Part of the Chemistry Commons

Works by Brian Brennan in Chemistry

2017

Rebecca Roesner, 2017 Dougan Award Presentation, Brian Brennan, IWU Chapter of the AAUP, Illinois Wesleyan University
Dougan Award Winners

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2015

A Novel Peptide Inhibitor of the Polymerization of Deoxygenated Sickle Cell Hemoglobin, Brian Brennan, Timothy Broederdorf, '15
Brian B. Brennan

2014

Possible New Therapeutic Treatment for Sickle Cell Disease, Brian Brennan, Ben Becker, '14
Brian B. Brennan

2012

The Development of A Novel Therapeutic for the Treatment of Sickle Cell Disease, Brian Brennan, Cody Wynn, '14
Brian B. Brennan

A Discovery-Oriented Approach to Solid-Phase Peptide Synthesis, Brian Brennan, Matthew Bockman, Christopher Miedema
Scholarship

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2011

Solid-Phase Peptide Synthesis, Brian Brennan, Elisabeth Sonta, '13
Brian B. Brennan

Fluorescent Studies of Peptidic Hemoglobin Binding Ligands, Brian Brennan, Chris Brackett, '11
Brian B. Brennan

2010

The Synthesis of a Cyclic Peptide Library for the Discovery of Sickle-Cell Hemoglobin Ligands, Brian Brennan, Jeremy Henle, '11
Brian B. Brennan

2009

The Synthesis of a Peptoid for Use as a Novel Therapeutic in the Treatment of Sickle-Cell Disease, Brian Brennan, Michael Chiodo, '11
Brian B. Brennan

The Synthesis and Characterization of a Peptide Hemoglobin Ligand, Brian Brennan, Chris Brackett, '11
Brian B. Brennan

Utilizing Phage Display to Identify Novel Peptides that Bind to Sickle Cell Hemoglobin, Brian Brennan, Chris Betzle, '10
Brian B. Brennan

Novel Therapeutics in the Treatment of Sickle Cell Disease: Expression and Purification of Hemoglobin and Sickle Cell Hemoglobin, Brian Brennan, Susan Zhong, '11
Brian B. Brennan

The Development of a Novel Therapeutic for the Treatment of Sickle Cell Disease, Brian Brennan, Steven Sturlis, '10
Brian B. Brennan

Utilizing Phage Display to Identify Novel Peptides that Bind to Sickle Cell Hemoglobin, Brian Brennan, Chris Betzle, '10
Brian B. Brennan

Homologation of α-Amino Acids to β-Amino Acids via a Modified Arndt-Eistert Synthesis, Brian Brennan, James Carolan, '10
Brian B. Brennan

Amphipathic Small Molecules Mimic the Binding Mode and Function of Endogenous Transcription Factors, Brian Brennan, Sara Buhrlage, Caleb Bates, Steven Rowe, Aaron Minter, Chinmay Majmudar, David Wemmer, Hashim Al-Hashimi, Anna Map
Scholarship

2008

Amphipathic Small Molecules Mimic the Binding Mode and Function of Endogenous Transcription Factors, Brian Brennan, Sara Buhrlage, Caleb Bates, Steven Rowe, Aaron Minter, Chinmay Majmudar, David Wemmer, Hashim Al-Hashimi, Anna Map
Brian B. Brennan

The Expression of Recombinant Hemoglobin in Escherichia Coli, Brian Brennan, Christopher Miedema, '10, Evan Mason, '10
Brian B. Brennan

The Development of Novel Therapeutics for Sickle-Cell Disease, Brian Brennan, Sara Costello, '10, Steven Sturlis, '10
Brian B. Brennan

2005

Unraveling the Mechanism of a Potent Transcriptional Activator, Brian Brennan, Zhen Lu, Steven Rowe, Sarah Davis, Renee Metzler, Johnathan Nau, Chinmay Majmudar, Anna Mapp, Aseem Ansari
Brian B. Brennan

Unraveling the Mechanism of a Potent Transcriptional Activator, Brian Brennan, Zhen Lu, Steven Rowe, Sarah Davis, Renee Metzler, Johnathan Nau, Chinmay Majmudar, Anna Mapp, Aseem Ansari
Scholarship

Stereochemical Promiscuity in Artificial Transcriptional Activators, Brian Brennan, Sara Buhrlage, Aaron Minter, Anna Mapp
Scholarship

2004

Stereochemical Promiscuity in Artificial Transcriptional Activators, Brian Brennan, Sara Buhrlage, Aaron Minter, Anna Mapp
Brian B. Brennan

2003

Targeting the Transcriptional Machinery with Unique Artificial Transcriptional Activators, Brian Brennan, Zhiqian Wu, Garrette Belanger, Jenifer Lum, Aaron Minter, Steven Rowe, Annette Plachetka, Chinmay Majmudar, Anna Mapp
Scholarship

Targeting the Transcriptional Machinery with Unique Artificial Transcriptional Activators, Brian Brennan, Zhiqian Wu, Garrette Belanger, Jenifer Lum, Aaron Minter, Steven Rowe, Annette Plachetka, Chinmay Majmudar, Anna Mapp
Brian B. Brennan