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1 is generated by polymerase chain reaction or rolling circle amplification.
2 ay multi-arrayed fiberoptics conjugated with rolling circle amplification.
3 hich are assembled in yeast and amplified by rolling circle amplification.
4 s of a DNA assay based on padlock probes and rolling circle amplification.
5 ke DNA nanoparticles that are synthesized by rolling circle amplification.
6 n of target of any sequence by incorporating rolling circle amplification.
7 g elements (DNA hairpins) were introduced by rolling circle amplification.
8 on to generate genomic sequences amenable to rolling circle amplification.
9 fidelity DNA ligation step with the power of rolling circle amplification.
10 ozen of them were experimentally verified by rolling-circle amplification.
11 ion, glycan recognition, proximity ligation, rolling circle amplification and a guideline for image a
12 via padlock probe recognition and isothermal rolling circle amplification and benchmark against a com
13 tal timing of an STR expansion gene, we used rolling circle amplification and CRISPR/Cas9-mediated ge
14                                              Rolling circle amplification and gradient centrifugation
15 ion of padlock probes on mRNAs, coupled with rolling circle amplification and hybridization-based in
16 ation of two new amplification technologies (rolling circle amplification and Invader), a significant
17  eccDNAs based on the strategy that combined rolling circle amplification and nanopore long-reads seq
18 be mediated by alternative processes such as rolling circle amplification and/or homologous recombina
19  and one-pot isothermal assay that leverages rolling-circle amplification and the endonuclease Cas12a
20 ys (by strand displacement amplification and rolling circle amplification), and description of two ne
21  Additionally, expanded repeats generated by rolling circle amplification can be produced in vectors
22     The combination of suspension array with rolling circle amplification can lead to a sensitive and
23 workflow using synthetic DNA minicircles and rolling circle amplification enables comparable biocatal
24 quencing full-length circRNA isoforms, using rolling circle amplification followed by nanopore long-r
25 present a software suite, Construction-based Rolling-circle-amplification for eccDNA Sequence Identif
26 ration sequencing (NGS) of DNAs amplified by rolling circle amplification from 6 tomato (Solanum lyco
27 ing (ISS) method based on padlock probes and rolling circle amplification has been used to spatially
28                                              Rolling circle amplification has been useful for detecti
29 be is served as a template for hyperbranched rolling circle amplification (HRCA) by utilizing Bst DNA
30 ion nicking reactions mediated hyperbranched rolling circle amplification (HRCA).
31  we demonstrate for the first time an immuno-rolling circle amplification (immuno-RCA) assay for the
32 nzymes and exonucleases, we demonstrate that rolling circle amplification in situ can detect gene cop
33                            Cassini leverages rolling circle amplification, known for its robust ampli
34 subjected to massive signal amplification by rolling circle amplification, leading to a sensor system
35 ure in these samples, we used a novel linear rolling-circle amplification method to amplify episomal
36 ation, recombinase polymerase amplification, rolling circle amplification, nucleic acid sequence-base
37 we developed a new method, overlap extension rolling circle amplification (OERCA), for the highly par
38  involves a single PCR-type reaction for the rolling circle amplification of a circular DNA template
39 n RNA triggers in situ ligation, followed by rolling circle amplification of a complementary DNA, whi
40                                           As rolling circle amplification of padlock probes can be us
41 using exhaustive in silico enzyme screening, rolling circle amplification of plasmid DNA, capillary e
42 viral RNA via additional ambient-temperature rolling circle amplification of the expression cassette.
43 nd ligation of gene-specific padlock probes, rolling circle amplification of the probes yielding barc
44  localized Anaplasma gene sequences by using rolling-circle amplification of circularizable, linear,
45                                   Here using rolling-circle amplification of gene-specific circulariz
46 age activity of Cas12a to enable exponential rolling-circle amplification of target sequences and its
47 mples and five cervical cancer tissues using rolling-circle amplification of total cell DNA and deep
48 d in replicate experiment sets by two-color, rolling circle amplification on microarrays containing 9
49 es of eccDNA contained within the debranched rolling-circle amplification product and map the consens
50 on of peptide nucleic acid (PNA) technology, rolling circle amplification (RCA) and DNAzymes.
51                         Quantitative (q)PCR, rolling circle amplification (RCA) and droplet digital (
52  optical diffraction biosensor that utilizes rolling circle amplification (RCA) and magnetic microbea
53 for quantitating dNTPs by the combination of rolling circle amplification (RCA) and quantitative poly
54  we present a dNTP assay based on isothermal rolling circle amplification (RCA) and rapid time-gated
55 optimized for both high- and low-temperature rolling circle amplification (RCA) and strand displaceme
56 Applications of conventional linear ligation-rolling circle amplification (RCA) are restricted by the
57 ions of the single-mtDNA using a multiplexed rolling circle amplification (RCA) assay.
58 nation of a (1) padlock probe (PLP)-mediated rolling circle amplification (RCA) bioassay and an (2) a
59                 Padlock probe ligation-based rolling circle amplification (RCA) can distinguish singl
60                                              Rolling circle amplification (RCA) combined with padlock
61   To facilitate the development of real-time rolling circle amplification (RCA) for protein targets,
62 table ligation for allele discrimination and rolling circle amplification (RCA) for signal enhancemen
63                                              Rolling circle amplification (RCA) generates a localized
64         In order to reduce sequencing error, Rolling Circle Amplification (RCA) has been used to impr
65                         This method utilizes rolling circle amplification (RCA) in conjunction with a
66                                              Rolling circle amplification (RCA) is a leading nucleic
67                                              Rolling circle amplification (RCA) is a molecular amplif
68                                              Rolling circle amplification (RCA) is a powerful tool fo
69                                              Rolling circle amplification (RCA) is a surface-anchored
70                                              Rolling circle amplification (RCA) is an isothermal enzy
71                                              Rolling circle amplification (RCA) is frequently applied
72 nsitive detection of DNA using the dendritic rolling circle amplification (RCA) is introduced.
