PubMed HealthSearch

SEARCH · PubMed Health

Results for “HPLC”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

[Comparison of non-HPLC 1 alpha, 25(OH)2D assay system with the HPLC method].

Recently, a method not requiring high performance liquid chromatography (HPLC) has been developed (Amersham Inc., U.K) for the measurement of levels of 1 alpha, 25(OH)2D, which demonstrates the most potent physiological effect among the metabolites of vitamin D. Until recently, purification of 1 alpha, 25(OH)2D fraction with HPLC has been considered indispensable prior to radioreceptor assay of this metabolite. Therefore, we used the Amersham assay system to determine whether it is possible to correctly measure the level of 1 alpha, 25(OH)2D without the HPLC process. The procedures we used were to extract the serum with an organic solvent, followed by fractionation of vitamin D metabolites through an LH-20 column. The products with or without the use of HPLC were submitted to radioreceptor assay using chick embryo intestinal receptors. As a result, it was found that (1) Separation and yield were improved by changing the column size, (1) Serum values 1 alpha, 25 (OH)2D in healthy subjects obtained by HPLC and non-HPLC methods were in good agreement with the theoretical values. Although the values thus obtained in patients with chronic renal insufficiency (with or without dialysis) were somewhat lower than the theoretical values, the result was consistent because there was no significant difference between the tow sets of measured values, and the correlation coefficient was r = 0.990. (3) Variations within the assay were CV = 16.5% for HPLC group and CV = 21.4% for non-HPLC group.(ABSTRACT TRUNCATED AT 250 WORDS)

Calcitriol

Purification of monoclonal antibodies by hydroxylapatite HPLC and size exclusion HPLC.

Monoclonal antibodies of both the IgG and the IgM type were purified by hydroxylapatite HPLC (HA-HPLC) under very mild conditions. The IgM type antibodies, which were isolated from ascites fluid and separated from other proteins also by means of size exclusion HPLC. It was shown that the most frequently observed disadvantage of HA-HPLC, that is the relative short life of the columns (P. Steffen (1989) GIT Fachz. Lab., Suppl. 3/89 (Chromatogr.), 50-90), is due to microbial contamination rather than lower mechanical stability. In order to monitor column performance, a test was developed based on the use of standard proteins under isocratic separation conditions. This allows a direct comparison between the respective performances of columns made from different materials, hydroxylapatite or fluoroapatite, from different sources and with different particle sizes. A problem which often occurs with HA-HPLC in the case of IgM antibody isolation, namely precipitation of the antibodies at low salt concentrations at the beginning of a chromatographic run, was avoided by adding sodium chloride to both separation buffers.

Antibodies, Monoclonal

High-performance liquid chromatography (HPLC) assay for ribavirin and comparison of the HPLC assay with radioimmunoassay.

The use of high-performance liquid chromatography (HPLC) to measure ribavirin in serum and other biological fluids has been limited by endogenous interfering substances. We report an HPLC procedure based on the extraction of ribavirin from serum, plasma, or cerebrospinal fluid with a boronate affinity gel, which uses a 3-methylcytidine internal standard. This assay is sensitive (to 0.4 microM), specific (no interference with 34 commonly prescribed drugs), reproducible (coefficients of variation from 5.4 to 22.4%), and linear (r = 0.999) over the range of clinically relevant concentrations in serum (from 0.5 to 50.0 microM). It also correlates well with the ribavirin radioimmunoassay (r = 0.992). This HPLC assay should be useful for measuring ribavirin in serum and other body fluids during clinical trials.

Chromatography, High Pressure Liquid

Automatic determination of diltiazem and desacetyldiltiazem in human plasma using liquid-solid extraction on disposable cartridges coupled to HPLC--Part I: Optimization of the HPLC system and method validation.

