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1.
Front Bioeng Biotechnol ; 8: 604793, 2020.
Article in English | MEDLINE | ID: mdl-33251206

ABSTRACT

The newly identified coronavirus, severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), causes coronavirus disease 2019 (COVID-19) and has affected over 25 million people worldwide as of August 31, 2020. To aid in the development of diagnostic kits for rapid and sensitive detection of the virus, we evaluated a combination of polymerase chain reaction (PCR) and isothermal nucleic acid amplification techniques. Here, we compared conventional PCR and loop-mediated isothermal amplification (LAMP) methods with hybrid techniques such as polymerase chain displacement reaction (PCDR) and a newly developed PCR-LAMP method. We found that the hybrid methods demonstrated higher sensitivity and assay reaction rates than those of the classic LAMP and PCR techniques and can be used to for SARS-CoV-2 detection. The proposed methods based on the modern hybrid amplification techniques markedly improve virus detection and, therefore, can be extremely useful in the development of new diagnostic kits.

2.
PLoS One ; 14(4): e0210374, 2019.
Article in English | MEDLINE | ID: mdl-30933980

ABSTRACT

Fragmentation of DNA is the very important first step in preparing nucleic acids for next-generation sequencing. Here we report a novel Fragmentation Through Polymerization (FTP) technique, which is a simple, robust, and low-cost enzymatic method of fragmentation. This method generates double-stranded DNA fragments that are suitable for direct use in NGS library construction and allows the elimination of the additional step of reparation of DNA ends.


Subject(s)
DNA Fragmentation , DNA/chemistry , High-Throughput Nucleotide Sequencing/methods , Polymerization , Sequence Analysis, DNA/methods , Computational Biology , DNA/genetics , Deoxyribonuclease I/chemistry , Gene Library
3.
PLoS One ; 12(9): e0184507, 2017.
Article in English | MEDLINE | ID: mdl-28892497

ABSTRACT

Whole-genome amplification (WGA) techniques are used for non-specific amplification of low-copy number DNA, and especially for single-cell genome and transcriptome amplification. There are a number of WGA methods that have been developed over the years. One example is degenerate oligonucleotide-primed PCR (DOP-PCR), which is a very simple, fast and inexpensive WGA technique. Although DOP-PCR has been regarded as one of the pioneering methods for WGA, it only provides low genome coverage and a high allele dropout rate when compared to more modern techniques. Here we describe an improved DOP-PCR (iDOP-PCR). We have modified the classic DOP-PCR by using a new thermostable DNA polymerase (SD polymerase) with a strong strand-displacement activity and by adjustments in primers design. We compared iDOP-PCR, classic DOP-PCR and the well-established PicoPlex technique for whole genome amplification of both high- and low-copy number human genomic DNA. The amplified DNA libraries were evaluated by analysis of short tandem repeat genotypes and NGS data. In summary, iDOP-PCR provided a better quality of the amplified DNA libraries compared to the other WGA methods tested, especially when low amounts of genomic DNA were used as an input material.


Subject(s)
DNA Primers , Gene Dosage , Genome, Human , Genomics , Polymerase Chain Reaction/methods , DNA Copy Number Variations , Gene Library , Genomics/methods , Genotype , High-Throughput Nucleotide Sequencing , Humans
4.
Biotechniques ; 57(2): 81-7, 2014 Aug.
Article in English | MEDLINE | ID: mdl-25109293

ABSTRACT

The sensitivity and robustness of various DNA detection and amplification techniques are to a large extent determined by the properties of the DNA polymerase used. We have compared the performance of conventional Taq and Bst DNA polymerases to a novel Taq DNA polymerase mutant (SD DNA polymerase), which has a strong strand displacement activity, in PCR (including amplification of GC-rich and complex secondary structure templates), long-range PCR (LR PCR), loop-mediated amplification (LAMP), and polymerase chain displacement reaction (PCDR). Our results demonstrate that the strand displacement activity of SD DNA polymerase, in combination with the robust polymerase activity, provides a notable improvement in the sensitivity and efficiency of all these methods.


Subject(s)
DNA/isolation & purification , Nucleic Acid Amplification Techniques/methods , Polymerase Chain Reaction/methods , Taq Polymerase/genetics , Animals , DNA/genetics , DNA Primers/genetics , Mice , Mycobacterium tuberculosis/genetics , Sensitivity and Specificity , Taq Polymerase/chemistry
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