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Non-lethal arthrogryposis multiplex congenita presenting with cystic hygroma at 13 weeks gestational age.

Arthrogryposis is defined as multiple joint contractures, the aetiology of which is variable. Prenatal diagnosis has focused on diminshed fetal movement and detection of joint contractures on ultrasound. These findings usually do not become evident until 16 to 18 weeks of gestation. Although others (Baty, 1989; Hyett et al., 1997) have reported the diagnosis of arthrogryposis in the first and early second trimester by the presence of nuchal oedema, these reports have all focused on lethal conditions. We report on two female siblings with non-lethal arthrogryposis multiplex congenita. The diagnosis was suspected in the second pregnancy at 13.5 weeks when a large cystic hygroma was detected on ultrasound. Multiple joint contractures became evident at 18 weeks. We hypothesize that the aetiology may be secondary to delay in lymphatic maturation with development of a large cystic hygroma resulting in restriction of fetal movement during early joint formation. Further, the fact that the two female siblings had a similar pattern of facial and joint development, and that their parents are second cousins, suggests an autosomal recessive basis for this form of AMC.

Arthrogryposis↗

Detection via laser desorption and mass spectrometry of multiplex electrophore-labeled albumin.

Albumin was reacted with a mixture of six electrophore N-hydroxysuccinimide esters, each of which possessed an interior glycolketo linkage. The purpose of this linkage is to release the attached electrophore as a ketone when heated, due to a thermal retro-aldol reaction. The multiplex electrophore-labeled albumin was detected as a dried spot deposited on a polyimide membrane by laser desorption/capillary collection (of the released ketone electrophores)/off-line gas chromatography/electron capture-mass spectrometry. This encourages further study of such electrophore labels in immunoassays and related techniques, where there is a need to make advances in multi-analyte detection.

Albumins↗

High throughput liquid chromatography/mass spectrometric analyses using a novel multiplexed electrospray interface.

A novel four- channel multiplexed electrospray liquid chromatography interface is described. This device has been used to analyse both single components and mixtures by liquid chromatography/mass spectrometry (LC/MS) as well as synthetic samples prepared by automated procedures. These data provided unambiguous molecular weight assignments to both major components and synthetic by-products in these samples. In this work particular attention has also been paid to the elimination of interchannel crosstalk. Copyright 1999 John Wiley & Sons, Ltd.

Journal Article↗

Nonsystemic vasculitic mononeuropathy multiplex, cryoglobulinemia, and hepatitis C.

A 39-year-old man developed sequential acute mononeuropathies involving both median, both ulnar, and the right radial and left peroneal nerves. Electrophysiology demonstrated an asymmetric sensorimotor axonal polyneuropathy; nerve biopsy confirmed a vasculitis. Laboratory evaluation revealed a mixed cryoglobulinemia and active hepatitis C infection. The patient stabilized with prednisone/cyclophosphamide/interferon-alpha. Hepatitis C should be considered in the differential diagnosis of mononeuropathy multiplex. Accurate diagnosis is important, as interferon-alpha may prevent transition to chronic hepatitis/cirrhosis.

Adult↗

Mononeuropathy multiplex due to infiltration of lymphoma in hematologic remission.

We report a case of progressive mononeuropathy multiplex in a patient with lymphoma in hematologic remission. At the time of presentation there was no evidence of meningeal or central nervous system metastasis. At autopsy, extensive infiltration of tumor cells was found in both femoral nerves. We review the literature pertaining to multifocal malignant lymphoid infiltration of peripheral nerves, which can occur during hematologic remission or in the absence of any evidence of systemic lymphoma.

Fatal Outcome↗

Treatment of mononeuropathy multiplex in hepatitis C virus and cryoglobulinemia.

Recent reports advocate alpha-interferon (alpha-Ifn) treatment for mononeuropathy multiplex in hepatitis C virus-associated cryoglobulinemia. We report 2 patients with this disorder to describe two underrecognized treatment outcomes--worsening of polyneuropathy with initiation of alpha-Ifn, in the absence of immunosuppression, and deterioration of liver function with prednisone, despite improvement of polyneuropathy.

