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result(s) for
"Cryptococcus spp"
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An Invertebrate Host to Study Fungal Infections, Mycotoxins and Antifungal Drugs: Tenebrio molitor
by
Canteri de Souza, Patrícia
,
Custódio Caloni, Carla
,
Sergio Almeida, Ricardo
in
alternative method of infection
,
Antimicrobial agents
,
Antimicrobial peptides
2018
Faced with ethical conflict and social pressure, researchers have increasingly chosen to use alternative models over vertebrates in their research. Since the innate immune system is evolutionarily conserved in insects, the use of these animals in research is gaining ground. This review discusses Tenebrio molitor as a potential model host for the study of pathogenic fungi. Larvae of T. molitor are known as cereal pests and, in addition, are widely used as animal and human feed. A number of studies on mechanisms of the humoral system, especially in the synthesis of antimicrobial peptides, which have similar characteristics to vertebrates, have been performed. These studies demonstrate the potential of T. molitor larvae as a model host that can be used to study fungal virulence, mycotoxin effects, host immune responses to fungal infection, and the action of antifungal compounds.
Journal Article
Antifungal and antibiofilm effect of duloxetine hydrochloride against Cryptococcus neoformans and Cryptococcus gattii
by
Rehem, Amanda Rodrigues
,
do Carmo, Paulo Henrique Fonseca
,
Scorzoni, Liliana
in
Amphotericin B
,
Antifungal activity
,
Antifungal agents
2024
SummaryCryptococcosis is an invasive mycosis caused mainly by Cryptococcus gattii and C. neoformans and is treated with amphotericin B (AMB), fluconazole and 5-fluorocytosine. However, antifungal resistance, limited and toxic antifungal arsenal stimulate the search for therapeutic strategies such as drug repurposing. Among the repurposed drugs studied, the selective serotonin reuptake inhibitors (SSRIs) have shown activity against Cryptococcus spp. However, little is known about the antifungal effect of duloxetine hydrochloride (DH), a selective serotonin and norepinephrine reuptake inhibitor (SSNRI), against C. neoformans and C. gattii. In this study, DH inhibited the growth of several C. neoformans and C. gattii strains at concentrations ranging from 15.62 to 62.50 µg/mL. In addition, DH exhibited fungicidal activity ranging from 15.62 to 250 µg/mL. In biofilm, DH treatment reduced Cryptococcus spp. biomass at a level comparable to AMB, with a significant reduction (85%) for C. neoformans biofilms. The metabolic activity of C. neoformans and C. gattii biofilms decreased significantly (99%) after treatment with DH. Scanning electron micrographs confirmed the anti-biofilm activity of DH, as isolated cells could be observed after treatment. In conclusion, DH showed promising antifungal activity against planktonic cells and biofilms of C. neoformans and C. gattii, opening perspectives for further studies with DH in vivo.
Journal Article
Antifungal Activity of Amphiphilic Perylene Bisimides
by
Roa-Linares, Vicky C.
,
Mesa-Arango, Ana C.
,
Zaragozá, Ramón J.
in
Antifungal agents
,
Candida spp
,
Cryptococcus spp
2022
Perylene-based compounds, either naturally occurring or synthetic, have shown interesting biological activities. In this study, we report on the broad-spectrum antifungal properties of two lead amphiphilic perylene bisimides, compounds 4 and 5, which were synthesized from perylene-3,4,9,10-tetracarboxylic dianhydride by condensation with spermine and an ammonium salt formation. The antifungal activity was evaluated using a collection of fungal strains and clinical isolates from patients with onychomycosis or sporotrichosis. Both molecules displayed an interesting antifungal profile with MIC values in the range of 2–25 μM, being as active as several reference drugs, even more potent in some particular strains. The ammonium trifluoroacetate salt 5 showed the highest activity with a MIC value of 2.1 μM for all tested Candida spp., two Cryptococcus spp., two Fusarium spp., and one Neoscytalidium spp. strain. Therefore, these amphiphilic molecules with the perylene moiety and cationic ammonium side chains represent important structural features for the development of novel antifungals.
Journal Article
Global trends in Cryptococcus and its interactions with the host immune system: a bibliometric analysis
2024
This manuscript undertakes a systematic examination of the research landscape concerning global
species and their dynamism with the host immune system spanning the past decade. It furnishes a detailed survey of leading knowledge institutions and critical focal points in this area, utilizing bibliometric analysis.
VOSviewer and CiteSpace software platforms were employed to systematically analyze and graphically depict the relevant literature indexed in the WoSCC database over the preceding ten years.
