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Multiplex polymerase chain reaction amplification and direct sequencing of homologous sequences: point mutation analysis of the ras genes.

ras proto-oncogenes are activated by point mutation in a wide variety of human and animal tumors, making ras gene analysis a major area of clinical and basic cancer research. Activating point mutations, in each of the three ras genes (Ha-, Ki-, or N-ras), usually occur in one of three specific codons (12, 13, or 61). Thus, an adequate assessment of activating ras gene mutations should include the analysis of at least nine codons. We have developed a rapid method for point mutation analysis of the ras genes, which involves simultaneous (multiplex) PCR amplification of all three homologous ras genes (in the regions surrounding codons 12-13 and codon 61) in a single reaction starting with only 1 microgram of genomic DNA. Although multiplex PCR has been previously used for unrelated sequences, we demonstrate here that multiplex PCR can also be used for highly homologous sequences. Importantly, after coamplification, each of the homologous ras genes can be individually and specifically sequenced even though the other two closely related genes are present in the same template mixture, by using high-stringency conditions permitted by Taq DNA polymerase. An automated multicycle DNA sequencing procedure is used to allow the double-stranded PCR products to be sequenced directly without the need to generate single-stranded templates, further simplifying the protocol. Our multiplex PCR amplification and direct DNA sequencing procedures should greatly facilitate more complete analyses of activating ras gene point mutations, particularly in studies involving many tumor samples.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Rapid method for identification of chemopreventive compounds using multiplex RT-PCR for cyclooxygenase mRNA expression.

Inhibition of the expression of the cyclooxygenase-2 (COX-2) enzyme has been associated with prevention or reversal of cancer development in several organs. Development of, or screening for, selective cyclooxygenase (COX) inhibitors is an approach for identifying chemopreventive agents. The aim of this project was to develop a rapid semi-quantitative multiplex RT-PCR for analysis of the expression of cyclooxygenase 1 and 2 genes relative to 18S, the housekeeping gene, in a 3-gene multiplex reaction. The optimal conditions for the 3-gene multiplex reaction were determined experimentally. Following RT-PCR, the amplified PCR products are analyzed by capillary electrophoresis-based LabChip and the Agilent 2100 bioanalyzer, which eliminates electrophoresis through ethidium bromide-agarose gels and normalization of band intensities using software programs such as Molecular Analyst. The multiplex RT-PCR assay developed here is a cost effective technique for routine application in laboratories that are screening natural or synthetic compounds for specific inhibitors of cyclooxygenase-2 as potential chemopreventive agents.

Automation↗

Molecular detection and serotypic characterization of dengue viruses by single-tube multiplex reverse transcriptase-polymerase chain reaction.

This study was designed to develop a reverse transcriptase-polymerase chain reaction (RT-PCR)-based rapid and cost-effective diagnostic test for detection as well as serotypic characterization of dengue viruses in the acute phase of illness. In this regard, 2 methods of RT-PCR, namely, 2-step nested RT-PCR and 1-tube multiplex RT-PCR, have been evaluated. One-tube multiplex RT-PCR was found superior; thus, its sensitivity and specificity were compared with gold standard "cell culture". In the present study, serum samples of all individuals were evaluated by cell culture and RT-PCR. Of 200 clinically suspected patients tested, 66 were found to be positive for the dengue virus RNA and could be successfully characterized into the serotypes. Of these 66, 62 patients were found to be serologically positive by Dengue Duo IgM and IgG Rapid Strip test (Pan Bio, Windsor, Australia). The sensitivity of the cell culture procedure was found to be lower; 63% as compared with multiplex RT-PCR, with predictive value of positive test being 100% and predictive value of negative test being 84.8%. Specificity was found to be 100% for both the assays. It is thus proposed that 1-tube multiplex RT-PCR-based assay would prove to be an extremely useful tool for routine laboratory diagnosis.

Aedes↗

High-throughput Y-STR typing of U.S. populations with 27 regions of the Y chromosome using two multiplex PCR assays.

