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High-performance liquid chromatographic analysis of theophylline in serum and its use in therapeutic drug monitoring.

A rapid, highly sensitive high-performance liquid chromatographic method has been developed for the determination of theophylline in serum using beta-hydroxyethyltheophylline as an internal standard (IS). Theophylline and IS were extracted from serum using a mixture of dichloromethane: isopropanol (90: 10, v/v) and eluted from a 5 microns, C-18 reversed-phase column at 60 degrees C with a mobile phase consisting of sodium acetate buffer-acetonitrile (90:10, v/v), at a flow rate of 1 ml/min with ultraviolet detection at 280 nm. Each analysis required no longer than 7 min to perform. Quantification was achieved by the measurement of the peak: height ratio and the relative and absolute recoveries varied from 86 to 100%. Within-day coefficients of variation ranged from 2.9 to 5.1% and between-day coefficients of variation from 1.1 to 5.9% in subtherapeutic, therapeutic, and toxic concentrations.

Chromatography, High Pressure Liquid↗

[How to analyze and interpret the effective values in clinical trials].

The analysis of the effective value obtained in clinical trails should take account of both sides of its size and precision, for its interpretation, the general principles of: accuracy, explicitness and quantification should be complied. Criteria such as relative risk (RR), relative risk reducing rate (RRR), absolute risk reducing rate (ARR) and number needed to treat (NNT) an important clinical event, etc. are commonly used in the primary outcomes interpretation, while the methods to express the effective size and precision of surrogate outcomes and intermediary outcomes are needed to be further studied. Many problems for give expression to the outcome of TCM clinical trail still remain to be solved.

Clinical Trials as Topic↗

[Prognostic value of nuclear DNA of 106 colorectal tumors, determined with microspectrocytophotometry].

OBJECTIVE: The aim of this study was to look for correlations between nuclear DNA content of colo-rectal tumors, and such clinical parameters as age, sex, location, CEA, histological grade and Duke's stages. EXPERIMENTAL DESIGN: A prospective study is carried out on surgical patients, subjected to standard criteria of radicality. Nuclear DNA content was quantified in tumoral cells by microcytophotometric techniques. PATIENTS: 106 patients with colo-rectal cancer. Patients with colonic perforation, other concomitant neoplasia, non-curative surgery or receiving adjuvant therapies were excluded from the study. Five patients died during the postoperative period and one was lost. RESULTS: Histological grade: 28% G1, 35% G2 and 37% G3. Dukes': 8% A, 40% B, 32% C and 20% D. DNA quantification has rendered 45% as euploid and 55% as aneuploid. There was no statistical correlation between ploidy and location, age, sex or CEA. However, there is a clear preponderance of euploid tumors in G1 (23 vs. 5), while the aneuploid tumors double the euploid ones (24 and 25 vs. 12 and 12) in G2 and G3. A similar result was found comparing ploidy and Dukes: euploid tumors reach 77% both in stages A and B, while they drop to 24% and 14% in stages C and D. It has also been found that euploid tumors show a longer period of survival free of recurrence. CONCLUSIONS: Evidence has been found supporting a prognostic value for tumoral DNA quantification in colo-rectal cancer. A longer follow-up is required to study absolute survival of the patients.

Adult↗

Effects of interferon-alpha therapy on lymphocyte subpopulations in patients with chronic myeloid leukemia.

