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Chemical Communications (Cambridge, England)
|
March 1, 2014
Simultaneous elimination of carryover contamination and detection of DNA with uracil-DNA-glycosylase-supplemented loop-mediated isothermal amplification (UDG-LAMP)
Kuangwen Hsieh, Peter L Mage, Andrew T Csordas, et al.
Accounts of Chemical Research
|
August 16, 2016
Advancements in Aptamer Discovery Technologies
Michael R Gotrik, Trevor A Feagin, Andrew T Csordas, et al.
ACS Nano
|
July 12, 2016
Rapid and Label-Free Strategy to Isolate Aptamers for Metal Ions
Hao Qu, Andrew T Csordas, Jinpeng Wang, et al.
Nature Materials
|
December 14, 2018
Shape-based separation of synthetic microparticles
Peter L Mage, Andrew T Csordas, Tyler Brown, et al.
Chemical Science
|
November 2, 2019
Seconds-resolved pharmacokinetic measurements of the chemotherapeutic irinotecan <i>in situ</i> in the living body
Andrea Idili, Netzahualcóyotl Arroyo-Currás, Kyle L Ploense, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
August 14, 2010
Quantitative selection of DNA aptamers through microfluidic selection and high-throughput sequencing
Minseon Cho, Yi Xiao, Jeff Nie, et al.
Analytical Chemistry
|
October 29, 2011
Measurement of aptamer-protein interactions with back-scattering interferometry
Ian R Olmsted, Yi Xiao, Minseon Cho, et al.
Analytical Chemistry
|
November 5, 2016
High-Throughput Discovery of Aptamers for Sandwich Assays
Andrew T Csordas, Anna Jørgensen, Jinpeng Wang, et al.
Analytical Chemistry
|
May 26, 2012
Selection strategy to generate aptamer pairs that bind to distinct sites on protein targets
Qiang Gong, Jinpeng Wang, Kareem M Ahmad, et al.
ACS Chemical Biology
|
September 19, 2019
Click-Particle Display for Base-Modified Aptamer Discovery
Chelsea K L Gordon, Diana Wu, Anusha Pusuluri, et al.
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of 2
Search research articles
Search
Showing results (1-10 of 13) with videos related to
Sort By:
Page
of 2
Chemical Communications (Cambridge, England)
|
March 1, 2014
Simultaneous elimination of carryover contamination and detection of DNA with uracil-DNA-glycosylase-supplemented loop-mediated isothermal amplification (UDG-LAMP)
Kuangwen Hsieh, Peter L Mage, Andrew T Csordas, et al.
Accounts of Chemical Research
|
August 16, 2016
Advancements in Aptamer Discovery Technologies
Michael R Gotrik, Trevor A Feagin, Andrew T Csordas, et al.
ACS Nano
|
July 12, 2016
Rapid and Label-Free Strategy to Isolate Aptamers for Metal Ions
Hao Qu, Andrew T Csordas, Jinpeng Wang, et al.
Nature Materials
|
December 14, 2018
Shape-based separation of synthetic microparticles
Peter L Mage, Andrew T Csordas, Tyler Brown, et al.
Chemical Science
|
November 2, 2019
Seconds-resolved pharmacokinetic measurements of the chemotherapeutic irinotecan <i>in situ</i> in the living body
Andrea Idili, Netzahualcóyotl Arroyo-Currás, Kyle L Ploense, et al.
Proceedings of the National Academy of Sciences of the United States of America
|
August 14, 2010
Quantitative selection of DNA aptamers through microfluidic selection and high-throughput sequencing
Minseon Cho, Yi Xiao, Jeff Nie, et al.
Analytical Chemistry
|
October 29, 2011
Measurement of aptamer-protein interactions with back-scattering interferometry
Ian R Olmsted, Yi Xiao, Minseon Cho, et al.
Analytical Chemistry
|
November 5, 2016
High-Throughput Discovery of Aptamers for Sandwich Assays
Andrew T Csordas, Anna Jørgensen, Jinpeng Wang, et al.
Analytical Chemistry
|
May 26, 2012
Selection strategy to generate aptamer pairs that bind to distinct sites on protein targets
Qiang Gong, Jinpeng Wang, Kareem M Ahmad, et al.
ACS Chemical Biology
|
September 19, 2019
Click-Particle Display for Base-Modified Aptamer Discovery
Chelsea K L Gordon, Diana Wu, Anusha Pusuluri, et al.
Page
of 2