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result(s) for
"Bitencourt, Tamires Aparecida"
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Epidemiology and Diagnostic Perspectives of Dermatophytoses
by
Bitencourt, Tamires Aparecida
,
Segura, Gabriela Gonzalez
,
Petrucelli, Monise Fazolin
in
deep infections
,
MALDI-TOF MS
,
mycological diagnosis
2020
Dermatophytoses affect about 25% of the world population, and the filamentous fungus Trichophyton rubrum is the main causative agent of this group of diseases. Dermatomycoses are caused by pathogenic fungi that generally trigger superficial infections and that feed on keratinized substrates such as skin, hair, and nails. However, there are an increasing number of reports describing dermatophytes that invade deep layers such as the dermis and hypodermis and that can cause deep infections in diabetic and immunocompromised patients, as well as in individuals with immunodeficiency. Despite the high incidence and importance of dermatophytes in clinical mycology, the diagnosis of this type of infection is not always accurate. The conventional methods most commonly used for mycological diagnosis are based on the identification of microbiological and biochemical features. However, in view of the limitations of these conventional methods, molecular diagnostic techniques are increasingly being used because of their higher sensitivity, specificity and rapidity and have become more accessible. The most widely used molecular techniques are conventional PCR, quantitative PCR, multiplex PCR, nested, PCR, PCR-RFLP, and PCR-ELISA. Another promising technique for the identification of microorganisms is the analysis of protein profiles by MALDI-TOF MS. Molecular techniques are promising but it is necessary to improve the quality and availability of the information in genomic and proteomic databases in order to streamline the use of bioinformatics in the identification of dermatophytes of clinical interest.
Journal Article
Extracellular Vesicles From the Dermatophyte Trichophyton interdigitale Modulate Macrophage and Keratinocyte Functions
by
Bitencourt, Tamires Aparecida
,
Rossi, Antonio
,
Quaresemin, Natália Renault
in
Arginase
,
Biological activity
,
Bone marrow
2018
The release of biomolecules critically affects all pathogens and their establishment of diseases. For the export of several biomolecules in diverse species, the use of extracellular vesicles (EVs) is considered to represent an alternative transport mechanism, but no study to date has investigated EVs from dermatophytes. Here, we describe biologically active EVs from the dermatophyte
, a causative agent of mycoses worldwide. EV preparations from
were examined using nanoparticle-tracking analysis, which revealed vesicular structures 20-380 nm in diameter. These vesicles induced the production of proinflammatory mediators by bone marrow-derived macrophages (BMDMs) and keratinocytes in a dose-dependent manner, and an addition of the EVs to BMDMs also stimulated the transcription of the M1-polarization marker iNOS (inducible nitric oxide synthase) and diminished the expression of the M2 markers arginase-1 and Ym-1. The observed M1 macrophages' polarization triggered by EVs was abolished in cells obtained from knockout Toll-like receptor-2 mice. Also, the EVs-induced productions of pro-inflammatory mediators were blocked too. Furthermore, the EVs from
enhanced the fungicidal activity of BMDMs. These results suggest that EVs from
can modulate the innate immune response of the host and influence the interaction between
and host immune cells. Our findings thus open new areas of investigation into the host-parasite relationship in dermatophytosis.
Journal Article
Chalcones Repressed the AURKA and MDR Proteins Involved in Metastasis and Multiple Drug Resistance in Breast Cancer Cell Lines
by
Bitencourt, Tamires Aparecida
,
Baek, Seung Joon
,
Mesquita, Thaís Balthazar
in
Breast cancer
,
BT-20
,
Cell adhesion & migration
2018
In the present investigation, trans-chalcone and licochalcone A were tested against MCF-7 and BT-20 breast cancer cell lines for anti-tumor activity. We found that both chalcones down regulated important genes associated to cancer development and inhibited cell migration of metastatic cells (BT-20). Finally, we observed that licochalcone A reduces the MDR-1 protein, while both chalcones suppress the AURKA protein in a dose-dependent manner. In conclusion, we observed the trans-chalcone and licochalcone A affected the cell viability of breast cancer cell lines MCF-7 and BT-20 and presents anti-metastatic and anti-resistance potential, by the repression of AUKA and MDR-1 proteins.
Journal Article
Aspergillus fumigatus Extracellular Vesicles Display Increased Galleria mellonella Survival but Partial Pro-Inflammatory Response by Macrophages
by
Bitencourt, Tamires Aparecida
,
Freitas, Mateus Silveira
,
Dourado, Thales de Mileto Henrique
in
Anti-inflammatory agents
,
Aspergillus fumigatus
,
Cytokines
2023
Fungal extracellular vesicles (EVs) mediate intra- and interspecies communication and are critical in host–fungus interaction, modulating inflammation and immune responses. In this study, we evaluated the in vitro pro- and anti-inflammatory properties of Aspergillus fumigatus EVs over innate leukocytes. A. fumigatus EVs induced a partial proinflammatory response by macrophages, characterized by increased tumor necrosis factor-alpha production, and increased gene expression of induced nitric oxide synthase and adhesion molecules. EVs induce neither NETosis in human neutrophils nor cytokine secretion by peripheral mononuclear cells. However, prior inoculation of A. fumigatus EVs in Galleria mellonella larvae resulted in increased survival after the fungal challenge. Taken together, these findings show that A. fumigatus EVs play a role in protection against fungal infection, although they induce a partial pro-inflammatory response.
