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Mechanism of inappropriate polyuria in septic patients.

Inappropriate polyuria leading to hypovolemia and hypotension occurs frequently in severely septic patients. It's etiology was studied in three patients with polyuria and systolic hypotension. Glomerular filtration rate and renal blood flow were measured by the standard renal clearance techniques. Renal blood flow distribution to the outer cortex, inner cortex-outer medulla, and the inner medulla were measured by radioactive xenon. The glomerular filtration rate, renal blood flow, and renal blood flow distribution were normal. Polyuria does not result from a maldistribution of renal blood flow. Antidiuretic hormone did not alter the polyuric syndrome. These data suggest that sepsis produces a blockade at either the distal tubule or the collecting duct, thereby preventing salt and water conservation. This blockade may be due to either a toxin or a toxic metabolic breakdown product of sepsis.

Adult

On the mechanism of polyuria in potassium depletion. The role of polydipsia.

The association of potassium (K) depletion with polyuria and a concentrating defect is established, but the extent to which these defects could be secondary to an effect of low K on water intake has not been systematically investigated. To determine whether hypokalemia has a primary effect to increase thirst and whether any resultant polyuria and polydipsia contribute to the concentrating defect, we studied three groups of rats kept in metabolic cages for 15 days. The groups were set up as follows: group 1, normal diets and ad lib. fluids (n = 12); group 2, K-deficient diet on ad lib. fluids (n = 12); and group 3, K-deficient diet and fluid intake matched to group 1 (n = 14). Daily urine flow and urinary osmolality of groups 1 and 3 were not significantly different throughout the study. In contrast, as of day 6, group 2 rats consistently had a higher fluid intake (P < 0.0025), higher urine flow (P < 0.001), and lower urinary osmolality (P < 0.001) than the other two groups. These alterations in fluid intake and urine flow preceded a defect in maximal concentrating ability. On day 7, maximal urinary osmolality was 2,599+/-138 msmol/kg in rats on K-deficient intake and 2,567+/-142 msmol/kg in controls. To determine whether this primary polydipsia is itself responsible for the development of the concentrating defect, the three groups of rats were dehydrated on day 15. Despite different levels of fluid intake, maximal urinary osmolality was impaired equally in groups 2 and 3 (1,703 and 1,511 msmol/kg, respectively), as compared to rats in group 1 (2,414 msmol/kg), P < 0.001. We therefore conclude that K depletion stimulates thirst, and the resultant increase in water intake is largely responsible for the observed polyuria. After 15 days of a K-deficient diet, the impaired maximal urinary concentration in hypokalemia, however, was not related to increased water intake, since fluid restriction did not abolish the renal concentrating defect.

Animals

Polydipsia, polyuria, and hypertension associated with renin-secreting Wilms tumor.

A 16-month-old black male infant had unusual thirst, polyuria, hyponatremia, and hypertension. His polyuria was unresponsive to vasopressin therapy, and his high blood pressure was not effectively controlled by antihypertensive drugs. Radiographic examinations revealed an occult Wilms tumor in the right kidney. After removal of the tumor, the signs and symptoms were relieved. The tumor had a renin activity about 280 times that of the adjacent renal cortex, and many intracytoplasmic secretory granules were found on electron microscopy. The pathogenesis of these clinical manifestations appears to be mediated through the physiologic pathways of renin-angiotensin II and renin-aldosterone.

Humans

[Pathogenesis of lithium polyuria].

An attempt is made to elucidate the pathogenesis of polyuria arising consequent upon medication of affective states with lithium salts. Experiments conducted with 54 male-rats showed that changes in the neurosecretion of supraoptic nuclei of the hypothalamus and neurohypophysis that take place after a course-wise intraperitoneal administration in amounts of 200 mg/kg (2/9DL20) of lithium chloride per 24 hours for a duration of 6 days occur parallel with histochemical changes of renal acid muconpolysaccharides and they accord with the nature of diuresis disorders. By the 5th day of the experiment the compound perverts the antidiuretic effect of a single subcutaneous injection of pituitrin (10 U/kg). The authors infer therefrom that polyuria emerging after introduction of lithium salts is caused by a deranged synthesis and secretion of the diuretic hormone and also by the ability of lithium to mitigate the action of this hormone on the kidneys.

Animals

Antidiuretic and urinary cyclic AMP response of vasopressin in normal rats and in rats with lithium-polyuria.

The antidiuretic and urinary cyclic AMP response to supramaximal vasopressin infusion was studied in normal rats and in rats with lithium-polyuria. The animals were anaesthetized and then infused with a solution designed to produce excessive water diuresis and to lower basal cyclic AMP excretion. In 6 control animals not infused with vasopressin (1) urinary cyclic AMP excretion decreased during the infusion period. Vasopressin infusion (300 muU/min.) consistantly induced antidiuresis in all of 13 control rats (II); but the urinary cyclic AMP response varied individually from a significant increase in 6 animals to either no change or to a decrease in the remaining animals. The antidiuretic response to vasopressin was inhibited by 85% in 10 animals with marked polyuria induced by lithium administration (III). None of the animals in this group showed a significant increase of cyclic AMP excretion in response to vasopressin. The average rate of cyclic AMP excretion, which was equal in the two groups before vasopressin, was signifimantly lower in group III than in group II during vasopressin infusion. It is suggested that the increase in cyclic AMP excretion during vasopressin antidiuresis, although not consistant, most likely reflects hormone-induced changes of intracellular cyclic AMP levels in the renal medulla. Thus, the data suggest that the nephrogenic diabetes insipidus syndrome produced by lithium is associated with a defect in the renal formation of cyclic AMP in response to vasopressin.

