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Barnabas Williams
Barnabas Williams
在 bioch.ox.ac.uk 的电子邮件经过验证
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引用次数
引用次数
年份
Human antibodies that slow erythrocyte invasion potentiate malaria-neutralizing antibodies
DGW Alanine, D Quinkert, R Kumarasingha, S Mehmood, FR Donnellan, ...
Cell 178 (1), 216-228. e21, 2019
1492019
Evolutionary Trade-Offs Underlie the Multi-faceted Virulence of Staphylococcus aureus
M Laabei, AC Uhlemann, FD Lowy, ED Austin, M Yokoyama, K Ouadi, ...
PLoS biology 13 (9), e1002229, 2015
1472015
FGT-1 is the major glucose transporter in C. elegans and is central to aging pathways
Y Feng, BG Williams, F Koumanov, AJ Wolstenholme, GD Holman
Biochemical Journal 456 (2), 219-229, 2013
502013
Analysis of the diverse antigenic landscape of the malaria protein RH5 identifies a potent vaccine-induced human public antibody clonotype
JR Barrett, D Pipini, ND Wright, AJR Cooper, G Gorini, D Quinkert, ...
Cell 187 (18), 4964-4980. e21, 2024
102024
Preclinical development of a stabilized RH5 virus-like particle vaccine that induces improved anti-malarial antibodies
LDW King, D Pulido, JR Barrett, H Davies, D Quinkert, AM Lias, SE Silk, ...
BioRxiv, 2024.01. 04.574181, 2024
82024
Development of an improved blood-stage malaria vaccine targeting the essential RH5-CyRPA-RIPR invasion complex
BG Williams, LDW King, D Pulido, D Quinkert, AM Lias, SE Silk, ...
Nature Communications 15 (1), 4857, 2024
72024
The dual action of human antibodies specific to Plasmodium falciparum PfRH5 and PfCyRPA: Blocking invasion and inactivating extracellular merozoites
GE Weiss, RJ Ragotte, D Quinkert, AM Lias, MG Dans, C Boulet, O Looker, ...
PLoS Pathogens 19 (9), e1011182, 2023
52023
Analysis of the diverse antigenic landscape of the malaria invasion protein RH5 identifies a potent vaccine-induced human public antibody clonotype
JR Barrett, D Pipini, ND Wright, AJR Cooper, G Gorini, D Quinkert, ...
bioRxiv, 2023.10. 04.560576, 2023
42023
Investigation of the Plasmodium falciparum RH5-Interacting Protein (PfRIPR) as a blood-stage malaria vaccine target
B Williams
University of Oxford, 2021
2021
FGT-1 is the major glucose transporter in C. elegans and is central to aging pathways.
FY Feng Ying, BG Williams, F Koumanov, AJ Wolstenholme, GD Holman
2013
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