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Natural Product Inspired Complementary Approaches to Counter Antimicrobial Resistance: Synthetic and Biological Investigations of Antibacterial Small Molecules
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Nucleation Pathways of Peptide Assemblies and Their Context in Alzheimer’s Disease
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Utilizing DNA Nanotechnology to Unveil the Effects of Receptor Forces on Cell Maturation and Function
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Overcoming Antibacterial Resistance through Synthesis of Small Molecules Targeting Efflux Mechanisms
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Overcoming the Limitations of Rhodium-Catalyzed Asymmetric Cyclopropanation and Other Adventures in Strained Ring Synthesis
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EXPANDING THE MOLECULAR TOOLKIT TO MEASURE CELL FORCE: FROM SCAFFOLD SYNTHESIS TO MEASURING MECHANOTRANSDUTION
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Radical Reactivity via Transient Carbon Dioxide Radical Anion (CO2•−)
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Polyoxometalate-based Catalysts for Oxidation Reactions: Redox-buffering Catalysts and Alkane Dehydrogenating Nanoparticles
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Design and characterization of natural and naturally-inspired helical protein assemblies
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DNA Origami in Protein Oligomer Assembly & Mesoscale Self-assembly of DNA Origami Nanorod with Polynucleotide Brush
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Design and Synthesis of Chemical Modulators for Altered Activity of Nuclear Receptor Liver Receptor Homolog-1 and Synthesis of Spirocyclic Piperidines via Radical Hydroarylation
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Chemo and Site Selective Modification of Proteins and Chemical Tools for Studying Mono-Methyl Lysine (Kme)
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Redox Enzymes for Biocatalysis: From Asymmetric Hydrogenation to CO2 Reduction
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Building Nucleic Acid-Based Technologies for Biological Sensing and Modulation
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Developing Chemical Tools for Selective Peptide Modification
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Studies in Small Molecule Drug Discovery: Part I. Synthesis of Novel Nucleoside-Based Antivirals to Treat Hepatitis C; Part II. Validation and Implementation of a Machine Learning Algorithm to Create a Safer Kinase Inhibitor as a Potential First-in-Class Antiparkinsonian Agent
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Membranes & Metals: Bacterial Targets to Fight Antibiotic Resistance
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Engineering Nanodiscoidal Nucleic Acids as the Next-Generation Platform to Deliver Oligonucleotide Therapeutics
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Development of Machine-Learned Potential Energy Surfaces with Application to the Reactive and Vibrational Dynamics of High Dimensional Molecular Systems
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Ultrasensitive Tension Sensors with Catalytic Amplification Reactions: From Fundamental Development to Clinical Applications
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