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Regina M Murphy

Showing results (41-50 of 52) with videos related to

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Protein Engineering, Design & Selection : PEDS|June 7, 2012
Identification of beta-amyloid-binding sites on transthyretinJiali Du, Patricia Y Cho, Dennis T Yang, et al.
ACS Chemical Neuroscience|April 3, 2014
Transthyretin-derived peptides as β-amyloid inhibitorsPatricia Y Cho, Gururaj Joshi, Jeffrey A Johnson, et al.
Protein Science : a Publication of the Protein Society|October 2, 2004
Urea modulation of beta-amyloid fibril growth: experimental studies and kinetic modelsJin Ryoun Kim, Adrian Muresan, Ka Yee C Lee, et al.
Journal of Molecular Biology|March 31, 2012
Elongation kinetics of polyglutamine peptide fibrils: a quartz crystal microbalance with dissipation studyRobert H Walters, Kurt H Jacobson, Joel A Pedersen, et al.
Chemmedchem|March 8, 2018
Transthyretin Mimetics as Anti-β-Amyloid Agents: A Comparison of Peptide and Protein ApproachesKayla M Pate, Brandon J Kim, Eric V Shusta, et al.
Biochemistry|April 11, 2013
Transthyretin as both a sensor and a scavenger of β-amyloid oligomersDennis T Yang, Gururaj Joshi, Patricia Y Cho, et al.
ACS Chemical Neuroscience|February 26, 2015
A Cyclic Peptide Mimic of the β-Amyloid Binding Domain on TransthyretinPatricia Y Cho, Gururaj Joshi, Melissa D Boersma, et al.
The Journal of Physical Chemistry. B|February 4, 2021
Membrane Remodeling and Stimulation of Aggregation Following α-Synuclein Adsorption to Phosphotidylserine VesiclesBrandon M Hoover, Zhizhang Shen, Curran G Gahan, et al.
Protein Engineering, Design & Selection : PEDS|June 25, 2009
Differential modification of Cys10 alters transthyretin's effect on beta-amyloid aggregation and toxicityLin Liu, Jie Hou, Jiali Du, et al.
Journal of Colloid and Interface Science|February 5, 2022
Nanoparticle tracking analysis and statistical mixture distribution analysis to quantify nanoparticle-vesicle bindingIsabel U Foreman-Ortiz, Ting Fung Ma, Brandon M Hoover, et al.
Pageof 6

Showing results (41-50 of 52) with videos related to

Sort By:
Pageof 6
Protein Engineering, Design & Selection : PEDS|June 7, 2012
Identification of beta-amyloid-binding sites on transthyretinJiali Du, Patricia Y Cho, Dennis T Yang, et al.
ACS Chemical Neuroscience|April 3, 2014
Transthyretin-derived peptides as β-amyloid inhibitorsPatricia Y Cho, Gururaj Joshi, Jeffrey A Johnson, et al.
Protein Science : a Publication of the Protein Society|October 2, 2004
Urea modulation of beta-amyloid fibril growth: experimental studies and kinetic modelsJin Ryoun Kim, Adrian Muresan, Ka Yee C Lee, et al.
Journal of Molecular Biology|March 31, 2012
Elongation kinetics of polyglutamine peptide fibrils: a quartz crystal microbalance with dissipation studyRobert H Walters, Kurt H Jacobson, Joel A Pedersen, et al.
Chemmedchem|March 8, 2018
Transthyretin Mimetics as Anti-β-Amyloid Agents: A Comparison of Peptide and Protein ApproachesKayla M Pate, Brandon J Kim, Eric V Shusta, et al.
Biochemistry|April 11, 2013
Transthyretin as both a sensor and a scavenger of β-amyloid oligomersDennis T Yang, Gururaj Joshi, Patricia Y Cho, et al.
ACS Chemical Neuroscience|February 26, 2015
A Cyclic Peptide Mimic of the β-Amyloid Binding Domain on TransthyretinPatricia Y Cho, Gururaj Joshi, Melissa D Boersma, et al.
The Journal of Physical Chemistry. B|February 4, 2021
Membrane Remodeling and Stimulation of Aggregation Following α-Synuclein Adsorption to Phosphotidylserine VesiclesBrandon M Hoover, Zhizhang Shen, Curran G Gahan, et al.
Protein Engineering, Design & Selection : PEDS|June 25, 2009
Differential modification of Cys10 alters transthyretin's effect on beta-amyloid aggregation and toxicityLin Liu, Jie Hou, Jiali Du, et al.
Journal of Colloid and Interface Science|February 5, 2022
Nanoparticle tracking analysis and statistical mixture distribution analysis to quantify nanoparticle-vesicle bindingIsabel U Foreman-Ortiz, Ting Fung Ma, Brandon M Hoover, et al.
Pageof 6