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At least 199 records · Page 11Linked to original sources

K-ras point mutation detection in lung cancer: comparison of two approaches to somatic mutation detection using ARMS allele-specific amplification.

BACKGROUND: The use of sensitive molecular techniques to detect rare cells in a population is of increasing interest to the molecular pathologist, but detection limits often are poorly defined in any given molecular assay. We combined the approaches of real-time quantitative PCR with ARMS(TM) allele-specific amplification in a novel assay for detecting mutant K-ras sequences in clinical samples. METHODS: ARMS reactions were used to detect seven commonly occurring mutations in the K-ras oncogene. These mutations produce amino acid changes in codon 12 (Gly to Ala, Arg, Asp, Cys, Ser, or Val) and codon 13 (Gly to Asp). A control reaction was used to measure the total amount of amplifiable K-ras sequence in a sample so that the ratio of mutant to wild-type sequence could be measured. Quantitative data were confirmed for a selection of samples by an independent cloning and sequencing method. The assay was used to analyze 82 lung tumor DNA samples. RESULTS: The assay detected K-ras mutations in 44% of adenocarcinomas, which is equivalent to frequencies reported in the literature using ultrasensitive techniques. Forty-six percent of squamous carcinomas were also positive. The ratio of mutant sequence in the tumor DNA samples was 0.04-100%. CONCLUSIONS: The assay is homogeneous, with addition of tumor DNA sample being the only step before results are generated. The quantitative nature of the assay can potentially be used to define the analytical sensitivity necessary for any specified diagnostic application of K-ras (or other) point mutation detection.

Alleles↗

[Study on high performance liquid chromatography/indirect photometric detection of fosfomycin with acridine as detection reagent].

Fosfomycin is a broad-spectrum antibacterial agent which has strong polarity and weak UV absorption. In this work, a method using standard ODS column and conventional UV detector set at 254 nm to analyse fosfomycin was investigated. Firstly, several UV detection reagents were tested and acridine(A) was found to give the highest indirect detection response and proper modification on retention of fosfomycin. With acridine as the UV detection reagent, the mobile phase parameters which affect retention and detection response of solute are discussed, e.g. pH, concentration of organic solvent and concentration of acridine. The mechanism is interpreted for each case. After optimization, we adopted mobile phase as V(CH3OH):V(H2O) = 50:50, pH 3.18, [HAc] = 2 mmol/L, [A] = 1 x 10(-5) mol/L. A new chromatographic system monitored by indirect photometry for detection of fosfomycin was established. This method was used for quantitative analysis, the minimum detectable level was 10 mumol/L, the relative deviation was 4.51%.

Acridines↗

Sensitive and specific detection of circulating cancer cells in patients with hepatocellular carcinoma; detection of human telomerase reverse transcriptase messenger RNA after immunomagnetic separation.

PURPOSE: We evaluated whether detection of human telomerase reverse transcriptase (hTERT) mRNA after immunomagnetic separation is useful to detect circulating cancer (CC) cells. EXPERIMENTAL DESIGN: Two ml of peripheral blood were collected from 55 cases with hepatocellular carcinoma (HCC), 20 cases with chronic liver diseases devoid of cancer, and 20 healthy volunteers. Then 1500 and 500 micro l were subjected to immunomagnetic separations using Ber-EP4 and anti-CD45 antibodies, harvested and supernatant cells were collected as epithelial and nonleukocyte fractions, respectively. Samples of each fraction were subjected to reverse transcription-PCR detecting beta-actin, interleukin-2 receptor (IL-2r), alpha-fetoprotein, and hTERT mRNAs. The cases were judged to be positive, equivocal, or negative for CC cells when hTERT positivity with IL-2r negativity, hTERT positivity with IL-2r positivity, or hTERT negativity was seen in epithelial and/or nonleukocyte fractions, respectively. RESULTS: The dilution experiments revealed that our system could detect 10(0-1) HeLa cells involved in 2 ml of blood. The Ber-EP4-harvested cells from cases with distant metastasis were positive for immunostaining using Hep Par 1 monoclonal antibody. CC cells were judged to be positive in 29 of 55 (53%) HCC cases. On the contrary, no cases without HCC were determined to be positive. The frequency of positivity was significantly correlated with disease extent of HCC. CONCLUSIONS: These results strongly suggest that detection of hTERT mRNA after immunomagnetic separation is a specific and sensitive tool to detect CC cells and that it would provide useful source for further investigation of cancer metastasis.

