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Cellular Microbiology|November 22, 2008
The inositol polyphosphate 5-phosphatase OCRL1 restricts intracellular growth of Legionella, localizes to the replicative vacuole and binds to the bacterial effector LpnEStefan S Weber, Curdin Ragaz, Hubert HilbiMedizinische Klinik, Intensivmedizin Und Notfallmedizin|February 6, 2019
[Indications and limitations of ECMO therapy : Considerations on evidence, treatment decisions and ethical challenges]C Karagiannidis, T Bein, S Weber-CarstensQuality of Life Research : an International Journal of Quality of Life Aspects of Treatment, Care and Rehabilitation|August 7, 2015
Quality of life in maltreated children and adult survivors of child maltreatment: a systematic reviewS Weber, A Jud, M A LandoltNucleic Acids Research|July 25, 1988
The Saccharomyces cerevisiae RAD18 gene encodes a protein that contains potential zinc finger domains for nucleic acid binding and a putative nucleotide binding sequenceJ S Jones, S Weber, L PrakashExperimental & Molecular Medicine|February 13, 2026
Microglia-associated progression of multiple sclerosis: target identification and therapeutic engagement in human in vitro modelsAlica Blenkle, Anastasia Geladaris, Martin S WeberEuropean Journal of Immunology|May 1, 1997
CD43 (leukosialin, sialophorin) expression is differentially regulated by retinoic acidsM Babina, S Weber, B M HenzCurrent Neurology and Neuroscience Reports|March 6, 2016
The Use of Oral Disease-Modifying Therapies in Multiple SclerosisBenedikt Kretzschmar, Hannah Pellkofer, Martin S WeberCancer Immunology Research|October 4, 2018
Predictive Biomarkers for Checkpoint Immunotherapy: Current Status and Challenges for Clinical ApplicationNancy Tray, Jeffrey S Weber, Sylvia AdamsBiological Chemistry|August 11, 2000
Prostaglandin deficiency promotes sensitization of adenylyl cyclaseS Weber, H Lemoine, H K WasnerJournal of Bacteriology|December 30, 1999
Lesions in the nuo operon, encoding NADH dehydrogenase complex I, prevent PurF-independent thiamine synthesis and reduce flux through the oxidative pentose phosphate pathway in Salmonella enterica serovar typhimuriumK Claas, S Weber, D M DownsPageof 209