The mechanism of action of interferon-alpha (IFN-A) in chronic myelogenous leukemia (CML) is not known, but some evidence points at the immune modulation properties of IFN-A. We conducted a prospective analysis on 49 patients with CML in chronic phase treated with IFN-A in order to identify the effect of therapy on different lymphocyte subpopulations as determined by flow cytometric quantification and whether this effect is associated with the response to IFN-A. The absolute number of lymphocytes was similar in all patients regardless of response to IFN-A. In patients achieving a complete cytogenetic response (CCGR) there was a rebound of the absolute count of CD3+, CD4+, CD8+, and CD19+ lymphocytes after discontinuation of therapy with IFN-A. Patients with resistant disease, as well as patients with hematologic response but no cytogenetic response, showed a lower absolute number of CD19+ cells than patients with any cytogenetic response. Patients who achieved a CCGR had a higher absolute number of CD56+ cells than patients with lesser response or no response to IFN-A, and this persisted after discontinuation of therapy. We conclude that an increase in absolute number of CD19+ and CD56+ lymphocytes is observed in CML patients achieving a CCGR with IFN-A compared to patients with lesser responses. These changes could have functional consequences in the control of the disease.

Adult↗

Articular cartilage volume in the knee: semiautomated determination from three-dimensional reformations of MR images.

PURPOSE: To determine the accuracy of semiautomated quantification of articular cartilage volume from three-dimensional (3D) reformations of magnetic resonance (MR) images. MATERIALS AND METHODS: Sagittal, fat-suppressed, 3D, spoiled gradient-recalled-echo MR imaging of two bovine and two human cadaver knees was performed. Articular cartilage volume was calculated from 3D reformations of the MR images by using a semiautomated program written at the authors' institution. Calculated volumes were compared with directly measured volumes of the surgically removed articular cartilage. RESULTS: The percentage of error of the MR imaging-determined volumes was 6.53% +/- 4.75 (mean +/- standard deviation). A strong correlation between the two sets of observations was shown (r=.997). Linear regression showed the calculated volumes to be highly accurate (slope=1.002, P>.25). Repeated reformations yielded volumes that were reproducible (mean absolute error, 0.013 mL +/- 0.019) and not significantly different from the measured volume (P>.10). CONCLUSION: Semiautomated quantification of knee articular cartilage from MR images yields highly accurate cartilage volumes.

Animals↗

Non-invasive quantification of lactate by proton MR spectroscopy and its clinical applications.

Lactate is an important metabolite in clinical cases indicating the status of metabolic impairment. We applied a clinically relevant simple method for lactate quantification using magnetic resonance spectroscopy (MRS). We used two long in-phase echo time (TE=272,544 ms) to calculate T2 relaxation time and the absolute concentration of lactate. This method was optimized using phantom study and applied to clinical cases. This technique does not require complicated processing and could be applied in daily clinical practice. Moreover, this technique enables lactate quantification in cases (e.g. tumor) where lipid peak is overlapped with the lactate peak at short echo times.

Adult↗

An internal reference technique for accurately quantifying specific mRNAs by real-time PCR with application to the tceA reductive dehalogenase gene.

The accuracy of mRNA quantification by reverse transcription (RT) in conjunction with real-time PCR (qPCR) is limited by mRNA losses during sample preparation (cell lysis, RNA isolation, and DNA removal) and by inefficiencies in reverse transcription. To control for these losses and inefficiencies, a technique was developed that utilizes an exogenous internal reference mRNA (ref mRNA) along with mRNA absolute standard curves. The technique was applied to quantify mRNA of the trichloroethene (TCE) reductive dehalogenase-encoding tceA gene in an anaerobic TCE-to-ethene dechlorinating microbial enrichment. Compared to RT-qPCR protocols that utilize DNA absolute standard curves, application of the new technique increased measured quantities of tceA mRNA by threefold, demonstrating a substantial improvement in quantification. The technique was also effective for quantifying the loss of mRNA during specific steps of the sample processing protocol. Analysis revealed that the efficiency of the RNA isolation (56%) step was significantly less than that of the cell lysis (84%), DNA removal (93%), and RT (88%) steps. The technique was applied to compare the effects of cellular exposure to different chlorinated ethenes on tceA expression. Results show that exposure to TCE or cis-1,2-dichloroethene resulted in 25-fold-higher quantities of tceA mRNA than exposure to vinyl chloride or chlorinated ethene starvation.

