Matthew Schmerer, Ph.D.

Section of Integrative Biology University of Texas at Austin, Austin, Texas, U.S.A. 
"Matthew Schmerer"
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Thomas JC, Joseph SJ, Cartee JC, et al. (2021) Phylogenomic analysis reveals persistence of gonococcal strains with reduced-susceptibility to extended-spectrum cephalosporins and mosaic penA-34. Nature Communications. 12: 3801
Reimche JL, Chivukula VL, Schmerer MW, et al. (2021) Genomic analysis of the predominant strains and antimicrobial resistance determinants within 1479 Neisseria gonorrhoeae isolates from the U.S. Gonococcal Isolate Surveillance Project in 2018. Sexually Transmitted Diseases
Pham CD, Nash E, Liu H, et al. (2020) Atypical Mutation in 23S rRNA Associated with High-Level Azithromycin Resistance. Antimicrobial Agents and Chemotherapy
Gernert KM, Seby S, Schmerer MW, et al. (2020) Azithromycin susceptibility of in the USA in 2017: a genomic analysis of surveillance data. The Lancet. Microbe. 1: e154-e164
Palavecino EL, Kilic A, Schmerer MW, et al. (2020) First Case of High-Level Azithromycin Resistant Neisseria gonorrhoeae in North Carolina. Sexually Transmitted Diseases
Schmerer MW, Abrams AJ, Seby S, et al. (2020) Genomic characterization of Strains from 2016 United States Sentinel Surveillance Displaying Reduced Susceptibility to Azithromycin. Antimicrobial Agents and Chemotherapy
Kersh EN, Pham CD, Papp JR, et al. (2020) Expanding US Laboratory Capacity for Antimicrobial Susceptibility Testing and Whole Genome Sequencing through CDC's Antibiotic Resistance Laboratory Network. Journal of Clinical Microbiology
Kersh EN, Allen V, Ransom E, et al. (2019) Rationale for a Neisseria gonorrhoeae Susceptible Only Interpretive Breakpoint for Azithromycin. Clinical Infectious Diseases : An Official Publication of the Infectious Diseases Society of America
Pham CD, Sharpe S, Schlanger K, et al. (2019) Emergence of Neisseria gonorrhoeae Strains Harboring a Novel Combination of Azithromycin-Attenuating Mutations. Antimicrobial Agents and Chemotherapy. 63
Massey J, Liu Y, Alvarenga O, et al. (2019) Synergy with TGFβ ligands switches WNT pathway dynamics from transient to sustained during human pluripotent cell differentiation. Proceedings of the National Academy of Sciences of the United States of America
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