Adult↗

Rapid, efficient method for multiplex amplification from filter paper.

Guthrie cards derived from the New York State Newborn Screening Program were utilized to develop a rapid, economical method for amplifying multiple genes to detect mutations that impact public health. These specimens are untraceable to the donor because identifiers are removed and discarded; therefore, these pilot studies were carried out anonymously. The sample preparation requires minimal manipulation, is amenable to automation, and is useful in laboratories which routinely process large numbers of samples, such as those in typical newborn screening laboratories. Multiple gene fragments may be amplified from a 1 mm punch which contains less than 1 microl of whole blood. The blood spots used in these studies contain sufficient material for up to 25 amplification reactions which multiplex at least four different gene fragments each. Since sufficient material remains on the card after the routine testing is complete, this simple assay can greatly expand the efficacy of current newborn screening programs by permitting DNA diagnosis of some disorders when indicated, particularly those in which genotype-phenotype correlations are useful. In addition to newborn screening specimens, this method is also applicable to whole blood from adults after phlebotomy and from lymphoblastoid cell lines. Use of filter paper for DNA analysis is particularly useful for shipped specimens or for population studies whose subjects are refractory to phlebotomy.

Alleles↗

A simple multiplex FRAXA, FRAXE, and FRAXF PCR assay convenient for wide screening programs.

FRAXA, FRAXE, and FRAXF are folate-sensitive fragile sites originally discovered in patients with X-linked mental retardation. The FMR1 gene, whose first exon includes the FRAXA site on Xq27.3, accounts for 15-20% of all X-linked forms of mental retardation. Loss of expression of FMR2, a gene adjacent to the FRAXE site on Xq28, is correlated with FRAXE expansion in some mild mentally retarded patients. FRAXF is a fragile site whose expression has not been associated with any pathological phenotype. The fragility in all three sites is caused by expansions of CGG repeats adjacent to hypermethylated CpG islands. The prevalence of FRAXA, FRAXE, and FRAXF remains uncertain because of the lack of a simple and cost-effective test allowing wide screening programs. For the same reason, the real phenotype-genotype correlations in FRAXE and FRAXF are uncertain as well. We have developed a rapid multiplex polymerase chain reaction (PCR) assay in which hypermethylated CpG islands adjacent to FRAXA, FRAXE, and FRAXF are displayed. The test is very simple and cost-effective, requires only 30 microl of peripheral blood, and can be used for performing diagnoses, postnatal and prenatal, and for screening large groups of control and mentally retarded males and newborn boys.

CpG Islands↗

High-throughput single-strand conformation polymorphism analysis by automated capillary electrophoresis: robust multiplex analysis and pattern-based identification of allelic variants.

Genetic diagnosis of an inherited disease or cancer often involves analysis for unknown point mutations in several genes; therefore, rapid and automated techniques that can process a large number of samples are needed. We describe a method for high-throughput single-strand conformation polymorphism (SSCP) analysis using automated capillary electrophoresis. The operating temperature of a commercially available capillary electrophoresis instrument (ABI PRISM 310) was expanded by installation of a cheap in-house designed cooling system, thereby allowing us to perform automated SSCP analysis at 14-45 degrees C. We have used the method for detection of point mutations associated with the inherited cardiac disorders long QT syndrome (LQTS) and hypertrophic cardiomyopathy (HCM). The sensitivity of the method was 100% when 34 different point mutations were analyzed, including two previously unpublished LQTS-associated mutations (F157C in KVLQT1 and G572R in HERG), as well as eight novel normal variants in HERG and MYH7. The analyzed polymerase chain reaction (PCR) fragments ranged in size from 166 to 1,223 bp. Seventeen different sequence contexts were analyzed. Three different electrophoresis temperatures were used to obtain 100% sensitivity. Two mutants could not be detected at temperatures greater than 20 degrees C. The method has a high resolution and good reproducibility and is very robust, making multiplex SSCP analysis and pattern-based identification of known allelic variants as single nucleotide polymorphisms (SNPs) possible. These possibilities, combined with automation and short analysis time, make the method suitable for high-throughput tasks, such as genetic screening.

