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Rolling Circle Amplification on Biotin-Streptavidin Complexes Immobilized to Activated Cyclic Polyolefin Surfaces
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作者 Herin Oh Alec Cerchiari +2 位作者 Desirée Sorensen Timothy Mon Cassandra L.Smith 《Materials Sciences and Applications》 2013年第9期538-548,共11页
Cyclic polyolefin (COP) is an inexpensive hydrophobic material with low auto-fluorescence, high light transmittance and thermal stability, broad chemical resistance and no non-specific protein binding. Here, the hydro... Cyclic polyolefin (COP) is an inexpensive hydrophobic material with low auto-fluorescence, high light transmittance and thermal stability, broad chemical resistance and no non-specific protein binding. Here, the hydrophobic alkane COP was modified to have carbonyl functionalities through oxygen plasma and chemical etching treatments to increase usefulness for chemical and biochemical applications. Then, biotin-hydrazide was used to create biotinylated surfaces that bound streptavidin. A biotinylated target oligonucleotide was subsequently bound to the immobilized biotin-streptavidin and ligation mediated rolling circle amplification-based (L-RCA) SNP detection was demonstrated. 展开更多
关键词 Cyclic Polyolefin Ligation Mediated Rolling Circle Amplification SNP detection
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Shared-probe system:An accurate,low-cost and general enzyme-assisted DNA probe system for detection of genetic mutation
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作者 Lida Ren Zhihao Ming +5 位作者 Wei Zhang Yangwei Liao Xiaofeng Tang Bei Yan Huimin Lv Xianjin Xiao 《Chinese Chemical Letters》 SCIE CAS CSCD 2022年第6期3043-3048,共6页
Enzyme assisted DNA probes are powerful tools in molecular diagnostics for their simplicity,rapidity,and low detection limit.However,cost of probes,difficulty in optimization and disturbance of secondary structure hin... Enzyme assisted DNA probes are powerful tools in molecular diagnostics for their simplicity,rapidity,and low detection limit.However,cost of probes,difficulty in optimization and disturbance of secondary structure hindered the wider application of enzyme assisted DNA probes.To solve the problems,we designed a new system named shared-probe system.By introducing two unlabeled single stranded DNA named Sh1 and Sh2 as the bridge between probe and the substrate,the same sequence of dually labeled probe with stable performance was shared for different mutations,thus sparing the expense and time cost on designing,synthesizing and optimizing corresponding probes.Besides,the hybridization between Sh1 and the substrate could overcome secondary structures,which guaranteed the detection of different substrates.The performance and generality of the design were tested by low abundance detection in synthetic single DNA samples and the limit of detection was 0.05%for PTENR130 Q,EGFR-L858 R and 0.02%for BRCA1-NM007294.3.In genomic DNA samples,the limit of detection of 0.1%can be achieved for EGFR-L858 R,demonstrating the potential of clinical application in our design. 展开更多
关键词 Nucleic acid probe EndonucleaseⅣ Secondary structure Genomic mutation SNP detection
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High-performance single-chip exon capture allows accurate whole exome sequencing using the Illumina Genome Analyzer 被引量:3
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作者 JIANG Tao YANG Lei +2 位作者 JIANG Hui TIAN Geng ZHANG XiuQing 《Science China(Life Sciences)》 SCIE CAS 2011年第10期945-952,共8页
Here we present an adaptation of NimbleGen 2.1M-probe array sequence capture for whole exome sequencing using the Illumina Genome Analyzer (GA) platform.The protocol involves two-stage library construction.The specifi... Here we present an adaptation of NimbleGen 2.1M-probe array sequence capture for whole exome sequencing using the Illumina Genome Analyzer (GA) platform.The protocol involves two-stage library construction.The specificity of exome enrichment was approximately 80% with 95.6% even coverage of the 34 Mb target region at an average sequencing depth of 33-fold.Comparison of our results with whole genome shot-gun resequencing results showed that the exome SNP calls gave only 0.97% false positive and 6.27% false negative variants.Our protocol is also well suited for use with whole genome amplified DNA.The results presented here indicate that there is a promising future for large-scale population genomics and medical studies using a whole exome sequencing approach. 展开更多
关键词 whole exome sequencing exon capture SNP detection indel detection high-throughput resequencing
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