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M J Whiting

Publications and source records attributed to M J Whiting.

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Nephelometric determination of total protein in cerebrospinal fluid and urine using benzalkonium chloride as precipitation reagent.

Four different protein precipitants, namely trichloroacetic acid, sulphosalicylic acid, benzethonium chloride and benzalkonium chloride, were used to estimate the total protein concentration in cerebrospinal fluid and urine by nephelometry. Protein determinations for 50 cerebrospinal fluid samples and 100 urine samples were compared with values obtained by a trichloroacetic acid-Ponceau S spectrophotometric method. All methods were correlated well, but total protein results using acid precipitants were usually lower, while results obtained using benzethonium chloride were generally higher, than results obtained by the trichloroacetic acid-Ponceau S method. Anomalous results were obtained for some urine samples with benzethonium chloride, but not with benzalkonium chloride. Assays using benzalkonium chloride as precipitating reagent showed good precision and closest agreement with the trichloroacetic acid-Ponceau S dye-binding method. The use of benzalkonium chloride as precipitant is recommended for automated cerebrospinal fluid and urine protein estimations by nephelometry.

Benzalkonium Compounds

Falsely low estimation of triglycerides in lipemic plasma by the enzymatic triglyceride method with modified Trinder's chromogen.

The enzymatic assay of triglyceride, based on the use of L-glycerol-3-phosphate oxidase (EC 1.1.3.21) and a modified Trinder's chromogen involving 4-chlorophenol, is subject to strong negative interference at concentrations of triglyceride greater than 20 mmol/L, such as occur in grossly lipemic plasma. This interference is caused by the rapid utilization of oxygen, resulting in the reaction becoming transiently anaerobic. The dye product already formed may then be reduced ("bleached") by acting as an alternative electron acceptor for glycerol-3-phosphate oxidase. Reduction of the dye leads to a marked decrease in final absorbance at 505 nm. Grossly underestimated values for triglyceride concentrations, apparently within the linear range of the assay, may therefore be inadvertently obtained with equilibrium methods. We suggest that samples giving unexpectedly low results for lipemic plasma should be re-assayed after dilution or with use of a smaller volume of sample.

Autoanalysis

Bile acid synthesis by cultured rabbit hepatocytes: stimulation by three lipoprotein fractions.

Bile acid and cholesterol synthesis were measured in monolayer cultures of rabbit hepatocytes maintained in a defined culture medium. In the absence of lipoproteins, bile acid synthesis and secretion were correlated with cholesterol synthesis and were increased 245% by mevalonolactone (10 mM) and inhibited 45% by lovastatin (50 micrograms/ml) over 24 h. When included in the culture medium, normal rabbit plasma low-density and high-density lipoproteins increased bile acid synthesis and secretion by up to 140% of values obtained without lipoproteins in hepatocytes from normal or cholestyramine-fed rabbits. Three cholesterol-rich lipoprotein fractions (beta-very low density, low density and high density) also were isolated from rabbits fed 1% cholesterol for 14 days. When added to rabbit hepatocyte cultures, each fraction markedly increased hepatocellular cholesterol content, stimulated bile acid synthesis and secretion in a dose-dependent manner, and inhibited cholesterol synthesis from radioactive acetate. These data indicate that three different lipoprotein fractions can provide cholesterol for uptake and subsequent breakdown to bile acids by cultured rabbit hepatocytes.

Animals

Bile acid synthesis and secretion by rabbit hepatocytes in primary monolayer culture: comparison with rat hepatocytes.

Rabbit hepatocytes isolated after liver perfusion with collagenase were maintained in primary monolayer culture for periods up to 96 h. Bile acid synthesis and secretion was measured by capillary gas-liquid chromatography and by a rapid enzymatic-bioluminescence assay. As expected from the bile acid profile of rabbit gallbladder bile, cholic acid was the only bile acid synthesized in detectable amounts and was produced at a linear rate of 170 pmol/h per mg cell protein from 24 to 96 h in culture. Ketoconazole (20 microM) inhibited cholic acid synthesis and secretion by 78%, whereas the bile acids chenodeoxycholic acid (100 microM), deoxycholic acid (100 microM) or lithocholic acid (2 microM) had no effect. When rat hepatocytes were cultured under identical conditions, the rate of bile acid synthesis was found to be only 12 pmol/h per mg cell protein, a value in agreement with previous work. The large difference in rates of bile acid synthesis between rabbit and rat hepatocytes may be due to rapid loss of cytochrome P-450 from rat hepatocytes when placed in monolayer culture. Although reportedly active in cholesterol 7 alpha-hydroxylation, form 4 cytochrome P-450 levels in rabbit hepatocytes did not correlate with rates of bile acid synthesis.

Animals

Regulation of bile acid pool size and plasma lipid levels in the SHR/N-corpulent rat: influence of the level of caloric intake.

