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Biomedical subjects

R J Thibert

Publications and source records attributed to R J Thibert.

At least 19 recordsLinked to original sources

Translocational status of ApoB in the presence of an inhibitor of microsomal triglyceride transfer protein.

Despite numerous studies demonstrating that microsomal triglyceride transfer protein (MTP) activity is critical to apoB secretion, there is still controversy as to whether MTP directly facilitates the translocation of apoB across the membrane of the endoplasmic reticulum (ER) through either the recruitment of lipids and/or chaperone activity. In the present study, a specific inhibitor of MTP (BMS 197636) was utilized in HepG2 cells to investigate whether a direct relationship exists between the translocation of apoB across the ER membrane and the lipid-transferring activity of MTP. Inhibition of MTP (with 10 and 50 nmol/L of the inhibitor) did not significantly affect the translocation of newly synthesized apoB (P = 0.77) or the translocational efficiency of the steady-state apoB mass (P = 0.45), despite a 49% decrease in apoB secretion and increased proteosomal degradation. These results compared well with subcellular fractionation experiments which showed no significant change in the fraction of apoB accumulated in the lumen of isolated microsomes in MTP-treated cells (P = 0.35). In summary, MTP lipid transfer activity does not appear to influence translocational status of apoB, but its inhibition is associated with an increased susceptibility to proteasome-mediated degradation and reduced assembly and secretion of apoB lipoprotein particles.

Apolipoproteins B↗

Carbamylated hemoglobin and carbamylated plasma protein in hemodialyzed patients.

The carbamylation reaction in vivo involves the nonenzymatic, covalent attachment of isocyanic acid, the spontaneous dissociation product of urea, to proteins. Carbamylated proteins have been proposed as markers of uremia and indicators of uremic control. However, the utility of measuring carbamylated proteins has not been investigated adequately. Therefore, this study was done to determine the relationship between the carbamylation of long-lived protein (hemoglobin) with that of short-lived proteins (plasma proteins) in hemodialyzed patients. Significantly higher carbamylated hemoglobin (CHb; 157 +/- 40 microg valine hydantoin/g Hb) and carbamylated protein (CTP; 0.117 +/- 0.011 absorbance/mg protein) concentrations were found in hemodialyzed patients (N = 13) as compared to normal individuals (N = 9, 53 +/- 20 microg valine hydantoin/g Hb and 0.08 +/- 0.01 absorbance/mg protein, respectively). A high correlation was found between CHb and CTP concentrations (r = 0.87, P < 0.0001), demonstrating a strong relationship between these two different half-lived proteins. A six-month longitudinal study of seven hemodialyzed patients showed that the between subject correlations were significant for CHb versus CTP as well as CHb versus pre-dialysis urea. Correlations were not significant for CTP versus pre-dialysis urea or Kt/V, nor CHb versus Kt/V. Carbamylated hemoglobin fluctuated the most over this time period (30.1% +/- 20.2%), pre-dialysis urea and CTP varied less (18.3% +/- 13.4% and 14.9% +/- 7.5%, respectively), and Kt/V varied the least (6.3% +/- 3.3%). Within subject correlations were not significant between any two tests. It is unclear whether the lack of correlations found is real or a function of the small sample size. However, these data do show that CHb and CTP are positively associated and reflect the degree of urea exposure in the blood, but their usefulness for patients on maintenance hemodialysis is not clear.

Biomarkers↗

Carbamylation of erythrocyte membrane aminophospholipids: an in vitro and in vivo study.

OBJECTIVES: To study the binding of cyanate to erythrocyte membrane aminophospholipids in vitro, and to investigate whether carbamylated aminophospholipids can be detected in the plasma membrane of native erythrocytes. DESIGN AND METHODS: For in vitro studies, the lipid components of 14C-carbamylated erythrocyte membranes were resolved by thin-layer chromatography (TLC). The covalent incorporation of cyanate was visualized by autoradiography and quantitated by phosphorus analysis. For the in vivo studies, phospholipid headgroups were enzymatically hydrolyzed by phospholipase D and subsequently reacted with diacetyl monoxime. RESULTS: Both phosphatidylethanolamine (PE) and phosphatidylserine (PS) were covalently modified by [14C] cyanate; incorporating 15.76 +/- 0.09 and 13.34 +/- 0.81 mol%, respectively, following a 15-h incubation. Carbamylated PE (carb-PE) was resolved with PE by TLC in a solvent system consisting of chloroform/methanol/ammonia (65/35/5, v/v/v). Treatment of native erythrocyte membrane lipid micelles with phospholipase D, followed by reaction with diacetyl monoxime, suggests the presence of intrinsic carb-PE (2.85 +/- 0.65 percent of the total PE). CONCLUSIONS: Carbamylation of erythrocyte aminophospholipid may be involved in some of the hematological consequences of uremia on the erythrocyte.