Alleles↗

IDDM7 links to insulin-dependent diabetes mellitus in Danish multiplex families but linkage is not explained by novel polymorphisms in the candidate gene GALNT3. The Danish Study Group of Diabetes in Childhood and The Danish IDDM Epidemiology and Genetics Group.

The insulin-dependent diabetes mellitus (IDDM) susceptibility locus IDDM7 on 2q31 links to IDDM in some but not other populations. Linkage of D2S152, the marker for IDDM7, has hitherto not been demonstrated in Danish patients. GALNT3 that encodes the UDP-GalNAc: polypeptide N-acetyl-galactosaminyltransferase-T3 (GalNAc-T3), was recently identified and mapped to a region 5-25 cM from D2S152. The GalNAc transferases may play a role in immune mediated diseases by glycosylating autoantigens. Hence, the aims of the present study were to investigate by means of extended transmission disequilibrium testing (ETDT) and transmission disequilibrium testing (TDT) of the marker for IDDM7, D2S152, the marker for GALNT3, D2S2363, and novel polymorphisms identified through mutation screening of the entire GALNT3 for linkage with IDDM in 241 Danish IDDM multiplex families. ETDT analysis demonstrated linkage between IDDM and D2S152 (P(ETDT)=0.034). A prevalent T-->A polymorphism, T284A, was found in the GALNT3 3'UTR. Analysis of the D2S2363 and the T284A GALNT3 transmission patterns did not show linkage to IDDM in Danish patients (P(ETDT)=0.15 and P(TDT)=0.76, respectively). In conclusion, IDDM7 (D2S152) links to IDDM in Danish patients, but D2S2363 and the identified T284A polymorphism in the GALNT3 3'UTR did not. Hence, it is unlikely that the GALNT3 is an IDDM susceptibility gene.

Adult↗

Detection of two novel large deletions in SLC3A1 by semi-quantitative fluorescent multiplex PCR.

Cystinuria is an autosomal recessive aminoaciduria in which two clinical types have been described (type I and non-type I). Cystinuria type I is caused by mutations in SLC3A1, a gene located in 2p16 coding for an amino acid transporter named rBAT. Using multiplex semi-quantitative fluorescent PCR, we amplified the ten exons of SLC3A1 together with exon 5 of DSCR1 (located on chromosome 21) as a double-dose control gene. We detected two large novel deletions in a Belgian family, one comprising exons 2-10 and another one at exon 10. The method described here can be used to detect a range of deletions from single-base differences in size to entire missing exons, making it useful for scanning genes with a small to medium number of exons.

Amino Acid Transport Systems, Basic↗

Penetrance of schizophrenia-related disorders in multiplex families after correction for ascertainment.

Penetrance of schizophrenia and related disorders was calculated in 27 multiplex pedigrees ascertained by a consistent set of screening and selection criteria. The rationale for the study was that single major locus linkage models are frequently used on a pragmatic basis to analyze data for schizophrenia which is most likely to have a polygenic mechanism. Penetrance estimates assuming Mendelian inheritance represent maximum values and thus can provide guidance for construction of appropriate linkage models. Four diagnostic models were considered: narrow (schizophrenia and chronic schizoaffective disorder), intermediate (including other non-affective psychoses), broad (including schizotypal and paranoid personality disorders), and broad + suspected (including suspected schizophrenia spectrum disorders). Penetrance was calculated in the youngest affected adult sibship, under both dominant and recessive inheritance assumptions, either without correction, or with a correction that excluded individuals necessary to meet pedigree selection criteria. Without correction, penetrance values ranged from 0.70 to 0.90 assuming dominant and 1.0 to > 1.0 assuming recessive inheritance. After correction, the ranges were 0.30-0.51 for dominant and 0.47-0.59 for recessive models. The corrected values are likely to be overestimates given that the penetrance of any one locus in a multilocus model must be lower. It is suggested that lod score analyses of schizophrenia should attempt to derive information primarily from affected diagnoses, because information derived from unaffecteds under high penetrance models is likely to be spurious.

