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Prevalence of the 550delA mutation in calpainopathy (LGMD 2A) in Croatia.

Mutations in the calpain 3 (CAPN3) gene are responsible for limb-girdle muscular dystrophy (LGMD) type 2A. We report five causal mutations: 550delA, DeltaFWSAL, R541W, Y357X and R49H found on 45/50 of alleles studied in 25 unrelated families from Croatia. The 550delA mutation was present on 76% of CAPN3 chromosomes that led us to screen general population for this mutation; 532 random blood samples from three different regions were analyzed using allele-specific PCR. Four healthy 550delA heterozygous were found suggesting a frequency of 1 in 133. All four carriers detected originated from an island and mountain region close to the Adriatic Sea. These findings combined with haplotype analysis confirm that our general population is rather "closed" with a probable founder effect in some parts of the country. In addition, the high frequency of 550delA mutation found in some neighboring European countries together with the easy detection of the 550delA mutation should streamline genetic analysis, especially bearing in mind the geographic and ethnic origin of the patients. Our results, combined with published haplotype studies suggest that 550delA originated in the Eastern Mediterranean from which it has probably spread widely across Europe. Extending this study to other areas would help to address this epidemiological question. Our data are relevant to accurate genetic counseling and patient testing since we lack sensitive and specific biopsy screening methods for detecting patients with calpainopathy. Thus, detection of patients relies on the direct detection of gene mutation and our findings may be helpful in establishing diagnostic screening strategy.

Alleles↗

Rotational Pattern Difference in Resolved Fluorescence Spectra with Different Detection Schemes.

The relative intensities of rotational lines in resolved fluorescence spectra are dependent on the detection direction and the choice of the detection scheme when a grating monochromator is used. These differences arise from the spatially anisotropic distribution of the fluorescence, the rotational branch dependence of the fluorescence polarization, and the polarization dependence of the monochromator grating efficiency. Both the anisotropy of the emission and the rotational branch dependence of the fluorescence polarization are enhanced in double-resonance excitation schemes. In the present work, we analyze the relative intensities in the (7)Li(2) 1(3)Sigma(-)(g) --> 1(b)(3)Pi(u) and 1(3)Delta(g) --> 1(b)(3)Pi(u) resolved fluorescence spectra, observed following double-resonance excitation, for three different detection schemes. Copyright 1999 Academic Press.

Journal Article↗

One- and two-dimensional 13C-n.m.r. characterization of two series of oligosaccharides derived from porcine intestinal mucosal heparin by degradation with heparinase.

Two tetrasaccharides, two hexasaccharides, and a disaccharide have been purified from heparinase digests of porcine intestinal mucosal heparin in sufficient quantities to permit 13C-n.m.r. characterization of the species. The two tetrasaccharides are the sulfated iduronic acid-containing 4en-HexpA2SO3-(1----4)-alpha-D-GlcpNSO3;6SO3-(1- ---4)-alpha-L- IdopA2SO3-(1----4)-D-GlcpNSO3;6SO3 and the non-sulfated glucuronic acid-containing 4en-HexpA2SO3-(1----4)-alpha-D-GlcpNSO3;6SO3-(1- ---4)-beta-D-GlcpA-(1----4)-D- GlcpNSO3;6SO3. The two hexasaccharides are related to the two tetrasaccharides by the insertion of alpha-linked L-IdopA2SO3-(1----4)-D-GlcpNSO3;6SO3 after the non-reducing end sulfated glucosamine residue. The disaccharide is 4en-HexpA2SO3-(1----4)-alpha-D-GlcpNSO3;6SO3. The disaccharide, together with each of the iduronate-containing oligosaccharides, form one series of related di-, tetra-, and hexa-saccharides, while the disaccharide together with the glucuronate-containing oligosaccharides form a second series. Using inverse detection as a means of increasing sensitivity, two-dimensional n.m.r. 13C-1H heterocorrelation spectra have been obtained for all five oligosaccharides. The use of two-dimensional heterocorrelation n.m.r. spectroscopy offers a much less ambiguous means of making 13C resonance assignments than do traditional one-dimensional methods, while the use of inverse detection gives both greater sensitivity than direct detection, as well as values for the one-bond 13C-1H coupling constants. From a knowledge of the assignments of resonances in the 1H spectra of these species, it has been possible to assign almost all of the 13C resonances of these five oligosaccharides. Some corrections to previously published assignments for the tetrasaccharides have been made. In addition, one-bond 13C-1H coupling constant data have been obtained for all of the anomeric protons.

