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Biomedical subjects

M J Choi

Publications and source records attributed to M J Choi.

At least 37 records · Page 2Linked to original sources

Comparison of capillary electrophoresis-based immunoassay with fluorescence polarization immunoassay for the immunodetermination of methamphetamine using various methamphetamine antibodies.

An accurate and simple immunoassay using capillary electrophoresis (CE) with laser-induced fluorescence (LIF) was performed for the detection of methamphetamine (MA) in urine. The CE-LIF was conducted with an untreated fused-silica column using antiserum and a tracer of fluorescein isothiocyanate (FITC)-labeled MA. This CE-LIF system was compared with fluorescence polarization immunoassay (FPIA) in a TDx analyzer in the photo-check mode using the same FITC-labeled tracer and the same antiserum. Various antibodies, not only those prepared by our own immunogens but also those from commercial sources, were screened and characterized in both assay systems with regard to sensitivity, precision, and cross-reactivity. Both systems satisfied analytical precision and gave similar cross-reactivity patterns. However, the CE-LIF-based immunoassay was approximately one order superior to FPIA in sensitivity, requiring less volume of sample, antiserum, and tracer for the assay. Considering that the FPIA system is well known to be a useful tool for screening antibodies and detecting drugs, the CE-LIF-based immunoassay system, which is seemingly more advantageous than the FPIA system, appears to have great power for the characterization of antibodies and for the detection of MA in urine.

Antibodies↗

A biotin-avidin labeled enzyme immunoassay for the quantitation of serum TSH using protein-layered solid phase.

A sensitive enzyme immunoassay for serum TSH has been developed utilizing the tight binding between biotin and avidin, and three layered protein polystyrene beads as solid phase. To increase binding capacity of TSH and sensitivity of the assay, the polystyrene beads were coated sequentially with mouse immunoglobulin as first layer, rabbit antimouse immunoglobulin as second layer and monoclonal anti-TSH as third layer. A serum sample was incubated simultaneously with a monoclonal anti-TSH immobilized polystyrene beads and a second monoclonal anti-TSH covalently attached to biotin. After washing, the antibody bound serum TSH-anti-TSH-biotin complex is reacted with horseradish peroxidase (HRP)-labeled avidin. Following a second wash, the bound HRP activity was measured colorimetrically. Reproducible results were obtained within 4 hours for serum TSH in the range between 0 microIU/ml and 50 microIU/ml with detection limit of 0.1 microIU per test.

Animals↗

Successful mycophenolate mofetil treatment of glomerular disease.

Eight patients with resistant and/or relapsing nephrotic syndrome or renal insufficiency were empirically treated with mycophenolate mofetil (MMF). The underlying glomerular diseases were membranous nephropathy (N = 3), minimal change disease (n = 2), focal segmental glomerulosclerosis (n = 1), and lupus nephritis (N = 2). Treatment with MMF 0.75 to 1.0 g twice daily, either as monotherapy or in combination with low-dose steroid treatment, resulted in substantial reductions in proteinuria or stabilization of serum creatinine. In relapsing patients following withdrawal from cyclosporin A, MMF achieved suppression of proteinuria equivalent to or better than that which occurred during cyclosporin A treatment. Steroids were successfully withdrawn in each of the non-lupus patients. MMF was well tolerated with no evidence of hematologic, hepatic, or other toxicity. These clinical anecdotes demonstrate the short-term clinical efficacy of MMF treatment. In addition, they suggest that MMF may have major steroid-sparing effects and might represent an alternative to cyclosporin A in appropriate patients.

Adult↗

Identification and characterization of novel antimicrobial decapeptides generated by combinatorial chemistry.