A sensitive and automated method for the analysis of diltiazem and desacetyldiltiazem in plasma has been developed using liquid-solid extraction (LSE) on disposable extraction cartridges (DECs) in combination with HPLC. After isolation from plasma, the analytes are separated on a highly deactivated octyl silica column with a mobile phase of methanol-0.05 M phosphate buffer (pH 7.4) (62:38, v/v). The analytes are monitored photometrically at 238 nm. The complete preparation of the plasma sample as well as the injection of the final extract on to the analytical column are performed automatically by means of a sample processor equipped with a robotic arm to which is attached a needle dispensing the different liquids. The internal standard solution is first added to the plasma sample. The DEC is then conditioned successively with methanol and phosphate buffer (pH 7.4). A 1.0-ml volume of sample containing the internal standard solution is applied on an extraction cartridge filled with cyanopropyl silica (50 mg). After the DEC has been washed with the same buffer, the analytes are eluted with 0.16 ml of methanol. A 0.14-ml volume of buffer is then passed through the DEC and 0.25 ml of the final extract is injected onto the HPLC column. The absolute recoveries of the drugs are about 90% and the limit of detection for diltiazem is 0.8 ng ml-1. Relative standard deviations of 2.6% (within-day) and 3.7% (between-day) have been obtained for this compound at a plasma concentration of 50 ng ml-1.

Automation

High-performance liquid chromatographic (HPLC) and HPLC-mass spectrometric (MS) analysis of the degradation of the luteinizing hormone-releasing hormone (LH-RH) antagonist RS-26306 in aqueous solution.

The kinetics of the degradation of an LH-RH antagonist, RS-26306,1, in aqueous solution from pH 1 to pH 11 were studied by reverse-phase HPLC. The pH-rate profiles at 50, 60, and 80 degrees C were U-shaped with the rate law of kobs = kHaH + kw + kOHaOH. The predicted 25 degrees C shelf life at the pH of maximum stability, pH approximately 5, is greater than 10 years. The products from the degradation were analyzed by HPLC-MS using thermospray ionization. Below pH 3, the primary product, 2, forms from the acid-catalyzed deamidation of the C-terminal amide. Above pH 7, epimerization of the individual amino acids is the principal reaction. Between pH 4 and pH 6, intramolecular serine-catalyzed peptide hydrolysis becomes important, yielding a tripeptide, 3, and a heptapeptide, 4. At the pH of maximum stability all three pathways for degradation are observed.

Chemical Phenomena

Lead speciation by HPLC-ICP-AES and HPLC-ICP-MS.

Speciation of inorganic lead (Pb2+) and several trialkyllead species (trimethyllead chloride [TML], triethyllead chloride [TEL], and triphenyllead chloride [TPhL]) is investigated using high-performance liquid chromatography (HPLC) with detection by both inductively coupled plasma emission spectroscopy (ICP-AES), and inductively coupled plasma mass spectrometry (ICP-MS). Reversed-phase, ion-pairing, and ion-exchange HPLC modes are studied. Optimal chromatographic conditions for ICP-AES detection include a reversed-phase separation utilizing a step gradient from 10 to 70% methanol. However, the gradient has been found to destabilize the plasma when using ICP-MS detection. An isocratic separation with a 30% methanol mobile phase has been found to be the best compromise between plasma stability and chromatographic resolution. Detection limits using ICP-MS detection are 3 orders of magnitude improved over ICP-AES detection.

Chromatography, High Pressure Liquid

High performance liquid chromatographic (HPLC) measures of hydrophobicity as determined by means of new HPLC columns.

Two new commercially available reversed phase high performance liquid chromatographic (HPLC) columns were tested from the view point of their usefulness for determination of hydrophobicity by means of partition chromatography. One column comprised a specially prepared hydrocarbon-bonded silica stationary phase material. The other column was packed with a polybutadiene-coated alumina (PBCA) phase. As reference served a regular commercial octadecylsilica (ODS) column. A series of test solutes were pyrazine CH- and NH-acids--the compounds which are able to take part in specific as well as in nonspecific intermolecular interactions. Unique properties of the new hydrocarbonaceous column manifested themselves in regular linear relationships between logarithms of capacity factors and volume percent of methanol in aqueous eluent. The main advantage of the PBCA column is a possibility of performing chromatography at alkaline pH. Both new columns are superior to regular ODS columns in respect of providing reliable chromatographic measures of hydrophobicity. It was observed that hydrophobicity parameters determined in individual HPLC systems are not highly intercorrelated and hence can reflect different structural features of solutes.

Aluminum

[Serum monitoring of methotrexate (MTX) and 7-hydroxymethotrexate concentrations in patients treated with MTX using high-pressure liquid chromatography (HPLC) and comparison of serum MTX levels between HPLC method and fluorescence polarization immunoassay (FPIA)].

