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Daniela Albrecht-Eckardt

Showing results (1-10 of 10) with videos related to

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Microlife|April 17, 2026
FungiNetDB: a uniform (pre-)processing platform for fungal expression dataSascha Schäuble, Daniela Albrecht-Eckardt, Gianni Panagiotou
Bioinformatics (Oxford, England)|November 22, 2024
FungiFun3: systemic gene set enrichment analysis for fungal speciesAlbert Garcia Lopez, Daniela Albrecht-Eckardt, Gianni Panagiotou, et al.
Plos One|March 22, 2013
A core filamentation response network in Candida albicans is restricted to eight genesRonny Martin, Daniela Albrecht-Eckardt, Sascha Brunke, et al.
International Journal of Medical Microbiology : IJMM|August 17, 2017
Proteomic profiling of the antifungal drug response of Aspergillus fumigatus to voriconazoleNansalmaa Amarsaikhan, Daniela Albrecht-Eckardt, Christoph Sasse, et al.
Neurobiology of Aging|February 18, 2014
Age-specific transcriptional response to strokeMatthias W Sieber, Madlen Guenther, Nadine Jaenisch, et al.
Journal of Proteomics|May 29, 2012
Proteome analysis of the farnesol-induced stress response in Aspergillus nidulans--The role of a putative dehydrinDirk Wartenberg, Martin Vödisch, Olaf Kniemeyer, et al.
Frontiers in Microbiology|June 1, 2016
Candida albicans Induces Metabolic Reprogramming in Human NK Cells and Responds to Perforin with a Zinc Depletion ResponseDaniela Hellwig, Jessica Voigt, Maria Bouzani, et al.
Cellular Microbiology|January 12, 2016
Candida albicans infection leads to barrier breakdown and a MAPK/NF-κB mediated stress response in the intestinal epithelial cell line C2BBe1Michael Böhringer, Susann Pohlers, Sylvie Schulze, et al.
Mbio|March 19, 2015
The fungal quorum-sensing molecule farnesol activates innate immune cells but suppresses cellular adaptive immunityInes Leonhardt, Steffi Spielberg, Michael Weber, et al.
Mbio|April 30, 2020
Ahr1 and Tup1 Contribute to the Transcriptional Control of Virulence-Associated Genes in Candida albicansSophia Ruben, Enrico Garbe, Selene Mogavero, et al.
Pageof 1

Showing results (1-10 of 10) with videos related to

Sort By:
Pageof 1
Microlife|April 17, 2026
FungiNetDB: a uniform (pre-)processing platform for fungal expression dataSascha Schäuble, Daniela Albrecht-Eckardt, Gianni Panagiotou
Bioinformatics (Oxford, England)|November 22, 2024
FungiFun3: systemic gene set enrichment analysis for fungal speciesAlbert Garcia Lopez, Daniela Albrecht-Eckardt, Gianni Panagiotou, et al.
Plos One|March 22, 2013
A core filamentation response network in Candida albicans is restricted to eight genesRonny Martin, Daniela Albrecht-Eckardt, Sascha Brunke, et al.
International Journal of Medical Microbiology : IJMM|August 17, 2017
Proteomic profiling of the antifungal drug response of Aspergillus fumigatus to voriconazoleNansalmaa Amarsaikhan, Daniela Albrecht-Eckardt, Christoph Sasse, et al.
Neurobiology of Aging|February 18, 2014
Age-specific transcriptional response to strokeMatthias W Sieber, Madlen Guenther, Nadine Jaenisch, et al.
Journal of Proteomics|May 29, 2012
Proteome analysis of the farnesol-induced stress response in Aspergillus nidulans--The role of a putative dehydrinDirk Wartenberg, Martin Vödisch, Olaf Kniemeyer, et al.
Frontiers in Microbiology|June 1, 2016
Candida albicans Induces Metabolic Reprogramming in Human NK Cells and Responds to Perforin with a Zinc Depletion ResponseDaniela Hellwig, Jessica Voigt, Maria Bouzani, et al.
Cellular Microbiology|January 12, 2016
Candida albicans infection leads to barrier breakdown and a MAPK/NF-κB mediated stress response in the intestinal epithelial cell line C2BBe1Michael Böhringer, Susann Pohlers, Sylvie Schulze, et al.
Mbio|March 19, 2015
The fungal quorum-sensing molecule farnesol activates innate immune cells but suppresses cellular adaptive immunityInes Leonhardt, Steffi Spielberg, Michael Weber, et al.
Mbio|April 30, 2020
Ahr1 and Tup1 Contribute to the Transcriptional Control of Virulence-Associated Genes in Candida albicansSophia Ruben, Enrico Garbe, Selene Mogavero, et al.
Pageof 1