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Kaitlyn Bacon

Showing results (1-10 of 10) with videos related to

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Methods in Molecular Biology (Clifton, N.J.)|February 14, 2022
Isolation of Single-Domain Antibodies to Transmembrane Proteins Using Magnetized Yeast Cell TargetsKaitlyn Bacon, Stefano Menegatti, Balaji M Rao
Methods in Molecular Biology (Clifton, N.J.)|April 28, 2022
Discovery of Cyclic Peptide Binders from Chemically Constrained Yeast Display LibrariesKaitlyn Bacon, Stefano Menegatti, Balaji M Rao
Methods in Molecular Biology (Clifton, N.J.)|October 19, 2019
Simultaneous Soluble Secretion and Surface Display of Proteins in Saccharomyces cerevisiae Using Inefficient Ribosomal SkippingCarlos A Cruz-Teran, Kaitlyn Bacon, Balaji M Rao
ACS Combinatorial Science|September 7, 2018
An Engineered Sso7d Variant Enables Efficient Magnetization of Yeast CellsCarlos A Cruz-Teran, Kaitlyn Bacon, Nikki McArthur, et al.
ACS Combinatorial Science|October 22, 2020
Use of Target-Displaying Magnetized Yeast in Screening mRNA-Display Peptide Libraries to Identify LigandsKaitlyn Bacon, John Bowen, Hannah Reese, et al.
Acta Biomaterialia|May 23, 2020
Past, Present, and Future of Affinity-based Cell Separation TechnologiesKaitlyn Bacon, Ashton Lavoie, Balaji M Rao, et al.
ACS Combinatorial Science|November 7, 2019
Screening Yeast Display Libraries against Magnetized Yeast Cell Targets Enables Efficient Isolation of Membrane Protein BindersKaitlyn Bacon, Matthew Burroughs, Abigail Blain, et al.
ACS Combinatorial Science|August 14, 2020
Isolation of Chemically Cyclized Peptide Binders Using Yeast Surface DisplayKaitlyn Bacon, Abigail Blain, Matthew Burroughs, et al.
International Journal of Molecular Sciences|February 10, 2021
Screening of Yeast Display Libraries of Enzymatically Treated Peptides to Discover Macrocyclic Peptide LigandsJohn Bowen, John Schneible, Kaitlyn Bacon, et al.
ACS Synthetic Biology|February 15, 2021
Quantitative Yeast-Yeast Two Hybrid for the Discovery and Binding Affinity Estimation of Protein-Protein InteractionsKaitlyn Bacon, Abigail Blain, John Bowen, et al.
Pageof 1

Showing results (1-10 of 10) with videos related to

Sort By:
Pageof 1
Methods in Molecular Biology (Clifton, N.J.)|February 14, 2022
Isolation of Single-Domain Antibodies to Transmembrane Proteins Using Magnetized Yeast Cell TargetsKaitlyn Bacon, Stefano Menegatti, Balaji M Rao
Methods in Molecular Biology (Clifton, N.J.)|April 28, 2022
Discovery of Cyclic Peptide Binders from Chemically Constrained Yeast Display LibrariesKaitlyn Bacon, Stefano Menegatti, Balaji M Rao
Methods in Molecular Biology (Clifton, N.J.)|October 19, 2019
Simultaneous Soluble Secretion and Surface Display of Proteins in Saccharomyces cerevisiae Using Inefficient Ribosomal SkippingCarlos A Cruz-Teran, Kaitlyn Bacon, Balaji M Rao
ACS Combinatorial Science|September 7, 2018
An Engineered Sso7d Variant Enables Efficient Magnetization of Yeast CellsCarlos A Cruz-Teran, Kaitlyn Bacon, Nikki McArthur, et al.
ACS Combinatorial Science|October 22, 2020
Use of Target-Displaying Magnetized Yeast in Screening mRNA-Display Peptide Libraries to Identify LigandsKaitlyn Bacon, John Bowen, Hannah Reese, et al.
Acta Biomaterialia|May 23, 2020
Past, Present, and Future of Affinity-based Cell Separation TechnologiesKaitlyn Bacon, Ashton Lavoie, Balaji M Rao, et al.
ACS Combinatorial Science|November 7, 2019
Screening Yeast Display Libraries against Magnetized Yeast Cell Targets Enables Efficient Isolation of Membrane Protein BindersKaitlyn Bacon, Matthew Burroughs, Abigail Blain, et al.
ACS Combinatorial Science|August 14, 2020
Isolation of Chemically Cyclized Peptide Binders Using Yeast Surface DisplayKaitlyn Bacon, Abigail Blain, Matthew Burroughs, et al.
International Journal of Molecular Sciences|February 10, 2021
Screening of Yeast Display Libraries of Enzymatically Treated Peptides to Discover Macrocyclic Peptide LigandsJohn Bowen, John Schneible, Kaitlyn Bacon, et al.
ACS Synthetic Biology|February 15, 2021
Quantitative Yeast-Yeast Two Hybrid for the Discovery and Binding Affinity Estimation of Protein-Protein InteractionsKaitlyn Bacon, Abigail Blain, John Bowen, et al.
Pageof 1