Animals↗

Techniques for detecting enzymes in high-performance liquid chromatography.

Techniques are described for the automated detection of a series of enzymes in a high-performance liquid chromatographic system. Detection was achieved by either a direct or a coupled enzyme assay using photometric detectors. In direct detection the immediate enzymatic product was monitored. Coupled enzyme assays required additional enzyme(s) to convert the product of the primary enzyme reaction into a more easily detectable form. The efficiency of both free and immobilized coupling enzyme(s) was evaluated. The detector sensitivity could be increased three-fold by increasing the reaction temperature. This system is particularly suitable for isoenzyme profiling in biological materials.

Animals↗

The evaluation of a fluorogenic polymerase chain reaction assay for the detection of Salmonella species in food commodities.

The TaqMan LS-50B PCR Detection System facilitates the automated and direct detection of polymerase chain reaction (PCR) products. The system employs the 5' nuclease activity of Taq DNA polymerase to hydrolyse a Salmonella specific internal fluorogenic probe for monitoring the amplification of a 287-bp region of the Salmonella invA gene. Using the fluorogenic 5' nuclease assay, 164 Salmonella strains representing all the subspecies of Salmonella enterica were detected while over 50 non-Salmonella strains were not detected. The detection limit of the assay was two colony forming units (cfu) per PCR reaction when a pure culture of S. typhimurium was used. Six protocols for the isolation of PCR-amplifiable DNA were evaluated using chicken carcass rinses, ground beef, ground pork and raw milk contaminated with Salmonella. Of the six DNA isolation protocols, a modified sample preparation protocol using the EnviroAmp kit was chosen for subsequent studies because it was reliable, easy to use and efficient for the isolation of PCR-amplifiable DNA from foods. A detection limit of 3-7 cfu per PCR reaction was obtained using food samples that were pre-enriched overnight and then inoculated with Salmonella. The detection limit was below 3 cfu/25 g or 25 ml when foods inoculated with Salmonella were pre-enriched overnight. Naturally contaminated foods (50 chicken carcass rinses and 60 raw milk samples) were examined using both the fluorogenic 5' nuclease assay and a modified semi-solid rappaport vassiliadis (MSRV) culture method. Thirty four of the 110 samples tested were Salmonella-positive and 74 were Salmonella-negative by both the 5' nuclease assay and the MSRV method. Two samples were Salmonella-positive by the 5' nuclease assay, but negative by the MSRV method. The correlation between the 5' nuclease assay and the MSRV method was over 98%.

5'-Nucleotidase↗

Improved method for simultaneous determination of ascorbic acid and dehydroascorbic acid, isoascorbic acid and dehydroisoascorbic acid in food and biological samples.

The total vitamin C amount in different food and plasma samples was determined by a dual detection system, after HPLC separation, with direct detection of ascorbic acid and indirect fluorimetric detection of dehydroascorbic acid after a post-column O-phenyldiamine derivatisation. The two active forms of vitamin C and their D-isomers were separated within 10 min. The repeatability was determined by measurement of several fruits and vegetables and ranged from 0.3 to 1.9% (relative standard deviation) for vitamin C. The reproducibility, based on double determinations, ranged from 1.9 to 3.6% for vitamin C, depending on the matrix. The reproducibility, based on several determinations of reference materials, ranged from 2.4 to 3.7% for ascorbic acid and from 4.3 to 5.8% for dehydroascorbic acid, again depending on the matrix.

Ascorbic Acid↗

Laboratory methods in the diagnosis and prognostic staging of infection with human immunodeficiency virus type 1.

Laboratory evaluation of infection with human immunodeficiency virus type 1 (HIV-1) may involve detection of antibodies to HIV-1, direct detection of HIV-1 itself, and measurement of an individual's immunologic status at the time of presentation. The ELISA is currently the preferred initial screening test, although a variety of other rapid immunoassays have also been developed. Methods defining the antigenic specificity of the antibody response, such as the western blot, have become standard confirmatory tests in this setting. CD4+ cell enumeration and the HIV-1 antigen capture assay are useful in predicting the course of HIV-1 infection and in monitoring antiretroviral therapies. Newer techniques of HIV-1 co-cultivation permit the characterization of viral isolates and the stratification of patients and facilitate monitoring of the effects of antiretroviral agents. The polymerase chain reaction is of value in identifying HIV-1 infection in individuals with inconclusive serologic results. Judicious use of other laboratory tests, including surrogate markers such as beta 2-microglobulin, also provides prognostic information potentially useful in clinical management of HIV-1-infected patients.

