David M. Charbonneau, Ph.D.

Affiliations: 
Université de Montréal, Montréal, Canada 
Area:
Biophysics
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"David M. Charbonneau"
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Publications

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Charbonneau DM, Aubé A, Rachel NM, et al. (2017) Development of Asparaginase II for Immunosensing: A Trade-Off between Receptor Density and Sensing Efficiency. Acs Omega. 2: 2114-2125
Charbonneau DM, Breault-Turcot J, Sinnett D, et al. (2017) Tracking silent hypersensitivity reactions to asparaginase during leukemia therapy using single-chip indirect plasmonic and fluorescence immunosensing. Acs Sensors
Zottig X, Meddeb-Mouelhi F, Charbonneau DM, et al. (2017) Characterization of a Novel Alkalophilic Lipase From Aneurinibacillus thermoaerophilus: Lid Heterogeneity and Assignment to Family I.5. The Protein Journal
Moisan JK, Meddeb-Mouelhi F, Charbonneau DM, et al. (2017) Impact of salt concentration and pH on surface charged residues: Controlling protein association pathways in carboxylesterase EstGtA2. Protein and Peptide Letters
Aubé A, Charbonneau DM, Pelletier JN, et al. (2016) Response Monitoring of Acute Lymphoblastic Leukemia Patients Undergoing l-Asparaginase Therapy: Successes and Challenges Associated with Clinical Sample Analysis in Plasmonic Sensing Acs Sensors. 1: 1358-1365
Charbonneau DM, Beauregard M. (2015) Correction: Role of Key Salt Bridges in Thermostability of G. thermodenitrificans EstGtA2: Distinctive Patterns within the New Bacterial Lipolytic Enzyme Family XV. Plos One. 10: e0136940
Bukar N, Zhao SS, Charbonneau DM, et al. (2014) Influence of the Debye length on the interaction of a small molecule-modified Au nanoparticle with a surface-bound bioreceptor. Chemical Communications (Cambridge, England). 50: 4947-50
Charbonneau DM, Beauregard M. (2013) Role of Key Salt Bridges in Thermostability of G. thermodenitrificans EstGtA2: Distinctive Patterns within the New Bacterial Lipolytic Enzyme Family XV Plos One. 8
Korman TP, Sahachartsiri B, Charbonneau DM, et al. (2013) Dieselzymes: development of a stable and methanol tolerant lipase for biodiesel production by directed evolution. Biotechnology For Biofuels. 6: 70
Korman TP, Sahachartsiri B, Charbonneau DM, et al. (2013) Dieselzymes: Development of a stable and methanol tolerant lipase for biodiesel production by directed evolution Biotechnology For Biofuels. 6
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