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A Soupart

Publications and source records attributed to A Soupart.

At least 37 records · Page 2Linked to original sources

Uric acid, anion gap and urea concentration in the diagnostic approach to hyponatremia.

We analyzed the serum anion gap (AG = sodium plus potassium minus chloride plus bicarbonate, N = 11-21 mEq/l), serum uric acid and urea concentrations in hyponatremia of various origins. We found that characteristic chemical patterns emerged in association with different hypotonic states: Low uric acid concentration was typically observed in the SIADH and in hyponatremia related to hypopituitarism. The same observation was also frequently noted in hyponatremia secondary to diuretics or to polydypsia. In the SIADH, we observed a decrease in the AG but to a greater extent (-26%) than one would expect from the simple dilutional effect (-16%). Fifty percent of the patients presented an AG lower than 11 mEq/l. In patients with diuretic-related hyponatremia, one group presented an hypouricemia and a low AG as in SIADH (reflecting volume expansion), in the other group the AG was normal or increased as was uric acid concentration (reflecting volume depletion). In adrenocorticotropin deficiency, hyponatremia was typically associated with a low bicarbonate concentration, a normal AG and hypouricemia. In polydypsic patients with hyponatremia, the AG was usually normal or increased despite sometimes very low sodium levels. Uric acid levels were highly variable, most often decreased. We also noted in these patients that the serum urea levels were correlated with urine osmolality (R = +0.8; p < 0.001), and in 40% of them we observed very low blood urea concentration (0.5-2 mmol/l) at the admission time. In hyponatremia related to cardiac failure or cirrhosis, the AG was usually normal despite mild hypoproteinemia.

Acid-Base Equilibrium↗

[Hypotonic hyponatremia: therapeutic and controversial aspects].

Inappropriately slow or excessive correction of severe (< 115 mEq/l) hyponatremia could induce a high morbidity and mortality rate. In acute (< 48 hr) hyponatremia, there is an increased risk for death and permanent brain damage due to grand mal seizure and respiratory arrest. Indeed, if correction is delayed, the ability of brain to adapt to hyponatremia by limiting the amount of brain swelling is not sufficient and brain stem herniation occurs. Menstruant women are particularly likely to experience these complications. In chronic (> 48 hr) hyponatremia, the extrusion of intracerebral osmolytes decreases the brain size which returns to an almost normal volume. In this situation, an excessive correction (> 15-20 mEq/l/24 h) will lead to brain dehydration and brain demyelination also called "central pontine myelinolysis" or "osmotic demyelination syndrome" (ODS) could develop. Asymptomatic patients with chronic hyponatremia are particularly at risk to develop brain demyelination, therefore, they must be corrected cautiously with frequent monitoring of the natremia and with a magnitude of correction not exceeding 15 mEq/l/24 h. The different therapeutic approach regarding to the origin of the hyponatremia are considered.

Acute Disease↗

Normal acid-base equilibrium in acute hyponatremia and mixed alkalosis in chronic hyponatremia induced by arginine vasopressin or 1-deamino-8-D-arginine vasopressin in rats.

