scholarly article | Q13442814 |
review article | Q7318358 |
P356 | DOI | 10.1111/J.1550-7408.1999.TB05119.X |
P698 | PubMed publication ID | 10377984 |
P2093 | author name string | Weinberg ED | |
P2860 | cites work | Induction of nitric oxide synthase protects against malaria in mice exposed to irradiated Plasmodium berghei infected mosquitoes: involvement of interferon gamma and CD8+ T cells | Q24679783 |
Deferoxamine and eflornithine (DL-alpha-difluoromethylornithine) in a rat model of Pneumocystis carinii pneumonia | Q28332765 | ||
Iron chelators as therapeutic agents against Pneumocystis carinii | Q28369399 | ||
Hemoglobin degradation in the malaria parasite Plasmodium falciparum: an ordered process in a unique organelle | Q28972254 | ||
A role for complement receptor-like molecules in iron acquisition by Candida albicans | Q36231437 | ||
Deferoxamine inhibition of malaria is independent of host iron status | Q36355145 | ||
Human astrocytes inhibit Cryptococcus neoformans growth by a nitric oxide-mediated mechanism | Q36363319 | ||
Reversed siderophores act as antimalarial agents | Q37557713 | ||
Human pythiosis associated with thalassemia hemoglobinopathy syndrome | Q38601098 | ||
Effect of iron chelation therapy on mortality in Zambian children with cerebral malaria. | Q39476819 | ||
Cytokines and legionellosis | Q40598673 | ||
Iron withholding: a defense against viral infections | Q41136325 | ||
Synergism between tumor necrosis factor-alpha and interferon-gamma on macrophage activation for the killing of intracellular Trypanosoma cruzi through a nitric oxide-dependent mechanism | Q41641701 | ||
The combined effect of iron chelators and classical antimalarials on the in-vitro growth of Plasmodium falciparum | Q41939635 | ||
Preliminary report on the use of desferrioxamine in the treatment ofPlasmodium falciparum malaria | Q41941892 | ||
Interleukin-4 and interleukin-10 inhibit nitric oxide-dependent macrophage killing of Candida albicans | Q44907215 | ||
Iron supplementation and malaria | Q47973024 | ||
Iron overload is a risk factor for zygomycosis | Q48670038 | ||
Siderophore production by the pathogenic yeast, Candida albicans | Q50205455 | ||
P433 | issue | 3 | |
P921 | main subject | infectious diseases | Q788926 |
P304 | page(s) | 231-238 | |
P577 | publication date | 1999-05-01 | |
P1433 | published in | The Journal of Eukaryotic Microbiology | Q15755596 |
P1476 | title | The role of iron in protozoan and fungal infectious diseases | |
P478 | volume | 46 |
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Q34058167 | HacA-independent functions of the ER stress sensor IreA synergize with the canonical UPR to influence virulence traits in Aspergillus fumigatus |
Q33716978 | HapX-mediated adaption to iron starvation is crucial for virulence of Aspergillus fumigatus |
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Q44654383 | Heme oxygenase in Candida albicans is regulated by hemoglobin and is necessary for metabolism of exogenous heme and hemoglobin to alpha-biliverdin |
Q43249708 | Histoplasma capsulatum secreted gamma-glutamyltransferase reduces iron by generating an efficient ferric reductant |
Q34100696 | Human lactoferrin: a novel therapeutic with broad spectrum potential |
Q91817094 | Identification of immune-related proteins of Dreissena polymorpha hemocytes and plasma involved in host-microbe interactions by differential proteomics |
Q39477444 | In vitro activities of antibiotics against Plasmodium falciparum are inhibited by iron |
Q33551908 | Infection with Mycobacterium avium differentially regulates the expression of iron transport protein mRNA in murine peritoneal macrophages |
Q36688374 | Influence of 120 kDa Pyruvate:Ferredoxin Oxidoreductase on Pathogenicity of Trichomonas vaginalis |
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Q33533286 | Interaction of Cryptococcus neoformans Rim101 and protein kinase A regulates capsule. |
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Q58757066 | Microbicidal action of lactoferrin and lactoferricin and their synergistic effect with metronidazole in Entamoeba histolyticaThis paper is one of a selection of papers published in this Special Issue, entitled 7th International Conference on Lactofer |
Q33863078 | Modulation of intramacrophage iron metabolism during microbial cell invasion |
Q38155848 | Novel Regulatory Mechanisms of Pathogenicity and Virulence to Combat MDR in Candida albicans |
Q34399134 | Perturbations in small molecule synthesis uncovers an iron-responsive secondary metabolite network in Aspergillus fumigatus |
Q36637917 | Proteases from Entamoeba spp. and Pathogenic Free-Living Amoebae as Virulence Factors. |
Q39653509 | Serum stimulates growth of and proteinase secretion by Aspergillus fumigatus |
Q27976506 | SreA-mediated iron regulation in Aspergillus fumigatus |
Q24619875 | The Cryptococcus neoformans capsule: a sword and a shield |
Q38159859 | The fungal UPR: a regulatory hub for virulence traits in the mold pathogen Aspergillus fumigatus. |
Q37808950 | The hazards of iron loading |
Q73420724 | The outcome of Leishmania major experimental infection in BALB/c mice can be modulated by exogenously delivered iron |
Q28482080 | The promoter of Rv0560c is induced by salicylate and structurally-related compounds in Mycobacterium tuberculosis |
Q38710763 | The reproductive ecology of iron in women. |
Q39656339 | The siderophore iron transporter of Candida albicans (Sit1p/Arn1p) mediates uptake of ferrichrome-type siderophores and is required for epithelial invasion |
Q36461028 | Therapeutic potential of iron chelators in diseases associated with iron mismanagement |
Q38210207 | Transport proteins of parasitic protists and their role in nutrient salvage. |
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