Animals

Dopamine-related polyuria in patients with gram-negative infection.

Two patients developed polyuria with natriuresis while receiving intravenous dopamine hydrochloride for the treatment of hypotension. Both patients had Gram-negative pneumonia and both had evidence of extracellular volume depletion that was considered to be a result of the dopamine-induced polyuria. Following restoration of extracellular volume and withdrawal of dopamine therapy, both patients became normotensive and required no vasopressors. The diuretic action of dopamine, which persisted despite the severe intravascular volume contraction and perpetuated the hypotensive state in these two patients, is not well understood. The Gram-negative infection could play an important role possibly by enhancing the effect of dopamine on the renal vasculature.

Aged

Effect of carbamazepine in polyuria associated with lithium therapy.

Ten patients, suffering from affective disorders, were treated with carbamazepine for polyuria and polydipsia associated with long-term lithium therapy. Oral carbamazepine (300--600 mg daily for six weeks) was observed to have no beneficial effect in alleviating these symptoms when compared with placebo tablets in a double blind crossover study. Plasma and urinary osmolality were observed to be within normal range in these patients and there was no antidiuretic response following subcutaneous Pitressin injection. There was 50% drop-out due to severe side-effects like ataxia, dizziness, restlessness and confusional states. It appears that lithium exacerbates carbamazepine induced CNS side-effects or vice versa, the mechanism of which is not very clear. It may be due to their mutual effect on sodium metabolism or on nervous conduction velocity. Hence, simultaneous administration of these two drugs should preferably be avoided.

Adult

Polyuria and imparied ADH release following medial preoptic lesioning in the rat.

Studies were carried out in the rat to detemine if hypothalamic lesions which caused polydipsia and polyuria had their effect mediated through an alteration of the ability of the neurohypophyseal system to release ADH. Rats with medial preoptic lesions hadincreased water intake while on ad libitum access to water and slightly impaired ability to conserve water following dehydration, but with no impairment of urine-concentrating ability. These were associated with an increase in plasma osmolality both during ad libitum fluid intake and after dehydration. Urinary ADH excretion was at leastas great as in shamoperated controls during ad libitum water intake, but failed to increase during dehydration in spite of a marked increase in plasma osmolality. Pituitary ADH content did not differ from control animals either during ad libitum water intake of after dehydration. Animals with lesions in the lateral preoptic and septal areas did not differ from control animals during ad libitum fluid intake and after dehydration even though lateral preoptic lesions produced polydipsia. In all animals, lesions were remote from the supraoptic nuclei, which showed no histological evidence of damage. It is concluded thatareas of the central nervous system away from the supraoptic nuclei are involved in the regulation of both water intake and ADH release.

Animals

Studies of the mechanism of contralateral polyuria after renal artery stenosis.

Acute renal artery stenosis in hydropenic dogs caused a contralateral increase in urine volume and free water clearance without change in glomerular filtration, renal blood flow, or osmolar clearance. The increase in urine volume was not dependent on the development of hypertension since it occurred in animals pretreated with trimethaphan but was dependent upon angiotensin since it was presented with angiotensin blockade with Saralasin. The effect was not caused by angiotensin inhibiting antidiuretic hormone release since the polyuria occurred in hypophysectomized animals receiving a constant infusion of 10 muU/kg per min of aqueous Pitressin. Since the rise in urine volume was associated with an increase in renal vein prostaglandin E concentration and was prevented by pretreatment with indomethacin (5 mg/kg) the results suggest that the rise in plasma angiotensin after renal artery stenosis causes an increase in contralateral prostaglandin E synthesis with resultant antagonism to antidiuretic hormone at the collecting tubule.

Animals

[Polyuria and polydipsia in a young boy--a case study (author's transl)].

A 13-year-old boy with a teratoma in the sellar region was presented. This patient had gradually developed polyuria and polydipsia since 2 years prior to the first admission. Endocrinological examination showed a marked reduction of pituitary function. Careful neuroradiological examinations including CT failed to show any mass lesion in the sellar and suprasellar regions but a marked increase of the width of the third ventricle. CSF examination revealed only a slight increase of cell count (lymphocytes). The patient was discharged with hormonal replacement therapy. Seven months later the patient developed visual disturbance and mental disorders. On the second admission, plain skull films showed enlarged sella and CT demonstrated a mass in the suprasellar region. Preoperative diagnosis was suprasellar germinoma. At surgery a teratoma, probably arising from the pituitary fossa, was totally removed. Histopathology of the tumor showed tri-dermal tissues including melanotic progonoma and germinoma. The authors presented various problems of the patient and their solving processes.

Adolescent