Anaerobiosis↗

Quantification of isomers from a mixture of twelve heparin and heparan sulfate disaccharides using tandem mass spectrometry.

Heparin/heparan sulfate-like glycosaminoglycans (HSGAGs) have been implicated in clinically relevant processes such as hemostasis, infection, development, and cancer progression, through their interactions with proteins. Electrospray ionization mass spectrometry (ESI-MS) and tandem mass spectrometry (MSn) were combined to identify and quantify 12 HSGAG disaccharides that can be generated by enzymatic depolymerization with heparin lyases. This technique includes free amine-containing disaccharides that had previously been observed in MSn but not quantified. Our methods use diagnostic product ions from MSn spectra of up to three isomeric disaccharides at once, and up to three sequential stages of MSn in tandem, for the quantitative analysis of the relative percentage of each of these isomers. The isomer quantification was validated using mock mixtures and showed acceptable accuracy and precision. These methods may be applied to the quantification of other isomers by MSn. While each of the 12 disaccharides alone had a linear response to an internal standard in the MS1 spectra, the individual response factors did not remain constant when the concentrations of the other 11 disaccharides in the mixtures fluctuated, due to competition for electrospray ionization. The absolute concentration of one fluctuating isomer was determined out of a constant mixture of the other disaccharides. The rapid, accurate, and sensitive quantification of all isomeric disaccharides may contribute to the eventual sequencing of longer saccharides by MSn, enabling the elucidation of the structure-function relationships of HSGAGs.

Disaccharides↗

Implementation and evaluation of a two-compartment model for quantification of myocardial perfusion with rubidium-82 and positron emission tomography.

Positron emission tomography offers the ability to noninvasively assess regional myocardial perfusion in absolute terms (i.e., milliliters per gram per minute). Accurate estimates have been difficult to achieve with generator-produced 82Rb because of the complex behavior of this tracer in the myocardium. The aim of the present study was to determine whether regional myocardial blood flow could be assessed quantitatively with 82Rb and positron emission tomography by using a two-compartment kinetic model. Regional perfusion in milliliters per gram per minute was estimated from dynamic tomographic scans after intravenous administration of 82Rb in 18 studies in 13 intact dogs studied without intervention, after 2 and 24 hours of induced ischemia, during reperfusion after transient occlusion, or at rest and after pharmacological hyperemia after induced coronary artery stenosis. Regional flow was estimated along with the forward and backward rates of transport (k1 and k2 [minutes-1]) after the relative volume of distribution of the first compartment was fixed to 0.53 ml/ml and the tomographic parameters, the recovery and spillover fractions, were fixed to averaged values obtained in previous studies. In 36 comparisons, estimates of regional flow with 82Rb correlated well with flow measured with concomitantly administered radiolabeled microspheres (r = 0.91, p less than 0.05) over the flow range from 0.14 to 4.25 ml/g/min. A putative index of viability, k2, increased significantly in regions with severe ischemia. The results suggest that quantification of regional myocardial perfusion is possible in centers using 82Rb for estimates of myocardial perfusion when a physiologically appropriate, two-compartment model is used.

Animals↗

Multi-center validation of the transferability of the magnetic resonance T2* technique for the quantification of tissue iron.

The transferability of the T2* technique for measurement of tissue iron between magnetic resonance (MR) scanners is unknown. Heart and liver multi-breath-hold T2* sequences were installed on MR scanners at six different sites. T2* was assessed locally in five or more patients with thalassemia major (n=39), and subjects were re-scanned at the standardization center in London. Inter-center reproducibility of T2* in heart and liver was 5.0% and 7.1%, with mean absolute differences in T2* of 1.3 ms and 0.45 ms, respectively. The MR multi-breath-hold T2* technique for tissue iron quantification is transferable between scanners with good reproducibility.

Humans↗

Newborn screening for hepatorenal tyrosinemia: Tandem mass spectrometric quantification of succinylacetone.

