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International Journal of Antimicrobial Agents|May 2, 2017
In vitro activity of a novel compound, Mul-1867, against clinically significant fungi Candida spp. and Aspergillus sppGeorge Tetz, Michael Cynamon, Gregory Hendricks, et al.Frontiers in Microbiology|June 5, 2023
Antifungal activity of a novel synthetic polymer M451 against phytopathogensVictor Tetz, Kristina Kardava, Konstantin Krasnov, et al.Scientific Reports|February 13, 2020
Bacterial DNA promotes Tau aggregationGeorge Tetz, Michelle Pinho, Sandra Pritzkow, et al.Biorxiv : the Preprint Server for Biology|October 10, 2024
Universal Receptive System as a novel regulator of transcriptomic activity of <i>Staphylococcus aureus</i>George Tetz, Kristina Kardava, Maria Vecherkovskaya, et al.Biorxiv : the Preprint Server for Biology|July 19, 2024
Previously unknown regulatory role of extracellular RNA on bacterial directional migrationVictor Tetz, Kristina Kardava, Maria Vecherkovskaya, et al.Biorxiv : the Preprint Server for Biology|January 7, 2025
The Universal Receptive System acts as a novel regulator in the production of antimicrobial and anticancer bioactive compounds by white blood cellsVictor Tetz, Kristina Kardava, Maria Vecherkovskaya, et al.Biorxiv : the Preprint Server for Biology|February 3, 2025
Regulating white blood cell activity through the novel Universal Receptive SystemVictor Tetz, Kristina Kardava, Maria Vecherkovskaya, et al.Microbial Cell Factories|January 4, 2025
Universal receptive system as a novel regulator of transcriptomic activity of Staphylococcus aureusGeorge Tetz, Kristina Kardava, Maria Vecherkovskaya, et al.Scientific Reports|October 31, 2025
Regulating white blood cell activity through the novel universal receptive systemVictor Tetz, Kristina Kardava, Maria Vecherkovskaya, et al.Journal of Leukocyte Biology|June 27, 2025
The universal receptive system: a novel regulator of antimicrobial and anticancer compound production by white blood cellsVictor Tetz, Kristina Kardava, Maria Vecherkovskaya, et al.Pageof 5