Autoradiography↗

Carbamylation of erythrocyte membrane proteins: an in vitro and in vivo study.

OBJECTIVES: To establish the degree of erythrocyte membrane protein carbamylation in uremic and nonuremic patients, and to characterize the in vitro binding of cyanate to the individual proteins of the cytoskeletal matrix. DESIGN AND METHODS: For in vivo studies, erythrocyte ghosts were digested with proteinase K and the released peptides colorimetrically assayed for carbamylation, using the diacetyl monoxime reagent, and quantitated using homocitrulline. For in vitro studies, erythrocyte ghosts were incubated with [14C] cyanate, and the membrane proteins separated by SDS-PAGE. Cyanate incorporation was quantitated by liquid scintillation counting and imaging densitometry of the excised bands. RESULTS: Erythrocytes from uremic patients were found to have a greater level of carbamylation than those from nonuremic patients (47.09 +/- 7.80 and 25.89 +/- 6.92 nmol homocitrulline/mg proteolyzed protein released, respectively). In vitro incorporation of [14C] cyanate into membrane protein followed the sequence: spectrin > ankyrin > Band 4.1 > Band 3 > actin > Band 7. CONCLUSIONS: The increased level of erythrocyte membrane protein carbamylation in uremic compared to nonuremic patients may lead to membrane destabilization and contribute to the decreased erythrocyte survival time observed in uremia.

Autoradiography↗

A competitive chemiluminescent immunoassay for the sensitive measurement of apolipoprotein B100.

OBJECTIVES: We have developed a competitive chemiluminescent immunoassay for the sensitive measurement of apolipoprotein B100 (apoB) and conducted a preliminary evaluation of the method. DESIGN AND METHODS: In the assay, apoB-rabbit immunoglobulin G (IgG) conjugate competes with apoB in the sample for binding to acridinium N-hydroxysuccinimide labelled anti-apoB antibody. Goat anti-rabbit-IgG immobilized to magnetic particles is used to separate the apoB-rabbit IgG conjugate bound to the labelled anti-apoB antibody. Chemiluminescence, measured using a Ciba Corning Magic-Lite chemiluminometer, is inversely proportional to the concentration of apoB in the sample. RESULTS: The assay is completed in 1-2 h. Within-run imprecision (n = 5) determined at 10, 100, and 200 micrograms/L of apoB was found to be 4.8%, 2.4%, and 3.5%, respectively. The between-run imprecision (n = 5) at the same concentrations of apoB was determined to be 14.2%, 9.5%, and 7.7%, respectively. The proposed assay showed reasonable correlation (r = 0.86) with a commercially available immunoturbidimetric method. The lower limit of detection was 2.2 micrograms/L (4.0 pmol/L). CONCLUSIONS: This assay may be useful in tissue culture studies where sensitive measurement of secreted and intracellular concentrations of apoB are required. Our preliminary evaluation of the assay appears to confirm is usefulness.

Acridines↗

Low-density lipoprotein binding assay using the calf adrenocortical low-density lipoprotein receptor.

The low-density lipoprotein (LDL) receptor was purified to a semipure solubilized form from calf adrenocortical tissue. This receptor was found to be a suitable substitute for the human LDL receptor for studying human LDL binding. The apparent dissociation constant of the receptor from calf adrenocortical cells, using human LDL as the ligand, was found to be 8.8 +/- 1.0 micrograms 125I-LDL/mL, similar to that reported for the human LDL receptor (4-10 micrograms LDL/mL). The calf adrenocortical LDL receptor demonstrated specificity toward human lipoprotein fractions that was identical with that of the human LDL receptor. A competitive binding assay was optimized using the semipurified solubilized calf adrenocortical receptor. This facilitated the study of nonenzymatically glycosylated human LDL by a binding assay that is much simpler and faster than previous studies, which used intact cultured cells. The present assay requires only a 1-h incubation of LDL with the receptor and a simple filtration procedure to remove unbound LDL. Using the present assay, it was shown that nonenzymatic glycosylation of LDL on the order of what is seen in diabetics, that is, modification of 2-5% of lysine residues, caused a decreased ability of the LDL to bind to the receptor.

