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At least 703 records · Page 39Linked to original sources

Predicting splice variant from DNA chip expression data.

Alternative splicing of premessenger RNA is an important layer of regulation in eukaryotic gene expression. Splice variation of a large number of genes has been implicated in various cell growth and differentiation processes. To measure tissue-specific splicing of genes on a large scale, we collected gene expression data from 11 rat tissues using a high-density oligonucleotide array representing 1600 rat genes. Expression of each gene on the chip is measured by 20 pairs of independent oligonucleotide probes. Two algorithms have been developed to normalize and compare the chip hybridization signals among different tissues at individual oligonucleotide probe level. Oligonucleotide probes (the perfect match [PM] probe of each probe pair), detecting potential tissue-specific splice variants, were identified by the algorithms. The identified candidate splice variants have been compared to the alternatively spliced transcripts predicted by an EST clustering program. In addition, 50% of the top candidates predicted by the algorithms were confirmed by RT-PCR experiment. The study indicates that oligonucleotide probe-based DNA chip assays provide a powerful approach to detect splice variants at genome scale.

Algorithms↗

Genotyping on a thermal gradient DNA chip.

Silicon-based chips with discrete, independently temperature-controlled islands have been developed for use in DNA microarray hybridization studies. Each island, containing a heater made of a diffusion layer and a temperature sensor based on a p-n junction, is created on a silicon dioxide/nitride surface by anisotropic etching. Different reactive groups are subsequently added to the surface of the islands, and allele-specific oligonucleotide probes are attached to discrete spots on the chip. Hybridization is performed with Cy5-tagged single-stranded targets derived by PCR from genomic DNA. Results are assessed by measuring fluorescence of bound dye-tagged targets after hybridization and washing. Temperatures at each island can be set at different values to obtain optimal distinction between perfect matches and mismatches. This approach facilitates definition of optimal temperatures for probe/target annealing and for distinction between perfectly matched versus mismatched solution-phase targets. The thermal gradient DNA chips were then tested for genotyping, and the results for four different loci in two genes are presented. Unambiguous typing was achieved for clinically relevant loci within the factor VII and hemochromatosis genes.

Factor VII↗

Detecting Meiotic Crossing-Overs in Maize Using Chromatin Immunoprecipitation-Sequencing (ChIP-seq).

During meiosis, homologous chromosomes engage in reciprocal exchanges of segments in a process known as crossing over (CO). About 85% of CO events in maize are products of the class I pathway. Class I COs are interference-sensitive, meaning that the formation of one CO reduces the likelihood of another CO forming close by. This protocol describes a chromatin immunoprecipitation-sequencing (ChIP-seq)-based method for mapping meiotic COs in maize, using an antibody against MutL Homolog 3 (MLH3), a key component of the class I CO pathway. CO sites are determined by Illumina sequencing of DNA isolated from MLH3-associated chromatin fragments. Traditionally, COs have been identified through genetic mapping, which relies on the segregation of genetic markers in the progeny of hybrid plants. However, conventional genetic mapping provides limited resolution and requires large numbers of progeny individuals. The MLH3 ChIP-seq approach enables direct detection of COs, providing high-resolution and genome-wide coverage, including genome regions with low DNA sequence polymorphism, which are inaccessible to genetic CO mapping. Furthermore, MLH3 ChIP-seq enables screening of thousands of CO events, greatly accelerating the analysis and reducing its cost. This protocol can also be used to examine any chromatin-bound meiotic proteins and adapted to studying chromatin-associated proteins in somatic cells.

Journal Article↗

A programmable microsystem using system-on-chip for real-time biotelemetry.

A telemetry microsystem, including multiple sensors, integrated instrumentation and a wireless interface has been implemented. We have employed a methodology akin to that for System-on-Chip microelectronics to design an integrated circuit instrument containing several "intellectual property" blocks that will enable convenient reuse of modules in future projects. The present system was optimized for low-power and included mixed-signal sensor circuits, a programmable digital system, a feedback clock control loop and RF circuits integrated on a 5 mm x 5 mm silicon chip using a 0.6 microm, 3.3 V CMOS process. Undesirable signal coupling between circuit components has been investigated and current injection into sensitive instrumentation nodes was minimized by careful floor-planning. The chip, the sensors, a magnetic induction-based transmitter and two silver oxide cells were packaged into a 36 mm x 12 mm capsule format. A base station was built in order to retrieve the data from the microsystem in real-time. The base station was designed to be adaptive and timing tolerant since the microsystem design was simplified to reduce power consumption and size. The telemetry system was found to have a packet error rate of 10(-3) using an asynchronous simplex link. Trials in animal carcasses were carried out to show that the transmitter was as effective as a conventional RF device whilst consuming less power.