In order to measure simultaneously the serum levels of methotrexate (MTX) and its major metabolite, 7-hydroxymethotrexate (7-OH-MTX), in samples obtained from patients treated with MTX, we have investigated the reversed-phase high-pressure liquid chromatographic assay using ion-pairing reagents. The mobile phase consisted of 77.5% solution of 0.005M tetrabutylammonium and 22.5% acetonitrile. SEP-PAK C18 Cartridges were used for the precolumn. The detectable range of MTX and 7-OH-MTX were 0.02-0.03 and 1.0 mumol/l respectively. A significant positive correlation was observed (r = 0.983) between FPIA and HPLC methods. Serum MTX levels with FPIA were significantly (p less than 0.05) higher than those of HPLC method. The serum 7-OH-MTX levels at 24 hr and 48 hr were 4.857 +/- 1.383 (n = 10) and 1.835 +/- 0.286 (n = 6) mumol/l respectively with the dosage of 400 mg/m2. The serum 7-OH-MTX levels at 48 hr were 6.254 +/- 3.053 mumol/l (n = 5) with the dosage of 3,000 mg. The serum half lives of MTX and 7-OH-MTX were 8.05 +/- 1.03 (n = 4) and 14.8 +/- 1.35 (n = 6) hours respectively between 24 hr and 48 hr after administration. The T1/2 7-OH-MTX/MTX ratio was 1.8. Percent cross-reactivity of 7-OH-MTX with concentrations ranging from 1-10 mumol/l were 0.6-2.0% by FPIA. However, patients' serum levels of 7-OH-MTX were 15-85 times (n = 21) higher than those of MTX. MTX levels of containing both MTX and 7-OH-MTX (7-OH-MTX/MTX ratio was 50/1) were significantly higher than those of containing MTX alone by FPIA.

Adult

Squalene isolation by HPLC and quantitative comparison by HPLC and GLC.

A new procedure is described for isolating and measuring squalene in plasma and in several organs of the rat. The unsaponifiable material was fractionated by normal phase HPLC on a silica gel column using a mobile phase consisting of hexane/propanol-2/water. The eluate was monitored at 215 nm. The squalene in the hydrocarbon fraction thus collected was than quantified on an analytical column eluted with hexane. Squalene concentrations ranging from 3 to 200 micrograms per ml of plasma or per g of fresh tissue were accurately measured. The results obtained agree with those of the squalene assays carried out by gas chromatography on a packed or capillary column.

Animals

A validated HPLC assay for salmon calcitonin analysis. Comparison of HPLC and biological assay.

A high-performance liquid chromatographic (HPLC) method is described for the assay of salmon calcitonin. The method uses a 5-microns octadecasilyl silica column (100 x 4.6 mm) at 50 degrees C and an initial mobile phase (flow rate 1 ml min-1) comprising 35% of B (1 M tetramethylammonium hydroxide-water-acetonitrile, 8:392:600) and 65% of A (1 M tetramethylammonium hydroxide-water-acetonitrile, 20:880:100) with linear gradient elution over 21 min to a final mobile phase of 57% B; solutions A and B are adjusted to pH 2.5 with phosphoric acid. Detection was by UV spectrophotometry at 210 nm. The method has been shown to be selective, precise and rapid and, in a collaborative study to give excellent correlation with the results obtained by using the biological assay method of the European Pharmacopoeia. The method, which has been applied successfully to the assay of different batches of salmon calcitonin in bulk drug and in formulated products, is recommended for adoption as the pharmacopoeial assay method.

Amino Acid Sequence

Measurement of cyclosporine in plasma from patients with various transplants: HPLC radioimmunoassay with a specific monoclonal antibody compared.

