Candida albicans biofilms: development, regulation, and molecular mechanisms.
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Should the biofilm mode of life be taken into consideration for microbial biocontrol agents?Assessment and Optimizations of Candida albicans In Vitro Biofilm Assays.Antifungal Effect of Novel 2-Bromo-2-Chloro-2-(4-Chlorophenylsulfonyl)-1-Phenylethanone against Candida Strains.Global Identification of Biofilm-Specific Proteolysis in Candida albicans.Oral mucositis caused by Candida glabrata biofilms: failure of the concomitant use of fluconazole and ascorbic acid.Null mutants of Candida albicans for cell-wall-related genes form fragile biofilms that display an almost identical extracellular matrix proteome.The synthetic killer peptide KP impairs Candida albicans biofilm in vitro.Usefulness of the Non-conventional Caenorhabditis elegans Model to Assess Candida Virulence.Inhibitory effects of the essential oils α-longipinene and linalool on biofilm formation and hyphal growth of Candida albicans.Lactobacillus rhamnosus inhibits Candida albicans virulence factors in vitro and modulates immune system in Galleria mellonella.In vitro inhibitory activities of magnolol against Candida spp.In vitro and in vivo effects of suloctidil on growth and biofilm formation of the opportunistic fungus Candida albicans.Development and regulation of single- and multi-species Candida albicans biofilms.Visualization of Biofilm Formation in Candida albicans Using an Automated Microfluidic Device.The impact of farnesol in combination with fluconazole on Candida albicans biofilm: regulation of ERG20, ERG9, and ERG11 genes.The PHR Family: The Role of Extracellular Transglycosylases in Shaping Candida albicans Cells.Candida Species Biofilms' Antifungal Resistance.In Vitro Antibiofilm Activity of Eucarobustol E against Candida albicans.Antifungals discovery: an insight into new strategies to combat antifungal resistance.Geometrical Distribution of Cryptococcus neoformans Mediates Flower-Like Biofilm Development.Biogenic nanosilver synthesized in Metarhizium robertsii waste mycelium extract - As a modulator of Candida albicans morphogenesis, membrane lipidome and biofilm.(1-aryloxy-2-hydroxypropyl)-phenylpiperazine derivatives suppress Candida albicans virulence by interfering with morphological transitionCranberry-derived proanthocyanidins induce a differential transcriptomic response within Candida albicans urinary biofilmsSuppression of Fluconazole Resistant Biofilm Formation and Filamentation by Methylindole DerivativesEnamel Based Composite Layers Deposited on Titanium Substrate with Antifungal Activity
P2860
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P2860
Candida albicans biofilms: development, regulation, and molecular mechanisms.
description
2016 nî lūn-bûn
@nan
2016年の論文
@ja
2016年論文
@yue
2016年論文
@zh-hant
2016年論文
@zh-hk
2016年論文
@zh-mo
2016年論文
@zh-tw
2016年论文
@wuu
2016年论文
@zh
2016年论文
@zh-cn
name
Candida albicans biofilms: development, regulation, and molecular mechanisms.
@en
type
label
Candida albicans biofilms: development, regulation, and molecular mechanisms.
@en
prefLabel
Candida albicans biofilms: development, regulation, and molecular mechanisms.
@en
P2860
P1476
Candida albicans biofilms: development, regulation, and molecular mechanisms.
@en
P2093
Megha Gulati
P2860
P304
P356
10.1016/J.MICINF.2016.01.002
P577
2016-01-21T00:00:00Z