroendocrine responses to brain-gut interactions and nausea in man.
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PMID:Vasopressin and oxytocin responses to illusory self-motion and nausea in man. 222 84

With the development of sensitive and specific radio-immunoassays to measure the low circulating concentrations of vasopressin there has been a quantum leap in our understanding of the physiological processes involved in the regulation of its secretion. The results of Verney's pioneering studies in dogs led to the concept of 'osmoreceptors'. It is now appreciated that osmoregulation of vasopressin release is of principal importance in the maintenance of water balance. Functional characteristics of the osmoregulatory system have been defined clearly by independent laboratories, and more recently the physiological influences that can subtly alter this very finely controlled system have been described. Non-osmotic factors that release vasopressin have been recognized for many years. Secretion of vasopressin in response to haemodynamic influences has been characterized, and significant hypotension and/or hypovolaemia are potent stimuli to hormone release. Other non-osmotic factors--nausea/emesis, hypoglycaemia--may play important roles in disturbances of water balance. Vasopressin should not, however, be regarded as a stress hormone, since recent careful studies in a variety of species indicate that secretion is not enhanced following a series of different noxious stimuli.
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PMID:Regulation of vasopressin secretion. 269 40

Vasopressin (aVP) at low concentrations functions as an antidiuretic hormone and has vasoconstrictive effects. To investigate the possible role of aVP in the pathogenesis of migraine, six patients with a history of induced migraine were given 100 g chocolate, and blood samples for plasma aVP were taken before ingestion and every hour for 4 h. In one patient who presented with severe headache and nausea the base-line plasma aVP concentration was 15.2 pg/ml; it fell to 3.2 pg/ml at 2 h before rising to 10 pg/ml at 3 h and 4 h as the symptoms worsened. In the five patients with moderate or no headache plasma aVP concentrations remained in the normal range (less than 3 pg/ml) throughout. The results suggest that aVP does not have a role in the aetiology of migraine. The possibility exists that during severe attacks of nausea there is release of aVP, which may be responsible for the facial pallor, antidiuresis, and coagulation abnormalities occasionally observed in migraine.
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PMID:Plasma vasopressin levels in induced migraine attacks. 335 85

The effects of two partial agonist opioid analgesics, meptazinol (at doses 0.7 and 1.4 mg/kg intravenously) and pentazocine (at doses 0.3 and 0.6 mg/kg), on anterior and posterior pituitary hormone secretion were studied in six normal human volunteers. Both drugs stimulated the secretion of prolactin dose-dependently, as expected. This effect was seen in all subjects, although two of the six subjects reacted more sensitively to both drugs. Plasma growth hormone concentrations were increased only after the higher dose of meptazinol. This was also seen in all subjects suggesting a specific pharmacological effect. Vasopressin (AVP) in plasma was greatly increased (up to 76 pg/ml) in three of the six subjects after the higher dose of meptazinol, but remained on a low level in the other three and after all other drug doses. The increase in AVP occurred only in those individuals who reported nausea after meptazinol. It was concluded that the augmented AVP release following meptazinol administration was likely to be a non-specific response induced by nausea and not an effect mediated by opiate receptors.
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PMID:Meptazinol and pentazocine: effects on prolactin, growth hormone and vasopressin levels in plasma. 343 24

The development of shock initiates a cascade of responses in an effort to reestablish homeostasis. Three of the most important hormonal and neurohumoral changes are the secretion of glucocorticoids, catecholamines, and vasopressin. Regulation of adrenal function is much more complex than originally thought. Hemorrhage is a potent stimulus for cortisol release, and both ACTH and ACTH-independent mechanisms have been described. The ACTH response to its releasing hormone, corticotropin releasing hormone (CRF), is itself amplified by vasopressin, which appears to have intrinsic CRF properties. Because ACTH is synthesized as part of a large precursor molecule (pro-opiomelanocortin) containing the amino acid sequences for several important proteins, stimulation of ACTH release has far-ranging effects, the specifics of which are just being clarified. Norepinephrine and epinephrine levels increase manyfold above baseline within minutes of the onset of hemorrhagic shock. Only patients experiencing cardiac arrest or the rare patient with a very active pheochromocytoma have higher concentrations. The levels reached are far in excess of those required to cause both cardiovascular and metabolic alterations. Because of the presence of the endogenous opiates leucine and methionine enkephalin in the neurosecretory granule, it is very likely that the enkephalins are coreleased with the catecholamines, modifying their cardiovascular effects and producing analgesia. Hypovolemia is also a potent stimulus for vasopressin secretion, which overrides hypotonicity, presenting a clinical picture quite compatible with the syndrome of inappropriate antidiuretic hormone secretion, from which it must be differentiated. Vasopressin also is released by pain, nausea, and hypoxia, all of which are likely to be present in the patient with shock.(ABSTRACT TRUNCATED AT 250 WORDS)
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PMID:Endocrinology of shock. 353 88