In the obese progeny of the SHR/N-cp strain of the rat the bile acid pool was at least twice as large as that in their lean littermates even when only 6 weeks old. The composition of the pool remained unchanged in the obese females, but in their male counterparts the proportion of cholic acid was significantly increased. Cholestyramine feeding reduced the pool size by 26% in the obese rats, but a similar effect also occurred in the lean animals. The obese rats consumed about 60% more food per day than their lean littermates. When obese females were pair-fed to the intake of their lean controls from 6 to 11 weeks of age, the bile acid pool remained significantly enlarged, although not to the same extent as in the obese rats fed ad lib. Plasma cholesterol levels were reduced but remained significantly higher than the levels in the lean animals. The marked hypertriglyceridemia exhibited by the obese rats fed ad libitum did not develop in their pair-fed counterparts. In contrast, there was a comparatively smaller reduction in plasma cholesterol and triglyceride levels in the obese rats fed cholestyramine. Hepatic steatosis persisted in the pair-fed animals as well as in those given cholestyramine. Restricting caloric intake significantly reduced the body weight gain of the obese rats but had little effect on the extent of their corpulence. These studies show that at least some of the characteristics of this congenic strain, including hypertriglyceridemia and hepatic and intestinal hypertrophy, are due mainly to excess dietary intake.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Cyclic fluctuations in fasting serum bile acid levels detected with a sensitive enzyme/bioluminescent assay.

A sensitive two-step bioluminescent assay for total serum bile acids was developed using commercially available enzymes. In the first step, the bile acids present in 10 microL of alkali-treated serum were oxidised at pH 9.5 by high purity 3 alpha-hydroxysteroid dehydrogenase to form NADH. Then, NADH was quantitated at pH 6.5 under optimal conditions for bioluminescence using FMN:NADH oxidoreductase and luciferase from Photobacterium fischeri. The enzyme/bioluminescent assay correlated well with gas-liquid chromatography and radioimmunoassay methods. Assay of fasting sera in eight healthy subjects revealed cyclic fluctuations in bile acid concentrations which were inversely related to gallbladder volume. These results provide biochemical evidence for interdigestive partial gallbladder emptying as a normal physiological process.

3-Hydroxysteroid Dehydrogenases

Chemical composition of common bile duct stones.

The common bile duct stones obtained from 148 patients were analysed chemically for cholesterol, calcium and bilirubin. When stones were present in both the common bile duct and gallbladder at the time of surgery, the common duct stones were similar in chemical composition to gallbladder stones in the majority of cases and were predominantly cholesterol-type stones. However, common bile duct stones from patients whose gallbladders had been removed at least one year before the detection of common duct stones contained less cholesterol and more bilirubin than common bile duct stones which were associated with gallbladder stones. Thirty per cent of these stones contained suture material in the centre of the stone. Overall, the results indicate that common bile duct stones are more likely to be pigment type than gallbladder stones, especially if the common duct stones are large, have formed in the duct and become symptomatic less than 12 years after cholecystectomy. Non-absorbable suture material should be avoided in surgery involving the common bile duct.

Adolescent

Bile acids.

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3-Hydroxysteroid Dehydrogenases

Identification of 3 alpha,7 alpha,12 alpha-trihydroxy-5 beta-cholestan-26-oic acid, an intermediate in cholic acid synthesis, in the plasma of patients with infantile Refsum's disease.

The plasma bile acid profiles of three children with the inherited metabolic disorder, infantile Refsum's disease, were found to contain 3 alpha,7 alpha,12 alpha-trihydroxy-5 beta-cholestan-26-oic acid. This intermediate in the synthesis of cholic acid was identified by combined gas-liquid chromatography-mass spectrometry and accounted for approximately 25% of the total bile acids which were present at elevated concentrations in plasma. Infantile Refsum's disease appears to share several biochemical features with the cerebro-hepato-renal syndrome (Zellweger's disease), including abnormal bile acid metabolism.

Bile Acids and Salts

Cholesterol gallstone pathogenesis: a study of potential nucleating agents for cholesterol crystal formation in bile.

Cholesterol monohydrate crystal formation was measured quantitatively in model bile solutions, which were supersaturated with cholesterol, by a radiochemical method and qualitatively in human gallbladder bile by polarizing microscopy. Various agents, which have been postulated to act as nucleating factors for cholesterol crystal and gallstone formation, were added to bile and their effect on the appearance of cholesterol crystals was determined. These agents included calcium salts found in gallstones (calcite, aragonite, apatite, bilirubinate), Escherichia coli bacteria, pigment residues from cholesterol gallstones, bilirubin and several mucin preparations. Human gallbladder bile, which was collected from patients with and without cholesterol gallstones, was also mixed with model bile to examine whether nucleating or anti-nucleating factors were present. None of the agents tested markedly and consistently promoted cholesterol monohydrate crystal formation in model or human bile, except seed crystals of cholesterol monohydrate which were used as a control. Human gallbladder bile from obese patients without gallstones delayed the appearance of cholesterol crystals in model bile solutions, whereas gallbladder bile from gallstone patients did not. These results do not provide experimental support for the hypothesis that calcium salts and pigment material found in gallstones, or gallbladder mucin at concentrations less than 10 mg/ml, act as nucleating agents for cholesterol crystal and stone formation. The difference between gallbladder biles from patients with and without gallstones in their propensity to form cholesterol crystals may be due to the presence of an anti-nucleating factor in normal bile.

