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Methods in Molecular Biology (Clifton, N.J.)
|
May 19, 2021
Reduced Bisulfite Sequencing: Quantitative Base-Resolution Sequencing of 5-Formylcytosine
Michael J Booth, Shankar Balasubramanian
Chemical Communications (Cambridge, England)
|
April 19, 2023
Handcuffed antisense oligonucleotides for light-controlled cell-free expression
Denis Hartmann, Michael J Booth
Nature
|
August 27, 2024
Binning out-of-date chemicals? Somebody think about the carbon!
Michael J Booth, Andrea Sella
ACS Bio & Med Chem Au
|
February 24, 2025
Nucleic Acid Conjugates: Unlocking Therapeutic Potential
Disha Kashyap, Michael J Booth
Chemical Science
|
November 29, 2023
Sequence-independent, site-specific incorporation of chemical modifications to generate light-activated plasmids
Khoa Chung, Michael J Booth
Communications Chemistry
|
April 3, 2023
Accessible light-controlled knockdown of cell-free protein synthesis using phosphorothioate-caged antisense oligonucleotides
Denis Hartmann, Michael J Booth
ACS Nano
|
November 17, 2021
A Lipid-Based Droplet Processor for Parallel Chemical Signals
Idil Cazimoglu, Michael J Booth, Hagan Bayley
Journal of the American Chemical Society
|
April 19, 2023
Precise, Orthogonal Remote-Control of Cell-Free Systems Using Photocaged Nucleic Acids
Giacomo Mazzotti, Denis Hartmann, Michael J Booth
Chemical Reviews
|
August 6, 2014
Chemical methods for decoding cytosine modifications in DNA
Michael J Booth, Eun-Ang Raiber, Shankar Balasubramanian
Nature Chemical Biology
|
July 6, 2023
Engineering cellular communication between light-activated synthetic cells and bacteria
Jefferson M Smith, Denis Hartmann, Michael J Booth
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Search research articles
Search
Showing results (1-10 of 39) with videos related to
Sort By:
Page
of 4
Methods in Molecular Biology (Clifton, N.J.)
|
May 19, 2021
Reduced Bisulfite Sequencing: Quantitative Base-Resolution Sequencing of 5-Formylcytosine
Michael J Booth, Shankar Balasubramanian
Chemical Communications (Cambridge, England)
|
April 19, 2023
Handcuffed antisense oligonucleotides for light-controlled cell-free expression
Denis Hartmann, Michael J Booth
Nature
|
August 27, 2024
Binning out-of-date chemicals? Somebody think about the carbon!
Michael J Booth, Andrea Sella
ACS Bio & Med Chem Au
|
February 24, 2025
Nucleic Acid Conjugates: Unlocking Therapeutic Potential
Disha Kashyap, Michael J Booth
Chemical Science
|
November 29, 2023
Sequence-independent, site-specific incorporation of chemical modifications to generate light-activated plasmids
Khoa Chung, Michael J Booth
Communications Chemistry
|
April 3, 2023
Accessible light-controlled knockdown of cell-free protein synthesis using phosphorothioate-caged antisense oligonucleotides
Denis Hartmann, Michael J Booth
ACS Nano
|
November 17, 2021
A Lipid-Based Droplet Processor for Parallel Chemical Signals
Idil Cazimoglu, Michael J Booth, Hagan Bayley
Journal of the American Chemical Society
|
April 19, 2023
Precise, Orthogonal Remote-Control of Cell-Free Systems Using Photocaged Nucleic Acids
Giacomo Mazzotti, Denis Hartmann, Michael J Booth
Chemical Reviews
|
August 6, 2014
Chemical methods for decoding cytosine modifications in DNA
Michael J Booth, Eun-Ang Raiber, Shankar Balasubramanian
Nature Chemical Biology
|
July 6, 2023
Engineering cellular communication between light-activated synthetic cells and bacteria
Jefferson M Smith, Denis Hartmann, Michael J Booth
Page
of 4