Aged↗

Column-switching high-performance liquid chromatographic detection of pholcodine and its metabolites in urine with fluorescence and electrochemical detection.

A sensitive and selective method for the detection of pholcodine and its metabolite morphine in urine using high-performance liquid chromatography is described. It involves on-line clean-up of urine on a trace enrichment column packed with a polymeric strong cation-exchange material. Pholcodine and its metabolites were separated on two analytical columns with different selectivities. Pholcodine was detected by a fluorescence detector and morphine was detected electrochemically. One system, based on reversed-phase chromatography, applied a polystyrene-divinylbenzene column and gradient elution. The other system was based on normal-phase chromatography with a silica column and isocratic elution. Morphine was confirmed to be a metabolite of pholcodine by reversed-phase chromatography and electrochemical detection. Two unidentified metabolites of pholcodine were separated from pholcodine by normal-phase chromatography and detected by fluorescence detection.

Antitussive Agents↗

[Value of combinational detection by IgH and IgL primers in improving detection rate of lymphoma gene in paraffin-embedded tissue].

BACKGROUND & OBJECTIVE: Clonality detection through amplifying immunoglobulin heavy chain (IgH) by polymerase chain reaction (PCR) is a useful tool in diagnosis of lymphoma, but the false negative rate is high, especially in paraffin-embedded tissues. This study was to explore the value of tumor tissue microdissection and combinational detection of IgH and immunoglobulin light chain (Ig kappa or Ig lambda) in diagnosis of non-Hodgkin's lymphoma (NHL). METHODS: Two pairs of conventional primers for IgH and T-cell receptor gamma (TCRgamma), 2 novel designed pairs of primers for Ig kappa and Ig lambda were used to detect 58 paraffin-embedded blocks, which had been diagnosed by pathology and histochemistry. Of the 58 cases of lymph node tissues, 39 were B-cell lymphoma, 16 were T-cell lymphoma, and 3 were reactive proliferative lymph node tissue. Lymphoma cell lines DG75 and Jurkat were used as control. RESULTS: The positive rates of IgH primers (P1) and IgL primers (P kappa/P lambda) were 79.5% and 71.8% in the 39 cases of B-cell lymphoma (P>0.05), 6.3% and 12.5% in the 16 cases of T-cell lymphoma, respectively. The positive rate was greatly increased to 92.3% in combinationally detecting the primers for IgH and P kappa/P lambda. There was no positive detection among the reactive proliferative lymph node tissues. CONCLUSION: B-cell lymphoma detection rate can be significantly improved by the combination of IgH and IgL gene rearrangement primers, which provides efficient assistant method for the diagnosis and differential diagnosis of lymphoma.

DNA Primers↗

[Simultaneous determination of four compounds in Sanjing Shuanghuanglian Oral Liquid by high performance liquid chromatography-diode array detection-electrochemical detection].

Chlorogenic acid, caffeic acid, baicalin and luteolin in Sanjing Shuanghuanglian Oral Liquid were simultaneously detected and identified using a high performance liquid chromatography coupled with diode array detection and electrochemical detection (HPLC-DAD-ECD). The separation was performed on a Zorbax SB-C18 column (150 mm x 4.6 mm i. d., 5.0 microm). The mobile phase consisted of (A) methanol and (B) methanol-water-acetic acid (50: 50: 1, v/v/v) using a linear gradient elution of 2%A-3%A at 0-3 min, 3%A-25%A at 3-15 min, 25%A-80%A at 15-20 min. The flow rate was 0.8 mL/min. The DAD detection was used at 275 nm. The ECD detection was done at 0.7 V. The column thermostat set at 30 degrees C. The limits of detection of the 4 compounds were 1 mg/L for chlorogenic acid, 0.2 mg/L for caffeic acid, 9 mg/L for baicalin, 7 mg/L for luteolin. The average recoveries were between 96.6%-99.6% with relative standard deviations (RSDs) of 2.5%-4.1%. The method is simple, rapid, reproducible and accurate. It can be used for the routine analysis of the four compounds in Shuanghuanglian Oral Liquid.