Two Y-chromosome short tandem repeat (STR) multiplex polymerase chain reaction (PCR) assays were used to generate haplotypes for 19 single copy and 3 multi-copy Y-STRs. A total of 27 PCR products were examined in each sample using the following loci: DYS19, DYS385 a/b, DYS388, DYS389I/II, DYS390, DYS391, DYS392, DYS393, DYS426, DYS437, DYS438, DYS439, DYS447, DYS448, DYS450, DYS456, DYS458, DYS460, DYS464 a/b/c/d, H4, and YCAII a/b. The first multiplex is the Y-STR 20plex previously described by Butler et al. [Forensic Sci. Int. 129 (2002) 10]. The second multiplex is a novel Y-STR 11plex and includes DYS385 a/b, DYS447, DYS448 and the new markers DYS450, DYS456, DYS458, and DYS464 a/b/c/d. These two multiplexes were tested on 647 males from three United States population sample sets: 260 African Americans, 244 Caucasians, and 143 Hispanics. Haplotype comparisons between common loci included in the 20plex and 11plex assays as well as commercially available kits found excellent agreement across a sampling of the population samples. The multi-copy loci DYS464, DYS385, and YCAII were the most polymorphic followed by the following single copy Y-STRs: DYS458, DYS390, DYS447, DYS389II, DYS448, and DYS456. Samples containing the most common type in the European database could be well resolved with additional markers beyond the minimal haplotype loci.

Alleles↗

Development of multiplex PCRs for evolutionary and forensic applications of 37 human Y chromosome SNPs.

This work describes an efficient and rapid test for typing 37 single nucleotide polymorphisms (SNPs) of the non-recombining region of Y chromosome (NRY) from a minimal amount of DNA using six PCR multiplexes. Markers were drawn following a hierarchical strategy based on the phylogenetic tree of Y chromosome proposed by the Y Chromosome Consortium [The Y Chromosome Consortium, A nomenclature system for the tree of human Y-chromosomal binary haplogroups, Genome Res. 12 (2002) 339-348]. Two multiplexes--arbitrarily named MY1 and MY2--were developed to explore the basal branches of the tree encompassing all the major clades A-R: MY1 for markers M35, M89, M172, M170, M9, M173, M45 and MY2 for markers M52, M216, M174, M181, M201, M91, M96, M214. Four multiplexes able of typing the more superficial branches typical of most frequent European haplogroups E3b, J2, R1 and I, were also developed and named MY-E3b (M78, M107, M224, M165, M148, M81), MY-J2 (M158, M68, M47, M102, M137, M67), MY-R1 (M17, M269, M18, P25, SRY10831.2) and MY-I (M72, M223, M26, M21, M161). SNP genotyping was carried out by hot-start PCR amplification with primers yielding fragments between 63 and 210 nucleotides, followed by minisequencing reaction based on dideoxy single-base extension and capillary electrophoresis of extension products. The sequential application of these multiplexes is a robust and effective resource for typing the most frequent European Y-SNP haplogroups, and appears to be suitable for forensic purposes and evolutionary studies.

Chromosomes, Human, Y↗

Genetic identification and detection of human pathogenic Rhizopus species, a major mucormycosis agent, by multiplex PCR based on internal transcribed spacer region of rRNA gene.

BACKGROUND: Mucormycosis is an invasive opportunistic infection caused by fungi belonging to the order Mucorales. Due to the lack of laboratory tests, the diagnosis of mucormycosis is notoriously difficult. Added with its rapid progression as well as the debilitated state of the patients who contract the disease, mortality is extremely high. OBJECTIVE: The goal of this study was to genetically identify human pathogenic Rhizopus species, a major mucormycosis agent, by the internal transcribed spacer (ITS) region of rRNA gene. METHODS: Primers were designed to identify five Rhizopus species known to cause human disease by multiplex PCR. PCR was done not only with test strains and clinical isolates, but also with clinical samples from cutaneous mucormycosis patients. Sporangiospore morphology was observed by scanning electron microscopy to confirm the correlation of phenotypic and genotypic features. RESULTS: Multiplex PCR identified five Rhizopus species including Rhizopus oryzae, where R. azygosporus could only be distinguished from R. microsporus by certain polymorphisms that were present in its sequence. When this multiplex PCR was applied to clinical samples from three mucormycosis patients (paraffin sections from all and sera from one patient), Rhizopus DNA corresponding to the isolated pathogens were specifically detected. CONCLUSION: While fungal DNA detection from clinical samples is a rigorously studied area, this is the first report to genetically identify and detect Rhizopus species from human mucormycosis specimens. This may expand the possibility of this multiplex PCR system not only to identify isolated fungi, but also as a screening method for visceral mucormycosis.