The effects of acute and chronic water intoxication induced by the administration of oral water and arginine vasopressin (AVP) or 1-deamino-8-D-arginine-vasopressin (DDAVP) on blood acid-base equilibrium and aldosterone, corticosterone, and thyroxine secretion were studied in rats. Acute hyponatremia (3 hours) was associated with normal bicarbonate and blood acid-base equilibrium and a decrease in aldosterone and thyroxine concentrations, while corticosterone was increased. When similar levels of hyponatremia (serum sodium 110 mEq/L) were maintained for 24 or 72 hours, a normal serum bicarbonate concentration was observed, but blood acid-base equilibrium showed a mixed respiratory and metabolic alkalosis. Blood pH was negatively correlated with serum sodium concentration (R = -0.65; p < 0.001), as was the metabolic alkalosis (base excess; R = -0.64; p < 0.001) and the aldosterone concentration (R = -0.52; p < 0.01), while the PCO2 was positively correlated (R = +0.49; p < 0.01). Hyperaldosteronism was similar whether hyponatremia was induced with AVP or DDAVP and was observed even for mild hyponatremia. When hyponatremia was induced by a high water and salt intake (2.5% D-glucose, 0.45% NaCl; 15% body weight), aldosterone concentration was as high (about three times control values) as in rats with similar levels of hyponatremia but with a salt-free diet. The high salt intake was associated with a more severe metabolic alkalosis (base excess +5,5 mEq/L). In chronic hyponatremia, corticosterone and thyroxine values were normal. In hyponatremia related to syndrome of inappropriate secretion of antidiuretic hormone, the normal serum bicarbonate level is an expected observation; as in acute water intoxication, it stays normal.(ABSTRACT TRUNCATED AT 250 WORDS)

Acid-Base Equilibrium↗

5-year treatment of the chronic syndrome of inappropriate secretion of ADH with oral urea.

We report the case of a patient with an idiopathic syndrome of inappropriate secretion of ADH for more than 6 years. Water restriction was effective only during hospital care but was socially difficult to maintain at home, so that the patient presented frequent symptoms of water intoxication. Normal natremia was also obtained with a high salt intake (9 g/day) but this induced leg edema mild dyspnea and gastric intolerance. The patient was however successfully treated for more than 5 years without any side effects with oral urea (30 g/day) allowing her a normal fluid intake (1-1.5 liters/day). Oral urea, even during long periods, is a safe and effective therapeutic approach for patients with chronic SIADH which is not controlled by water restriction alone.

Administration, Oral↗

Effect of urea and indomethacin intake on solute excretion in the syndrome of inappropriate secretion of antidiuretic hormone.

Our purpose was to compare the effect of urea and indomethacin on solute excretion in hyponatremic patients with inappropriate secretion of antidiuretic hormone (SIADH). In 6 patients (serum Na: 126 +/- 3 mmol/l), the intake of urea (0.1 g/kg) induced a decrease in sodium excretion while urine osmolality, urine flow and osmotic clearance (Cosm) did not change. In the control group, the urinary flow and Cosm were increased as expected, while sodium excretion tended to increase. In the SIADH group, the decrease in the fractional excretion (FE) of Na+ (FE.Na+) (or FE.Cl-) after urea intake was negatively correlated with urinary urea concentration while the FE.K+ was positively correlated with FE.Na+ (or FE.Cl-), which suggests that the effect of urea on sodium excretion takes place proximally to the distal tubule, probably at the thin ascending limb. After indomethacin intake, FE.Na+ (or FE.Cl-), FE.K+, Fe.osm and Fe.urea decreased in the normal and hyponatremic groups. The mean free water reabsorption relatively to osmolar delivery was lower in SIADH (p < 0.05), and did not change significantly after indomethacin intake. The fact that the decrease of FE.Na+ (or FE.Cl-) after indomethacin was associated with a decrease in FE.K+ suggests that the increase in sodium (or chloride) reabsorption occurred more proximally to the distal tubule (probably a the medullary segment of the thick ascending limb of the loop of Henle).

Aged↗

Evidence of defective tubular reabsorption and normal secretion of uric acid in the syndrome of inappropriate secretion of antidiuretic hormone.

The mechanisms responsible for the increased renal clearance of uric acid in the syndrome of inappropriate secretion of antidiuretic hormone (SIADH) are not fully clarified. Studies using either pyrazinamide or probenecid, or both drugs but at an interval of several days, could not undoubtedly distinguish the 'hypersecretory theory' from the one favoring a defect in either post- or presecretory reabsorption. We decided to do a combined pyrazinamide and probenecid test in 5 patients with hyponatremia due to SIADH in order to evaluate more clearly the respective importance of these different pathways. Our results allow the conclusion of a diminished presecretory and mainly postsecretory reabsorption (80 +/- 4.6 and 14 +/- 3% of filtered load, respectively). As far as the secretion of uric acid is concerned (17 +/- 10% of filtered load), we may say that this pathway is adapted to the amount of hypouricemia.