Computer Systems↗

Multiplexed analysis of polymorphisms in the HLA gene complex using bead array chips.

A novel custom bead array technology is introduced, and it is applied to multiplexed analysis of highly polymorphic human leukocyte antigen (HLA) genetic loci. Our technology combines the construction of probe libraries on color-encoded microparticles (beads) with semiconductor chip processing to produce custom-designed high-density bead array chips in large quantities. Using this novel assay format, two modes of parallel molecular typing of the HLA complex were implemented, namely direct hybridization, illustrated here for class II HLA-DR, and a novel format of on-chip polymerase-mediated primer elongation, illustrated here for class I HLA-A, HLA-B, and HLA-DR using patient and reference cell-line DNA samples. Hybridization-mediated multiplexed analysis of polymorphism method was validated with 142 samples, resulting in 100% concordance with sequence-specific oligonucleotide typing results and a concomitant average of 40% less allele ambiguity. In addition, elongation and hybridization reactions were combined to identify multiple polymorphisms on the same phase of DNA for allele identification.

HLA Antigens↗

Silicon chip with capacitors and transistors for interfacing organotypic brain slice of rat hippocampus.

Probing projections between brain areas and their modulation by synaptic potentiation requires dense arrays of contacts for noninvasive electrical stimulation and recording. Semiconductor technology is able to provide planar arrays with high spatial resolution to be used with planar neuronal structures such as organotypic brain slices. To address basic methodical issues we developed a silicon chip with simple arrays of insulated capacitors and field-effect transistors for stimulation of neuronal activity and recording of evoked field potentials. Brain slices from rat hippocampus were cultured on that substrate. We achieved local stimulation of the CA3 region by applying defined voltage pulses to the chip capacitors. Recording of resulting local field potentials in the CA1 region was accomplished with transistors. The relationship between stimulation and recording was rationalized by a sheet conductor model. By combining a row of capacitors with a row of transistors we determined a simple stimulus-response matrix from CA3 to CA1. Possible contributions of inhomogeneities of synaptic projection, of tissue structure and of neuroelectronic interfacing were considered. The study provides the basis for a development of semiconductor chips with high spatial resolution that are required for long-term studies of topographic mapping.

Animals↗

Augmentation of exposed implant threads with autogenous bone chips: prospective clinical study.

BACKGROUND: Autogenous bone chips can be harvested during drilling of implant sites and may be used as a graft material for bone augmentation and coverage of exposed implant threads. PURPOSE: The aim of this prospective study was to evaluate the possibility of augmenting exposed implant threads with autogenous bone chips. MATERIALS AND METHODS: Twenty-one consecutive patients treated with screw-shaped oral implants with exposed threads due to buccal fenestration or marginal defects were augmented with autogenous bone harvested with a bone trap during drilling of the implant site. Both marginal (9 sites) and fenestration defects (12 sites), with 4 to 14 exposed implant threads, were registered clinically and with photography. The number of exposed implant threads was measured before and at second-stage surgery 6 months after augmentation. RESULTS: Complete bone coverage of the exposed implant threads was seen in 12 of the 21 implant sites. Six sites showed one to two remaining exposed threads, two showed about 40% coverage, and one showed flattening of the defect but with eight of nine exposed threads at 6 months follow-up. The mean bone gain was 81% in patients with a marginal defect and 82% in patients with a fenestration defect. CONCLUSION: The results from this clinical study show that it is possible to gain bone over exposed implant threads by augmentation with autogenous bone chips.

Adolescent↗

Post operative performance of racing Standardbreds treated arthroscopically for carpal chip fractures: 176 cases (1986-1993).

A retrospective study of 176 Standardbred horses that had arthroscopic surgery for carpal chip fractures over a 7 year period was done in order to determine fracture location and post operative performance. Chip fractures of the proximal third carpal bone and the distal radiocarpal bone occurred with equal frequency (49.2 and 49.6% respectively), and chip fractures involving the antebrachiocarpal joint were rare. Trotters had significantly more third carpal bone lesions than radiocarpal bone lesions when compared to pacers (P = 0.0304). Seventy-four per cent of horses made at least one start following surgery. Pacers were significantly more likely to have at least one start after surgery than were trotters (P = 0.0009). Median earnings per start significantly decreased after surgery (P = 0.0081), while median race mark significantly increased after surgery (P = 0.0100). It is concluded that the majority of Standardbreds will be useful racehorses following carpal arthroscopy; however, most earn less money per start and many race at a lower class.