Novel combinatorial libraries consisting of simplified amino acid sequences were designed to screen for peptides active against the Candida albicans membrane. A novel decapeptide, KKVVFKVKFK, that had a unique primary amino acid sequence was identified in this work. This peptide irreversibly inhibited the growth of C. albicans and showed a broad range of antibacterial activity but no hemolytic activity. Circular dichroism spectra revealed that the predominant secondary structure of this peptide strongly depended on the membrane-mimetic environments; the peptide preferred to form an amphipathic alpha-helical structure in the presence of 50% trifluoroethanol, while it preferred to adopt a distorted alpha-helical structure in the presence of sodium dodecyl sulfate micelles. Experiments in which dye was released from vesicles indicated that this novel antimicrobial peptide killed microorganisms through the action on the membrane as its primary target. Replacement of amino acids in this active decapeptide on the basis of information from the libraries could provide unique information about factors affecting its antimicrobial activity such as its secondary structure, net positive charge, and hydrophobicity.

Anti-Bacterial Agents↗

Suppression of dialysis patients' lymphocyte IL-2R expression by glucocorticoids and cyclosporine.

Previous studies have shown interindividual heterogeneity in the suppressive effects of glucocorticoids and cyclosporine (CsA) on the proliferation responses of dialysis patients' peripheral blood mononuclear cells (PBMC). In addition, methylprednisolone (MP) was shown to be significantly more suppressive than prednisolone (P), and PBMC from patients on peritoneal dialysis (PD) were found to be more sensitive to both glucocorticoids than those from patients on haemodialysis (HD). In order to begin to explore the cellular mechanism(s) underlying these observations, the differential suppressive effects of these drugs on lymphocyte interleukin 2 receptor (IL-2R) expression by mitogen-stimulated PBMC from 23 PD and 30 HD were determined. The mean+/-SD concentrations (ng/ml) of steroid causing 50% inhibition (IC50) of cell proliferation was significantly lower for PD than HD PBMC with both P (94+/-93 vs 148+/-105, P<0.05) and MP (21+/-25 vs 35+/-31, P<0.05). MP was significantly (P<0.001) more suppressive than P of IL-2R expression in both PD and HD. PD IL-2R expression was significantly (P<0.05) more suppressed by CsA alone and by 400 ng/ml CsA+10(-7) MP than was HD IL-2R expression. CsA+10(-7) M MP was significantly (P<0.001) more suppressive of IL-2R expression than the other drugs, alone or in combination, in both groups of patients. In conclusion, these results support the notion that at least one mechanism underlying the significantly greater efficacy of MP compared to P in suppressing PBMC proliferation is its significantly greater suppression of lymphocyte IL-2R expression, either alone or in combination with CsA. Thus, use of MP following allograft transplantation may result in more effective immunosuppression for many recipients.

Cells, Cultured↗

Fluorescence polarization immunoassay of progesterone.

A homogeneous fluorescence polarization immunoassay (FPIA) was developed to measure levels of progesterone in urine using a TDx analyzer in photocheck mode (Abbott Labs). Two tracers of ethylenediamine fluorescein thiocarbamyl (EDF) were employed; one was synthesized from 11 alpha-hydroxyhemisuccinate progesterone (Prog-11OH-HS) and the other was synthesized from 3-(o-carboxymethyl)oxime progesterone (Prog-3CMO). Each derivative of progesterone was conjugated with bovine serum albumin and used as an immunogen which produced monoclonal antibody clone 15A (MAb 15A, anti-Prog-11OH-HS) and clone 2B7 (MAb 2B7, anti-Prog-3CMO), respectively. Different combinations of tracers and antibodies were investigated in the FPIA system. Similar sensitivity was observed when using the pair, MAb 2B7 and its homologous tracer, Prog-3CMO-EDF, or MAb 15A and its homologous tracer, Prog-11OH-HS-EDF. In this immunoassay, no separation step was required and the total time for an assay of 10 samples was approximately 7 min. The progesterone detection limit in a 10 microliters sample was 3 ng/ml. The cross-reactivity results indicate that the A-, B- and D-ring of a steroid are buried in the binding pocket of MAb 15A, while the C-ring faced outward, resulting in cross-reactivity with 11-alpha hydroxy progesterone. The A-, B- and C-ring of a steroid of MAb 2B7, in contrast, are buried deep in the pocket leaving the D-ring facing outward, resulting in some different degrees of cross-reactivity with C17 position substituted steroids.

