<div><p>A critical step in biochip design is the selection of probes with identical hybridisation characteristics. In this article we describe a novel method for evaluating DNA hybridisation probes, allowing the fine-tuning of biochips, that uses cassettes with multiple probes. Each cassette contains probes in equimolar proportions so that their hybridisation performance can be assessed in a single reaction. The model used to demonstrate this method was a series of probes developed to detect TORCH pathogens. DNA probes were designed for <i>Toxoplasma gondii, Chlamidia trachomatis, Rubella, Cytomegalovirus</i>, and <i>Herpes virus</i> and these were used to construct the DNA cassettes. Five cassettes were constructed to detect TORCH pathogen...
Oigonucleotide microarrays (DNA chips) are very efficient tools to analyze genotypes of patients or ...
Most current microarray oligonucleotide probe design strategies are based on probe design factors (P...
The invention of microarray technology has empowered scientists to quickly transition from single ge...
A critical step in biochip design is the selection of probes with identical hybridisation characteri...
<p>The arrangement of the probes on the biochips (panels A, B, C, and D) was as follows: a1, a2 – CT...
DNA microarrays represent a powerful technology whose use has been hampered by the uncertainty of wh...
DNA microarrays are a valuable tool for massively parallel DNA-DNA hybridization experiments. Curren...
Abstract: DNA mutation is the major cause of gene evolution. The variation of DNA sequence may resul...
DNA microarrays are a valuable tool for massively parallel DNA-DNA hybridization experiments. Curren...
[[abstract]]Background: Nucleic acid hybridization, a fundamental technique in molecular biology, ca...
DNA can execute programmed strand exchange reactions that process signals and information. In partic...
A novel assay for surface DNA hybridization, which is free of sample and probe labeling, convenient ...
Non-radioactive hybridization probes were prepared using the M13 phage vector and the universal sequ...
DNA probe arrays, or DNA chips, have emerged as a core genomic technology that enables cost-effectiv...
Purpose: Molecular genotyping relies on the identification of specific microbial DNA sequences. Accu...
Oigonucleotide microarrays (DNA chips) are very efficient tools to analyze genotypes of patients or ...
Most current microarray oligonucleotide probe design strategies are based on probe design factors (P...
The invention of microarray technology has empowered scientists to quickly transition from single ge...
A critical step in biochip design is the selection of probes with identical hybridisation characteri...
<p>The arrangement of the probes on the biochips (panels A, B, C, and D) was as follows: a1, a2 – CT...
DNA microarrays represent a powerful technology whose use has been hampered by the uncertainty of wh...
DNA microarrays are a valuable tool for massively parallel DNA-DNA hybridization experiments. Curren...
Abstract: DNA mutation is the major cause of gene evolution. The variation of DNA sequence may resul...
DNA microarrays are a valuable tool for massively parallel DNA-DNA hybridization experiments. Curren...
[[abstract]]Background: Nucleic acid hybridization, a fundamental technique in molecular biology, ca...
DNA can execute programmed strand exchange reactions that process signals and information. In partic...
A novel assay for surface DNA hybridization, which is free of sample and probe labeling, convenient ...
Non-radioactive hybridization probes were prepared using the M13 phage vector and the universal sequ...
DNA probe arrays, or DNA chips, have emerged as a core genomic technology that enables cost-effectiv...
Purpose: Molecular genotyping relies on the identification of specific microbial DNA sequences. Accu...
Oigonucleotide microarrays (DNA chips) are very efficient tools to analyze genotypes of patients or ...
Most current microarray oligonucleotide probe design strategies are based on probe design factors (P...
The invention of microarray technology has empowered scientists to quickly transition from single ge...