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1.
Infect Drug Resist ; 15: 2067-2090, 2022.
Article in English | MEDLINE | ID: mdl-35498634

ABSTRACT

Sporotrichosis is an important subcutaneous mycosis with high prevalence and threat to human and animal health worldwide. Sporothrix schenckii, Sporothrix brasiliensis, and Sporothrix globosa are the main etiological agents of this disease; and even though many efforts have been made recently to understand the Sporothrix-host interaction, little is known about S. globosa, an underestimated species. This organism shows the lowest virulence among the members of the Sporothrix pathogenic clade and represents an important pathogenic agent due to its global distribution. Here, we offer a review with all the known information about S. globosa, including its genome and proteomic information, and compare it with S. schenckii and S. brasiliensis, to explain the differences observed among these species, in terms of virulence, the host immune response, and the antifungal sensitivity. Also, we provide the gene prediction of some S. globosa putative virulence factors.

2.
J Microbiol Methods ; 187: 106260, 2021 08.
Article in English | MEDLINE | ID: mdl-34090997

ABSTRACT

Nitric oxide (NO) is a reactive gas that participates in many physiological as well as pathogenic processes in higher eukaryotic organisms. Inflammatory responses elicit higher levels of this molecule. Nevertheless, there are many technical challenges to accurately measure the amount of NO produced. Previously, a method using whole-cell extracts from Escherichia coli was able to generate the conversion of nitrate into nitrite to measure the amount of nitrate or indirectly the NO present in a sample using the Griess reaction. Here we present an improvement to this method, by using E. coli whole-cell extracts lacking one of the two nitrite reductases, rendered a more precise measurement when coupled with the Griess reaction than our previous report. Alternatively, osmotic stress showed to downregulate the expression of both nitrate reductases, which can be an alternative for indirect nitrate and NO reduction. The results presented here show an easy method for nitrate and NO reduction to nitrite and avoid the reconversion to nitrate, also as an alternative for other analytical methods that are based on cadmium, purified nitrate reductase enzyme, or salicylic methods to reduce NO. This method can be widely used for measuring NO production in living organisms, soil, and other relevant microbiological samples.


Subject(s)
Escherichia coli/metabolism , Macrophages/metabolism , Nitric Oxide/analysis , Nitrites/analysis , Animals , Cytochrome c Group/genetics , Escherichia coli/genetics , Macrophage Activation , Macrophages/immunology , Mice , Mutation , Nitrate Reductase/metabolism , Nitrates/metabolism , Nitric Oxide/metabolism , Nitrites/metabolism , Oxidation-Reduction , RAW 264.7 Cells , Sensitivity and Specificity
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