Fluorescence Polarization Immunoassay↗

Comparative assessment of DNA adduct formation, Salmonella mutagenicity, and chromosome aberration assays as short-term tests for DNA damage.

DNA adduct formation assay (DAFA) was carried out to compare dose responses with the Ames test and chromosomal aberration test using aflatoxin B1 (AFB1) and benzo[a]pyrene (BaP). In the bacterial mutation test, AFB1 and BaP (0-1 microgram/plate) were all positive in TA97a and TA100 with dose-related revertants. However, the slopes of the dose-response curves were gradual (slope 0.55-3.73, r = .84-.98). In the chromosome aberration test, a significant increase in the percentage of chromosomal aberrations was obtained from male ICR mouse spleen cells treated with AFB1 and BaP, but a dose-related increase was insensitive (slope 0.09-0.23, r = .75-.78). The incidence of chromosomally aberrant spleen cells treated with BaP was significantly increased compared with AFB1. DAFA was performed in vitro with [3H]-AFB1 and [3H]BaP. These two carcinogens were able to induce genotoxicity and showed good dose-related increases in terms of DNA adduct formation (slope 0.78-1.28, r = 1.00). Coefficients of variation (CV) for the slope of each dose-response curve were much lower in DAFA in vitro (CV 15.09- 18.34%) than those in any other test (CV 19.69-99.33%, Ames test; 18.89-44.58%, chromosome aberration test). Furthermore, DAFA in vivo was performed to investigate organotropic DNA adduct formation and persistence in Sprague-Dawley rats ip or orally treated with AFB1 and BaP. DNA adducts were monitored for 48-96 h by enzyme-linked immunosorbent assay (ELISA) using corresponding monoclonal antibodies, 6A10 and 8E11. DAFA in vivo demonstrated that the liver and kidney might be the probable target organs for AFB1 with the highest formation and persistence of DNA adducts and the lung and liver for BaP regardless of the route of administration. The results suggest that DAFA in vitro could be useful for detecting genotoxic compounds, and DAFA in vivo should also be considered as a good alternative method for the screening of organ-specific chemical carcinogens.

Aflatoxin B1↗

Lymphocyte responsiveness to glucocorticoids, cyclosporine, or both.

The reason why some patients with glomerular diseases respond to steroid treatment and others do not remains obscure, and it is not possible to prospectively evaluate the probability of response in individual patients. One factor that might contribute to the clinical response to treatment could be the relative sensitivity of a patient's immune system to the suppressive effects of steroids or other immunosuppressive agents. To evaluate this possibility, phytohemagglutinin (PHA)-stimulated peripheral blood mononuclear cells (PBMC) from 16 patients with various biopsy-proven glomerulopathies were cultured with prednisolone or methylprednisolone in final concentrations of 10(-5) to 10(-8) mol/L. From the dose-response curves, the concentration of steroid required to cause 50% inhibition (IC50) of the PHA-induced proliferative response was determined. The PBMC from 10 patients also were cultured with 400 ng/mL cyclosporine both alone and with 10(-7) mol/L steroid, and the inhibitory effects were calculated. There was considerable heterogeneity in the sensitivities of individual patients to steroid inhibition, and the mean +/- SEM IC50 was significantly lower for methylprednisolone than for prednisolone. Cyclosporine caused 50% or greater inhibition in 6 of the 10 patients but had < 10% inhibitory effect in 2 patients. In most patients studied, cyclosporine plus steroid was significantly more inhibitory than cyclosporine alone, but the combination was usually no more effective than 10(-7) mol/L methylprednisolone alone. These results are consistent with the hypothesis that differences in the sensitivity of individual patient's immune systems to the immunosuppressive effects of steroids and cyclosporine might contribute to differences in their clinical responsiveness to treatment.