DNA, Viral↗

Diagnosis of tuberculosis by Amplicor Mycobacterium tuberculosis test: a multicenter study.

The Amplicor Mycobacterium tuberculosis test is a new PCR assay for the direct detection of Mycobacterium tuberculosis from clinical samples. A multicenter study that included six laboratories was done to evaluate the Amplicor test in comparison with direct microscopy and culture (solid or radiometric media), and the culture method was used as the "gold standard." A total of 2,073 specimens, i.e., 1,749 respiratory specimens and 324 other specimens, were tested. A total of 184 cultures yielded M. tuberculosis. Of these 184 cultures, 77 (42%) were smear negative and 23 (12.5%) concerned extrapulmonary specimens. The sensitivity of the Amplicor test for all of the specimens and for extrapulmonary, smear-positive, and smear-negative specimens was 86, 83, 94.5, and 74%, respectively. The sensitivity of direct microscopy in comparison with that of culture was 58%. A total of 95% of patients with culture-proven tuberculosis were diagnosed by the Amplicor test, whereas direct microscopy detected mycobacteria in only 72% of these patients. The Amplicor test exhibited a high degree of specificity (98%). The assay was very rapid and easy to perform.

Bacteriological Techniques↗

Evaluation of amplified rDNA restriction analysis (ARDRA) for the identification of cultured mycobacteria in a diagnostic laboratory.

BACKGROUND: The development of DNA amplification for the direct detection of M. tuberculosis from clinical samples has been a major goal of clinical microbiology during the last ten years. However, the limited sensitivity of most DNA amplification techniques restricts their use to smear positive samples. On the other hand, the development of automated liquid culture has increased the speed and sensitivity of cultivation of mycobacteria. We have opted to combine automated culture with rapid genotypic identification (ARDRA: amplified rDNA restriction analysis) for the detection resp. identification of all mycobacterial species at once, instead of attempting direct PCR based detection from clinical samples of M. tuberculosis only. RESULTS: During 1998-2000 a total of approx. 3500 clinical samples was screened for the presence of M. tuberculosis. Of the 151 culture positive samples, 61 were M. tuberculosis culture positive. Of the 30 smear positive samples, 26 were M. tuberculosis positive. All but three of these 151 mycobacterial isolates could be identified with ARDRA within on average 36 hours. The three isolates that could not be identified belonged to rare species not yet included in our ARDRA fingerprint library or were isolates with an aberrant pattern. CONCLUSIONS: In our hands, automated culture in combination with ARDRA provides with accurate, practically applicable, wide range identification of mycobacterial species. The existing identification library covers most species, and can be easily updated when new species are studied or described. The drawback is that ARDRA is culture-dependent, since automated culture of M. tuberculosis takes on average 16.7 days (range 6 to 29 days). However, culture is needed after all to assess the antibiotic susceptibility of the strains.

Bacterial Typing Techniques↗

Balanced differential phase-shift keying detector performance: an analytical study.

A simple explanation of the observed approximately 3 dB advantage of differential phase-shift keying (DPSK) balanced detection over the intensity-modulated directly detected (IM-DD) type detection that can be easily used for system engineering purposes is presented. A Gaussian approximation is used to describe the tails of the detected noisy random signals leading to an analytical explanation of the observed approximately 3 dB advantage of DPSK balanced detection over the IM-DD type detection.

Journal Article↗

The development of a novel immunoassay amplification system and its use in viral detection.

A novel amplification system has been developed for the detection of free or antibody-conjugated alkaline phosphatase. The amplification system provides a 100 fold enhancement in the detection of the enzyme, compared to direct detection with chromogenic substrates. The key to the amplification system is the dephosphorylation of a potent phosphorylated inhibitor, and the visualization of this inhibitor using a second, indicator, reaction. This system is shown to provide increased sensitivity for immunoassays detecting either herpes simplex virus or respiratory syncytial virus in clinical samples. In addition, this general concept for amplification may be applicable to a variety of other hydrolytic enzymes, and is demonstrated for the enhanced detection of beta-galactosidase.

Alkaline Phosphatase↗

[The bacteriology of tuberculosis and non-tuberculosis mycobacterial infections].