Caffeic Acids↗

Adaptation of a chemiluminescent DNA detection system to strongly positively charged nylon membranes: single copy gene detection in human genome.

Nonradioactive methods for detection of genes by Southern hybridization are limited to neutral or positively charged membranes which are supplied or explicitly recommended by the manufacturers of the chemiluminescent detection systems. The results of such kits with a known strongly positively charged nylon membrane (Genescreen plus) are disappointing. The adaption of a chemiluminescent detection system to such a strongly positively charged nylon membrane is demonstrated in this communication. The modifications include a blocking step (1% SDS) before prehybridization, use of 5% SDS during hybridization, and 5% SDS and 1% BSA during detection. The increased sensitivity of such a highly positively charged nylon membrane enabled us to detect 2.5 pg of target DNA. The detection of both the alleles of a single copy polymorphic target (YNZ22) in the human genome is also shown.

Cations↗

Detection and genomic characterization of cryptosporidium parvum virus 1 (CSpV1): A potential biomarker for Cryptosporidium parvum detection in bovine calves.

Cryptosporidium parvum is a ubiquitous enteric parasite that infects a diverse range of vertebrate species. The detection of C. parvum can be confounded when oocysts are intermittently shed below an assay's limit of detection, yielding a false-negative result. We therefore investigated the utility of Cryptosporidium parvum virus 1 (CSpV1), a putative symbiont of Cryptosporidium parvum, as a surrogate target for detecting the parasite in bovine calves. Using real-time polymerase chain reaction (qPCR), we tested 422 samples for Cryptosporidium spp., C. parvum-associated targets, and CSpV1. Among the 189 samples positive for at least one target, CSpV1 was detected in 24 (12.70%) samples without concurrent detection of Cryptosporidium. Additionally, we analyzed CSpV1 genomic sequences to ascertain its value as an epidemiological biomarker. Evaluation of dsRNA1 amino acid sequences identified country-associated patterns, suggesting potential utility for geographic distribution analyses. These findings suggest that CSpV1 may serve as a biological signature of C. parvum and support further investigation into its usefulness as an adjunct molecular target.

Biomarker↗

Forensic drug testing for opiates: I. Detection of 6-acetylmorphine in urine as an indicator of recent heroin exposure; drug and assay considerations and detection times.

The urinary excretion patterns of 6-acetylmorphine (6-AM), free morphine, and total morphine were determined by GC/MS assay for six human subjects who received single doses of 3.0 and 6.0 mg of heroin hydrochloride. Clinical specimens were collected and combined with standardized drug urines into a 400 specimen/standard set. The urines were coded, randomized, and analyzed under blind conditions. The GC/MS assay had a limit of sensitivity of 0.81 ng/mL for 6-AM and displayed a linear response across a concentration range of 1-100 ng/mL. Following heroin administration, 6-AM was excreted rapidly with an average half-life of 0.6 h. This resulted in a very short detection time for 6-AM with a range of 2-8 h at the most sensitive cutoff limit. This short detection time limits the usefulness of 6-AM as a marker for identification of heroin abusers to a period immediately after drug use. In contrast, free morphine and total morphine were detectable up to approximately 24 h after heroin administration. The average half-life for free morphine was 3.6 h and for total morphine was 7.9 h. After morphine and codeine administration, no 6-AM was detected by GC/MS above the 0.81-ng/mL detection limit of the assay. It is concluded that the presence of 6-AM in urine can be interpreted with confidence to mean that heroin, or 6-AM, was administered within 24 h of specimen collection and that the presence of 6-AM in urine is not caused by morphine or codeine administration.

