Pages that link to "Q35787100"
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The following pages link to Amphotericin primarily kills yeast by simply binding ergosterol (Q35787100):
Displaying 50 items.
- Mechanisms of Candida biofilm drug resistance (Q26827521) (← links)
- Reactive oxygen species-inducing antifungal agents and their activity against fungal biofilms (Q26861656) (← links)
- Copper at the Fungal Pathogen-Host Axis (Q27010264) (← links)
- Escape from Lethal Bacterial Competition through Coupled Activation of Antibiotic Resistance and a Mobilized Subpopulation (Q27309818) (← links)
- A functional variomics tool for discovering drug-resistance genes and drug targets (Q27932829) (← links)
- Identification and analysis of cation channel homologues in human pathogenic fungi (Q28481844) (← links)
- An antimicrobial peptidomimetic induces Mucorales cell death through mitochondria-mediated apoptosis (Q28534020) (← links)
- Fitness trade-offs restrict the evolution of resistance to amphotericin B (Q28534687) (← links)
- Mapping the Hsp90 Genetic Network Reveals Ergosterol Biosynthesis and Phosphatidylinositol-4-Kinase Signaling as Core Circuitry Governing Cellular Stress (Q28552131) (← links)
- An Amphotericin B Derivative Equally Potent to Amphotericin B and with Increased Safety (Q28554384) (← links)
- Enhanced Antifungal Activity by Ab-Modified Amphotericin B-Loaded Nanoparticles Using a pH-Responsive Block Copolymer (Q28647760) (← links)
- Selvamicin, an atypical antifungal polyene from two alternative genomic contexts (Q28818031) (← links)
- Novel antifungal agents: a patent review (2013 - present). (Q30239745) (← links)
- Drug resistance in eukaryotic microorganisms (Q30248243) (← links)
- Candida albicans VMA3 is necessary for V-ATPase assembly and function and contributes to secretion and filamentation (Q30555316) (← links)
- Toxicokinetic and mechanistic basis for the safety and tolerability of liposomal amphotericin B. (Q33409652) (← links)
- Sphingolipid biosynthetic pathway genes FEN1 and SUR4 modulate amphotericin B resistance. (Q33622748) (← links)
- Transcriptional Responses of Candida albicans to Antimicrobial Peptide MAF-1A (Q33695068) (← links)
- Evaluation of amphotericin B and chloramphenicol as alternative drugs for treatment of chytridiomycosis and their impacts on innate skin defenses (Q33743364) (← links)
- Psd1 Effects on Candida albicans Planktonic Cells and Biofilms (Q33780738) (← links)
- Bridging the Gap to Non-toxic Fungal Control: Lupinus-Derived Blad-Containing Oligomer as a Novel Candidate to Combat Human Pathogenic Fungi (Q33843321) (← links)
- Multitarget drug discovery for tuberculosis and other infectious diseases (Q33854785) (← links)
- Molecular umbrella-amphotericin B conjugates (Q34074786) (← links)
- The contribution of Candida albicans vacuolar ATPase subunit V₁B, encoded by VMA2, to stress response, autophagy, and virulence is independent of environmental pH. (Q34297590) (← links)
- It only takes one to do many jobs: Amphotericin B as antifungal and immunomodulatory drug (Q34302880) (← links)
- Recent progress in the study of the interactions of amphotericin B with cholesterol and ergosterol in lipid environments. (Q34417313) (← links)
- Two C4-sterol methyl oxidases (Erg25) catalyse ergosterol intermediate demethylation and impact environmental stress adaptation in Aspergillus fumigatus (Q34447311) (← links)
- The production of reactive oxygen species is a universal action mechanism of Amphotericin B against pathogenic yeasts and contributes to the fungicidal effect of this drug (Q34596780) (← links)
- Structure-antifungal activity relationships of polyene antibiotics of the amphotericin B group (Q34743567) (← links)
- Plasma Membrane Proteolipid 3 Protein Modulates Amphotericin B Resistance through Sphingolipid Biosynthetic Pathway. (Q35596158) (← links)
- Nontoxic antimicrobials that evade drug resistance (Q35756422) (← links)
- RNAseq analysis of Aspergillus fumigatus in blood reveals a just wait and see resting stage behavior (Q35756850) (← links)
- Characterization of a Polyethylene Glycol-Amphotericin B Conjugate Loaded with Free AMB for Improved Antifungal Efficacy (Q35967724) (← links)
- Catalytic site-selective thiocarbonylations and deoxygenations of vancomycin reveal hydroxyl-dependent conformational effects. (Q36030883) (← links)
- Polyene antibiotic that inhibits membrane transport proteins (Q36094142) (← links)
- Increased Antifungal Drug Resistance in Clinical Isolates of Cryptococcus neoformans in Uganda (Q36290696) (← links)
- C3-OH of Amphotericin B Plays an Important Role in Ion Conductance (Q36394097) (← links)
- Two clinical isolates of Candida glabrata exhibiting reduced sensitivity to amphotericin B both harbor mutations in ERG2. (Q36396182) (← links)
- From synthesis to function via iterative assembly of N-methyliminodiacetic acid boronate building blocks (Q36396226) (← links)
- Sterol 14α-demethylase mutation leads to amphotericin B resistance in Leishmania mexicana. (Q36407342) (← links)
- Molecular Characterization of Gβ-Like Protein CpcB Involved in Antifungal Drug Susceptibility and Virulence in A. fumigatus (Q36559089) (← links)
- David and Goliath: chemical perturbation of eukaryotes by bacteria (Q36577080) (← links)
- Cell Wall Changes in Amphotericin B-Resistant Strains from Candida tropicalis and Relationship with the Immune Responses Elicited by the Host (Q36729978) (← links)
- The effect of sterols on amphotericin B self-aggregation in a lipid bilayer as revealed by free energy simulations (Q36742704) (← links)
- Cryptococcus: from environmental saprophyte to global pathogen. (Q37250158) (← links)
- Simple Strategy for Taming Membrane-Disrupting Antibiotics (Q37532082) (← links)
- Regulation of Sterol Biosynthesis in the Human Fungal Pathogen Aspergillus fumigatus: Opportunities for Therapeutic Development (Q37617395) (← links)
- Targeting Candida albicans filamentation for antifungal drug development. (Q37705311) (← links)
- Antifungal drug development: challenges, unmet clinical needs, and new approaches. (Q37717926) (← links)
- Amphotericin B still in the headlines (Q38040169) (← links)