Adult↗

Rapid sexing of murine preimplantation embryos using a nested, multiplex polymerase chain reaction (PCR).

The objective of this study was to develop a rapid and efficient means of sexing murine preimplantation embryos at the 4- to 8-cell stage of development. To achieve this goal, a nested, multiplex polymerase chain reaction (PCR) was optimized using DNA from male and female mice and primers specific for X- (DXNds3)- and Y- (Sry,Zfy) gene sequences. Sensitivity of the assay was measured using groups of 4, 2, or 1 blastomere from dissociated embryos. Efficiency was evaluated using single blastomeres obtained by embryo biopsy. Accuracy of sexing was determined by comparing single-cell results with those of matched blastocysts. Robust amplification of male (XY) and female (XX) gene sequences was obtained in less than 6 hours. The percentage of male (3 bands) and female (1 band) reactions for groups of 4, 2, or 1 blastomere was 100% (6/6), 100% (15/15), and 94.4% (17/18), respectively. Assay efficiency for single, biopsied blastomeres from 4 to 8 cell embryos was 95.8% (207/216). For male and female embryos, sexing of single blastomeres accurately predicted results of matched blastocysts, 100% (10/10) and 100% (13/13), respectively. Simultaneous amplification of one X- and two Y-gene sequences ensured correct interpretation of sexing reactions. Short thermal cycling times and minimal tube handling increased the assay speed and decreased the potential risk of contamination.

Animals↗

Active microeletronic chip devices which utilize controlled electrophoretic fields for multiplex DNA hybridization and other genomic applications.

Microelectronic DNA chip devices that contain planar arrays of microelectrodes have been developed for multiplex DNA hybridization and a variety of genomic research and DNA diagnostic applications. These devices are able to produce almost any desired electric field configuration on their surface. This ability to produce well-defined electric fields allows charged molecules (DNA, RNA, proteins, enzymes, antibodies, nanobeads, and even micron scale semiconductor devices) to be electrophoretically transported to or from any microlocation on the planar surface of the device. Of key importance to the device function is the permeation layer which overcoats the microelectrodes. The permeation layer is generally a porous hydrogel material that allows water molecules and small ions (Na+, CI-, etc.) to freely contact the microelectrode surface, but impedes the transport of the larger analytes (oligonucleotides, DNA, RNA, proteins, etc.). The permeation layer prevents the destruction of DNA at the active microelectrode surface, ameliorates the adverse effects of electrolysis products on the sensitive hybridization reactions, and serves as a porous support structure for attaching DNA probes and other molecules to the array. In order to maintain rapid transport of DNA molecules, facilitate hybridization, and work within constrained current and voltage ranges, low conductance buffers and various electronic pulsing scenarios have also been developed. These active microelectronic array devices allow electrophoretic fields to be used to carry out accelerated DNA hybridization reactions and to improve selectivity for single nucleotide polymorphism (SNP), short tandem repeat (STR), and point mutation analysis.

Animals↗

Fibromatosis hyalinica multiplex (juvenile hyalin fibromatosis). Light microscopic, electron microscopic, immunohistochemical, and biochemical findings.

Fibromatosis hyalinica multiplex juvenilis (juvenile hyalin fibromatosis) is a very rare mesenchymal dysplasia, probably inherited as an autosomal-recessive trait. Two nonrelated cases are reported. Among the clinical features, the most impressive lesions are multiple slowly growing subcutaneous nodules, hypertrophic gingiva, flexural contractures with joint stiffness and radiolucent bone destructions. Light microscopic examination of the nodules reveals tumor-like deposits of an amorphous hyaline ground substance with delicate staining properties situated partly between cellular and vascular areas. Ultrastructural characteristics are cystic, dilated rough endoplasmatic reticulum and cystic Golgi vesicles which contain a fine fibrillar material that is also found in the ground substance. Immunohistochemical examination shows collagen type I and type III in the hyaline material, but not type II and type IV. Quantitative biochemical investigation reveals a normal ratio of collagen types I and III.

