关注
Samantha Palace
Samantha Palace
Research scientist, Harvard T. H. Chan School of Public Health
在 hsph.harvard.edu 的电子邮件经过验证
标题
引用次数
引用次数
年份
Nitric oxide prevents a pathogen-permissive granulocytic inflammation during tuberculosis
BB Mishra, RR Lovewell, AJ Olive, G Zhang, W Wang, E Eugenin, ...
Nature microbiology 2 (7), 17072, 2017
2472017
Genome-wide mutant fitness profiling identifies nutritional requirements for optimal growth of Yersinia pestis in deep tissue
SG Palace, MK Proulx, S Lu, RE Baker, JD Goguen
MBio 5 (4), e01385-14, 2014
632014
Reversion From Methicillin Susceptibility to Methicillin Resistance in Staphylococcus aureus During Treatment of Bacteremia
MK Proulx, SG Palace, S Gandra, B Torres, S Weir, T Stiles, RT Ellison III, ...
The Journal of infectious diseases 213 (6), 1041-1048, 2015
402015
RNA polymerase mutations cause cephalosporin resistance in clinical Neisseria gonorrhoeae isolates
SG Palace, Y Wang, DHF Rubin, MA Welsh, TD Mortimer, K Cole, ...
eLife 9, e51407, 2020
382020
Gain-of-function analysis reveals important virulence roles for the Yersinia pestis type III secretion system effectors YopJ, YopT, and YpkA
SG Palace, MK Proulx, RL Szabady, JD Goguen
Infection and Immunity 86 (9), 10.1128/iai. 00318-18, 2018
162018
Redundant and cooperative roles for Yersinia pestis Yop effectors in the inhibition of human neutrophil exocytic responses revealed by gain-of-function approach
AR Pulsifer, A Vashishta, SA Reeves, JK Wolfe, SG Palace, MK Proulx, ...
Infection and Immunity 88 (3), 2020
122020
Yersinia pestis Escapes Entrapment in Thrombi by Targeting Platelet Function
SG Palace, O Vitseva, MK Proulx, JE Freedman, JD Goguen, ...
Journal of Thrombosis and Haemostasis, 2020
82020
Identification of bile acid and fatty acid species as candidate rapidly bactericidal agents for topical treatment of gonorrhoea
SG Palace, KE Fryling, Y Li, AJ Wentworth, G Traverso, YH Grad
Journal of Antimicrobial Chemotherapy 76 (10), 2569-2577, 2021
32021
Plague and the Defeat of Mammalian Innate Immunity: Systematic Genetic Analysis of Yersinia pestis Virulence Factors: A Dissertation
SG Palace
2016
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