Adolescent↗

Validation and comparative analysis of a multiplexed assay for the simultaneous quantitative measurement of Th1/Th2 cytokines in human serum and human peripheral blood mononuclear cell culture supernatants.

There is increasing evidence suggesting a relationship between cytokine levels and disease pathogenesis, which has led to interest in analyzing multiple cytokines in biological fluids and culture supernatants for various research and clinical studies. The introduction of methodologies allowing simultaneous measurement of interrelated biomarkers/cytokines has further revolutionized this process. In contrast to tissue culture supernatant, the measurement of cytokines in serum has proven to be difficult to characterize in multiplexed formats because of the presence of large dynamic concentration ranges of proteins and other interfering factors that are present in this matrix. In the present study, we have used the microsphere-based multiplex method to simultaneously quantitate and compare six analytes, encompassing a representation of the Th1/Th2 cytokine panel (interleukin (IL)-2, IL-4, IL-5, interferon-gamma (IFN-gamma), tumor necrosis factor-alpha (TNF-alpha), and IL-10), in both serum and culture supernatants from peripheral blood mononuclear cells (PBMCs). A detailed validation procedure for these determinations is described along with a comparative analysis of the performance of the multiplexed assay in serum and culture supernatant matrices. Our results indicate that precision of the multiplexed assay is comparable in both culture supernatant and serum. However, the accuracy of quantification of cytokines in the serum matrix but not in culture supernatant may be compromised depending upon the cytokine being analyzed. Therefore, one must use caution when interpreting data from such complex matrices. Nevertheless, this assay format is appropriate to profile cytokines in clinical trial samples.

Cells, Cultured↗

Development of a multiplex RT-PCR for the simultaneous detection of three viruses of the honeybee (Apis mellifera L.): acute bee paralysis virus, Black queen cell virus and Sacbrood virus.

A single-step multiple-target (multiplex) reverse transcription-PCR (RT-PCR) was developed for the simultaneous detection and differentiation of three economically important viruses of the honeybee Apis mellifera L.: Acute bee paralysis virus (ABPV), Black queen cell virus (BQCV) and Sacbrood virus (SBV). Three compatible sets of primers, specific for each virus, were designed in conserved regions of the viral genomes for use in a one-step (single tube) RT-PCR assay. The individual RT-PCR assays and the combined multiplex assay were optimized for highest sensitivity and specificity. The multiplex RT-PCR assay was tested on field samples collected from Austrian honeybee colonies. All three viruses were detected, and their identity was confirmed by sequencing of the PCR products. The described multiplex RT-PCR proved to be an accurate tool for rapid simultaneous detection of ABPV, BQCV and SBV directly in honeybee specimens.

Animals↗

Combined simulated annealing and Shinnar-Le Roux pulse design of slice-multiplexed RF pulses for multi-slice imaging.

Slice-multiplexed RF pulses have recently been introduced for simultaneous multi-slice imaging. Their novel aspect is that each slice is given a different linear phase profile, and hence a different slice-rephasing requirement, by the pulse. During readout, extra slice gradients are applied such that when one slice is rephased, the others are dephased to prevent aliasing. In this paper, an improved method of designing slice-multiplexed RF pulses is presented: component pulses which are optimized with simulated annealing for a specific rephasing are combined using Shinnar-Le Roux methods. In this way, non-linearities at higher flip angles are taken into account and more slices can be excited. Bloch simulations show the phase and amplitude profile of component pulses are faithfully preserved in the multiplexed pulse. Three- and four-slice multiplex pulses are demonstrated in gradient- and spin-echo in-vivo imaging.

Algorithms↗

Detection of three porcine vesicular viruses using multiplex real-time primer-probe energy transfer.