Adrenal Cortex↗

Glycated calmodulin from platelets as an index of glycemic control.

In an effort to test whether a significant fraction of calmodulin would become glycated within the life span of the platelet (10-14 days), we monitored the kinetics of calmodulin glycation in vitro. Under the conditions we used, the fraction of glycated calmodulin reached a maximum (approximately 21%) within 10 days. We then extended the studies to human subjects. The intraplatelet concentrations of calmodulin and glycated calmodulin from age-matched type I diabetic subjects were monitored by a combination of m-aminophenylboronate affinity chromatography and enzyme-linked immunosorbent assay. The results indicate that the concentrations of total intraplatelet calmodulin (nonglycated plus glycated) were not dependent on the glycemic state of the subjects. Data from control and diabetic subjects showed a poor correlation between the concentrations of glycohemoglobin and of glycated calmodulin. However, a better correlation was obtained when glycated calmodulin concentrations were compared with those of serum fructosamine. The fraction of glycated calmodulin in the control population (7.71% +/- 0.75%) was significantly (P < 0.05) different from that of the diabetic population (21.6% +/- 1.26%). Given that the clinical role of the fructosamine assay remains controversial, estimation of glycated calmodulin in platelets might be useful as a short time-window index of glycemic control.

Adolescent↗

Glutathione metabolic enzyme activities in diabetic platelets as a function of glycemic control.

Type 1 diabetic subjects categorized on the basis of the glycated haemoglobin content of their blood (low less than 7%; medium, greater than 7% and less than 11%; high, greater than 11%) were analyzed for total intraplatelet GSH as well as for the steady-state kinetic parameters (apparent KM and apparent Vmax) of some glutathione metabolic enzymes including glutathione reductase, glutathione peroxidase, gamma-glutamyltrans-peptidase and glutathione-S-transferase. This study indicates that intraplatelet GSH content of subjects with low glycated-haemoglobin is approximately 2-fold higher than those with medium glycated-haemoglobin. There was no further decrease in intraplatelet-GSH in subjects with high glycated-haemoglobin. The kinetic parameters of the platelet-enzymes studied (glutathione reductase, gamma-glutamyltranspeptidase and glutathione-S-transferase) were essentially independent of the glycation state of the subject. However, the apparent KM of glutathione peroxidase was approximately 4-fold higher in the subjects with high glycated-haemoglobin, in comparison to low subjects. This decrease in affinity could possibly result from the susceptibility of this enzyme to non-enzymatic glucosylation as purified samples of glutathione peroxidase incubated in vitro with glucose showed similar increases in apparent KM. These results are discussed in terms of the potential contribution of glutathione peroxidase impairment, to the hyperaggregability of the diabetic platelet.

Blood Platelets↗

Rapid screening method for polymorphism of group A apolipoproteins.

Polymorphism of apolipoproteins AI and AII (apo AI and apo AII) can be easily investigated in plasma by a simple method involving a 30-min incubation of EDTA plasma in the presence of urea, dithiothreitol, and Nonidet P-40 followed by subsequent isoelectric focusing (IEF). The sample (2 microL) was applied to an ultrathin flat acrylamide gel of pH range 4-6, and focused using a Bio-Rad Mini IEF Cell for 1.5 h at a maximum of 500 V. Coomassie Blue R-250 was used to visualize the apolipoproteins. To verify the identity of the different apolipoproteins after IEF, the gel was immunofixed directly with anti-apo AI, or immunoblotted on polyvinylidene difluoride (PVDF) membrane using monospecific antibodies to apo AI and apo AII and an anti-immunoglobulin-alkaline phosphatase conjugate. High-density lipoprotein (HDL) was used as a standard for Apo AI variants. Employing these techniques, human plasma apo AI was resolved into one major band (apo AI0, pI 5.54), and four minor bands identified as apo AI+2 (pI 5.75), apo AI+1 (pI 5.66), apo AI-1 (pI 5.45), and apo AI-2 (pI 5.34). Apo AII was resolved into one major isoprotein designated as apo AII0 (pI 4.87), and two minor isoforms apo AII+1 and apo AII-1 which focused at pIs of 5.18 and 4.58, respectively. The results showed that these methods can be used to identify apo AI and AII isoforms without prior ultracentrifugation to isolate the HDL. The entire procedure, including IEF, fixation (chemical or immunofixation), and staining, can be accomplished in 5 h compared to 2 days using previously reported technique.(ABSTRACT TRUNCATED AT 250 WORDS)