Changing incidence and nature of mycobacterial infections subsequent to the historical regression of tuberculosis and the acquired human immunodeficiency syndrome (AIDS) epidemic, as well as the development of new technical tools for molecular biology, have profoundly modified the methods used for the bacteriological diagnosis of mycobacteria infections. Although microscopic search for acid-fast bacilli, culture and antibiotic resistance tests on Löwenstein-Jensen medium remain the reference methods, more rapid and sophisticated methods are now available. Culture on radiolabeled media using the Bactec system has shortened the delay for positive culture and interpretable antibiotic sensitivity tests. Molecular techniques allow: 1) rapid identification of the most frequently isolated mycobacteria strains, including the most frequent laboratory contaminant M. gordonae, with genome probes; 2) genome typing of M. tuberculosis strains to trace interhuman transmission, detect recurrence or exogenous reinfection or demonstrate laboratory contamination; 3) rapid detection of rifampicin resistance; and 4) direct detection of M. tuberculosis and M. avium in pathological specimens. The role of mycobacteria in the environment causing opportunistic infections, atypical mycobacteria or non-tuberculosis mycobacteria (NTM), particularly the aviaire complex, has grown considerably. Isolation and identification relies on methods used to detect bacilli as well as blood cultures and analysis of fecal matter. NTM are naturally resistant to most of the antituberculosis antibiotics but are sometimes sensitive to aminoglycosides, fluoroquinolones or new macrolides.

AIDS-Related Opportunistic Infections↗

The use of monoclonal antibodies in the diagnosis of contagious caprine pleuropneumonia (CCPP).

Contagious caprine pleuropneumonia is a severe disease affecting goats in Eastern Africa and the Middle East, caused by Mycoplasma sp. type F38. Its exact geographical distribution is however not exactly known due to the lack of specificity of the available serological tests and the difficulty in cultivating M. sp. F38. A panel of monoclonal antibodies (mAbs) was produced, using crude or membrane proteins antigens from type F38 strains to immunize mice. The reactivity of the mAbs was tested by an immunobinding assay with crude mycoplasma antigens spotted on nitrocellulose filters. One hundred and twelve antigens, standardized at 0.5 mg protein/ml, were used. Mycoplasma strains were chosen among closely related species of the "mycoides cluster", M. capricolum, Group 7 of Leach, M. mycoides mycoides LC, M. mycoides mycoides SC, M. mycoides capri, as well as among species that are isolated from goat lungs, M. arginini, M. ovipneumoniae, M. putrefaciens, M. agalactiae. Out of 60 mAbs, 4 were chosen to build an identification test for mycoplasmas of the "mycoides cluster". Controls showed that accurate identification could be hampered by antigenic heterogeneity within the M. capricolum species. One mAb was used for the direct detection of M. sp. F38 antigen in pleural fluid from goats suspected of CCPP. The sensitivity of the test can be estimated at 0.5 micrograms protein/ml. Comparison with isolation results show a 74% agreement between the two methods. The same mAb was used to build a blocking ELISA. This serological test was strictly specific for CCPP. It detects antibodies in sera of naturally infected or artificially immunized animals while it remained negative with hyperimmune sera to related strains such as PG 50. Direct antigen detection and blocking ELISA are tools that may enable a better assessment of CCPP distribution.

Animals↗

On site evaluation of three flat panel detectors for digital radiography.

During a tender we evaluated the image performance of three commercially available active matrix flat panel imagers (AMFPI) for general radiography, one based on direct detection method (Se photoconductor) the other two on indirect detection method (CsI phosphor). Basic image quality parameters (MTF, NNPS, DQE) were evaluated with particular attention to dose and energy dependence. As it is known, presampling modulation transfer function (MTF) of selenium based detector is very high (at 70 kV, 2 cycles/mm, 2.5 microGy, about 0.80). Indirect detection panels exhibit a comparable (lower) resolution (at 70 kV, 2 cycles/mm, 2.5 microGy, MTF is about 0.34 for both the systems analyzed) and a more pronounced energy and dose dependence could also be noted in one of them. As a consequence of the very high resolution, the normalized noise power spectrum (NNPS) of the direct system is substantially flat, very similar to a white noise. Considering that the sensitive layer of all detectors is the same (0.5 mm), the relatively higher NNPS values are related to selenium absorption properties (lower Z respect to CsI:Tl) and detector inherent noise. NNPSs of the other systems, at low frequencies, are comparable but the frequency dependence is significantly different. At 70 kV, 2.5 microGy, 0.5 cycles/mm detective quantum efficiency (DQE) is about 0.35 for the direct detection system, and about the same (0.6) for the indirect ones. The combined effect of additive and multiplicative noise components makes DQE dependence on dose not monotonic. DQE present a maximum for an intermediate exposure. This complex behavior may be useful to characterize the systems in terms of the monodimensional integral over the frequency of DQE (IDQE). Both visual contrast-detail experiment and the direct evaluation of the signal-to-noise ratio confirmed, at least in a qualitative way, the system performances predicted by IDQE.