In the interval between October 1, 2013, and October 1, 2023, a corpus of 795 publications was amassed. The primary research institutions involved in this study include Duke University, the University of Minnesota, and the University of Sydney. The leading trio of nations, in terms of publication volume, comprises the United States, China, and Brazil. Among the most prolific authors are Casadevall, Arturo; Wormley, Floyd L., Jr.; and Olszewski, Michal A., with the most highly cited author being Perfect, Jr. The most esteemed journal is Mbio, while Infection and Immunity commands the highest citation frequency, and the Journal of Clinical Microbiology boasts the most significant impact factor. Present research foci encompass the intricate interactions between
pathogenesis and host immunity, alongside immune mechanisms, complications, and immunotherapies.
This represents the first exhaustive scholarly review and bibliometric scrutiny of the evolving landscapes in
research and its interactions with the host immune system. The analyses delineated herein provide insights into prevailing research foci and trajectories, thus furnishing critical directions for subsequent inquiries in this domain.
Journal Article
Comparison of Cryptococcus gattii/neoformans Species Complex to Related Genera (Papiliotrema and Naganishia) Reveal Variances in Virulence Associated Factors and Antifungal Susceptibility
by
Padovan, Ana Carolina Barbosa
,
de Medeiros, Mariana Araújo Paulo
,
Tenor, Jennifer L.
in
Acquired immune deficiency syndrome
,
AIDS
,
Amphotericin B
2021
Cryptococcosis is an infectious disease of worldwide distribution, caused by encapsulated yeasts belonging to the phylum Basidiomycota. The genus Cryptococcus includes several species distributed around the world. The C. gattii / neoformans species complex is largely responsible for most cases of cryptococcosis. However, clinical series have been published of infections caused by Papiliotrema ( Cryptococcus ) laurentii and Naganishia albida ( Cryptococcus albidus ), among other related genera. Here, we examined the pathogenic potential and antifungal susceptibility of C. gattii / neoformans species complex (clades I and II) and related genera ( Papiliotrema and Naganishia ) isolated from environmental and clinical samples. P . laurentii (clade III), N . liquefasciens/N. albidosimilis (clade IV) ; and N. adeliensis / N . albida (clade V) strains produced higher levels of phospholipase and hemolysins, whereas the C. gattii / neoformans species complex strains (clades I and II) had markedly thicker capsules, produced more biofilm biomass and melanin, which are known virulence attributes. Interestingly, 40% of C . neoformans strains (clade II) had MICs above the ECV established for this species to amphotericin B. Several non- C. gattii / neoformans species complex (clades III to V) had MICs equal to or above the ECVs established for C. deuterogattii and C. neoformans for all the three antifungal drugs tested. Finally, all the non- C. gattii/neoformans clinical isolates (clades III to V) produced more melanin than the environmental isolates might reflect their particularly enhanced need for melanin during in vivo protection. It is very clear that C. gattii / neoformans species complex (clades I and II) strains, in general, show more similar virulence phenotypes between each other when compared to non- C. gattii / neoformans species complex (clades III to V) isolates. These observations together with the fact that P . laurentii and Naganishia spp. (clades III to V) strains were collected from the outside of a University Hospital, identify features of these yeasts important for environmental and patient colonization and furthermore, define mechanisms for infections with these uncommon pathogens.
Journal Article
Antifungal Activity of 8-Hydroxyquinoline Derivatives Against Candida auris, Candida haemulonii, Cryptococcus neoformans, and Cryptococcus gattii Complex
by
Krummenauer, Maria Eduarda
,
Silva Trentin, Danielle da
,
Silva Lopes, Marcela
in
8-Hydroxyquinoline
,
Animals
,
Antifungal activity
2025
Invasive fungal infections and the emergence of antifungal resistance pose significant challenges to public health. This study evaluates the antifungal activity of two 8-hydroxyquinoline derivatives, PH265 and PH276, against Cryptococcus spp., Candida auris, and Candida haemulonii. Using the EUCAST protocol, both compounds demonstrated broad-spectrum antifungal activity, with MICs ranging from 0.5 to 8 μg/mL. PH276 exhibited synergistic effects with fluconazole and caspofungin against C. haemulonii (FIC ≤ 0.5). The derivatives inhibited C. neoformans biofilm formation at higher concentrations and modulated polysaccharide capsule formation in Cryptococcus spp. In vivo toxicity assays in Tenebrio molitor, Galleria mellonella, and Caenorhabditis elegans revealed no significant adverse effects, with survival rates comparable to controls. These findings highlight PH265 and PH276 as promising antifungal agents with biofilm-disrupting properties, capsule-modulating effects, and low toxicity, supporting their potential for therapeutic development.
