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Results 11-20 of 37 (Search time: 0.004 seconds).
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PreviewIssue DateTitleAuthor(s)
1999Distribution of two hemolytic toxin genes in clinical and environmental isolates of Aeromonas spp.: correlation with virulence in a suckling mouse modelHeuzenroeder, M.; Wong, C.; Flower, R.
2011Reticulocyte and erythrocyte binding-like proteins function cooperatively in invasion of human erythrocytes by malaria parasitesLopaticki, S.; Maier, A.; Thompson, J.; Wilson, D.; Tham, W.; Triglia, T.; Gout, A.; Speed, T.; Beeson, J.; Healer, J.; Cowman, A.; Adams, J.H.
2021Worldwide distribution and environmental origin of the Adelaide imipenemase (AIM-1), a potent carbapenemase in Pseudomonas aeruginosaAmsalu, A.; Sapula, S.A.; Whittall, J.J.; Hart, B.J.; Bell, J.M.; Turnidge, J.; Venter, H.
2022Rescuing tetracycline class antibiotics for the treatment of multidrug-resistant Acinetobacter baumannii pulmonary infectionDe Oliveira, D.M.P.; Forde, B.M.; Phan, M.-D.; Steiner, B.; Zhang, B.; Zuegg, J.; El-Deeb, I.M.; Li, G.; Keller, N.; Brouwer, S.; Harbison-Price, N.; Cork, A.J.; Bauer, M.J.; Alquethamy, S.F.; Beatson, S.A.; Roberts, J.A.; Paterson, D.L.; McEwan, A.G.; Blaskovich, M.A.T.; Schembri, M.A.; et al.; Ballard, J.D.
1999Chemokines: extracellular messengers for all occasions?Gale, L.; McColl, S.
2012The Plasmodium falciparum erythrocyte invasion ligand Pfrh4 as a target of functional and protective human antibodies against malariaReiling, L.; Richards, J.; Fowkes, F.; Wilson, D.; Chokejindachai, W.; Barry, A.; Tham, W.; Stubbs, J.; Langer, C.; Donelson, J.; Michon, P.; Tavul, L.; Crabb, B.; Siba, P.; Cowman, A.; Mueller, I.; Beeson, J.; Tetteh, K.K.A.
2013Vaccination with conserved regions of erythrocyte-binding antigens induces neutralizing antibodies against multiple strains of Plasmodium falciparumHealer, J.; Thompson, J.; Riglar, D.; Wilson, D.; Chiu, Y.; Miura, K.; Chen, L.; Hodder, A.; Long, C.; Hansen, D.; Baum, J.; Cowman, A.; Hviid, L.
2012Defining the antigenic diversity of Plasmodium falciparum Apical Membrane Antigen 1 and the requirements for a multi-allele vaccine against malariaDrew, D.; Hodder, A.; Wilson, D.; Foley, M.; Mueller, I.; Siba, P.; Dent, A.; Cowman, A.; Beeson, J.; Hviid, L.
2022Protein kinase R is an innate immune sensor of proteotoxic stress via accumulation of cytoplasmic IL-24Davidson, S.; Yu, C.-H.; Steiner, A.; Ebstein, F.; Baker, P.J.; Jarur-Chamy, V.; Hrovat Schaale, K.; Laohamonthonkul, P.; Kong, K.; Calleja, D.J.; Harapas, C.R.; Balka, K.R.; Mitchell, J.; Jackson, J.T.; Geoghegan, N.D.; Moghaddas, F.; Rogers, K.L.; Mayer-Barber, K.D.; De Jesus, A.A.; De Nardo, D.; et al.
2022Cell biological analysis reveals an essential role for Pfcerli2 in erythrocyte invasion by malaria parasitesLiffner, B.; Balbin, J.M.; Shami, G.J.; Siddiqui, G.; Strauss, J.; Frölich, S.; Heinemann, G.K.; Edwards, E.M.; Alder, A.; Wichers, J.S.; Creek, D.J.; Tilley, L.; Dixon, M.W.A.; Gilberger, T.-W.; Wilson, D.W.