Gas Chromatography-Mass Spectrometry↗

Electrochemical detection of allergen in small-volume whole blood using an array microelectrode: a simple method for detection of allergic reaction.

A safe, simplified, and rapid method for detection of allergen has been developed. Serotonin, a chemical mediator secreted during an allergic reaction, was used as a marker in electrochemical detection. A 20-microL drop of whole blood was used for the electrochemical detection of allergen using an array microelectrode. When cyclic voltammetry was carried out on whole blood samples containing 1 microg/mL serotonin, an anodic peak current appeared at around 350 mV versus a silver/silver chloride electrode using a Nafion-coated array microelectrode. Allergen was selectively detected using whole blood samples by applying a constant potential of 350 mV after 40 min incubation with addition of allergen. The results obtained by the electrochemical detection method correlated well with the diagnosis obtained from the amount of IgE antibody.

Adult↗

Detection of significant residual stenosis of the infarct-related artery after thrombolysis by high-dose dipyridamole echocardiography test: is it detected often enough?

BACKGROUND AND HYPOTHESIS: It has been reported that high-dose dipyridamole echocardiography test (DET) can be successfully used for the detection of critical residual stenosis of the infarct-related artery (IRA). However, we have recently noticed low sensitivity of DET for the detection of residual IRA stenosis in patients with single-vessel disease. This study sought to determine the value of DET for the detection of significant residual stenosis of the IRA after thrombolysis. METHODS: Dipyridamole echocardiography test was performed in 55 consecutive patients after a first acute myocardial infarction before hospital discharge. All patients underwent coronary angiography 23 +/- 6 days after infarction. RESULTS: Nine of 19 patients with positive DET revealed new adjacent asynergy and all of the patients had patient and significantly stenotic IRA. Sensitivity and specificity of DET in identifying significant residual stenosis of the IRA were 24 and 100%, respectively. Among 49 patients with significantly stenotic of occluded IRA, 40 patients without adjacent asynergy during DET had higher baseline wall motion score index (WMSI) compared with 9 patients who revealed adjacent asynergy during DET (1.45 +/- 0.30 vs. 1.24 +/- 0.18; p < 0.05). When all patients with positive DET (adjacent or remote asynergy) were compared with those with negative DET, no difference in baseline WMSI was found (1.37 +/- 0.24 vs. 1.44 +/- 0.24; p > 0.05). CONCLUSIONS: Our data indicate that sensitivity of DET in detecting significant residual stenosis of the IRA after thrombolysis is low. It seems that the extent of myocardial infarction affects the ability of DET to detect adjacent, but not remote asynergy.

Aged↗

Detectability improvements in capillary zone electrophoresis by combining single capillary isotachophoretic preconcentration and frequency doubled argon ion laser-induced fluorescence detection.

Due to the small path length and low injection volume the concentration limit of detection is comparatively poor in capillary electrophoresis (CZE) with UV detection. This limitation can be overcome by means of preconcentration methods and/or improved detection techniques. This paper describes a strategy where isotachophoresis (ITP) is used to preconcentrate a new cholinesterase inhibitor (NXX-066) prior to a capillary zone electrophoresis analysis in the same single capillary. A hydrodynamic backpressure is used to prevent the analyte from migrating out of the capillary. Laser-induced fluorescence (LIF) is used to further increase the detectability. The total gain in detectability with ITP-CZE-LIF compared to CZE-UV was at least 5500-fold, and it is possible to determine NXX-066 at the 1 nM level. The ITP-CZE method was further evaluated for two beta-blockers; the mean coefficient of variation of the peak areas was 3.4% and the linearity of the calibration plots was satisfying.

Argon↗

The detection of HBV-DNA in serum by molecular hybridisation: a more sensitive method for the detection of complete HBV particles.