Animals↗

Biological degradation of resin acids in wood chips by wood-inhabiting fungi.

Resin acids in many pulp mill effluents are primary sources of toxicity to fish. Inconsistent biological detoxification of chlorinated and nonchlorinated resin acids in secondary treatment of pulp mill effluents is a continuing source of concern. An alternative approach to effluent detoxification is to remove or modify the toxic compounds present in wood chips prior to pulping. Results from experiments in which lodgepole pine sapwood chips were inoculated with several fungal candidates indicate that the total resin acid content can be reduced by up to 67% after fungal growth. Such a treatment could be an efficient and environmentally acceptable way for deresinating wood chips and so decreasing the toxicity of pulp mill effluents.

Biodegradation, Environmental↗

Potential public health importance of the oven ready chip.

BACKGROUND: Chip pan fires are responsible for 25% of fire related injury in the UK, despite government strategies to encourage safer frying. To establish the feasibility of promoting oven ready chips (fries), the residents in a materially deprived ward of London were surveyed. Sample frame: 1073 of 2145 households participating in a randomised controlled trial. RESULTS: Approximately half of those surveyed deep fry, mostly chips, fish, and meat. Ownership of ovens and microwaves was high (99% and 80% respectively). Reasons for deep frying included taste (50%), speed (32%), and tradition (25%). CONCLUSIONS: Improving the quality of oven baked alternatives may encourage consumers to change to safer and healthier cooking methods, with potentially important repercussions for public health.

Burns↗

Genetic screening with the DNA chip: a new Pandora's box?

The ethically controversial option of genetic population screening used to be restricted to a small number of rather rare diseases by methodological limitations which are now about to be overcome. With the new technology of DNA microarrays ("DNA chip"), emerging from the synthesis of microelectronics and molecular biology, methods are now at hand for the development of mass screening programmes for a wide spectrum of genetic traits. Thus, the DNA chip may be the key technology for a refined preventive medicine as well as a new dimension of eugenics. The forthcoming introduction of the DNA chip technology into medical practice urgently requires an internationally consistent framework of ethical standards and legal limitations if we do not want it to become a new Pandora's box.

Ethics, Medical↗

SPIKEII: an integrate-and-fire AVLSI chip.

We present the SPIKEII chip, an integrate-and-fire neural network chip with programmable synapses implemented in analogue VLSI. It is the successor to the SPIKEI chip. We describe the circuitry, and show some results using networks of integrate-and-fire neurons.

Action Potentials↗

Producing nature's gene-chips: the generation of peptides for display by MHC class I molecules.

Gene-chips contain thousands of nucleotide sequences that allow simultaneous analysis of the complex mixture of RNAs transcribed in cells. Like these gene-chips, major histocompatibility complex (MHC) class I molecules display a large array of peptides on the cell surface for probing by the CD8(+) T cell repertoire. The peptide mixture represents fragments of most, if not all, intracellular proteins. The antigen processing machinery accomplishes the daunting task of sampling these proteins and cleaving them into the precise set of peptides displayed by MHC I molecules. It has long been believed that antigenic peptides arose as by-products of normal protein turnover. Recent evidence, however, suggests that the primary source of peptides is newly synthesized proteins that arise from conventional as well as cryptic translational reading frames. It is increasingly clear that for many peptides the C-terminus is generated in the cytoplasm, and N-terminal trimming occurs in the endoplasmic reticulum in an MHC I-dependent manner. Nature's gene-chips are thus both parsimonious and elegant.

Aminopeptidases↗

Phase I study of cis-dichloro-trans-dihydroxy-bis(isopropylamine)platinum IV (CHIP).

Cis-dichloro-trans-dihydroxy-bis(isopropylamine)platinum IV (CHIP) is a second-generation cis-platinum (DDP) derivative with an octahedral conformation of the platinum complex, far more water-soluble than DDP. Tests in numerous murine tumor systems demonstrate a spectrum of activity similar to that of DDP. A phase I study of CHIP using 5 consecutive daily 1-hour infusions without pretreatment hydration or diuretics was completed at Hospital Paul-Brousse, Villejuif, France. 16 patients received a total of 28 courses of CHIP. In 11 of them hematologic toxicity could be assessed. The starting dose, 20 mg/m2/day X 5, was increased to 30, 45 and 50 mg/m2. There was neither renal nor neurotoxicity. Nausea and vomiting were constant but usually mild or moderate. No diarrhea was seen. Myelosuppression was dose-limiting with a mean polymorphonuclear cell (PMN) count nadir of 2.4 X 10(3)/mm3 (range 1 X 10(3)-3 X 10(3)/mm3) and a mean platelet count nadir of 110 X 10(3)/mm3 (range 60 X 10(3)-180 X 10(3)/mm3) at the recommended dosage of 45 mg/m2/day X 5. The drug should be given every 6 weeks because of the late platelet nadir. A total of 13 patients are evaluable for efficacy. One histologically documented complete response lasting more than 12 months was observed in a patient with an ovarian carcinoma.

