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Molecular Microbiology
|
January 20, 2006
Farnesol-induced apoptosis in Aspergillus nidulans reveals a possible mechanism for antagonistic interactions between fungi
Camile P Semighini, Jacob M Hornby, Raluca Dumitru, et al.
FEMS Immunology and Medical Microbiology
|
July 13, 2010
Candida albicans cell wall components and farnesol stimulate the expression of both inflammatory and regulatory cytokines in the murine RAW264.7 macrophage cell line
Suman Ghosh, Nina Howe, Katie Volk, et al.
Applied and Environmental Microbiology
|
August 9, 2005
Farnesol concentrations required to block germ tube formation in Candida albicans in the presence and absence of serum
Daniel D Mosel, Raluca Dumitru, Jacob M Hornby, et al.
Infection and Immunity
|
July 22, 2015
Candida albicans Quorum Sensing Molecules Stimulate Mouse Macrophage Migration
Jessica C Hargarten, Tyler C Moore, Thomas M Petro, et al.
FEMS Yeast Research
|
January 27, 2010
Evolutionary aspects of urea utilization by fungi
Dhammika H M L P Navarathna, Steven D Harris, David D Roberts, et al.
Phytotherapy Research : PTR
|
October 31, 2018
Histone acetylation increases in response to ferulic, gallic, and sinapic acids acting synergistically in vitro to inhibit Candida albicans yeast-to-hyphae transition
Cristiane Rodrigues S Câmara, Qinyin Shi, Matthew Pedersen, et al.
The Journal of Biological Chemistry
|
December 5, 2013
A glutathione-independent glyoxalase of the DJ-1 superfamily plays an important role in managing metabolically generated methylglyoxal in Candida albicans
Sahar Hasim, Nur Ahmad Hussin, Fadhel Alomar, et al.
Frontiers in Physiology
|
December 6, 2023
Farnesol as an antifungal agent: comparisons among <i>MTL</i><b>a</b> and <i>MTLα</i> haploid and diploid <i>Candida albicans</i> and <i>Saccharomyces cerevisiae</i>
Cory H T Boone, Kory A Parker, Daniel J Gutzmann, et al.
Applied Microbiology and Biotechnology
|
September 15, 2022
Quantitative assay for farnesol and the aromatic fusel alcohols from the fungus Candida albicans
Cory H T Boone, Daniel J Gutzmann, Jaxon J Kramer, et al.
Microbiology (Reading, England)
|
October 2, 2010
Dur3 is the major urea transporter in Candida albicans and is co-regulated with the urea amidolyase Dur1,2
Dhammika H M L P Navarathna, Aditi Das, Joachim Morschhäuser, et al.
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of 7
Search research articles
Search
Showing results (31-40 of 66) with videos related to
Sort By:
Page
of 7
Molecular Microbiology
|
January 20, 2006
Farnesol-induced apoptosis in Aspergillus nidulans reveals a possible mechanism for antagonistic interactions between fungi
Camile P Semighini, Jacob M Hornby, Raluca Dumitru, et al.
FEMS Immunology and Medical Microbiology
|
July 13, 2010
Candida albicans cell wall components and farnesol stimulate the expression of both inflammatory and regulatory cytokines in the murine RAW264.7 macrophage cell line
Suman Ghosh, Nina Howe, Katie Volk, et al.
Applied and Environmental Microbiology
|
August 9, 2005
Farnesol concentrations required to block germ tube formation in Candida albicans in the presence and absence of serum
Daniel D Mosel, Raluca Dumitru, Jacob M Hornby, et al.
Infection and Immunity
|
July 22, 2015
Candida albicans Quorum Sensing Molecules Stimulate Mouse Macrophage Migration
Jessica C Hargarten, Tyler C Moore, Thomas M Petro, et al.
FEMS Yeast Research
|
January 27, 2010
Evolutionary aspects of urea utilization by fungi
Dhammika H M L P Navarathna, Steven D Harris, David D Roberts, et al.
Phytotherapy Research : PTR
|
October 31, 2018
Histone acetylation increases in response to ferulic, gallic, and sinapic acids acting synergistically in vitro to inhibit Candida albicans yeast-to-hyphae transition
Cristiane Rodrigues S Câmara, Qinyin Shi, Matthew Pedersen, et al.
The Journal of Biological Chemistry
|
December 5, 2013
A glutathione-independent glyoxalase of the DJ-1 superfamily plays an important role in managing metabolically generated methylglyoxal in Candida albicans
Sahar Hasim, Nur Ahmad Hussin, Fadhel Alomar, et al.
Frontiers in Physiology
|
December 6, 2023
Farnesol as an antifungal agent: comparisons among <i>MTL</i><b>a</b> and <i>MTLα</i> haploid and diploid <i>Candida albicans</i> and <i>Saccharomyces cerevisiae</i>
Cory H T Boone, Kory A Parker, Daniel J Gutzmann, et al.
Applied Microbiology and Biotechnology
|
September 15, 2022
Quantitative assay for farnesol and the aromatic fusel alcohols from the fungus Candida albicans
Cory H T Boone, Daniel J Gutzmann, Jaxon J Kramer, et al.
Microbiology (Reading, England)
|
October 2, 2010
Dur3 is the major urea transporter in Candida albicans and is co-regulated with the urea amidolyase Dur1,2
Dhammika H M L P Navarathna, Aditi Das, Joachim Morschhäuser, et al.
Page
of 7