BACKGROUND: False-positive and false-negative results occur in current newborn-screening programs for hepatorenal tyrosinemia, which measure tyrosine concentrations in blood spots, sometimes in combination with other metabolites, including succinylacetone. We present our experience with a newly described method for succinylacetone quantification in routine newborn screening. METHODS: Succinylacetone was extracted from blood spots that had already been extracted with absolute methanol for acylcarnitine and amino acid analysis. The solvent was acetonitrile-water (80:20 by volume) containing formic acid, hydrazine hydrate, and 100 nmol/L 5,7-dioxooctanoic acid as internal standard. Analysis was performed by tandem mass spectrometry in a separate run. RESULTS: Of 61,344 samples, 99.6% had succinylacetone concentrations < or =5 micromol/L. With a cutoff of 10 micromol/L, no false-positive results were obtained. In 2 patients, the succinylacetone concentrations in the dried blood spots from the 36th and 56th hours of life were 152 and 271 micromol/L, respectively, and the tyrosine concentrations were 54 and 129 micromol/L. Hepatorenal tyrosinemia was subsequently confirmed in both patients. Retrospective analysis of the neonatal screening samples of 2 additional known patients revealed increased succinylacetone concentrations of 46 and 169 micromol/L, respectively. CONCLUSIONS: Tandem mass spectrometric quantification directly from residual blood spots is a useful method for the early detection of hepatorenal tyrosinemia in newborn-screening programs.

Blood Specimen Collection↗

CD8+CD38+ and CD8+DR+ peripheral blood lymphoid subsets of HIV-infected intravenous drug abusers correlate with CD4+ cell counts and proliferation to mitogens.

Twenty-nine intravenous drug abusers (ivda), with asymptomatic HIV infection at entry, were sequentially studied at 4- to 6-month intervals for variable follow-up periods (mean, 19.6 months). Two of them progressed to AIDS and another one fell into the IV-C2 stage of the CDC classification at the end of the study. CD8+ lymphoid subsets (CD57+, CD38+, and HLA-DR+) were sequentially analyzed in peripheral blood samples along the follow-up. Both absolute number and percentage of cells within these subsets were found significantly increased over those observed in normal controls. Minor changes were appreciated throughout the follow-up. CD8+CD38+ and CD8+DR+ cells increased slightly (P < 0.05), but the CD8+CD57+ subset did not change significantly. In order to determine whether abnormalities in these subsets are associated with immune dysfunction, we looked for correlation between the quantification of CD8+ subpopulations and other parameters of cellular immunity. Percentage of CD8+CD38+ or CD8+DR+ cells inversely correlates with absolute number of CD4+ cells (P < 0.0001), and percentage of CD38+ subset also correlates with the proliferative response to mitogens in lymphoid cultures. Thus, the enumeration of these populations of CD8+ cells may provide some additional information about the immune status of HIV-infected ivda.

ADP-ribosyl Cyclase↗

Determination of lipoic acid in rat plasma by LC-MS/MS with electrospray ionization: assay development, validation and application to a pharamcokinetic study.