Existing methods for detecting complete virus particles in the serum of patients with chronic HBV infection are either insensitive or indirect. A method is described in which Dane particle-associated DNA is extracted from a small volume of serum and detected by molecular hybridization using 32P-labeled cloned HBV-DNA or HBV-DNA extracted from the serum of an immunosuppressed patient, followed by autoradiography and densitometry. There was a positive correlation between the amount of HBV-DNA detected using HBV particle-derived and cloned HBV-DNA probes. The amount of HBV-DNA detected in serum samples showed a positive correlation with the HBV-DNA polymerase. The method was more sensitive than the DNA polymerase and HBeAg assays in detecting complete virus particles. It may be useful in determining the level of infectivity in patients and in monitoring response to antiviral therapy.

Cloning, Molecular↗

Gas chromatography/flame ionisation detection mass spectrometry for the detection of endogenous urine metabolites for metabonomic studies and its use as a complementary tool to nuclear magnetic resonance spectroscopy.

Metabonomics is a relatively new field of research in which the total pool of metabolites in body fluids or tissues from different patient groups is subjected to comparative analysis. Nuclear magnetic resonance (NMR) spectroscopy is the technology that is currently most widely used for the analysis of these highly complex metabolite mixtures, and hundreds of metabolites can be detected without any upfront separation. We have investigated in this study whether gas chromatography (GC) separation in combination with flame ionisation detection (FID) and mass spectrometry (MS) detection can be used for metabolite profiling from urine. We show that although GC sample preparation is much more involved than for NMR, hundreds of metabolites can reproducibly be detected and analysed by GC. We show that the data quality is sufficiently high--particularly if appropriate baseline correction and time-warping methods are applied--to allow for data comparison by chemometrics methods. A sample set of urines from eleven healthy human volunteers was analysed independently by GC and NMR, and subsequent chemometrics analysis of the two datasets showed some similar features. As judged by NIST database searches of the GC/MS data some of the major metabolites that are detected by NMR are also visible by GC/MS. Since in contrast to NMR every peak in GC corresponds to a single metabolite, the electron ionisation spectra can be used to quickly identify metabolites of interest if their reference spectra are present in a searchable database. In summary, we show that GC is a method that can be used as a complementary tool to NMR for metabolite profiling of urine samples.

Gas Chromatography-Mass Spectrometry↗

Inorganic pyrophosphatase-based detection systems. I. Detection and enumeration of cells.

A novel technique, useful for detection and enumeration of both pro- and eukaryotic cells, has been developed. The method relies on the detection by a very sensitive assay of an enzyme, the inorganic pyrophosphatase, which is constitutively expressed in all cells. This technique has been used to demonstrate detection and enumeration of both Escherichia coli and Saccharomyces cerevisiae cells. Cells were incubated, for a chosen time period and at a specific temperature, in a specific lysis buffer which contained both lysing activity and inorganic pyrophosphate. The activity of the inorganic pyrophosphatase released from the cells after lysis was determined by an enzymatic luminometric inorganic pyrophosphate detection assay (ELIDA; P. Nyrén and A. Lundin (1985) Anal. Biochem. 151, 504-509). The amount of PPi hydrolyzed was proportional to the logarithm of the cell number. The sensitivity of the assay was dependent on several factors, such as cell type, incubation time, and incubation temperature. E. coli cells at concentrations of 1 x 10(4) cells/ml could be detected in an assay performed at 58 degrees C for 10 min and S. cerevisiae cells at concentrations of 2 x 10(4) cells/ml at 49 degrees C within 10 min. The assay could be designed both as a present/absent test, e.g., for determination of bacteriuria, or as a quantitative assay. Determination and enumeration of all types of cells is in principle possible by the appropriate design of the experimental parameters. Possible applications for the approach in a wide variety of areas, such as fundamental and medical sciences, clinical laboratories, food and dairy industry, pharmaceutical industry, water sanitary plants, and biomass determination in general, are discussed.

Escherichia coli↗

Magnetic bead enzyme-linked immunosorbent assay (ELISA) detects antigen-specific binding by phage-displayed scFv antibodies that are not detected with conventional ELISA.

