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Biomedical subjects

M H Gault

Publications and source records attributed to M H Gault.

At least 19 recordsLinked to original sources

Heparin, fatty acids and sodium, potassium-ATPase inhibition by plasma factors during hemodialysis.

To assess the relationship between heparin and the associated increase in nonesterified fatty acids (NEFA) and their possible influence on Na,K-ATPase during hemodialysis, we studied two groups of patients: (1) 12 patients on chronic hemodialysis dialysed with heparin and (2) 6 patients dialysed without heparin. All 12 patients who received heparin anticoagulation had a 7-fold rise in NEFA on average and also had an increase in circulating inhibitors of Na,K-ATPase assayed by 3H-ouabain displacement from Na,K-ATPase and/or by effect of plasma on the uptake of 86Rb by rat aortic rings. Serial assays in 3 of the patients receiving heparin showed NEFA and inhibitory changes to be at or near maximum within 30-60 min. Of the individual NEFA, the greatest relative increases were in oleic (18:1) and linoleic (18:2) acids, and the strongest correlations were between linoleic acid and both 3H-ouabain displacement (r = 0.94) and 86Rb uptake (r = 0.86). However, a small and slower increase in NEFA also occurred in 3 of the patients dialysed without heparin. We conclude that heparin anticoagulation during dialysis leads to a rapid and marked increase in circulating NEFA, particularly the unsaturated fatty acids, with a corresponding interference with Na,K-ATPase activity. The clinical significance of these findings is unknown. The rise in NEFA during dialysis without heparin in some patients suggests that factors other than heparin may also contribute to the rise in NEFA.

Adult

Hemodialysis intravascular hemolysis and kinked blood lines.

Between May 29 and September 13, 1991, 4 patients developed acute intravascular hemolysis during hemodialysis with Monitral-S delivery systems and Hospal BSM A77 blood lines. All had malaise, nausea and headache; 3 had severe abdominal pain and 2 became very ill. Plasma hemoglobins were 3-21 g/l and LDH 542-3,300 IU in the 4 patients. Hepatoglobin became unmeasurable in 3 and was 0.09 g/l in the 4th patient. Soon afterwards, we found the arterial blood line tightly kinked at the dialyzer inlet port in the 4th patient and released it; he developed abdominal pain, hemolysis was present. We then found these lines had an extra long pump segment, and the rest was short and fitted poorly. When put in the first tubing organizer, severe kinking could occur just after the pump segment, causing back pressure but no alarm. We produced early visible hemolysis in a 1-liter circulating closed loop blood system with the blood line kinked either at the dialyzer inlet or just below the first arterial line tubing organizer with 40 g/l free plasma hemoglobin by 30 min. We excluded reported causes of intravascular hemolysis during hemodialysis. No hemolysis occurred before or during the 9 months after we discarded BSM A77 lines. The evidence indicates that kinked blood lines caused the hemolysis.

Hemolysis

Comparison of patients with idiopathic calcium phosphate and calcium oxalate stones.

Our primary objective was to test the hypothesis that a defect in acidification is more common in patients who have idiopathic calcium phosphate kidney stones than in those whose stones are formed mainly of calcium oxalate. Additionally, other risk factors might differ for these 2 stone types. Urine pH was measured serially over 24 hours, and along with ammonium and titratable acid, it was measured before and serially after ingestion of ammonium chloride in 3 groups of subjects: 24 patients with predominantly calcium phosphate stones, 30 patients with calcium oxalate stones, and 15 health non-stone-formers. Twenty-six parameters potentially related to stone formation and acidification were assayed on urines collected over 24 hours, and 15 parameters on blood. The data base was a computerized list of 5900 analyses of stones from patients living in Newfoundland. Patients not known by their physician to have had urinary tract infection, anatomical abnormality, hyperparathyroidism, or renal tubular acidosis were asked to participate in the study. Differences between means were considered significant if p values were less than 0.05 for F by analysis of variance and also less than 0.01 by t-test. In all patients with calcium oxalate stones and all non-stone-formers, urine acidified to pH less than 5.25, but in 8 of the 23 phosphate stone formers who completed the ammonium chloride study urine failed to acidify to pH less than 5.25. As all 8 had normal values for venous pH, total CO2, and chloride, they were considered to have incomplete renal tubular acidosis (IRTA). The 8 phosphate stone formers with IRTA had greater mean values for urine pH on all 9 specimens collected serially over 24 hours (all means greater than 6.2), and after administration of ammonium chloride (p less than 0.01), as well as lower mean values for urine titratable acid excretion (p less than 0.01), both after administration of ammonium chloride and in 24-hour urine samples, compared with the remaining phosphate stone formers whose urine acidified and the oxalate and non-stone-forming control groups. Nearly all the phosphate stone formers had 1 or more risk factors for stone formation, but with frequencies not significantly higher than those found in the oxalate group. Hypercalciuria and hypocitruria were the commonest, but increased oxalate or urate also occurred. Thus, idiopathic calcium phosphate stone formation can be associated with 1 or more of several risk factors, and, with the possible exception of those with IRTA, treatment should be similar to that given to patients with calcium oxalate stones.

