Teresa Gonçalves
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Associate Professor (with "Agregação")
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Recent Grants
Grant: Open
HumanIC - Human - Centric Indoor Climate for Healthcare Facilities
Open Date: 2023-09-01
Close Date: 2027-08-31
Grant: Close
Roles of the Candida albicans variome in its interaction with the human host
Open Date: 2023-03-01
Close Date: 2026-02-28
Grant: Close
Mycobiota homeostasis under the regulation of adenosine receptors as pivotal players in obesity
Open Date: 2022-09-01
Close Date: 2024-03-31
Grant: Close
PureAir Automotive
Open Date: 2020-11-01
Close Date: 2021-10-01
Grant: Close
Environmental monitoring of SARS-CoV-2 in an hemodialysis unit: a quest for preventing transmission in healthcare facilities
Open Date: 2020-05-01
Close Date: 2021-05-01
Articles (18)
Study of Ecological Relationship of Yeast Species with Candida albicans in the Context of Vulvovaginal Infections
The role of the fungal community, the mycobiota, in the health of the vagina is currently an important area of research. The emergence of new sequencing technologies and advances in bioinformatics made possible the discovery of novel fungi inhabiting this niche. Candida spp. constitutes the most important group of opportunistic pathogenic fungi, being the most prevalent fungal species in vulvovaginal infections. However, fungi such as Rhodotorula spp., Naganishia spp. and Malassezia spp. have emerged as potential pathogens in this niche, and therefore it is clinically relevant to understand their ecological interaction with Candida spp. The main aim of this study was to evaluate the impact of yeasts on Candida albicans’ pathogenicity, focusing on in-vitro growth, and biofilm formation at different times of co-culture and germ tube formation. The assays were performed with isolated species or with co-cultures of C. albicans (ATCC10231) with one other yeast species: Rhodotorula mucilaginosa (DSM13621), Malassezia furfur (DSM6170) or Naganishia albida (DSM70215). The results showed that M. furfur creates a symbiotic relationship with C. albicans, enhancing the growth rate of the co-culture (149.69%), and of germ tube formation of C. albicans (119.8%) and inducing a higher amount of biofilm biomass of the co-culture, both when mixed (154.1%) and preformed (166.8%). As for the yeasts R. mucilaginosa and N. albida, the relationship is antagonistic (with a significant decrease in all assays), thus possibly repressing the mixture’s pathogenicity. These results shed light on the complex interactions between yeasts in the vaginal mycobiome.
Year:
2023
Cx43-mediated hyphal folding counteracts phagosome integrity loss during fungal infection
Phagolysosomes are crucial organelles during the elimination of pathogens by host cells. The maintenance of their membrane integrity is vital during stressful conditions, such as during Candida albicans infection. As the fungal hyphae grow, the phagolysosome membrane expands to ensure that the growing fungus remains entrapped. Additionally, actin structures surrounding the hyphae-containing phagosome were recently described to damage and constrain these pathogens inside the host vacuoles by inducing their folding. However, the molecular mechanism involved in the phagosome membrane adaptation during this extreme expansion process is still unclear. The main goal of this study was to unveil the interplay between phagosomal membrane integrity and folding capacity of C. albicans -infected macrophages. We show that components of the repair machinery are gradually recruited to the expanding phagolysosomal membrane and that their inhibition diminishes macrophage folding capacity. Through an analysis of an RNAseq data set of C. albicans- infected macrophages, we identified Cx43, a gap junction protein, as a putative player involved in the interplay between lysosomal homeostasis and actin-related processes. Our findings further reveal that Cx43 is recruited to expand phagosomes and potentiates the hyphal folding capacity of macrophages, promoting their survival. Additionally, we reveal that Cx43 can act as an anchor for complexes involved in Arp2-mediated actin nucleation during the assembly of actin rings around hyphae-containing phagosomes. Overall, this work brings new insights on the mechanisms by which macrophages cope with C. albicans infection ascribing to Cx43 a new noncanonical regulatory role in phagosome dynamics during pathogen phagocytosis. IMPORTANCE Invasive candidiasis is a life-threatening fungal infection that can become increasingly resistant to treatment. Thus, strategies to improve immune system efficiency, such as the macrophage response during the clearance of the fungal infection, are crucial to ameliorate the current therapies. Engulfed Candida albicans , one of the most common Candida species, is able to quickly transit from yeast-to-hypha form, which can elicit a phagosomal membrane injury and ultimately lead to macrophage death. Here, we extend the understanding of phagosome membrane homeostasis during the hypha expansion and folding process. We found that loss of phagosomal membrane integrity decreases the capacity of macrophages to fold the hyphae. Furthermore, through a bioinformatic analysis, we reveal a new window of opportunities to disclose the mechanisms underlying the hyphal constraining process. We identified Cx43 as a new weapon in the armamentarium to tackle infection by potentiating hyphal folding and promoting macrophage survival.
Year:
2023
Collaborators (17)
Isabel Ferreira
Full Professor/Director
Instituto Politécnico de Leiria
Catarina Gavinhos
Assistent Professor
Instituto Politécnico de Leiria
Nuno Cunha
Head of Immunology and Hormonology Laboratory
-
Henrique Girao
University of Coimbra
Artur Figueirinha
University of Porto
Raquel Silva
Professora Auxiliar
Universidade Católica Portuguesa
Joana Rolo
Universidade da Beira Interior
Célia Nogueira
Assistant Professor
Faculty of Medicine, University of Coimbra
Patrícia Diogo
Invited Auxiliar Professor
University of Coimbra
Lígia Salgueiro
Catedratic Professor
University of Coimbra
Chantal Fernandes
-
Joana Liberal
Invited adjunct professor
Instituto Politécnico de Leiria
Rui Costa Soares
Instituto Português de Oncologia do Porto
António Miguéis
Professor Catedrático
Universidade do Porto Faculdade de Medicina
Rodrigo Cunha
Professor
Universidade do Porto Faculdade de Medicina
Félix Marcos-Tejedor
Profesor Contratado Doctor
Universidad de Alcalá de Henares Facultad de Medicina y Ciencias de la Salud
João Filipe Brochado Martins
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