Rapid identification of the etiologic agent in infected animals is important for the control of an outbreak of vesicular disease in livestock. We have in the present study developed a multiplex real-time reverse transcription-PCR, based on primer-probe energy transfer (PriProET), for simultaneous detection and differentiation of three Office International des Epizooties (OIE) classified vesicular viruses: foot-and-mouth disease virus, vesicular stomatitis virus and swine vesicular disease, causing clinically indistinguishable vesicular diseases in swine. The multiplex assay consists of extraction of total RNA from clinical samples; reverse transcription to cDNA using random primers and one-tube real-time amplification of cDNA using multiplex PriProET with specific fluorescent-labelled primers and probes for detection of the three viruses from the vesicular disease complex. The probes are labelled with unique reporter fluorophores, which during amplification are excited by donor fluorophores incorporated in the 5' end of specific amplicons by primer extension. The sensitivity of the multiplex assay was approximately 100 TCID(50), which is 10-fold lower compared to the individual PriProET assays for the three vesicular viruses.

Animals↗

Multiplex PCR for the simultaneous detection of pseudorabies virus, porcine cytomegalovirus, and porcine circovirus in pigs.

The use of porcine organs is being developed as a means to alleviate the shortage of human organs for transplantation. Recommendations have been published for the microbiological specifications of organ-source pigs to reduce the possibility of a microorganism from pigs being inadvertently transferred to the recipient of the xenograft. The pseudorabies virus (PRV), porcine cytomegalovirus (PCMV), and porcine circovirus (PCV) are infectious agents in pigs that are considered to be of significance for the microbiological safety of xenotransplantation. A multiplex polymerase chain reaction (mPCR) was developed to detect and differentiate among PRV, PCMV, and PCV. The sensitivities of the multiplex PCR were 10(2.5) TCID(50)/ml for PRV, 10(1.8) TCID(50)/ml for PCMV, and 10(1.8) TCID(50)/ml for PCV. The lowest viral concentrations detected by single PCR were 10(1.5) TCID(50)/ml for PRV, 10(1.0) TCID(50)/ml for PCMV, and 10(1.4) TCID(50)/ml for PCV2. Non-specific reactions were not observed when other viruses, bacteria, and Vero cells were used to assess the multiplex PCR. The multiplex PCR was effective in detecting various combinations of one or more of these viruses in pig specimens collected for xenotransplantation.

Animals↗

Polyozellus multiplex, a Korean wild mushroom, as a potent chemopreventive agent against stomach cancer.

Polyozellus multiplex, a Korean wild mushroom, was extracted using methanol, and the extract was further fractionated with water and ethylacetate. Assay of each fraction with MTT revealed significant tumoristatic effects of the water fraction of Polyozellus multiplex against human gastric and other cancer cells but not normal human lymphocytes. Modifying effects of the water fraction on glandular stomach mucosa were investigated in male Wistar rats treated with N-methyl-N'-nitro-N-nitrosoguanidine (MNNG). The dietary 0.5% or 1% water fraction of Polyozellus multiplex significantly increased glutathione S-transferase (GST) and superoxide dismutase (SOD) activities, and showed a tendency for increase in glutathione (GSH) levels, compared to the MNNG alone group. It also caused a significant reduction in proliferating cell nuclear antigen (PCNA)-labeling index of the glandular stomach epithelium, along with increase in p53 tumor suppressor gene expression. These results suggest that Polyozellus multiplex is a candidate for chemoprevention against gastric cancer.

Agaricales↗

Distribution of virulence related genes among enteroaggregative Escherichia coli isolates: using multiplex PCR and hybridization.