Absorption↗

Treatment of chronic hyponatremia in rats by intravenous saline: comparison of rate versus magnitude of correction.

The role of the rate of correction in the development of demyelinating brain lesions after correction of chronic severe hyponatremia is controversial. It has been recently suggested in rats treated by intravenous (i.v.) hypertonic saline (NaCl) that both the rate and the absolute change in serum sodium represent critical risk factors. However, we previously demonstrated in rats treated by intraperitoneal (i.p.) injections of NaCl that below a threshold of serum sodium rise of 20 mEq/liter/24 hr, only 5% of the brain lesions were recorded, even in rats submitted to a rapid (1 hr) serum sodium increment following the i.p. injection. Working below this threshold (serum sodium rise less than 20 mEq/liter/24 hr) in the present work, allowed us to independently determine the role of the rate in the outcome of the correction. This was done by submitting the rats to a rapid (1 hr) intravenous infusion of NaCl. As a difference between the i.p. and i.v. route in the degree of volume expansion produced by the NaCl administration could also play a role in the pathogenesis of the brain lesions, rats treated with rapid i.v. infusion of NaCl (associated with volume expansion) were compared to a group of rats treated with water restriction (associated to volume contraction) to evaluate the role of volemia on the incidence of neurological damage. Hyponatremia was induced over three days with d-glucose in water and vasopressin. The group 1 was corrected by intravenous (i.v.) infusion of hypertonic saline over one hour.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Raised urea clearance in cirrhotic patients with high uric acid clearance is related to low salt excretion.

In cirrhotic patients without renal failure, salt retention could result from a decreased effective intravascular volume or could be a primary event leading to increased intravascular volume. Clearance of urea and uric acid depend on an effective intravascular volume. In the syndrome of inappropriate secretion of antidiuretic hormone (SIADH)--a state of increased intravascular volume--uric acid clearance is increased and that of urea is increased only when salt excretion is low. The intravascular volume of 60 consecutive cirrhotic patients without renal failure was estimated indirectly by studying the relationship between fractional excretion of filtered (FE) sodium, urea, and uric acid. Forty five per cent had a high FE uric acid (> 12%), which could mean a high intravascular volume, and presented with an FE urea that was inversely correlated with FE sodium (r = 0, 62; p < 0.001) as in SIADH, while in the controls the FE urea was positively correlated with FE sodium (r = +0, 46; p < 0.01). In patients who had a normal FE uric acid and low FE sodium (< 0.2%), the FE urea was significantly lower (40 (13)%, n = 20) than in subjects with high FE uric acid and a low FE sodium (61 (9)%, n = 16, p < 0.001); this last group also presented with lower mean blood urea concentrations (3.1 (1.2) mmol/l and 4.0 (1.8) mmol/l; p < 0.05) and a lower supine renin activity (p < 0.01). As observed in the SIADH, cirrhotic patient with high FE uric acid have raised FE urea only when salt excretion is low. It is believed that the low salt excretion is not caused by a decrease in effective intravascular volume and that this is increased in cirrhotic patients with raised FE uric acid.

Adult↗

[POEMS syndrome and papilledema].

The Crow-Fukase syndrome or POEMS syndrome (Polyneuropathy, Organomegaly, Edema, Monoclonal protein, Skin changes) is an uncommon plasma cell dyscrasia leading to a multisystemic disorder. An optic disc swelling is often related to this syndrome. We report the case of a 51-year-old man with a papilledema. We presume that vasculitis or plasma cell infiltration is the cause of the papilledema.

