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DNA technology for the detection of common genetic variants that predispose to thrombophilia.

With the identification of common single locus point mutations as risk factors for thrombophilia, many DNA testing methodologies have been described for detecting these variations. Traditionally, functional or immunological testing methods have been used to investigate quantitative anticoagulant deficiencies. However, with the emergence of the genetic variations, factor V Leiden, prothrombin 20210 and, to a lesser extent, the methylene tetrahydrofolate reductase (MTHFR677) and factor V HR2 haplotype, traditional testing methodologies have proved to be less useful and instead DNA technology is more commonly employed in diagnostics. This review considers many of the DNA techniques that have proved to be useful in the detection of common genetic variants that predispose to thrombophilia. Techniques involving gel analysis are used to detect the presence or absence of restriction sites, electrophoretic mobility shifts, as in single strand conformation polymorphism or denaturing gradient gel electrophoresis, and product formation in allele-specific amplification. Such techniques may be sensitive, but are unwielding and often need to be validated objectively. In order to overcome some of the limitations of gel analysis, especially when dealing with larger sample numbers, many alternative detection formats, such as closed tube systems, microplates and microarrays (minisequencing, real-time polymerase chain reaction, and oligonucleotide ligation assays) have been developed. In addition, many of the emerging technologies take advantage of colourimetric or fluorescence detection (including energy transfer) that allows qualitative and quantitative interpretation of results. With the large variety of DNA technologies available, the choice of methodology will depend on several factors including cost and the need for speed, simplicity and robustness.

DNA↗

Imaging technologies for the detection of multiple stains in proteomics.

Laser-based scanners and charge-coupled device (CCD) camera systems are evolving to have greater functional capabilities for capturing images from a range of staining technologies used in gel electrophoresis and electroblotting. Digitizing Coomassie Brilliant Blue (CBB) stained gels and silver stained gels has now become possible using a laser-based gel scanner, the FLA-5000 fluorescent image analyzer system. Also, a simultaneous dual fluorescent imaging function has been incorporated into the FLA-5000 system, utilizing dichroic mirrors with both the optical system and the emission filter. In the workflow of routine proteomics research, the relationship between SYPRO dye staining and fluorescent detection using the FLA-5000 system have become symbiotic. Additionally in many cases, subsequent staining of the gel with CBB is useful for future research, and thus imaging instruments should be able to handle both staining formats. Digitizing the CBB stained gel can now be easily performed by the FLA-5000 fluorescent image analyzer system using a fluorescent board as an epi-illumination background. A cooled CCD camera system has the potential of imaging not only chemiluminescent membranes but also digitizing molecular weight markers and fluorescent detection of SYPRO dye-stained gels. With Multi Gauge software version 2.0 it is now a simple task to combine two images into one, as commonly required in dual detection experiments. The LAS-3000 system was designed to capture chemiluminescent images and to digitize the images automatically. Thus, new capabilities added to gel imaging systems make them capable of detecting and displaying multiple signals more conveniently.

Electrophoresis, Gel, Two-Dimensional↗

New technology for the detection of pH.

The measurement of pH is the most widely employed test for (bio-)chemical lab. Since the first use of glass electrode to detect pH, new techniques and methods have broaden the scope of pH detection. Metal/metal oxide, ion sensitive field-effect transistors (ISFET), fibre-optical techniques, nanotechniques, and conducting polymer techniques have been extensively developed. This review covers the various methods for pH detection. New development trends were discussed.

Chemistry, Physical↗

A new label technology for the detection of specific polymerase chain reaction products in a closed tube.

A novel signal generation principle suitable for real time and end-point detection of specific PCR products in a closed tube is described. Linear DNA probes were labeled at their 5'-ends with a stable, fluorescent terbium chelate. The fluorescence intensity of this chelate is lower when it is coupled to single-stranded DNA than when the chelate is free in solution. The synthesized probes were used in the real time monitoring of PCR using a prototype instrument that consisted of a fluorometer coupled to a thermal cycler. When the probe anneals to a complementary target amplicon, the 5'-->3' exonucleolytic activity of DNA polymerase detaches the label from the probe. This results in an enhanced terbium fluorescence signal. Since terbium has a long excited state lifetime, its fluorescence can be measured in a time-resolved manner, which results in a low background fluorescence and a 1000-fold signal amplification. The detection method is quantitative over an extremely wide linear range (at least 10-10(7)initial template molecules). The label strategy can easily be combined with existing label technologies, such as TaqMan 5'-exonuclease assays, in order to carry out multiplex assays that do not suffer from overlapping emission peaks of the fluorophores.