Equipment Failure Analysis↗

A nitric oxide-sensitive electrode: requirement of lower oxygen concentration for detecting nitric oxide from the tissue.

In order to directly detect nitric oxide (NO) liberated from isolated tissue, a practical and convenient method using a nitric oxide-sensitive electrode is described. To avoid the nonselective signal caused by ionic substances, the electrode was covered with three layers but remains permeable for gaseous substances. In a solution bubbled with 20% oxygen (pO2, approximately 150 mm Hg), administration of S-nitroso-N-acetyl-d, l-penicillamine (SNAP) at concentrations greater than 10(-7) mol/L elicited an electrode response. Based on a comparison with the chemical determination of NO released from SNAP, the electrode may be able to detect nitric oxide around nmol/L. At least 30 nmol NO per liter in anoxic conditions was reported to be detected by this electrode (Matsui, 1995). In a specially designed small chamber, the electrode was attached on the surface of endothelial side of the isolated aorta of the guinea pig. When carbachol was added to the chamber, the electrode responded when the solution was bubbled with 20% but not with 40% or 95% of oxygen, suggesting a much faster decomposition of nitric oxide in the presence of higher concentrations of oxygen. The electrode response to carbachol was abolished in the presence of NG-monomethyl-L-arginine or nitro arginine. These results suggest that the electrode method described in this manuscript is suitable for detecting nitric oxide liberated from isolated tissues when comparatively low oxygen levels are present in the physiological salt solution.

Animals↗

Profiling of molecular interactions in real time using acoustic detection.

Acoustic sensors that exploit resonating quartz crystals to directly detect the binding of an analyte to a receptor are finding increasing utility in the quantification of clinically relevant analytes. We have developed a novel acoustic detection technology, which we term resonant acoustic profiling (RAP). This technology builds on the fundamental basics of the "quartz crystal microbalance" or "QCM" with several key additional features including two- or four-channel automated sample delivery, in-line referencing and microfluidic sensor 'cassettes' that are pre-coated with easy-to-use surface chemistries. Example applications are described for the quantification of myoglobin concentration and its interaction kinetics, and for the ranking of enzyme-cofactor specificities.

Biosensing Techniques↗

Detection of interstitial Ga in GaN

We report the direct detection of interstitial Ga by optical detection of electron paramagnetic resonance (ODEPR) in the photoluminescence of n-type GaN after irradiation in situ at 4.2 K with 2.5 MeV electrons. It is stable upon annealing until room temperature, where it becomes mobile and trapped to form a new defect which is observed to emerge as the interstitial disappears. The time constant of the process at room temperature is approximately 200 min. The emergence of another ODEPR center beginning at approximately 135 K suggests even easier migration of one of the other intrinsic defects in the GaN lattice.

Journal Article↗

Transgenic cell lines for detection of animal viruses.

Rapid diagnostic assays based on direct detection of viral antigen or nucleic acid are being used with increasing frequency in clinical virology laboratories. Virus culture, however, remains the only way to detect infectious virus and to analyze clinically relevant viral phenotypes, such as drug resistance. Growth of viruses in cell culture is labor intensive and time-consuming and requires the use of many different cell lines. Transgenic technology, together with increasing knowledge of the molecular pathways of virus replication, offers the possibility of using genetically modified cell lines to improve virus growth in cell culture and to facilitate detection of virus-infected cells. Genetically modifying cells so that they express a reporter gene only after infection with a specific virus can allow the detection of infectious virus by rapid and simple enzyme assays such as beta-galactosidase assays without the need for antibodies. Although transgenic cells have recently been successfully used for herpes simplex virus detection, much more work needs to be done to adapt this technology to other human viral pathogens such as cytomegalovirus and respiratory viruses. This review offers some strategies for applying this technology to a wide spectrum of animal viruses.

Animals↗