Molecular beacon (MB) probes are dual-labeled hairpin-shaped oligodeoxyribonucleotides that are extensively used for real-time detection of specific RNA/DNA analytes. In the MB probe, the loop fragment is complementary to the analyte: therefore, a unique probe is required for the analysis of each new analyte sequence. The conjugation of an oligonucleotide with two dyes and subsequent purification procedures add to the cost of MB probes, thus reducing their application in multiplex formats. Here we demonstrate how one MB probe can be used for the analysis of an arbitrary nucleic acid. The approach takes advantage of two oligonucleotide adaptor strands, each of which contains a fragment complementary to the analyte and a fragment complementar...
Hybridization-based techniques have been extensively employed for the analysis of specific DNA/RNA s...
The specificity of hybridization of complementary sequences in DNA is the basic strategy for identif...
The ability to observe the dynamic of RNA in single living cells offers many exciting opportunities ...
Molecular beacon (MB) probes are dual-labeled hairpin-shaped oligodeoxyribonucleotides that are exte...
Molecular beacon (MB) probes are dual-labeled hairpin-shaped oligodeoxyribonucleotides that are exte...
Hybridization probes are often inefficient in the analysis of single-stranded DNA or RNA that are fo...
Hybridization probes are often inefficient in the analysis of single-stranded DNA or RNA that are fo...
Molecular beacons (MBs) are hairpin-like ¯uores-cent DNA probes that have single-mismatch detec-tion...
Molecular beacons (MBs) are a novel class of nucleic acid probes that become fluorescent when bound ...
<div><p>Molecular Beacon (MB) probes have been extensively used for nucleic acid analysis because of...
We demonstrate that single-nucleotide differences in a DNA sequence can be detected in homogeneous a...
Molecular Beacon (MB) probes have been extensively used for nucleic acid analysis because of their a...
[[abstract]]We have developed a universal molecular beacon (T7-MB-T7) for the detection of single-nu...
[[abstract]]We present a simple and novel assay—employing a universal molecular beacon (MB) in the p...
[[abstract]]We present a simple and novel assay—employing a universal molecular beacon (MB) in the p...
Hybridization-based techniques have been extensively employed for the analysis of specific DNA/RNA s...
The specificity of hybridization of complementary sequences in DNA is the basic strategy for identif...
The ability to observe the dynamic of RNA in single living cells offers many exciting opportunities ...
Molecular beacon (MB) probes are dual-labeled hairpin-shaped oligodeoxyribonucleotides that are exte...
Molecular beacon (MB) probes are dual-labeled hairpin-shaped oligodeoxyribonucleotides that are exte...
Hybridization probes are often inefficient in the analysis of single-stranded DNA or RNA that are fo...
Hybridization probes are often inefficient in the analysis of single-stranded DNA or RNA that are fo...
Molecular beacons (MBs) are hairpin-like ¯uores-cent DNA probes that have single-mismatch detec-tion...
Molecular beacons (MBs) are a novel class of nucleic acid probes that become fluorescent when bound ...
<div><p>Molecular Beacon (MB) probes have been extensively used for nucleic acid analysis because of...
We demonstrate that single-nucleotide differences in a DNA sequence can be detected in homogeneous a...
Molecular Beacon (MB) probes have been extensively used for nucleic acid analysis because of their a...
[[abstract]]We have developed a universal molecular beacon (T7-MB-T7) for the detection of single-nu...
[[abstract]]We present a simple and novel assay—employing a universal molecular beacon (MB) in the p...
[[abstract]]We present a simple and novel assay—employing a universal molecular beacon (MB) in the p...
Hybridization-based techniques have been extensively employed for the analysis of specific DNA/RNA s...
The specificity of hybridization of complementary sequences in DNA is the basic strategy for identif...
The ability to observe the dynamic of RNA in single living cells offers many exciting opportunities ...