A simple, sensitive and specific LC-MS/MS method for the determination of lipoic acid was developed and validated over the linearity range 5-1000 ng/mL (r2 > 0.99) with 200 microL rat plasma using rosigliatzone as an internal standard (IS). The assay procedure involved a simple one-step liquid-liquid extraction of lipoic acid and IS from plasma into ethyl acetate. The organic layer was separated and evaporated under a gentle stream of nitrogen at 40 degrees C. The residue was reconstituted in the mobile phase and injected onto a Hichrom RPB column (4.6 x 250 mm, 5 microm). Separation of lipoic acid and IS was achieved with a mobile phase consisting of 0.05 M formic acid:acetonitrile (40:60, v/v) at a flow rate of 1.0 mL/min. The API-3000 LC-MS/MS was operated under the multiple reaction monitoring mode (MRM) using the electrospray ionization technique. Positive and negative ion acquisition within the same chromatographic run was used in the present method. For lipoic acid a pseudo-molecular ion transition pair was acquired in negative polarity, whereas for IS the transition pair was acquired in positive polarity. Quantitation was determined for both analyte and IS in MRM scan mode. Absolute recovery of lipoic acid and IS was >70 and 97%, respectively. The lower limit of quantification (LLOQ) of lipoic acid was 5.0 ng/mL. The inter- and intra-day precision in the measurement of quality control (QC) samples 5, 15, 400 and 800 ng/mL were in the range 2.18-5.99% relative standard deviation (RSD) and 0.93-13.77% RSD, respectively. Accuracy in the measurement of QC samples was in the range 87.40-114.40% of the nominal values. Analyte and IS were stable in the battery of stability studies, viz. bench-top, auto-sampler and freeze-thaw cycles. Stability of lipoic acid was established for 1 month at -80 degrees C. The application of the assay to a pharmacokinetic study in rats confirmed the utility of the assay.

Animals↗

Sensitive determination of clarithromycin in human plasma by high-performance liquid chromatography with spectrophotometric detection.

A rapid, selective and sensitive high-performance liquid chromatographic method with spectrophotometric detection was developed for the determination of clarithromycin in human plasma. Liquid-liquid extraction of clarithromycin and norverapamil (as internal standard) from plasma samples was performed with n-hexane/1-butanol (98:2, v/v) in alkaline condition followed by back-extraction into diluted acetic acid. Chromatography was carried out using a CN column (250 mm x 4.6 mm, 5 microm) under isocratic elution with acetonitrile-50 mM aqueous sodium dihydrogen phosphate (32:68, v/v), pH 4.5. Detection was made at 205 nm and analyses were run at a flow-rate of 1.0 ml/min at 40 degrees C. The analysis time was less than 11 min. The method was specific and sensitive with a quantification limit of 31.25 ng/ml and a detection limit of 10 ng/ml in plasma. The mean absolute recovery of clarithromycin from plasma was 95.9%, while the intra- and inter-day coefficient of variation and percent error values of the assay method were all less than 9.5%. Linearity was assessed in the range of 31.25-2000 ng/ml in plasma with a correlation coefficient of greater than 0.999. The method was used to analyze several hundred human plasma samples for bioavailability studies.

Anti-Bacterial Agents↗

Development and validation of a sensitive assay of valproic acid in human plasma by high-performance liquid chromatography without prior derivatization.

Sensitive and selective determination of valproic acid in plasma by high-performance liquid chromatography (HPLC) is usually achieved with pre-column derivatization. In the present work, the derivatization is omitted due to using a simple but highly selective plasma extraction procedure and an optimized chromatographic condition. Valproic acid and the internal standard octanoic acid were extracted from plasma samples with n-hexane under acidic condition followed by back-extraction into diluted triethylamine. Chromatography was performed on a CN column (250 x 4.6 mm, 5 microm) under isocratic elution with acetonitrile-40 mM aqueous sodium dihydrogen phosphate (30:70, v/v), pH 3.5. Detection was made at 210 nm and analyses were run at a flow-rate of 1 ml/min. The method was specific and sensitive with a quantification limit of 1.25 microg/ml and a detection limit of 0.1 microg/ml in plasma. The mean absolute recovery for valproic acid using the present plasma extraction procedure was 75.8%. The intra- and inter-day coefficient of variation and percent error values of the assay method were all in acceptable range. Calibration curves were linear (r>0.999) from 1.25 to 320 microg/ml in plasma.

Calibration↗

Urinary excretion of darbepoetin after intravenous vs subcutaneous administration to preterm neonates.