Adrenal Cortex Hormones↗

Hyperferritinemia in adult onset Still's disease and the hemophagocytic syndrome.

Increments in serum ferritin levels in adult onset Still's disease (AOSD) were reported to be higher than one could expect for a simple inflammatory state. When we analyzed the scores of 40 patients with various severe inflammatory diseases aside from AOSD, we recorded no serum ferritin values higher than 3,300 ng/ml (N less than 200 ng/ml). In 3 of 10 consecutive patients with AOSD, the ferritin levels were higher than 3,500. Among these 3 patients, one case had a ferritin value of 3,600 ng/ml and bone marrow aspirate showed a marked hyperplasia of mature appearing histiocytes, and the 2 other patients (serum ferritin levels of 65,000 ng/ml and 250,000 ng/ml) displayed the features of a hemophagocytic syndrome. In 2 patients with normal or mildly increased levels of ferritin, the bone marrow examination was normal. We suggest that very high serum ferritin levels encountered in AOSD reflect the presence of histiocytic hyperactivity that sometimes leads to a hemophagocytic syndrome.

Adult↗

Limits of brain tolerance to daily increments in serum sodium in chronically hyponatraemic rats treated with hypertonic saline or urea: advantages of urea.

1. At present there is no consensus about the optimal management of hyponatraemia to prevent demyelinating brain lesions. We have evaluated in a large series of rats (n = 136) the protective role of urea for the brain in the treatment of severe chronic hyponatraemia. Urea (group I, n = 51) was compared with hypertonic saline in boluses (group II, n = 46) and with hypertonic saline in divided doses (group III, n = 39). Treatment was administered intraperitoneally over 48 h. The severity of brain lesions was assessed by histological scoring. 2. For 95% of the injured animals treated with hypertonic saline, brain lesions appeared for an absolute increment in serum Na+ concentration (delta SNa+) of 20 mmol day-1 l-1. Above this limit neurological injuries gradually worsened, and beyond a transition zone (delta SNa+ greater than or equal to 20 less than or equal to 23 mmol day-1 l-1) 89% (group III) to 100% (group II) of the animals were injured. This limit can be reached rapidly, as attested by the comparable severity of brain lesions observed in group II (mean delta SNa+ 1 h after a bolus injection, 19 mmol/l) and in group III (mean delta SNa+ 1 h after an injection, 2 mmol/l), both groups achieving similar daily delta SNa+. 3. A correction above the threshold of 20 mmol day-1 l-1 is as toxic during the first 24 h as during the second day of the treatment.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Dissociation between uric acid and urea clearances in the syndrome of inappropriate secretion of antidiuretic hormone related to salt excretion.

1. Our purpose was to determine why hypouricaemia is more frequently observed than hypouraemia in the syndrome of inappropriate secretion of antidiuretic hormone. We have retrospectively analysed the scores of 35 patients with a chronic form of hyponatraemia related to the syndrome of inappropriate secretion of antidiuretic hormone and studied prospectively six patients. 2. The patients with high fractional excretion of filtered urea (greater than 55%) presented lower blood urea and lower salt excretion than the patients with normal fractional excretion of filtered urea, despite similar levels of hyponatraemia and of osmotic and uric acid clearances. In six hyponatraemic patients, an increase in salt intake was accompanied by a decrease in fractional excretion of filtered urea. In the syndrome of inappropriate secretion of antidiuretic hormone, the fractional excretion of filtered urea was inversely correlated to the fractional excretion of filtered sodium (r = -0.66; P less than 0.001), whereas the fractional excretion of filtered uric acid was not dependent on sodium excretion. 3. Hypouraemia with high fractional excretion of filtered urea in patients with the syndrome of inappropriate secretion of antidiuretic hormone is related to low urinary sodium excretion and thus reflects low sodium intake.

Adult↗

Lack of efficacy of phenytoin in the syndrome of inappropriate anti-diuretic hormone secretion of neurological origin.