Adolescent↗

Multiplexed fluorescent bead-based immunoassays for quantitation of human cytokines in serum and culture supernatants.

BACKGROUND: An increasing volume of data suggests a relationship between cytokine levels in human body fluids and disease pathogenesis. Traditionally, many individual assays would be performed to measure the large number of known cytokines and determine their associations with disease. A new technique for the simultaneous measurement of multiple cytokines in cell culture supernatants by fluorescent microsphere-based flow cytometry was adapted to human sera. METHODS: Multiplexed sandwich immunoassays for eight cytokines were developed by coupling cytokine-specific capture antibodies to beads with different emission spectra. The binding of biotinylated detection antibodies bound with a streptavidin-conjugated fluorochrome was analyzed. Recovery of "spiked" cytokines, sensitivity, and variability of the assays were evaluated. In addition, the results of the bead assays were compared with the results of commercial enzyme-linked immunosorbent assays (ELISAs) that used the same antibody pairs. RESULTS: Correlations of the bead assays and the ELISAs were 0.974 (n = 18) for supernatant samples and 0.859 (n = 28) for serum samples. High, false-positive values observed with some sera, assumed to be produced by heterophilic antibodies, were reduced by preincubation with a cocktail of animal sera. CONCLUSIONS: Fluorescent bead-based immunoassays can be used to quantitate multiple cytokines in human sera and contribute to an understanding of the role of cytokines in disease processes. This methodology is applicable to many combinations of purified analytes and high-affinity antibodies. Published 2001 Wiley-Liss, Inc.

Animals↗

A rapid fluorescence based multiplex polymerase chain reaction--single-strand conformation polymorphism method for p53 mutation detection.

We have developed a fast single-strand conformation polymorphism (SSCP) technique to screen for mutations and polymorphisms in exons 5-8 of the human tumor suppressor gene p53. We use multiplex polymerase chain reaction (PCR) to amplify the four exons in one single PCR reaction and then fluorescent SSCP for screening. p53 fragments are labeled with three different colors and a fourth color is used for an internal size marker calibrating the gel. The method was evaluated in two ways: (i) 16 different cell lines with known mutations were tested blindly for band-shifts with SSCP, and (ii) 32 human urinary bladder cancer samples were screened for mutations using the present technique. After screening for mutations all exons from all samples were sequenced, both sense as well as antisense strands. Evaluating the method with four different gels shows that 21/23 mutations and polymorphism were detected in the cell lines and that 10/10 mutations and polymorphisms were detected in the patient samples. Sensitivity, specificity, positive and negative predictive values were 91/100%, 88/ 97%. 78/77% and 96/100% for cell lines / patient samples, respectively. Sensitivity, using one SSCP gel only, was 87% (20/23) for cell lines and 90% (9/10) for patient samples. We conclude that our modified SSCP technique is efficient and has a sensitivity close to 100% in detecting mutations.

DNA Mutational Analysis↗

Multiplex amplified product-length polymorphism analysis for rapid detection of human mitochondrial DNA variations.

A number of mutations in coding and noncoding regions of mitochondrial DNA (mtDNA) have previously been studied. In the present study, we simultaneously typed six mutation sites in the coding region by use of amplified product-length polymorphism (APLP) analysis. The mtDNA variations of 2471 individuals from 20 populations of Japanese, Korean, Chinese, and German were examined and classified into 18 haplotypes. Two of these haplotypes, B1 (estimated ancestral haplotype) and C1, were distributed among all populations tested. However, the haplotypes A1, A2, B2, B3, and C2 were mostly restricted to the Mongoloid populations, whereas haplotypes B5 and C5 appeared almost exclusively in the German population. Phylogenetic analysis by the neighbor-joining method revealed that the Japanese populations were more closely related to each other than to the other East Asian populations surveyed. The multiplex APLP method is suitable for large-scale screening studies of mtDNA variability because it is both rapid and economical.

DNA, Mitochondrial↗