OBJECTIVE: Previous studies suggest that darbepoetin might stimulate erythropoiesis in preterm neonates more effectively if injected subcutaneously (s.c.) than if infused intravenously (i.v.). It has been postulated that this is because very high plasma concentrations after i.v. dosing result in urinary loss of the drug. However, this theory has not been tested systematically, and no direct comparisons have been made between s.c. and i.v. dosing of darbepoetin in preterm neonates. STUDY DESIGN: Preterm neonates were eligible for this pilot study if they were born at < or =32 weeks gestation with a weight of < or =1500 g, and had a hemoglobin < or =10.5 g/dl. The darbepoetin was given (4 microg/kg) i.v., over 4 h, if an i.v. was already in place and s.c. if no i.v. was in place. Urine was collected for drug quantification before dosing and for 48 h after. Blood was obtained for immature reticulocyte fraction (IRF), absolute reticulocyte count (ARC) and reticulocyte % before and 96 h after dosing. RESULTS: Ten preterm neonates were studied: five received i.v. and five received s.c. darbepoetin. No adverse effects of the administrations were detected. IRF, ARC and reticulocyte % increased in the i.v. and s.c. recipients, and no difference in magnitude of increase was apparent between the groups. Before the darbepoetin was administered, none of the patients had any erythropoietin (Epo) detected in their urine. After i.v. dosing, no darbepoetin was detected in any of the samples, on any of the subjects, over the subsequent 48 h. After s.c. dosing, three of the patients had minimal urinary Epo detected. The patient with the largest urinary loss of drug had only 0.13% of the administered dose detected in the urine. Thus, essentially no urinary loss of drug was observed following either i.v. or s.c. darbepoetin dosing. CONCLUSION: Darbepoetin loss into the urine was below detectable limits among seven patients, while three had minimally detectable urinary losses. i.v. and s.c. dosing resulted in approximately equivalent increases in reticulocyte response when measured 96 h after dosing. On this basis, we speculate that if a patient who is to receive darbepoetin has an i.v. in place, the drug can be given i.v., thus avoiding any discomfort associated with an s.c. injection.

Darbepoetin alfa↗

Second-derivative spectrophotometric determination of naproxen in the presence of its metabolite in human plasma.

A second-derivative spectrophotometric method for the determination of naproxen in the absence or presence of its 6-desmethyl metabolite in human plasma is described. The method consists of direct extraction of the non-ionized form of the drug with pure diethyl ether and determination of the naproxen by measuring the peak amplitude (mm) in the second-order derivative spectrum at a wavelength of 328.2 nm. The efficiency of the extraction procedure expressed by the absolute recovery was 94.6 +/- 0.7% (mean +/- s) for the concentration range tested, and the limit of quantification attained according to the IUPAC definition was 2.42 mg l-1. The linear dynamic range for naproxen was 5.0-100.0 mg l-1, the correlation coefficient for the calibration graphs was excellent, r = 0.99993 (n = 6), the precision (Sr) was better than 4.58% and the accuracy was satisfactory (Er < 2.32%). The results obtained by the proposed method were in good agreement with those found by an HPLC method.

Biotransformation↗

High performance liquid chromatographic analysis of cephalexin in serum and urine.

A rapid, highly sensitive high performance liquid chromatographic method has been developed for the determination of cephalexin in serum and urine. Serum protein was precipitated with 1% zinc sulphate solution containing cephradine as the internal standard. The drugs were eluted from a 5 micron, C-18 reversed-phase column at ambient temperature with a mobile phase consisting of acetonitrile-methanol-acetate buffer of pH 4.2 (10:10:80%), at a flow rate of 1.4 ml/min with ultraviolet detection at 254 nm. Each analysis lasted 9 min. Quantification was achieved by the measurement of the peak-height ratio and the relative and absolute recoveries varied from 98 to 103%. Detection limits for cephalexin were 1 microgram/ml in serum and 5 micrograms/ml in urine. Within-run coefficient of variation ranged from 0.73 to 5.63% at three different concentrations for the serum and urine assay.

Adult↗