Adult↗

Suppression of lymphocyte interleukin-2 receptor expression by glucocorticoids, cyclosporine, or both.

Although glucocorticoids and cyclosporine are frequently used to treat patients with various types of glomerulopathy, clinical responses to treatment vary considerably. Considerable interindividual heterogeneity in the suppressive effects of glucocorticoids on lymphocyte proliferation in vitro has been previously reported, suggesting that differences in the pharmacodynamic responsiveness of the immune system to these agents might be an important determinant of how well an individual patient responds to treatment. It also has been shown that methylprednisolone is significantly more suppressive than prednisolone. To identify cellular mechanisms by which these drugs act, a study of the suppressive effects of prednisolone, methylprednisolone, and cyclosporine on lymphocyte proliferation and the expression of the cell surface receptor for interleukin-2 (IL-2R) was conducted using phytohemagglutin-stimulated peripheral blood mononuclear cells (PBMCs) from 13 patients with glomerulopathy and 12 control subjects. Heterogeneity among individuals in both parameters of lymphocyte responsiveness to these drugs was again found, and the significantly greater suppressive effect of methylprednisolone was confirmed for both proliferation and IL-2R expression in patients and control subjects. Cyclosporine alone was moderately suppressive. For most individuals, the greatest degree of suppression occurred when cells were exposed to both cyclosporine and glucocorticoid. Further studies are being conducted to determine whether pretreatment assessment of in vitro lymphocyte responsiveness has any predictive value regarding therapeutic efficacy of each drug in individual patients and to identify of those patients likely to require a more intensive or multidrug immunosuppressive regimen.

Adult↗

Differential suppression of dialysis patients' lymphocyte IFN-gamma production by glucocorticoids and cyclosporine.

IFN-gamma is a potent pro-inflammatory cytokine involved in the immunologic rejection of transplanted organs. Having previously demonstrated differential suppressive effects of methylprednisolone (MP), prednisolone (P) and cyclosporine (CsA) on dialysis patients' lymphocyte proliferative responses to phytohaemagglutinin (PHA), we studied the effects of these drugs on dialysis patients' lymphocyte IFN-gamma production during mitogenic and allogeneic (MLR) stimulation. The mean +/- SEM 50% inhibitory concentration (ng/ml) on cell proliferation was significantly lower for MP than P in PHA-stimulated haemodialysis (HD) patients' (35 +/- 7 vs 152 +/- 25, P < 0.001) and peritoneal dialysis (PD) patients' (35 +/- 11 vs 134 +/- 33, P = 0.001) cultures and in HD patients' MLR cultures (15 +/- 3 vs 48 +/- 9, P < 0.001). The mean +/- SEM fractional responses (PHA or MLR + drug/PHA or MLR) in culture supernatant IFN-gamma concentrations were significantly lower with 10(-7) M concentrations of MP than P in HD (0.19 +/- 0.05 vs 0.31 +/- 0.06, P = 0.01) and PD (0.30 +/- 0.11 vs 0.46 +/- 0.11, P < 0.05) PHA cultures and in HD MLR cultures (0.15 +/- 0.04 vs 0.28 +/- 0.07, P = 0.01). CsA (400 ng/ml) alone not only caused less than 50% inhibition of IFN-gamma production in 15/27 HD PHA, 6/14 PD PHA and 4/13 HD MLR cultures, but actually stimulated it in 9 HD and 5 PD PHA cultures. The results suggest that: (1) MP has greater immunosuppressive potential than P for renal transplant recipients; (2) the stimulation of IFN-gamma by CsA in some patients could be harmful in patients with initial allograft dysfunction; and (3) pre-transplant in-vitro assessment of recipients' PBMC responsiveness to glucocorticoids and CsA may help individualize the post-transplant immunosuppressive regimen.

