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Full-Text Articles in Complex Mixtures
Community Risks For Sars-Cov-2 Infection Among Fully Vaccinated Us Adults By Rurality: A Retrospective Cohort Study From The National Covid Cohort Collaborative, Alfred Jerrod Anzalone, Jing Sun, Amanda J. Vinson, William H. Beasley, William B. Hillegass, Kimberly Murray, Brian M. Hendricks, Melissa Haendel, Carol Reynolds Geary, Kristina L. Bailey, Corrine K. Hanson, Lucio Miele, Ronald Horswell, Julie A. Mcmurry, J. Zachary Porterfield, Michael T. Vest, H. Timothy Bunnell, Jeremy R. Harper, Bradley S. Price
Community Risks For Sars-Cov-2 Infection Among Fully Vaccinated Us Adults By Rurality: A Retrospective Cohort Study From The National Covid Cohort Collaborative, Alfred Jerrod Anzalone, Jing Sun, Amanda J. Vinson, William H. Beasley, William B. Hillegass, Kimberly Murray, Brian M. Hendricks, Melissa Haendel, Carol Reynolds Geary, Kristina L. Bailey, Corrine K. Hanson, Lucio Miele, Ronald Horswell, Julie A. Mcmurry, J. Zachary Porterfield, Michael T. Vest, H. Timothy Bunnell, Jeremy R. Harper, Bradley S. Price
School of Medicine Faculty Publications
Background While COVID-19 vaccines reduce adverse outcomes, post-vaccination SARS-CoV-2 infection remains problematic. We sought to identify community factors impacting risk for breakthrough infections (BTI) among fully vaccinated persons by rurality. Methods We conducted a retrospective cohort study of US adults sampled between January 1 and December 20, 2021, from the National COVID Cohort Collaborative (N3C). Using Kaplan-Meier and Cox-Proportional Hazards models adjusted for demographic differences and comorbid conditions, we assessed impact of rurality, county vaccine hesitancy, and county vaccination rates on risk of BTI over 180 days following two mRNA COVID-19 vaccinations between January 1 and September 21, 2021. Additionally, …
Frontiers In The Self-Assembly Of Charged Macromolecules, Khatcher O. Margossian
Frontiers In The Self-Assembly Of Charged Macromolecules, Khatcher O. Margossian
Doctoral Dissertations
The self-assembly of charged macromolecules forms the basis of all life on earth. From the synthesis and replication of nucleic acids, to the association of DNA to chromatin, to the targeting of RNA to various cellular compartments, to the astonishingly consistent folding of proteins, all life depends on the physics of the organization and dynamics of charged polymers. In this dissertation, I address several of the newest challenges in the assembly of these types of materials. First, I describe the exciting new physics of the complexation between polyzwitterions and polyelectrolytes. These materials open new questions and possibilities within the context …
Drug Interactions With Glutaredoxin Orthologues, Kahlilah R. Napper, Thomas C. Leeper, Ram Khattri, Daniel Morris, Caroline Davis
Drug Interactions With Glutaredoxin Orthologues, Kahlilah R. Napper, Thomas C. Leeper, Ram Khattri, Daniel Morris, Caroline Davis
Williams Honors College, Honors Research Projects
Glutaredoxin, an enzymatic protein, is an important component of cell viability and function. It catalyzes reactions involved in DNA synthesis and innate immunity [1,4]. Glutaredoxin is also essential in antibiotic resistance in pathogenic bacterial species. Pseudomonas aeruginosa in particular is responsible for infecting the lung tissue of its human hosts, resulting in the development of pneumonia and cystic fibrosis [3]. Because glutaredoxin is pertinent in cell proliferation of eukaryotic and bacterial cells alike, medicinal fragments that take advantage of the subtle differences in protein structure of the orthologous proteins can be synthesized and enhanced to bind bacterial glutaredoxins, without inhibiting …