Chelating Agents↗

Autoantibody detection using multiplex technologies.

Measurement of multiple antibodies has been possible for years using labor-intensive methods such as counterimmunoelectrophoresis and radioimmunoprecipitation. Recently, simpler methods that are more practical for routine analysis, often described as multiplex technologies, have been introduced. One common technique, the line assay, uses nitrocellulose strips that are precoated at different locations with more than a dozen recombinant proteins or peptides. Detection of results may be performed visually or with scanning instrumentation. A second technique uses families of polystyrene beads that are dyed to establish a unique identity; each bead type is then coated with a specific affinity-purified or recombinant protein. Detection is performed by flow cytometry. There have been multiple descriptions of the use of these techniques for measuring antibodies associated with the antinuclear antibody screen. More recent reports describe applications to antibodies associated with hypothyroidism, ANCA, anti-phospholipid syndrome, and celiac disease. This review summarizes the work that has been performed to date and examines the potential benefits of multiplexing to both the laboratory and the physician.

Animals↗

beta-Amyloid peptide vaccination results in marked changes in serum and brain Abeta levels in APPswe/PS1DeltaE9 mice, as detected by SELDI-TOF-based ProteinChip technology.

Although the pathogenesis of Alzheimer's disease (AD) is not fully understood, growing evidence indicates that the deposition of beta-amyloid (Abeta) and the local reactions of various cell types to this protein play major roles in the development of the disease. Immunization with the Abeta 1-42 peptide has been reported to decrease Abeta deposits in the brains of mutant amyloid precursor protein (APP/V717F) transgenic (tg) mice (Schenk et al. Immunization with amyloid-beta attenuates Alzheimer-disease-like pathology in the PDAPP mouse. Nature 1999;400:173-177). We have replicated this finding in APPswe/PS1DeltaE9 tg mice, which also develop Abeta deposits in the brain. The immunized animals developed high titers of antibodies against Abeta 1-42 in serum, and Abeta deposits in the brains were significantly reduced. Using surface-enhanced laser desorption/ionization (SELDI) mass spectrometry and ProteinChip((R)) technology, we detected trends toward increased soluble Abeta peptide in the brain and a decrease in assayable Abeta peptide in the serum of immunized compared with control animals. This last finding raises the possibility that anti-Abeta antibodies in the periphery sequester Abeta peptides or target them for degradation and in this way contribute to the enhanced Abeta clearance from the brain in immunized animals.

Amyloid beta-Peptides↗

Cell and tissue based technologies for environmental detection and medical diagnostics.

We are in the midst of a biotechnology revolution. Significant advances have been made in sensors and diagnostics based on interrogation of biomolecular arrays. The surface conjugation of nucleic acids, antibodies and proteins onto 'chip' formats has resulted in new classes of high information content devices. This compilation of articles presents the emergence of a new class of such devices based on the ability to interrogate cellular or tissue microarrays. Unlike nucleic acid or antibody-based approaches, these systems enable the interrogation of more complex biological responses, and offer the potential to gather higher information content from measuring physiologic, metabolic, or network processes and responses. This endeavor presents many technological challenges but offers the promise of collecting information more closely correlated to human response and as such represents the opportunity to fabricate new sensors and diagnostics for environmental detection and medical diagnostics.

Biosensing Techniques↗

Sensitive detection using microfluidics technology of single cell PCR products from high and low abundance IgH VDJ templates in multiple myeloma.