Cyclosporine↗

Clinicopathologic correlates of prednisone treatment of human immunodeficiency virus-associated nephropathy.

A 43-year-old man with rapidly evolving renal failure from biopsy-proven human immunodeficiency virus (HIV)-associated nephropathy (HIVAN) and superimposed thrombotic microangiopathic changes was treated with prednisone. His serum creatinine decreased from 7.5 to 3.9 mg/dL, and the 24-hour protein excretion decreased from 15.7 to 6.1 g over 6 to 8 weeks. As the prednisone was tapered, however, the creatinine began to increase, and a repeat biopsy was done to assist with therapeutic decisions. The major differences from the pretreatment biopsy were marked reductions in interstitial lymphocytes and macrophages and absence of thrombotic microangiopathic lesions. This is the first report comparing pretreatment and posttreatment renal biopsy specimens and the findings provide some insight into the means by which prednisone exerts its beneficial clinical effects acutely on this disease.

AIDS-Associated Nephropathy↗

Detection of acoustic emission from cavitation in tissue during clinical extracorporeal lithotripsy.

A 1-MHz focused hydrophone has been used to search for acoustic emission expected to arise from cavitation occurring in tissue during clinical extracorporeal shock-wave lithotripsy (ESWL). The hydrophone is acoustically coupled to the patient's skin and the focus directed at depth in tissue under ultrasound guidance. The measured amplitude-time variation of the acoustic emission from tissue near the shock-wave focus of the Storz Modulith SL20 lithotripter has been examined in four patients. There is evidence of increased amplitude acoustic emission at 1 MHz from regions within tissue that also appear hyperechoic in simultaneously acquired ultrasound images. The acoustic emission from these regions decays from an initial peak to the noise level in about 500 microseconds following each shock-wave pulse. Within this period, a second peak, often of higher amplitude than the first, is typically observed about 100 microseconds after the shockwave. The time between the initial and second peaks is found to increase with increasing shock-wave amplitude. The results are similar to those previously observed from cavitation induced by shock-wave exposure in water and indicate that the 1-MHz acoustic emission arises from inertial cavitation in tissue during clinical ESWL.

Humans↗

The cavitation threshold of human tissue exposed to 0.2-MHz pulsed ultrasound: preliminary measurements based on a study of clinical lithotripsy.

Evidence of acoustic cavitation was identified in the form of transient echoes in ultrasound B-scan images of patients receiving extracorporeal shock-wave lithotripsy treatment on a Storz Modulith SL20. This lithotripter generates 10-microseconds duration pulses with a centre frequency of 0.2 MHz at a pulse repetition frequency of 1 Hz. The visual appearance of B-scan images was examined in a total of 30 patients and a quantitative analysis of echogenicity changes was carried out in six cases involving lithotripsy treatment of stones in the renal pelvis. In these patients new echoes were identified in images unaffected by movement artefacts and were found to occur in perinephric fat and adjacent muscle and kidney tissue at positions close to the axis of the shock-wave field between 1 and 2 cm in advance of the indicated beam focus of the lithotripter. The echogenicity within each region increased significantly above the background level when the output of the lithotripter was increased above a threshold value. The acoustic pressures corresponding to this threshold were measured in water using a calibrated PVDF membrane hydrophone. After correction for attenuation in tissue the cavitation thresholds, in terms of the temporal peak negative pressure, are found to lie between 1.5 MPa and 3.5 MPa in all six cases. Interpretation of the measured values in terms of the likely threshold at the higher frequencies used in diagnostic ultrasound is considered using a theoretical model.

Acoustics↗

Use of progesterone-3(O-carboxymethyl oxime)-horseradish peroxidase in a sensitive microtitre-plate EIA and its application to a visual membrane EIA of progesterone.