Phenytoin has been proposed in the management of patients with the syndrome of inappropriate secretion of anti-diuretic hormone (SIADH) of neurological origin who fail to respond to water restriction. We have conducted a prospective study in order to evaluate the role of phenytoin in the management of seven consecutive patients with SIADH of neurological origin which could not be controlled by limited water intake. Only one patient was successfully treated with chronic phenytoin regimen. This patient, like one previously reported, had suffered a basal skull fracture. It seems likely that in the majority of cases of SIADH of neurological origin phenytoin is ineffective on a long-term basis.

Adult↗

Nifedipine and amphotericin B nephrotoxicity in the rat.

Amphotericin B nephrotoxicity limits its therapeutic use. The mechanisms involved in the deleterious effect on the kidney include a preglomerular vasoconstriction. Nifedipine, a calcium antagonist which acts also on the afferent arteriolar tone, did not, however, prevent renal impairment in the rats of our study. This could be due either to a negligible role of the hemodynamic changes in the development of renal failure or to a lack of efficacy of nifedipine on the vasoconstrictor mechanism induced by amphotericin B.

Amphotericin B↗

24 h-kinetics of iodide uptake in amiodarone induced hypothyroidism.

Amiodarone induced hypothyroidism (AIH) is assumed to result from a failure of the thyroid to escape from the inhibitory effect of inorganic iodine on its organification as a consequence of uninhibited iodide trapping. This hypothesis was supported by the 24h kinetics of radioiodine uptake in a patient with AIH. 131I uptake reached a maximum after 2h and remained unchanged from 2h to 24h. 131I uptake was in the normal range from 1 1/2h to 7h and clearly subnormal after 9h. The normal early 131I uptake was due to the non inhibition of the iodide-concentrating mechanism and the low 24h radioactivity to the decreased iodide organification. These findings presumably explain the mechanism of AIH.

Aged↗

Bartter's syndrome with a salt reabsorption defect in the cortical part of Henle's loop.

The pathogenesis of Bartter's syndrome remains uncertain. The prevailing theory postulates a defect in salt reabsorption, more frequently described in the thick ascending limb of Henle's loop. The patient we studied presents a normal urinary concentration capacity associated with impaired dilution, a free water clearance at the lower end of normal (5.4 ml/min/100 ml glomerular filtrate), a decreased distal fractional chloride reabsorption (54%) when studied during hypotonic saline diuresis, and a normal decrease in free water clearance after furosemide (2.1 ml/min/100 ml glomerular filtrate), suggesting a defect in the cortical part of Henle's loop. When studied during oral water diuresis, the fractional chloride reabsorption was normal (82%). This could be explained by a relative inability of the cortical diluting segment to reach maximal absorptive rates for NaCl. An inappropriate kaliuria related to an excessive delivery of salt load to the distal tubule is suggested by the correlation between urinary potassium and chloride excretion (r = 0.84; p less than 0.001). Aldosterone secretion participates also partially in the urinary potassium loss.

Absorption↗

Potassium homeostasis in liver cirrhosis.

Extrarenal mechanisms are important in the defense against hyperkalemia. During a potassium load, cellular uptake is essential to avoid severe hyperkalemia. Liver and muscles represent the major buffering system, partially mediated by insulin, in the distribution of potassium between intracellular and extracellular fluids. To study the potential role of the liver, we administered an oral load of potassium (0.75 mEq/kg) to nine male patients with compensated cirrhosis and ten normal subjects of similar age, sex, and weight. Despite identical renal excretion, cirrhotic patients had higher potassium levels two and three hours after oral administration. Moreover, only cirrhotic patients presented a clear-cut increase in serum C-peptide concentration after the potassium load without any change in glucose level. It is likely that, in cirrhosis, liver failure contributes to the decrease in hepatic cellular potassium uptake despite insulin hypersecretion.

Administration, Oral↗