Apolipoprotein A-I↗

A simple micromethod for rapid assessment of the distribution of apolipoprotein C isoforms in very-low-density lipoprotein.

A simple and rapid isoelectric focusing method for quantifying Apo C isoforms of triglyceride-rich lipoprotein was developed. The very-low-density lipoprotein (VLDL) was isolated from 100 microL of EDTA plasma using a Beckman Airfuge ultracentrifuge. The delipidated VLDL was applied to an ultrathin flat acrylamide gel, and focused using a Bio-Rad Mini IEF Cell, for 1.5 h at a maximum of 500 V. Apo CII and Apo CIII in VLDL were resolved into four major bands, CIII0 (PI 4.91), CII (PI 4.78), CIII1 (PI 4.72), and CIII2 (PI 4.53). The method demonstrated within-run and between-run CVs of 2.7% to 11.9% and 4.4% to 12.2%, respectively. The relative percentage of C apoproteins and the ratio of CII to CIII found in VLDL from plasma of normal, chronic renal failure, and hyperlipidemic subjects agreed with previously published data.

Apolipoprotein C-II↗

Determination of non-enzymatically glycated apolipoprotein A1.

A procedure for the quantitation of non-enzymatically glycated apolipoprotein A1 (GApoA1) was developed and optimized. Glycated total protein was separated from plasma using m-aminophenyl-boronate affinity chromatography. Apolipoprotein A1 present in the glycated and non-glycated fractions of each sample was determined by rate nephelometry, and the percent glycated apo A1 calculated. The measuring range of the assay was 0.5-8.0% GApoA1. The within- and between-run CV's were less than 5.2 and 7.9%, respectively, and recoveries were greater than 92%. Free glucose did not affect the results. In a group of female non-insulin diabetic subjects the mean GApoA1 was 3.8 +/- 1.6% (mean +/- SD). In non-diabetic subjects the mean level of GApoA1 was 2.1 +/- 0.8% (mean +/- SD).

Adult↗

Colorimetric determination of non-enzymatically glycated albumin.

A colorimetric method was developed for the determination of nonenzymatically glycated albumin and adapted to a Flexigem centrifugal analyzer. Albumin was separated from serum or plasma using Sepharose-blue dextran affinity chromatography. The stable ketoamine linkage in glycated albumin reduced a tetrazolium salt to its colored formazan. Glycated human serum albumin was used as the standard and optimum conditions for the assay were established. Recovery of glycated albumin was quantitative. The coefficients of variation for within-run and day-to-day precision were 4.6% and 8.5%, respectively. The labile aldimine fraction, lipemia, icterus, hemolysis and type of anticoagulant used did not affect the results. The non-diabetic reference interval for this method was 7.9-11.6% glycated albumin, and normal and diabetic populations can be clearly discriminated (p less than 0.005). Values obtained with this method correlated well with a thiobarbituric acid assay (r = 0.974) but less so with those for glycated hemoglobin (r = 0.35).

Blood Glucose↗

Spectrophotometric study of total protein-albumin methods applied to cerebrospinal fluid.

A spectrophotometric study was carried out for three proteins assays when modification of their serum procedures using bromcresol green, bromcresol purple and biuret reagents were applied to the determinations of total proteins and albumin in cerebrospinal fluids. A novel concentration device wherein the sample itself was used as the primary diluent for the three reagents concentrated to contain the proper amounts of chemicals in smaller volumes than suggested in their serum procedures allowed reasonable absorbance signals to be obtained. Low molecular weight molecules were separated from the albumin and globulins of the fluids by centrifugal ultrafiltration using a 25K cutoff and spectra were obtained for both high and low molecular weight fractions. Some materials were obtained in the separated ultrafiltrates which gave reactions with all three reagents, reactions which either overlapped the spectra of the albumin reactions or superimposed the spectra obtained with the total protein reaction. A screening procedure for cerebrospinal fluid total proteins or centrifugally ultrafiltered albumin appears reasonable as an inference from studies made, although further elucidation of the low molecular weight fractions in needed as a confirmation device.