Acidosis, Renal Tubular

The diagnosis and prognosis of autosomal dominant polycystic kidney disease.

BACKGROUND: Autosomal dominant polycystic kidney disease is usually caused by a mutant gene at the PKD1 locus on the short arm of chromosome 16, but in about 4 percent of families with the disorder it is caused by unknown mutations elsewhere in the genome. The natural course of the disease in both genetic forms is not well characterized. METHODS: We studied 17 families with autosomal dominant polycystic kidney disease to compare presymptomatic diagnosis by ultrasonography with diagnosis by genetic-linkage studies and to relate clinical variation of the disease to whether the PKD1 mutation was implicated. RESULTS: In 10 families the disorder was found to cosegregate with polymorphic DNA markers flanking the PKD1 locus, in 2 families it did not, and in 5 families linkage could not be determined. In the 10 families with the PKD1 mutation, 46 percent of the members less than 30 years old who had a 50 percent risk of inheriting a mutation had renal cysts, as compared with 11 percent of the members of the two families without linkage (P less than 0.001). In the PKD1 families, all 67 diagnoses made by ultrasonography were confirmed by determination of the genotype as inferred from linkage. Forty of 48 members (83 percent) less than 30 years old who inherited the PKD1 mutation had renal cysts. All 27 members 30 years old or older who inherited the mutation had renal cysts, suggesting that the probability of a false negative diagnosis did not exceed 0.13 in this age group (P less than 0.05). The mean (+/- SE) age at the onset of end-stage renal disease among members of the PKD1 families was 56.7 +/- 1.9 years, as compared with 69.4 +/- 1.7 years among members with cysts in the families without linkage (P = 0.0025). Hypertension and renal impairment were less frequent and occurred later in the families without the PKD1 mutation. CONCLUSIONS: At present, in most persons with a 50 percent risk of autosomal dominant polycystic kidney disease, imaging techniques are the only mode of reaching a diagnosis before symptoms appear. In such persons a negative ultrasonographic study during early adult life indicates that the likelihood of inheriting a PKD1 mutation is small. In the few who inherit a non-PKD1 mutation for polycystic kidney disease, renal failure is likely to occur relatively late in life.

Adult

Charcot-Marie-Tooth disease and nephropathy in a mother and daughter with a review of the literature.

We report a mother-and-child combination of Charcot-Marie-Tooth disease and nephropathy. The mother received a cadaveric renal transplant, and the daughter has heavy proteinuria with normal glomerular filtration rate. There have been 7 single case reports of both disease entities and 1 report of 3 patients which includes the only sib pair. The related literature is reviewed.

Adolescent

Comparison of urinary tract infection in calcium oxalate and calcium phosphate stone formers.

To compare the frequency of urine infection in calcium oxalate and calcium phosphate stone formers, we reviewed charts from patients whose last renal stone submitted for analysis was predominantly composed of calcium phosphate in 118 and of calcium oxalate in 223. Positive cultures were commoner, but not significantly, in the phosphate than the oxalate stone formers, both in men (17 vs. 7.6%) and women (22 vs. 15%). Bacteria frequently producing urease were found in only 4% of the phosphate group. Urine leucocytes were slightly more frequent in the oxalate group for men and significantly so for women. The results do not support the concept that calcium phosphate stones are mainly due to infection with urease-producing or other bacteria.

Calcium Oxalate

Plasma conjugated androgens in a dialysis-dependent male as immunoreactive digitalis-like factors.