An efficient means for the detection of antigen-specific binding by phage-displayed antibodies would facilitate the selection of such phage, especially from libraries with large repertoires of V-genes. We report the development and characterization of a magnetic bead phage ELISA which detects antigen binding phage which could not be detected by conventional ELISA. We were attempting to select phage binding to the oncodevelopmental antigen, heat-stable alkaline phosphatase (HSAP). Although there was an obvious enrichment in the phage titers after successive rounds of selection, we were unable to detect antigen-binding phage by ELISA on a plastic surface. However, ELISA with a suspension of superparamagnetic particles covalently conjugated to HSAP effectively identified antigen-binding phage after the fourth round of selection. This method could also detect antigen-specific binding of individual phage clones. Some of the phage clones bound to either amino- or carboxy-terminal-conjugated HSAP, perhaps reflecting the differences in the exposed epitopes. It is suggested that a sensitive method such as magnetic bead phage ELISA be tried before declaring a phage selection as unsuccessful or concluding that a phage clone does not bind antigen.

Alkaline Phosphatase↗

Age-related cancer detection rate and costs for one cancer detected in one screening by immunochemical fecal occult blood test.

PURPOSE: This study was performed to assess, from the aspects of screening efficiency and cost-effectiveness, the optimal lower limit of age in immunochemical occult blood screening for colorectal cancer. METHODS: Seven thousand four hundred asymptomatic individuals were the subjects of this study. They gave samples for an immunochemical fecal occult blood test (OC-Hemodia), and colonoscopy was performed during a medical checkup. They were divided into three groups according to their ages: younger (40-49), middle (50-59), and older (60+) groups. The detection rate for colorectal cancer and the average costs to detect one patient with colorectal cancer were evaluated among the three groups. RESULTS: The detection rate for colorectal cancer and the average costs to detect one cancer patient were calculated as 0.3 percent and $6024 for the younger group, 1.6 percent and $1425 for the middle group, and 1.7 percent and $1410 for the older group, respectively. The cancer detection rate was significantly different between the younger and middle groups (P < 0.05) and between the younger and older groups (P < 0.05). CONCLUSIONS: This analysis suggests that the subjects aged less than 50 have some disadvantage when carrying out the immunochemical fecal occult blood test, OC-Hemodia for colorectal cancer screening, from the aspects of screening efficiency and cost-effectiveness.

Adult↗

The relationship between coronary artery calcification detected by non-gated multi-detector CT in patients with suspected ischemic heart disease and myocardial ischemia detected by thallium exercise stress testing.

OBJECTIVE: To examine whether we could predict myocardial ischemia when coronary artery calcification is detected by non-gated multidetector CT in patients with suspected ischemic heart disease. METHODS: Eighty-three patients suspected of having ischemic heart disease (55 men, 28 women; age range 36-83 years; mean age 68 years) underwent multidetector CT and T1-201 single photon emission computed tomography. Prediction of myocardial ischemia by coronary arterial calcification detected on CT was evaluated by comparing the coronary artery territories that showed calcification with the area of myocardial ischemia determined by SPECT. The sensitivity, specificity, positive predictive value, and negative predictive value of multidetector CT for predicting myocardial ischemia were calculated. Coronary angiography was also examined and compared with multidetector CT. Risk factors, including hypertension, smoking, hyperlipidemia, diabetes, and family history, were compared for evidence of coronary artery calcification detected by multidetector CT and myocardial ischemia detected by thallium nuclear scans. RESULTS: For analysis by patients, the sensitivity, specificity, positive predictive value, and negative predictive value of coronary artery calcification for myocardial ischemia detection were 65, 63, 56, and 71%, respectively. Similarly, for analysis by coronary arterial territories, those values were 56, 77, 41 and 86%, respectively. Coronary stenosis on CAG was also related to the ischemia determined by SPECT and calcification on multidetector CT. Ischemia was better influenced by risk factors than was coronary arterial calcification. CONCLUSIONS: For analysis by coronary arterial territories, the specificity and negative predictive value of coronary arterial calcification seen by multidetector CT are relatively high.

Adult↗