This study compares cyclosporin A (CsA) concentrations in plasma from patients receiving various transplants, as measured by HPLC and RIA with a monoclonal antibody for CsA and an 125I-labeled ligand. The RIA was restandardized with in-house standards because it overestimated CsA by an average of 23%. The RIA was sensitive to 2 micrograms/L, the standard curve was linear from 20 to 500 micrograms of CsA per liter, analytical recovery was 98%, and CVs were less than 8% for intra- and interassay precision. RIA (y) vs HPLC (x) for 283 plasma samples from 145 patients gave a slope = 1.1256, r = 0.979. When the results were segregated according to transplant type, CsA in liver and heart recipients was overestimated by RIA as compared with HPLC: slope = 1.202, r = 0.973 and slope = 1.1477, r = 0.983, respectively. Adult and pediatric CsA values were acceptable when RIA and HPLC were compared: slope = 1.0755, r = 0.977 and slope = 1.0563, r = 0.980, respectively. For six samples (four heart, two liver recipients) where HPLC and RIA values demonstrated wide discrepancies, repeat HPLC and analysis of eluate fractions gave CsA concentrations nearer values by the initial HPLC assay. We conclude that this RIA cannot be substituted for HPLC in the case of heart and liver recipients. The need for each laboratory to standardize the RIA is obvious.

Adult

[A specific and quantitative determination of rat beta-endorphin. Combination of HPLC and RIA].

A specific and quantitative method for the determination of rat beta-endorphin by the combination of HPLC and RIA was developed. Rabbit antiserum against camel beta-endorphin (c beta-E) was raised and used for RIA at the final concentration of 1:10000. The quantitative range estimated from the displacement curve was 0.1-2.0 ng. Cross-reactivities with Met-Enk, Leu-Enk, alpha-MSH, alpha-endorphin, ACTH and human beta-E were less than 0.1, less than 0.1, less than 0.1, less than 0.1, 2 and 100%, respectively. These peptides were separated from each other by reversed phase HPLC with UV254 nm detection, and the minimum detectable dose of c beta-E was found to be 1 microgram. beta-E-like immunoreactivity (beta-ELIR) in the HPLC effluent was determined by RIA. The HPLC-RIA chromatogram of authentic c beta-E exhibited a single peak which coincided with the peak of c beta-E detected by UV, and 80% of the injected c beta-E (1-100 ng) was detected in the c beta-E fraction. The HPLC-RIA chromatogram of rat pituitary, hypothalamus, cerebrospinal fluid and plasma revealed the presence of 1-3 peaks, one of which was observed at the position of c beta-E. The HPLC elution of rat pituitary resolved the material into two peaks of biological activity, one of which coincided with the peak of beta-ELIR at the position of c beta-E. The HPLC-RIA chromatogram of the c beta-E fraction from pituitary obtained by gel-chromatography exhibited three peaks, one of which coincided with c beta-E. These results suggest that beta-ELIR in the c beta-E fraction of the HPLC elution may reflect rat beta-E accurately.

Animals

[HPLC, RIA, FPIA. Evaluation of 3 methods for the assay of vancomycin].

We describe a rapid and accurate high performance liquid chromatographic (HPLC) method for vancomycin quantitation. This method is then compared with two immunoassays, RIA and FPIA. The chemical extraction step needed for HPLC is simple and rapid. Both conventional reversed phase HPLC and high speed reversed phase HPLC were tested. The mobile phase was a mixture of aqueous ammonium acetate and acetonitrile. Specificity of the HPLC assay was good. Serum levels in 112 clinical specimens assayed by HPLC were regressed against the levels obtained for the same samples by both RIA and FPIA. The correlation was good (RIA : r = 0.945; FPIA : r = 0.967). Considering the disadvantages of RIA, HPLC and FPIA emerge as the methods of choice.

Chromatography, High Pressure Liquid

Comparison of fluorescence polarization immunoassay and HPLC for the determination of theophylline in serum.

Theophylline in serum was measured by fluorescence polarization immunoassay (FPIA) and by high-performance liquid chromatography (HPLC). Within-run precision studies using control samples in the subtherapeutic, therapeutic and toxic concentrations, resulted in coefficients of variation in the range of 2.86-3.12% (FPIA) and 2.1-3.66% (HPLC), respectively. Between-run precision ranged from 2.76-6.2% for FPIA and from 2.51-6.0% for HPLC. The mean recovery for three spiked controls was 98.9% for FPIA and 98.8% for HPLC. Comparison of 60 patients' samples, assayed with both methods, indicated an extremely good analytical correlation (r = 0.990). The FPIA method displayed a slight but consistent positive bias in relation to the concentration of theophylline present in patients sera. Caffeine was found to exhibit a positive bias to 13%, over a caffeine concentration range of 10-40 micrograms/ml. The HPLC method offers an advantage for measurements of both caffeine and theophylline simultaneously. The FPIA offers significant advantages in speed of analysis and turnover-time, while maintaining accuracy and precision compared with those of established HPLC procedures.