Human cancer is inherently heterogeneous, so the ability to monitor individual cancer cells at every clinic visit would be a valuable tool. This work describes the first step towards developing handheld and automated devices for molecular and phenotypic analysis of cancer cells. Here, we show that use of capillary electrophoresis to detect PCR product amplified from either transcripts (high abundance template) or genomic DNA (low abundance template) encoding clonotypic immunoglobulin heavy chain VDJ of plasma cells from patients with multiple myeloma. High abundance IgH VDJ transcripts amplified in conventional systems or by capillary electrophoresis through channels on microfluidic chips or, alternatively, PCR product amplified from individual myeloma plasma cells in a single stage RT-PCR reaction was readily detectable on microfluidic chips. For low abundance templates, a nested PCR strategy was needed to detect PCR product by any method. Using microfluidic chips, PCR products amplified from genomic IgH VDJ DNA were detected in six out of eight plasma cells. Comparison of the ABI3100 and the microfluidic chip indicates that approximately 20 times more sample is injected into the ABI 3100 capillary than for the microfluidics chip. Overall, for high and low abundance template in individual cells, the microfluidic separation/detection system is at least as sensitive as the ABI 3100. In the future, integrated microfluidic platforms that incorporate both PCR cycling and product detection on the same chip are likely to exceed conventional systems in sensitivity and speed of genetic analysis by RT-PCR or PCR.

DNA, Neoplasm↗

The VIT technology for rapid detection of Listeria monocytogenes and other Listeria spp.

Detection of Listeria monocytogenes is generally performed in a two-step cultural enrichment process and takes on average 1 week until the biochemical identification of a L. monocytogenes suspicious colony is completed. However, food processing companies depend increasingly on test methods, which attempt to generate results comparable to standard methods but in reduced time-frame and which allow to release produced batches dependent on such results. In the present study, the vermicon identification technology (VIT), a rapid commercial test system using fluorescently labelled gene probes, was compared to a cultural standard method. In total, 298 naturally contaminated samples were analysed. The sensitivity and the specificity of the VIT system were 100% for the detection of L. monocytogenes and 97.1% and 100%, respectively, for the detection of the genus Listeria.

Animals↗

Computer vision and digital imaging technology in melanoma detection.

With today's treatment options, melanoma cure rates can be improved only if the diagnosis is made early enough to allow for curative surgery. Since clinical signs of malignancy in a pigmented lesion are often ambiguous and even dermatology experts may misdiagnose melanoma, diagnostic tools and procedures have been developed to assist the clinician in the diagnostic workup. Epiluminescence microscopy or dermatoscopy is widely used to inspect the melanin reticulum at the epidermo-dermal junction zone for signs indicative of early tumor growth. With the help of computer technology, digital dermatoscopy systems have entered the diagnostic arena capable of accurately assessing skin surface features modeled along the ABCD criteria already used for clinical assessment of pigmented skin lesions. Today's technically refined computer-based systems provide sophisticated functionalities for automated feature extraction and lesion assessment for quantitative analysis, and may also be used for education and training purposes.

Dermis↗

Detection of achondroplasia G380R mutation from PCR amplicons by using inosine modified carbon electrodes based on electrochemical DNA chip technology.

The detection of Achondroplasia G380R mutation from real samples was performed by monitoring the oxidation signal of guanine. Inosine-substituted 12-mer capture probes related to the homozygous or heterozygous alleles of Achondroplasia G380R mutation were adsorbed onto carbon paste electrode (CPE) surface. No guanine signal was obtained from the capture probes, since the inosine bases were electroinactive. Then, these probes were hybridized with the denatured PCR samples on the CPE surface. The hybridization between the probe and target sequences was determined by using the oxidation signal of guanine in connection with differential pulse voltammetry (DPV). The oxidation signal of guanine was observed as a result of the specific hybridization between the probe and PCR sample. The changes in the peak height of the guanine signal provided the information whether the PCR sample contained heterozygous allele or homozygous allele. Numerous factors affecting the hybridization and nonspecific binding events were optimized to detect down to 41.24 fmol/ml target DNA. The electrochemical detection of Achondroplasia G380R mutation from PCR samples greatly shortened and simplified the diagnosis for the homozygous mutant type, which is lethal for the newborn.

Achondroplasia↗

Cytokine detection by multiplex technology useful for assessing antigen specific cytokine profiles and kinetics in whole blood cultured up to seven days.