73                                   Isothermal rolling circle amplification (RCA) is used to detect nuc
74 rface-invasive cleavage reaction followed by rolling circle amplification (RCA) labeling of the cleav
75 age genomes and recently has been applied as rolling circle amplification (RCA) of specific target se
76 rface-invasive cleavage reaction followed by rolling circle amplification (RCA) of the cleavage produ
77                  Ebola cDNA was amplified by rolling circle amplification (RCA) on magnetic particles
78 by either polymerase chain reaction (PCR) or rolling circle amplification (RCA) processes, taking adv
79                               In this paper, rolling circle amplification (RCA) products are detected
80         Here, we developed and evaluated the rolling circle amplification (RCA) products that are bas
81  of an externally supplied ssDNA circle in a rolling circle amplification (RCA) reaction.
82             We describe an adaptation of the rolling circle amplification (RCA) reporter system for t
83 sign of the demonstrated assay consists of a rolling circle amplification (RCA) technique, responsibl
84 mediated isothermal amplification (LAMP) and Rolling Circle Amplification (RCA) techniques for c-MYC
85 ll sorting (FACS) to isolate the organelles, rolling circle amplification (RCA) to amplify the genome
86                        The biosensor deploys rolling circle amplification (RCA) to generate repetitiv
87 rming large defined silver nanostructures by rolling circle amplification (RCA) using boranephosphona
88                              In this system, Rolling Circle Amplification (RCA) was used as a signal
89 tforward assay that combined the stand-alone rolling circle amplification (RCA) with capillary electr
90                                              Rolling circle amplification (RCA), an isothermal amplif
91 s have many applications, such as templating rolling circle amplification (RCA), capturing microRNAs,
92             NESA mediated techniques such as rolling circle amplification (RCA), strand displacement
93 of DNA nanotubes with a backbone produced by rolling circle amplification (RCA), which results in inc
94      Here, we demonstrate the combination of rolling circle amplification (RCA)-based nucleic acid am
95 uble-stranded barcoding error correction and rolling circle amplification (RCA)-based target enrichme
96              In this work, we demonstrated a rolling circle amplification (RCA)-coupled resistive pul
97                    Here, we present Nanopore Rolling Circle Amplification (RCA)-enhanced Consensus Se
98 than one round of padlock probe ligation and rolling circle amplification (RCA).
99 ibodies enhanced signals can be obtained via rolling circle amplification (RCA).
100 ed upon a padlock probe ligation followed by rolling circle amplification (RCA).
101 P binding sites, with proximity ligation and rolling circle amplification (RCA).
102 genomes of PyVs are readily detectable using rolling circle amplification (RCA).
103 dimerized repeat tract formed substrates for rolling circle amplification (RCA).
104 lecule, can be replicated successfully using Rolling Circle Amplification (RCA).
105 lymerase chain reaction (PCR) and isothermal rolling circle amplification (RCA).
106 ntrol and amplification technologies such as rolling circle amplification (RCA).
107                                              Rolling-circle amplification (RCA) and ramification ampl
108                                              Rolling-circle amplification (RCA) driven by DNA polymer
109                   We describe conditions for rolling-circle amplification (RCA) of individual DNA mol
110                          The method includes rolling-circle amplification (RCA) of repeats in vitro a
111                            We have performed rolling-circle amplification (RCA) reactions on three DN
112           We describe coupling of isothermal rolling-circle amplification (RCA) to universal antibodi
113 t-specific oligonucleotide sequence within a rolling-circle amplification (RCA).
114 ong-chain single-stranded DNA synthesized by rolling-circle amplification (RCA).
115  in comparison to in vitro replication using rolling-circle amplification (RCA).
116 ed off-chip by padlock probe recognition and rolling circle amplification show a different dynamics a
117 ependent enzymatic synthesis, microarray and rolling circle amplification techniques.
118                When combined with isothermal rolling circle amplification technologies, FokI-assisted
119 plification method, based on three rounds of rolling-circle amplification, that produces nanomole amo
120         We describe a simple method of using rolling circle amplification to amplify vector DNA such
121 of 97.9% using our nanopore sequencing-based Rolling Circle Amplification to Concatemeric Consensus (
122  locked-nucleic acid probes is combined with rolling circle amplification to detect the presence and
123 avage events is constructed and subjected to rolling circle amplification to generate concatemers.
124                                      We used rolling circle amplification to increase the number of c
125 cular HBV genome structure, using isothermal rolling-circle amplification to enrich HBV DNA, generati
126 re first circularized and then amplified via rolling-circle amplification to produce long stretches o
127  We used a novel amplification assay (linear rolling-circle amplification) to show that the majority
128  A new colorimetric method for monitoring of rolling circle amplification was developed.
129                     Sequence-specific linear rolling-circle amplification was utilized to isolate clo
130 s synthesized from a microfluidic surface by rolling circle amplification where critical parameters,
131 A-RCA (Restriction and Circularization-Aided Rolling Circle Amplification), which retains the allelic
132                                   It employs rolling circle amplification, which enriches the full-le
133            The sequence is amplified through rolling circle amplification with 29 DNA polymerase and
134                           Here, we integrate rolling circle amplification with expansion microscopy (
135  a new metagenomics-based approach involving rolling circle amplification with random PCR amplificati
136 gth eccDNA sequencing technique by combining rolling-circle amplification with Nanopore sequencing.

 
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