Endogenous digitalis-like factors (DLF) including those which were immunoreactive with digoxin antibody and those which displaced ouabain from Na,K-ATPase, were isolated from the plasma of a dialysis-dependent male patient not taking digoxin. Plasma was passed through a C18 disposable column, the DLF eluted with methanol and separated by HPLC on a C8 column. Immunoreactive DLF were measured in each 1 ml HPLC fraction using radioimmunoassay (RIA) for digoxin. The immunoreactive peaks were determined and aliquots from each peak analyzed by fast atom bombardment mass spectroscopy (FAB-ms). The compounds in the five major HPLC immunoreactive peaks were identified as: 1) dehydroepiandrosterone glucuronide and tetrahydrocortisone glucuronide; 2) epiandrosterone glucuronide; 3) dehydroepiandrosterone sulfate and androsterone glucuronide; 4) epiandrosterone sulfate and 5) androsterone sulfate and androstanediol glucuronide. These immunoreactive DLF represent 70% of the total plasma immunoreactive DLF of 0.124 micrograms digoxin equivalents/l. Aliquots of the HPLC fractions were also assayed for ability to displace ouabain from Na,K-ATPase. The ouabain displacing DLF gave a very different elution pattern from that obtained by RIA with the major Na,K-ATPase ouabain displacing DLF eluting in the more polar fractions. They remain unidentified.

Adult

Biotransformation and elimination of digoxin with normal and minimal renal function.

Six subjects with normal renal function (NRF) and 6 patients with minimal renal function (MRF) on 3 times weekly hemodialysis received 150 muCi3H-digoxin-12 alpha orally. Serial urine collections were made for five days or more. Digoxin and metabolites were separated using diethylaminoethyl Sephadex LH-20 column chromatography. Mean cumulative percentages of the ingested radioactivity excreted over five days in NRF and MRF groups were: digoin, 54.5% and 14.7%; bis-digitoxoside of digoxigenin, 2.0% and 0.59%; mono-digitoxoside, 0.8% and 0.19%; digoxigenin, 0.25% and 0.03%; and dihydrodigoxin, 0.3% and 0.03%. Half-lives based on the mean rates of disappearance from urine comparing NRF and MRF groups were: for digoxin 40 hr and 120 hr; for bis-digitoxoside, 11.5 hr and 46 hr; for mono-digitoxoside, 8.5 hr and 12 hr; for digoxigenin, 2 hr and 7.5 hr; and for dihydrodigoxin, 1.2 hr and 7.0 hr. Considering the relationships of the five-day cumulative excretion and half-lives of digoxin and metabolites in the NRF and MRF groups, it appears unlikely that there is a major alteration in the biotransformation of digoxin in advanced renal failure when there appears to be a shift from renal to slower biliary excretion.

Adult

Radiation nephritis following combined abdominal radiation and chemotherapy (bleomycin-vinblastine).

A 29-year-old man presented with acute glomerulonephritis five weeks following completion of combined chemotherapy (bleomycin-vinblastine) and abdominal radiation for testicular carcinoma. There was no evidence for a post-infectious cause or a systemic collagen disorder. The renal biopsy showed changes consistent with radiation nephritis. The combined radiation and chemotherapy may have, by additive or synergistic action, caused the early appearance of radiation nephritis.

Adult

Hydrolysis of digoxin by acid.

Predictable hydrolysis of [3H]digoxin-12alpha occurred in vitro with incubation in HCl or gastric juice. Hydrolysis varied with pH, time, temperature and agitation. Digoxin, the bis- and mono-digitoxosides of digoxigenin and digoxigenin were separated by silica gel thin-layer chromatography using chloroform-ethyl acetate-glacial acetic acid (25:25:1 v/v) and were quantitated by liquid scintillation spectrometry. Hydrolysis with incubation at 37 degrees and pH 3 for 90 min was minimal, but increased with increasing acidity until greater than 70% was hydrolysed at pH 1-2 after 30 min and greater than 96% after 90 min incubation. At pH 0-9, 87% was hydrolysed after 30 min. In vitro hydrolysis in gastric fluid was slightly less than in HCl at the same pH. A volunteer was given 150 muCi[3H]digoxin-12alpha by nasogastric tube during a pentagastrin infusion when gastric pH was 0-94. He remained on his left side and samples were aspirated at intervals and immediately neutralized. Ethanol-chloroform 50-50 (v/v) extracts of the gastric fluid aspirated after 90 min and of all the urine specimens collected for 5 days were applied to a DEAE Sephadex LH-20 column. The radioactivity appeared in a single peak as digoxigenin in the 90 min gastric aspirate and in all urine specimens. Extensive intragastric hydrolysis of digoxin may occur under conditions of maximum acid output.

Adult