Caffeine

Syntheses of the sulfoconjugated isomers of norepinephrine and dopamine, controlled by HPLC with ultraviolet detection.

The physiological significance of sulfoconjugated catecholamines and their involvement in clinical disorders, e.g. hypertension and Parkinsonism, is poorly investigated. For this reason, the sulfoconjugated isomers of dopamine as well as of norepinephrine were synthesized by modified methods. All isomers and their intermediates could be detected by a reversed-phase high-performance liquid chromatography with ultraviolet detection (HPLC-UV) with short retention times and a good reproducibility. Ion-exchange chromatography with an extended column length improved the separation of the reaction products, and the immediate control by HPLC-UV enabled precise cutting of the fractions. The selection of the fractions with the optimum ratios of product/by-product resulted in improved yields and highest purity. All by-products, e.g. dopamine sulfonic acids, were less than 0.04%, as detected by HPLC-UV and, in addition, the contamination by free catecholamines was only 41 x 10(-4)-87 x 10(-4)%, as measured by HPLC with electrochemical detection (HPLC-ED). The purity was further demonstrated in two highly sensitive biological assays: cAMP production in human mononuclear leukocytes and aggregation of human platelets. The sulfoconjugated catecholamines were characterized by melting point, thin-layer chromatography, infrared spectrum, HPLC-UV, elemental analysis, and unequivocally identified by 1H-NMR.

Chemical Phenomena

Application of HPLC in disposition study of A14-125I-labeled insulin in mice.

To describe quantitatively the in vivo distribution and elimination of insulin, high-performance liquid chromatography (HPLC) separation was applied to the pharmacokinetic study of human insulin labeled with 125I at tyrosine A14 (A14-125I-insulin) as a tracer. Intact A14-125I-insulin levels were determined by HPLC and trichloroacetic acid (TCA) precipitation in plasma and various tissues after its intravenous bolus injection into mice. TCA precipitation consistently overestimated the intactness of A14-125I-insulin compared with HPLC, possibly due to the presence of both a TCA-precipitable intermediate degradation product of labeled insulin found in HPLC elution profiles and reported high-molecular-weight forms of labeled insulin in plasma. Thus, TCA precipitation gave a considerably lower total plasma clearance (Cltot) value than HPLC. The half-life of A14-125I-insulin was prolonged by a simultaneous injection of 8 U/kg unlabeled insulin, and labeled insulin behaved similarly to [14C]inulin (an extracellular fluid marker). The concentration time profiles of HPLC-separated labeled insulin in plasma were analyzed by a noncompartmental moment method, and both Cltot and steady-state apparent volume distribution (VDss) of A14-125I-insulin were considerably decreased by unlabeled insulin coadministration. In particular, VDss of labeled insulin decreased by 79%, similar to that of inulin (181 ml/kg), suggesting that the nonspecific binding of labeled insulin to tissues was so small that VDss of labeled insulin was reduced to the extracellular fluid volume (approximately 20% of the body weight) when its receptor binding was blocked effectively by unlabeled insulin.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

HPLC as a rapid means of monitoring erythromycin and tetracycline fermentation processes.

Reverse phase high performance liquid chromatography (HPLC) was used as a rapid means of monitoring the erythromycin and the tetracycline fermentation processes. The sample preparation process for tetracycline in the fermentation broth includes simple dilution and filtration through a Millipore filter prior to injection into the HPLC column. Fermentation growth samples showed no interference, and excellent separation for selective determination of tetracycline, 4-epitetracycline, anhydrotetracycline, chlortetracycline, and 4-epianhydrotetracycline was obtained. The relative standard deviation for the HPLC analysis for tetracycline is about one percent and the correlation coefficient between the HPLC and the spectrophotometric assay methods is better than 0.994. The sample preparation procedure for erythromycin determination in fermentation broth requires solvent cleanup and extraction processes. The chromatographic analysis takes approximately 25 minutes, and the HPLC method is capable of separating and quantifying erythromycins A, B, C, and various epimers and degradation compounds. The correlation coefficient between the HPLC and the microbiological assay method is 0.970.

Biological Assay