Journal Article
Trans-chalcone activity against Trichophyton rubrum relies on an interplay between signaling pathways related to cell wall integrity and fatty acid metabolism
by
Bitencourt, Tamires Aparecida
,
Macedo, Claudia
,
Rocha, Marina Campos
in
Alternative energy sources
,
Animal Genetics and Genomics
,
Antifungal activity
2019
Background
Trichophyton rubrum
is the main etiological agent of skin and nail infections worldwide. Because of its keratinolytic activity and anthropophilic nature, infection models based on the addition of protein substrates have been employed to assess transcriptional profiles and to elucidate aspects related to host-pathogen interactions. Chalcones are widespread compounds with pronounced activity against dermatophytes. The toxicity of
trans
-chalcone towards
T. rubrum
is not fully understood but seems to rely on diverse cellular targets. Within this context, a better understanding of the mode of action of
trans
-chalcone may help identify new strategies of antifungal therapy and reveal new chemotherapeutic targets. This work aimed to assess the transcriptional profile of
T. rubrum
grown on different protein sources (keratin or elastin) to mimic natural infection sites and exposed to
trans
-chalcone in order to elucidate the mechanisms underlying the antifungal activity of
trans-
chalcone.
Results
Overall, the use of different protein sources caused only slight differences in the transcriptional profile of
T. rubrum
. The main differences were the modulation of proteases and lipases in gene categories when
T. rubrum
was grown on keratin and elastin, respectively. In addition, some genes encoding heat shock proteins were up-regulated during the growth of
T. rubrum
on keratin. The transcriptional profile of
T. rubrum
exposed to
trans
-chalcone included four main categories: fatty acid and lipid metabolism, overall stress response, cell wall integrity pathway, and alternative energy metabolism. Consistently,
T. rubrum
Mapk was strongly activated during the first hours of
trans
-chalcone exposure. Noteworthy,
trans-
chalcone inhibited genes involved in keratin degradation. The results also showed effects of
trans
-chalcone on fatty acid synthesis and metabolic pathways involved in acetyl-CoA supply.
Conclusion
Our results suggest that the mode of action of
trans
-chalcone is related to pronounced changes in fungal metabolism, including an imbalance between fatty acid synthesis and degradation that interferes with cell membrane and cell wall integrity. In addition, this compound exerts activity against important virulence factors. Taken together,
trans
-chalcone acts on targets related to dermatophyte physiology and the infection process.
Journal Article
Gene Expression Response of Trichophyton rubrum during Coculture on Keratinocytes Exposed to Antifungal Agents
by
Bitencourt, Tamires Aparecida
,
Silva, Gabriel
,
Marins, Mozart
in
Antifungal agents
,
Bacterial infections
,
Care and treatment
2015
Trichophyton rubrum is the most common causative agent of dermatomycoses worldwide, causing infection in the stratum corneum, nails, and hair. Despite the high prevalence of these infections, little is known about the molecular mechanisms involved in the fungal-host interaction, particularly during antifungal treatment. The aim of this work was to evaluate the gene expression of T. rubrum cocultured with keratinocytes and treated with the flavonoid trans-chalcone and the glycoalkaloid α-solanine. Both substances showed a marked antifungal activity against T. rubrum strain CBS (MIC = 1.15 and 17.8 µg/mL, resp.). Cytotoxicity assay against HaCaT cells produced IC50 values of 44.18 to trans-chalcone and 61.60 µM to α-solanine. The interaction of keratinocytes with T. rubrum conidia upregulated the expression of genes involved in the glyoxylate cycle, ergosterol synthesis, and genes encoding proteases but downregulated the ABC transporter TruMDR2 gene. However, both antifungals downregulated the ERG1 and ERG11, metalloprotease 4, serine proteinase, and TruMDR2 genes. Furthermore, the trans-chalcone downregulated the genes involved in the glyoxylate pathway, isocitrate lyase, and citrate synthase. Considering the urgent need for more efficient and safer antifungals, these results contribute to a better understanding of fungal-host interactions and to the discovery of new antifungal targets.