A simple method of visual membrane enzyme-immunoassay (EIA) for the detection of progesterone is described. When two types of progesterone-horseradish peroxidase (HRP) tracers were challenged for binding, in the presence of progesterone, to the monoclonal anti-progesterone antibody, 15A, coated on the microtitre plate, the HRP conjugated at the C-3 position (A-ring) of progesterone competed more effectively with progesterone to the binding site of the monoclonal antibody (mAb) than HRP conjugated at the C-11 position of the C-ring. By using this combination of mAb, 15A, and progesterone-3(O-carboxymethyloxime)-HRP (P-3CMO-HRP), we developed a visual membrane EIA system in which free progesterone in the sample could be quantified by the degree of color development. In this system, free progesterone competed with P-3CMO-HRP for binding sites of mAb immobilized on the nitrocellulose membrane. The stable grey color was formed on the surface of membrane for progesterone-negative and no color for progesterone-positive sample using 3,3'-diaminobenzidine (DAB) with Co2+ as an insoluble substrate solution. To examine whether tetramethylbenzidine (TMB) can substitute for DAB in membrane EIA, an experiment was conducted where TMB was used as an insoluble substrate.

3,3'-Diaminobenzidine↗

Localization of the epitope in methamphetamine and its antibody use for the detection of methamphetamine and benzphetamine by polarization fluoroimmunoassay.

An antibody was prepared, using a four carbon-bridged methamphetamine molecule as an immunogen in order to develop a polarization fluoroimmunoassay for urine screening of methamphetamine and benzphetamine. Also, its binding characteristics were investigated to locate epitope sites of methamphetamine. The study showed that the antibody was highly capable of eliciting a polarization fluoroimmunoassay response. However, the detection limit was much greater for benzphetamine (0.05 ppm) than for methamphetamine (0.2 ppm) and weakly antibody binding was found with methamphetamine. This difference in sensitivity may reflect the similarity of benzphetamine to the immunogen used to produce the antibody. Both benzphetamine and the immunogen have a tertiary amine attached to a carbon bridges whereas methamphetamine has only a secondary amine and amphetamine has a primary amine group. The difference of cross-reactivity data between phenylethylamine drugs and beta-hydroxyl phenylethylamine drugs indicates that the beta-carbon position have a major influence on the antibody interaction. Thus, the substitution of hydroxyl group on beta-carbon resulted in virtually no antibody affinity, even if a tertiary amine or secondary amine group was present in the molecule. This suggests that the beta-carbon chain plays a primary role as the epitope site with cooperative binding site of tertiary amine or secondary amine in alpha-carbon position. A hydroxyl group at the beta-carbon position plays an important inhibitory role to the antibody binding.

Antibody Affinity↗

A new visual enzyme immunoassay of methamphetamine using linear water-soluble polyelectrolytes.

A new visual enzyme immunoassay (EIA) technique has been developed. Oppositely charged synthetic linear water-soluble polyelectrolytes (poly-N-ethyl-4-vinyl-pyridine as polycation and polymethacrylate as polyanion) were used as carriers for reagent immobilization. The ability of these molecules to form an insoluble complex was applied for the separation of bound and free components of the immunoassay reaction mixture. This approach was realized in methamphetamine visual EIA. In the first stage of the assay two specific reactions took place during incubation of the analytical reagents with the probe to be analyzed: (1) competition between methamphetamine and hapten conjugated with peroxidase for the interaction with specific antibodies and (2) interaction of these antibodies with the protein A-polymethacrylate conjugate. As a result of these reactions the (polyanion-protein A)-antibody-(hapten-peroxidase) complex was formed. Then the reaction mixture was filtered through an Ultrabind membrane (0.45 microns) with adsorbed poly-N-ethyl-4-vinylpyridine, and the immunological complexes were immobilized to the membrane by electrostatic interaction. The level of peroxidase binding on the membrane was measured by diaminobenzidine substrate. The system described was optimized to achieve both high rapidity (20 min) and an appropriate sensitivity (0.4 micrograms/ml) for methamphetamine assay.

Animals↗