The importance of enteroaggregative Escherichia coli (EAEC) strains in public health around the world is becoming increasingly clear. EAEC diagnosis has long been problematic. In this study, the recently designed multiplex PCR based on three plasmid-borne genes (AA probe, aap, and aggR) and DNA hybridization assay with plasmid-derived DNA probes were used for detection of HEp-2 adherent strains. These were isolated from an epidemiologic study of diarrhea in Iran. Using AA and DA probes revealed that 32.4%, 16.2%, 23%, and 28.4% of these isolates were AA, DA, AA/DA, and non-AA/DA, respectively. However, employing multiplex PCR for detection of these isolates, showed that 51.3% of the strains were AA and the rest 48.7% were not AA. While presence of other genes (pet, shf, aggA, aafA) considered to be specific for EAEC were checked among these isolates. The data obtained revealed that except for AA, aap, and aggR, the rest of the virulence related genes are not specific for EAEC isolates and are randomly distributed among adherent isolates. Over all the results obtained here indicated that this multiplex PCR is specific and sensitive assay. Phenotypically adherent strains are divided into two main groups, by use of this multiplex PCR i.e., typical EAEC isolates that carry the three plasmid-borne genes all together and atypical EAEC isolates in which the three genes are not linked together.

Cell Line↗

Development of a multiplex and real time PCR assay for the specific detection of Arcobacter butzleri and Arcobacter cryaerophilus.

A new multiplex PCR and two specific TaqMan assays were developed to target the emerging pathogens A. butzleri and A. cryaerophilus. The assays also included an internal control to verify the presence of bacterial target DNA and amplification integrity. The multiplex assay used a published primer set (CRY1 and CRY2) for detecting A. cryaerophilus DNA (Houf, K., Tutenel, A., De Zutter, L., Van Hoof, J. and Vandamme, P., 2000. Development of a multiplex PCR assay for the simultaneous detection and identification of Arcobacter butzleri, Arcobacter cryaerophilus and Arcobacter skirrowii. FEMS microbiology letters, 193 (1): 89-94.) and a novel A. butzleri primer set designed to target the rpoB/C gene sequences. To improve sample throughput and assay sensitivity a TaqMan assay for each Arcobacter spp. was developed which again utilised the heterogeneity contained in the rpoB/C and 23s rRNA gene sequences. The two TaqMan assays provided >2 log improvement in detection sensitivity for both Arcobacter spp. compared with the multiplex PCR assay and were able to detect <10 CFU per PCR reaction. To evaluate the effectiveness of the Arcobacter TaqMan assays with field isolates the assays were used to screen DNA samples prepared from faecal, hide and environmental samples obtained from two meat processing plants. In these studies, the TaqMan assays revealed that 2/150 (1.3%) samples were A. butzleri-positive, 11/150 (7.3%) were A. cryaerophilus-positive and the identity of generated amplicons was confirmed by DNA sequencing. Our results show that these TaqMan assays provide improvements in sensitivity and species-representation over other published Arcobacter PCR assays and they are compatible with detecting Arcobacters in sub-optimal matrices.

Animals↗

Comprehensive analysis of BCR-ABL transcript types in Korean CML patients using a newly developed multiplex RT-PCR.

Diagnosis of chronic myeloid leukemia (CML) is based on the detection of BCR-ABL gene or Philadelphia chromosome (Ph chromosome), and fusion proteins with different sizes are encoded depending on the breakpoint in the BCR gene. In general, 3 breakpoint cluster regions in the BCR gene have been described: major (M-bcr), minor (m-bcr), and micro (mu-bcr). This study was designed to determine the frequency of BCR-ABL transcripts using one-step multiplex reverse transcription polymerase chain reaction (RT-PCR). Bone marrow (BM) or peripheral blood (PB) samples at diagnosis from 548 patients were obtained with a referring diagnosis of Ph-positive (Ph+) CML, and multistep RT-PCR and newly developed one-step multiplex RT-PCR were applied on each sample. Compared with the previous multistep RT-PCR, one-step multiplex RT-PCR with the primers is the more rapid and accurate method to identify the BCR-ABL breakpoints. Most patients (538/548, 98.18%) were found to have b3a2 or b2a2, and total frequency of occurrence of c3a2, e1a2, b2a3, b1a1, and e1a3 or coexpression of b2a2 and b3a2 was less than 2.00%. No differences were observed between women and men. As the multiplex RT-PCR technique distinguishes BCR-ABL transcripts in all samples with high sensitivity and specificity, it easily could be applied at early stages of diagnosis. The incidence of one or the other rearrangement in CML patients varies in different reported series, and the frequency in each type of BCR-ABL transcript in Korean CML patients seems to be different from those of Western countries.