Animals

Measurement of cholic acid synthesis and secretion by isolated rat hepatocytes.

Liver cells isolated from normal and cholestyramine-treated rats were incubated as cell suspensions for up to 4 hr in a simple, defined medium. The bile acid concentration in cells plus cell medium was determined by gas-liquid chromatography. Normal hepatocytes synthesized cholic acid at an initial rate of 0.25 nmol/mg cell protein per hr, which is comparable to rates reported from in vivo methods. This rate was increased more than 4-fold when rats were fed a cholestyramine-containing diet for 7 days prior to liver cell isolation. Although cholic acid was secreted into the cell medium during the incubation, it could not be assayed reliably by the hydroxysteroid dehydrogenase assay method, contrary to the reports of Anwer et al. 1975. Biochem. Biophys. Res. Commun. 64: 603 and Gardner and Chenouda 1978. J. Lipid Res. 19: 985.

Animals

Synthesis of delta-aminolaevulinate synthase by isolated liver polyribosomes.

1. Postmitochondrial supernatants were prepared from the livers of chick embryos and were incubated under conditions that supported protein synthesis. delta-Aminolaevulinate synthase (EC 2.3.1.37) was synthesized by supernatants from livers treated with the porphyrinogenic drugs 2-allyl-2-isopropylacetamide and/or 3,5-diethoxycarbonyl-1,4-dihydrocollidine, but synthesis by supernatants from normal livers could not be detected. Synthesis of enzyme released from polyribosomes was measured by immunoprecipitation with specific antibody to the mitochondrial enzyme, and the specificity of the reaction was established by electrophoresis of dissociated immunoprecipitates on sodium dodecyl sulphate/polyacrylamide gels. 2. The relative synthesis of delta-aminolaevulinate synthase in vitro was comparable with that previously measured in vivo, and was correlated with the enzyme activity of the liver. 3. Enzyme synthesis in vitro occurred predominantly on free rather than membrane-bound polyribosomes. 4. The mol.wt. of the product synthesized in vitro was 7000 +/- 7000 by sodium dodecyl sulphate/polyacrylamide-gel electrophoresis. However, pulse-labelling of the enzyme in vivo confirmed its mol.wt. to be 49000 +/- 5000 when isolated from the mitochondrion. A small amount of immunoprecipitable enzyme of mol.wt. 70000 was detected in the cytosol in vivo. In chick embryo liver, delta-aminolaevulinate synthase therefore appears to be synthesized on cytoplasmic polyribosomes as a polypeptide of mol.wt. 70000, which in vivo is rapidly incorporated into the mitochondrion, and is then extracted as a lower-molecular-weight form. 5. Haemin added to the postmitochondrial supernatant-containing incubation mixture at concentrations up to 10 muM had no effect on general protein synthesis or the synthesis of delta-aminolaevulinate synthase. On the other hand, haemin treatment of induced chick embryo livers in vivo for 3h markedly decreased the relative synthesis of delta-aminolaevulinate synthase in vitro. These results suggest that haemin represses the synthesis of delta-aminolaevulinate synthase by decreasing the amount of mRNA for the enzyme available for translation.

5-Aminolevulinate Synthetase

Delta-Aminolevulinic acid synthase from chick embryo liver mitochondria. I. Purification and some properties.

The purification of hepatic delta-aminolevulinic acid synthase (EC 2.3.1.37) was accomplished from chick embryo liver mitochondria, which had been treated with the combination of drugs, 2-allylisopropylacetamide and 1,4-dihydro-3,5-dicarbethoxycollidine to produce a high starting level of enzyme activity. After extraction from the mitochondria by sonication, the enzyme was purified to a final specific activity of over 10,000 nmol of aminolevulinate formed/30 min/mg of protein/37 degrees, using the techniques of Sephadex chromatography, ammonium sulfate fractionation, affinity chromatography for pyridoxal phosphate, and preparative isoelectric focusing. An isoelectric point of 7.0 and a molecular weight of 87,000 were obtained for the native enzyme. The subunit molecular weight of 49,000, obtained by sodium dodecyl sulfate-polyacrylamide gel electrophoresis, suggested it was a dimer. The enzyme was inhibited by p-chloromercuribenzoate and N-ethylmaleimide, stimulated by cations and exhibited an ultraviolet absorption spectrum characteristic of pyridoxal 5'-phosphate enzymes with absorption maxima at 325 and 420 nm.

5-Aminolevulinate Synthetase