Journal Article
Transcriptome Analysis of Co-Cultures of THP-1 Human Macrophages with Inactivated Germinated Trichophyton rubrum Conidia
by
Bitencourt, Tamires Aparecida
,
da Silva Junior, Wilson Araújo
,
Segura, Gabriela Gonzalez
in
Cell culture
,
Cell interactions
,
Conidia
2023
Although most mycoses are superficial, the dermatophyte Trichophyton rubrum can cause systemic infections in patients with a weakened immune system, resulting in serious and deep lesions. The aim of this study was to analyze the transcriptome of a human monocyte/macrophage cell line (THP-1) co-cultured with inactivated germinated T. rubrum conidia (IGC) in order to characterize deep infection. Analysis of macrophage viability by lactate dehydrogenase quantification showed the activation of the immune system after 24 h of contact with live germinated T. rubrum conidia (LGC). After standardization of the co-culture conditions, the release of the interleukins TNF-α, IL-8, and IL-12 was quantified. The greater release of IL-12 was observed during co-culturing of THP-1 with IGC, while there was no change in the other cytokines. Next-generation sequencing of the response to T. rubrum IGC identified the modulation of 83 genes; of these, 65 were induced and 18 were repressed. The categorization of the modulated genes showed their involvement in signal transduction, cell communication, and immune response pathways. In total, 16 genes were selected for validation and Pearson’s correlation coefficient was 0.98, indicating a high correlation between RNA-seq and qPCR. Modulation of the expression of all genes was similar for LGC and IGC co-culture; however, the fold-change values were higher for LGC. Due to the high expression of the IL-32 gene in RNA-seq, we quantified this interleukin and observed an increased release in co-culture with T. rubrum. In conclusion, the macrophages-T. rubrum co-culture model revealed the ability of these cells to modulate the immune response, as demonstrated by the release of proinflammatory cytokines and the RNA-seq gene expression profile. The results obtained permit to identify possible molecular targets that are modulated in macrophages and that could be explored in antifungal therapies involving the activation of the immune system.
Journal Article
Transcription profile of Trichophyton rubrum conidia grown on keratin reveals the induction of an adhesin-like protein gene with a tandem repeat pattern
by
Bitencourt, Tamires Aparecida
,
Macedo, Claudia
,
Franco, Matheus Eloy
in
Amino Acid Sequence
,
Analysis
,
Animal Genetics and Genomics
2016
Background
Trichophyton rubrum
is a cosmopolitan filamentous fungus that can infect human keratinized tissue (skin, nails and, rarely, hair) and is the major agent of all chronic and recurrent dermatophytoses. The dermatophyte infection process is initiated through the release of arthroconidial adhesin, which binds to the host stratum corneum. The conidia then germinate, and fungal hyphae invade keratinized skin structures through the secretion of proteases. Although arthroconidia play a central role in pathogenesis, little is known about the dormancy and germination of
T. rubrum
conidia and the initiation of infection
.
The objective of this study was to evaluate the transcriptional gene expression profile of
T. rubrum
conidia during growth on keratin- or elastin-containing medium, mimicking superficial and deep dermatophytosis, respectively
.
Results
A transcriptional profiling analysis was conducted using a custom oligonucleotide-based microarray by comparing
T. rubrum
conidia grown on elastin and keratin substrates. This comparison shows differences according to protein source used, but consisted of a very small set of genes, which could be attributed to the quiescent status of conidia. The modulated genes were related to the dormancy, survival and germination of conidia, including genes involved in the respiratory chain, signal transduction and lipid metabolism. However, an induction of a great number of proteases occurred when
T. rubrum
was grown in the presence of keratin such as the subtilisin family of proteases (Sub 1 and Sub 3) and leucine aminopeptidase (Lap 1 and Lap 2). Interestingly, keratin also promoted the up-regulation of a gene encoding an adhesin-like protein with a tandem repeat sequence.
In silico
analysis showed that the protein contains a domain related to adhesin that may play a role in host-pathogen interactions. The expression of this adhesin-like gene was also induced during the co-culture of
T. rubrum
with a human keratinocyte cell line, confirming its role in fungal-host interactions.
Conclusion
These results contribute to the discovery of new targets involved in the adhesion of conidia and the maintenance of conidial dormancy, which are essential for triggering the process of infection and the chronicity of dermatophytosis.
Journal Article
IAspergillus fumigatus/I Extracellular Vesicles Display Increased IGalleria mellonella/I Survival but Partial Pro-Inflammatory Response by Macrophages
by
Bitencourt, Tamires Aparecida
,
Tirapelli, Carlos R
,
Freitas, Mateus Silveira
in
Ethylenediaminetetraacetic acid
,
Immune response
,
Inflammation
2023
Fungal extracellular vesicles (EVs) mediate intra- and interspecies communication and are critical in host-fungus interaction, modulating inflammation and immune responses. In this study, we evaluated the in vitro pro- and anti-inflammatory properties of Aspergillus fumigatus EVs over innate leukocytes. A. fumigatus EVs induced a partial proinflammatory response by macrophages, characterized by increased tumor necrosis factor-alpha production, and increased gene expression of induced nitric oxide synthase and adhesion molecules. EVs induce neither NETosis in human neutrophils nor cytokine secretion by peripheral mononuclear cells. However, prior inoculation of A. fumigatus EVs in Galleria mellonella larvae resulted in increased survival after the fungal challenge. Taken together, these findings show that A. fumigatus EVs play a role in protection against fungal infection, although they induce a partial pro-inflammatory response.
Journal Article
Antifungal activity of flavonoids and modulation of expression of genes of fatty acid synthesis in the dermatophyte Trichophyton rubrum
by
Bitencourt, Tamires Aparecida
,
Marins, Mozart
,
TakahasiKomoto, Tatiana
in
Biomedicine
,
Medicine
,
Medicine & Public Health
2014
Doc number: P53
Journal Article