Base Sequence↗

Simultaneous detection of antibodies to foot-and-mouth disease non-structural proteins 3ABC, 3D, 3A and 3B by a multiplexed Luminex assay to differentiate infected from vaccinated cattle.

For the first time, a multiplex bead immunoassay was used to test simultaneously, with a single sample, the immune response to foot-and-mouth disease non-structural proteins 3ABC, 3A, 3B and 3D from experimentally infected and vaccinated cattle. We cloned and expressed these non-structural proteins (NSPs) as recombinant antigens. The purified proteins were coupled to microspheres labeled with anti-His monoclonal antibody with different proportions of red and orange fluorescent dyes and reacted against serum specimens. Antibody reacting against different NSPs, and thus, the different colored beads, was detected by use of the Luminex system. This multiplex bead immunoassay can detect the immune response to NSPs in cattle as early as 7 days post-infection. In general antibodies to the protein 3D appeared early after infection and anti-3ABC antibodies were detected at higher levels than the other NSPs. A clear differentiation was established between infected and vaccinated or uninfected cattle. The multiplex bead immunoassay was compared to individual indirect enzyme-linked immunosorbent assays (iELISAs) for the same NSP's responses. Results indicated that this new assay had a high positive correlation with those generated by iELISA. The Luminex-based technology promises to be a sensitive and efficient method that permits multiplexed NSP antibody detection from a single sample and would therefore provide both a time and cost saving to the laboratory.

Animals↗

Thirtyfold multiplex genotyping of the p53 gene using solid phase capturable dideoxynucleotides and mass spectrometry.

A mass spectrometry (MS) based multiplex genotyping method using solid phase capturable (SPC) dideoxynucleotides and single base extension (SBE), named the SPC-SBE, has been developed for mutation detection. We report here the simultaneous genotyping of 30 potential point mutation sites in exons 5, 7, and 8 of the human p53 gene in one tube using the SPC-SBE method. The 30 mutation sites, including the most frequently mutated p53 codons, were chosen to explore the high multiplexing scope of the SPC-SBE method. Thirty primers specific to each potential mutation site were designed to yield SBE products with sufficient mass differences. This was achieved by tuning the mass of some primers using modified nucleotides. Genomic DNA was amplified by multiplex PCR to produce amplicons of the three p53 exons. The 30 primers were combined with the PCR products and biotinylated dideoxynucleotides for SBE to generate 3'-biotinylated extension DNA products. These products were then captured by streptavidin-coated magnetic beads, while the unextended primers and other components in the reaction were washed away. The pure extension DNA products were subsequently released from the solid phase and analyzed with MS. We simultaneously genotyped 30 potential mutation sites in the p53 gene from Wilms' tumor, head and neck tumor, and colorectal tumor. Both homozygous and heterozygous genotypes were accurately determined with digital resolution. This is the highest level of multiplex genotyping reported thus far using MS, indicating that the approach might be applicable to screening a repertoire of genotypes in candidate genes as potential disease markers.

Base Sequence↗

Multiplex bead array assays: performance evaluation and comparison of sensitivity to ELISA.

The measurement of soluble cytokines and other analytes in serum and plasma is becoming increasingly important in the study and management of many diseases. As a result, there is a growing demand for rapid, precise, and cost-effective measurement of such analytes in both clinical and research laboratories. Multiplex bead array assays provide quantitative measurement of large numbers of analytes using an automated 96-well plate format. Enzyme-linked immunosorbent assay (ELISAs) have long been the standard for quantitative analysis of cytokines and other biomarkers, but are not well suited for high throughput multiplex analyses. However, prior to replacement of ELISA assays with multiplex bead array assays, there is a need to know how comparable these two methods are for quantitative analyses. A number of published studies have compared these two methods and it is apparent that certain elements of these assays, such as the clones of monoclonal antibodies used for detection and reporting, are pivotal in obtaining similar results from both assays. By careful consideration of these variables, it should be possible to utilize multiplex bead array assays in lieu of ELISAs for studies requiring high throughput analysis of numerous analytes.

Antibodies, Monoclonal↗