Cytokine profile assessment is important to characterize immune responses to pathogens. To identify optimal time points for determination of cytokine profiles, we diluted whole blood 1:10, to enable daily cytokine measurements during one week. Cultures for 10 blood donors were set up in the presence of phytohemagglutinin (PHA), cytomegalovirus (CMV) or Candida. Supernatant levels of interleukin-2 (IL-2), IL-4, IL-5, IL-6, IL-10, IL-12, IL-13, IL-17, interferon-gamma (IFN-gamma), granulocyte/macrophage colony-stimulating factor, and tumor necrosis factor-alpha (TNF-alpha), were determined by multiplex technique, and intracellular cytokine staining (ICS) was employed to detect IFN-gamma, IL-2, IL-4 and IL-13 in CD3+ cells. The multiplex analysis detected representative cytokine profiles for the majority of the cytokines on day 7 by identifying peak levels or good correlation with peak levels, with the exception of IL-2 and TNF-alpha in PHA and CMV cultures and IL-10 in PHA cultures. For these cytokines an extracellular measurement on day 2-3 would be appropriate. The intracellular cytokines showed distinct kinetics for IFN-gamma and IL-2, while IL-4 and IL-13 were not detected at all with ICS. In conclusion, the combination of whole blood cultures with multiplex analysis is a simple and powerful tool that can be used to identify detailed cytokine profiles of specific cell-mediated immune responses.

Adult↗

Comprehensive evaluation of performance, laboratory application, and clinical usefulness of two direct amplification technologies for the detection of Mycobacterium tuberculosis complex.

The rapid detection of Mycobacterium tuberculosis from respiratory specimens is critical for optimal treatment of patients. Several nucleic acid amplification-based systems designed to detect Mycobacterium tuberculosis complex directly from specimens have been developed, and 2 are commercially available. We studied the performance characteristics of these 2 systems (Gen-Probe Amplified Mycobacterium Tuberculosis Direct (MTD), Gen-Probe, San Diego, Calif; AMPLICOR, Roche Molecular Systems, Branchburg, NJ). Each uses a different amplification strategy, detection modality, and approach to inhibition of amplicon contamination. When compared with culture, the respective sensitivities and specificities were as follows: 92.2% and 98. 7% (study 1) and 88. 7% and 95.3% (study 2); AMPLICOR, 87.5% and 99.7%. Resolution of discordant results was accomplished by incorporating clinical data and multiple specimen analysis. An increased rate of false-positive results was encountered during 1 phase of the study. The conditions under which the test was performed were modified and the "contamination" issue was resolved. This report discusses the benefits and limitations of each assay, proposes cost-effective algorithms for their incorporation into routine laboratory work flow, and discusses the clinical usefulness of these molecular technologies.

Algorithms↗

A closer look at diagnosis in clinical dental practice: part 5. Emerging technologies for caries detection and diagnosis.

Parts 5 and 6 of this series examine innovations in diagnostic and management procedures and assess their potential to become everyday tools of the dental clinician. This paper examines some of the diagnostic tools supporting a philosophical shift in mainstream dental practice from concern with extensively decayed teeth to a focus on detecting incipient demineralized tissues. With the latter approach, the incipient carious process can be reversed by promoting enamel remineralization and thus eliminating the need for restorative intervention. Numerous methods and devices have been developed to detect, diagnose and monitor such lesions, and several have been produced in versions that may appeal to dental practitioners. This paper considers 3 of these methods and devices: the DIAGNODent laser device, quantitative light-induced fluorescence and the Digital Imaging Fiber-Optic Transillumination device. Each technique is illustrated, the research on its effectiveness is assessed to determine usefulness to the practitioner, and the comparative advantages of the 3 adjunct tools are discussed.

Dental Caries↗

Discovery, transfer, and diffusion of technologies for the detection of genetic disorders. Policy implications.

Much of the current interest in genetics stems from the Human Genome Project. Although the project will accelerate the identification of disease-related genes, as currently formulated it may retard discovery of gene function and effective treatments, thereby prolonging the stage in which people at risk of genetic diseases can be identified but not treated. This stage is fraught with ethical problems. The project's goal of sequencing the entire human genome could also detract from basic biological research, as could the growing interest of universities in biotechnology transfer to the commercial sector.

Biotechnology↗