Adult↗

Magnetically actuated micromixing on an array-pattern microfluidic chip for immunoassay of human thyrotropin.

A novel array-pattern ring microfluidic chip has been designed and fabricated with ITO glass, and a low-cost, easy-to-use active magnetic mixer is developed. The mixer consists of externally driven magnetic stir plates and ferromagnetic microneedles as active mobile stirrers in the microchannel. Mixing performance in the microfluidic chip has been experimentally characterized by chemiluminescence immunoassay of human thyrotropin (TSH) and compared with tube-based chemiluminescence immunoassay. The mixing method proposed in this study can be readily applied to integrated microfluidic systems, such as micro-total-analysis systems, lab-on-a-chip, and so on.

Equipment Design↗

High-throughput screening of novel peptide inhibitors of an integrin receptor from the hexapeptide library by using a protein microarray chip.

Protein microarray is an emerging technology that makes high-throughput analysis possible for protein-protein interactions and analysis of proteome and biomarkers in parallel. The authors investigated the application of a novel protein microarray chip, ProteoChip, in new drug discovery. Integrin alpha(v)beta(3) microarray immobilized on the ProteoChip was employed to screen new active peptides against the integrin from multiple hexapeptide sublibraries of a positional scanning synthetic peptide combinatorial library (PS-SPCL). The integrin alpha(v)beta(3)-vitronectin interaction was successfully demonstrated on the integrin microarray in a dose-dependent manner and was inhibited not only by the synthetic RGD peptide but also by various integrin antagonists on the integrin microarray chip. Novel peptide ligands with high affinity to the integrin were also identified from the peptide libraries with this chip-based screening system by a competitive inhibition assay in a simultaneous and high-throughput fashion. The authors have confirmed antiangiogenic functions of the novel peptides thus screened through an in vitro and in vivo angiogenesis assay. These results provide evidence that the ProteoChip is a promising tool for high-throughput screening of lead molecules in new drug development.

Cell Movement↗

The effects of bone chips dehydrated with solvent on healing bone defects.

The effect of bone chips dehydrated with solvent on the healing of bone defects was evaluated. Solvent-dehydrated spongiose bone chips were placed in experimentally formed cavities in the right back tibia of rabbits. After 10, 20 and 30 days, histopathological cross-sections from the bone grafts were examined microscopically for bone healing and formation of spongiose bone, cortex and bone marrow. Spongiose bone chips had a positive and accelerating influence on the healing of bone defects in the 10-day period after transplantation, but no significant differences were observed between the treated and control groups 20 and 30 days after transplantation.

Animals↗

Non-destructive on-chip cell sorting system with real-time microscopic image processing.

Studying cell functions for cellomics studies often requires the use of purified individual cells from mixtures of various kinds of cells. We have developed a new non-destructive on-chip cell sorting system for single cell based cultivation, by exploiting the advantage of microfluidics and electrostatic force. The system consists of the following two parts: a cell sorting chip made of poly-dimethylsiloxane (PDMS) on a 0.2-mm-thick glass slide, and an image analysis system with a phase-contrast/fluorescence microscope. The unique features of our system include (i) identification of a target from sample cells is achieved by comparison of the 0.2-microm-resolution phase-contrast and fluorescence images of cells in the microchannel every 1/30 s; (ii) non-destructive sorting of target cells in a laminar flow by application of electrostatic repulsion force for removing unrequited cells from the one laminar flow to the other; (iii) the use of agar gel for electrodes in order to minimize the effect on cells by electrochemical reactions of electrodes, and (iv) pre-filter, which was fabricated within the channel for removal of dust contained in a sample solution from tissue extracts. The sorting chip is capable of continuous operation and we have purified more than ten thousand cells for cultivation without damaging them. Our design has proved to be very efficient and suitable for the routine use in cell purification experiments.

Journal Article↗