Twelve male volunteers given apomorphine (20 micrograms/kg/hr) for 40 min by i.v. infusion had significant changes in growth hormone, prolactin, vasopressin, pulse rate, sedation and nausea. Naloxone, (20 mg i.v.) or placebo given in a double-blind manner 10 min before the end of the apomorphine infusion as a concealed bolus did not alter the effects of apomorphine. Vasopressin rise correlated significantly with nausea intensity. We conclude that acute opiate receptor blockade does not reverse most apomorphine effects.
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PMID:Failure of naloxone to reverse apomorphine effects in humans. 630 2

A family suffering from cranial diabetes insipidus, that extends over 4 generations, is described. Inheritance of polyuria was autosomal dominant. Vasopressin function was studied in members of the last 2 generations, 4 of whom had polyuria. Osmoregulation of vasopressin secretion was assessed by infusion of hypertonic saline. Plasma vasopressin remained undetectable in one patient, while 2 others had very blunted vasopressin responses to osmotic stimulation. Three non-osmotic stimuli were applied. Controlled hypotension produced by trimetaphan infusion and insulin-induced hypoglycaemia did not increase plasma vasopressin but apomorphine-induced nausea caused a minimal rise in plasma vasopressin to 0.7 pg/ml. Polyuria and thirst resolved with antidiuretic therapy in all patients studied. Congenital absence of vasopressin as in Brattleboro rats is unlikely to account for diabetes insipidus in this disorder since small increases in vasopressin have been demonstrated in these patients. In view of previous post-mortem findings, familial cranial diabetes insipidus is most likely to be due to degeneration of vasopressin-synthesizing neurones.
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PMID:Vasopressin function in familial cranial diabetes insipidus. 727 21

A retrospective analysis was performed to study the fluid and sodium status of patients undergoing transsphenoidal surgery (TS) for Cushing's disease. We evaluated the time of onset, duration, and relative incidence of isolated hyponatremia and identified possible factors associated with it. Of 58 patients that underwent TS over 1 yr, 52 without postoperative diabetes insipidus or volume depletion were studied. Isolated hyponatremia after TS for Cushing's disease occurred in 21%, and symptomatic hyponatremia (plasma sodium, < or = 125 mmol/L) with new onset headache, nausea, and emesis occurred in 7.0% of all operated. These later patients escaped monitoring and intervention for 24 h. The development of hyponatremia began early in the postoperative period and progressed slowly over 7 days. Maximum antidiuresis occurred on postoperative day 7. Vasopressin levels measured in two patients while hypoosmolar suggested that unregulated vasopressin release contributed to the hyponatremia. Cortisol levels, glucocorticoid replacement, and pituitary adenoma size were similar in normonatremic and hyponatremic patients. Patients combining a history of an estrogenic milieu and documented posterior pituitary trauma at surgery experienced lower nadir plasma sodium. All hyponatremic patients were fluid restricted, and none developed progressive neurological symptoms, morbidity, or mortality. We speculate that the mild degree and slow rate of development of hyponatremia and/or active monitoring and intervention contributed to the good outcome.
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PMID:Isolated hyponatremia after transsphenoidal pituitary surgery. 782 44

The possible role of vasopressin in nausea and gastric dysrhythmias in motion sickness was tested by electrogastrography in 14 subjects during circular vection (60 degrees/s) and vasopressin infusion. Tachygastria was expressed as the signal percent >4.5 cycles/min. Vection evoked nausea scores of 2.6 +/- 0.2 (0 = none to 3 = severe) in 10 subjects with increases in tachygastric activity (15 +/- 2 to 45 +/- 3%) and plasma vasopressin (4.5 +/- 1.5 to 8.4 +/- 2.5 pg/ml) that were blocked by atropine but not indomethacin. Four asymptomatic subjects had no tachygastria or vasopressin release. Vasopressin at 0.2 U/min (plasma level = 322.1 +/- 10.3 pg/ml) evoked nausea (2.6 +/- 0.4) and increases in tachyarrhythmic activity (41 +/- 5%) that were blunted by atropine but not indomethacin. There were no differences in nausea or dysrhythmias with vasopressin infusion in subjects who noted nausea during vection versus those who did not. To conclude, vection evokes nausea, dysrhythmias, and vasopressin release in motion sickness-susceptible humans via cholinergic prostaglandin-independent pathways. Supraphysiological vasopressin infusions evoke nausea and dysrhythmias by similar pathways to equal degrees in motion sickness-susceptible and -resistant subjects. Thus central but not peripheral actions of vasopressin may contribute to nausea and slow wave disruption with vection. Blunting of both the release and action of vasopressin by atropine may explain its beneficial action in motion sickness.
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PMID:Role of plasma vasopressin as a mediator of nausea and gastric slow wave dysrhythmias in motion sickness. 914 18


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