Albumins↗

Multiple forms of bovine kidney alkaline phosphatase.

Partial purification of bovine kidney alkaline phosphatase produced two fractions (F1, F2). Double immunodiffusion experiments using antiserum against the pooled kidney fractions showed a complete fusion of the precipitin line of bovine kidney F2 with those of bovine kidney F1, liver, bone, and placental alkaline phosphatases. No reaction was observed between the antiserum and alkaline phosphatase from either bovine intestine or human kidney. Crossed immunoelectrophoresis of fraction F2 produced two peaks that crossed each other and stained for enzyme activity. This finding is discussed in light of recent reports of multiple antigenic forms of alkaline phosphatase form human and rabbit kidney.

Alkaline Phosphatase↗

Investigation of reaction intermediates of the urea-diacetylmonoxime reaction.

1. An investigation of the intermediates of the urea-diacetylmonoxime reaction and the isolation of the protochromogen has been described. A comparative spectral study of the protochromogen with that of the literature values suggested the structure of the protochromogen to be a diureide. 2. The diureides of 1-phenyl-1,2-propanedione-monoxime and 2,3-pentanedione were synthesized and their visible, U.V., I.R., NMR, and mass desorption spectrometry data were analyzed. The study suggests that the structure of each of these compound is that of a diureide. When these diureides were redissolved in acid media, they gave the color expected of the corresponding chromogens found from the respective diketones and urea. 3. The 3a-methyl-6a-phenyl-glycoluril was synthesized by a base-catalyzed reaction. When this glycoluril was dissolved in concentrated HCl, a pink color was obtained, similar to that of the corresponding diureide. These studies indicate that both the diureide and the glycoluril (if formed at all in acid-catalyzed reaction) are converted to the same chromogen, possibly via a rearrangement. 4. When 2,3-butanedionemonoximethiosemicarbazone was reacted with urea in acid medium, characteristic spectral data were obtained which were very similar to those of the urea-diacetylmonoximethiosemicarbazide reaction. This tends to indicate that the possible structures of the protochromogens are similar and of the open chain diureide type.

Acetone↗

Assessment of the EMIT-(TM) technique as a screening test for opiates and methadone for a methadone maintenance clinic and its calibration by Bayesian statistics.

1. The performance of the semi-quantitative enzyme multiplied immunoassay technique (EMIT, Syva Corp.) for opiates and methadone has been examined as a screening procedure of urine samples from a methadone maintenance programme. The predictive value model that is based upon Bayesian statistics was used to determine screening levels for the EMIT assays. 2. With a predictive value of a negative result of 100%, the EMIT opiate assay can be used to show the absence of the indicated drugs, while positive results can be confirmed by a non-immunological technique. A screening level of 1.0 micrograms/ml for the opiate assay, conforms to this model. 3. The EMIT methadone assay was shown to have a predictive value of a negative result of 28% with respect to thin-layer chromatographic (TLC) results. This discrepancy between EMIT and TLC can not be explained by sensitivity alone. The manufacturer's recommended 0.5 micrograms/ml cutoff has been used therefore for the methadone assay.

Chromatography, Thin Layer↗

Continuous-flow analysis of ammonia in perchloric acid supernate of blood or plasma using an ammonia-selective electrode.

A simple automated method for the estimation of ammonia in perchloric acid supernate of blood or plasma using an ion-selective electrode (Orion Ammonia-selective electrode, Model 95-10) is described. The reliability of the proposed method has been checked against an ion-exchange resin procedure, which has been chosen as a standard procedure. Regression equation and correlation coefficient for the proposed method are y = 0.7 X + 10 and 0.945, respectively, as compared with the chosen standard method. Within-run and between-run precision are 2.1% and 3.5% respectively. The average percent recovery is 97.5% and a tentative range is 13-73 microgram/dl (9-52 micronmol/l) ammonia nitrogen.

Adult↗