Journal Article
Fungal Biofilms as a Valuable Target for the Discovery of Natural Products That Cope with the Resistance of Medically Important Fungi—Latest Findings
by
Carpinella, María Cecilia
,
Butassi, Estefanía
,
Zacchino, Susana
in
Algae
,
Antifungal agents
,
antifungal resistance
2021
The development of new antifungal agents that target biofilms is an urgent need. Natural products, mainly from the plant kingdom, represent an invaluable source of these entities. The present review provides an update (2017–May 2021) on the available information on essential oils, propolis, extracts from plants, algae, lichens and microorganisms, compounds from different natural sources and nanosystems containing natural products with the capacity to in vitro or in vivo modulate fungal biofilms. The search yielded 42 articles; seven involved essential oils, two Brazilian propolis, six plant extracts and one of each, extracts from lichens and algae/cyanobacteria. Twenty articles deal with the antibiofilm effect of pure natural compounds, with 10 of them including studies of the mechanism of action and five dealing with natural compounds included in nanosystems. Thirty-seven manuscripts evaluated Candida spp. biofilms and two tested Fusarium and Cryptococcus spp. Only one manuscript involved Aspergillus fumigatus. From the data presented here, it is clear that the search of natural products with activity against fungal biofilms has been a highly active area of research in recent years. However, it also reveals the necessity of deepening the studies by (i) evaluating the effect of natural products on biofilms formed by the newly emerged and worrisome health-care associated fungi, C. auris, as well as on other non-albicans Candida spp., Cryptococcus sp. and filamentous fungi; (ii) elucidating the mechanisms of action of the most active natural products; (iii) increasing the in vivo testing.
Journal Article
CsDETC: detection and counting of small target Cryptococcus spp
2025
spp. infection can lead to cryptococcal meningitis (called CM) and pulmonary cryptococcosis, and how to diagnose
spp. infection accurately and timely is an urgent need in clinical practice. However, the existing methods such as cerebrospinal fluid (CSF) ink staining smear microscopy and CSF
spp. culture only rely on manual counting to determine the number of
spp., resulting in low efficiency. Thus, how to identify
spp. in cerebrospinal fluid and achieve automated counting of
spp. is of great significance for helping clinical experts accurately and timely diagnose
spp. infections to reduce the risk of deterioration.
We propose a small target
spp. detection and counting method called CsDETC, where three important components are integrated, such as data augmentation, hypergraph computation empowered semantic collecting and scattering module called HGC-SCS, and attention-enhanced path aggregation network called AEPAN. The
spp. dataset has been expanded through multiple data augmentation techniques such as random cropping, horizontal flipping, and rotation before training the model. Subsequently, the
spp. morphological features have been enriched by data augmentation based on perspective transformation and vertical flipping in the training process, thereby improving the generalization ability. Then different morphological features can be adaptively detected by learning high-order relationships between visual features when adding HGC-SCS into the neck network. Eventually, the convolution block attention module (CBAM) is integrated into path aggregation network to generate attention maps along the channel and spatial dimensions, transmitting more detailed information contained in the shallow layer to the deep layers to enhance the perception ability of small targets.
The experimental results on private dataset show that CsDETC outperforms other advanced object detection models with excellent performance such as YOLOv10 and YOLO11, etc. Typically, compared to the baseline, CsDETC shows significant improvements in mAP50 (93.6% vs. 91.3%), APs (51.0% vs. 49.5%), and MAE (1.865 vs. 2.370), while only a 0.7 millisecond increase in the inference time.
CsDETC is a promising tool that has performed well in preliminary validation. After validation with larger and more diverse datasets from different medical centers in the future, CsDETC can help doctors accurately and timely identify
spp. and achieve automated counting of
spp., providing reference for treatment plans and improving the diagnostic efficiency.
Journal Article
Antifungal and Immunomodulatory Activities of Brazilian Savannah Solanum lypocarpum Tree-Associated Streptomyces Isolates
by
Nunes, Camila Bontempo
,
Rodrigues, Fernando Pacheco
,
Queiroz, Marjorie de Carvalho Vieira
in
actinobacteria
,
antifungal activity
,
Antifungal agents
2025
Background/Objectives: Actinobacteria are one of the largest bacterial phyla. These microbes produce bioactive compounds, such as antifungals, antibiotics, immunological modulators, and anti-tumor agents. Studies on actinobacteria isolated from the Brazilian Savannah biome (Cerrado) are scarce and mostly address metagenomics or the search for hydrolytic enzyme-producing microbes. Solanum lycocarpum (lobeira) is a tree widely employed in regional gastronomy and pharmacopeia in Central Brazil. Methods: In this work, 60 actinobacteria isolates were purified from the rhizosphere of S. lycocarpum. Eight Streptomyces spp. isolates were selected for in vitro antifungal activity against Cryptococcus neoformans H99, the C. neoformans 89-610 fluconazole-tolerant strain, C. gattii NIH198, Candida albicans, C. glabrata, and C. parapsilosis. The ability of the aqueous extracts of the isolates to induce the in vitro secretion of tumor necrosis factor (TNF-α), nitric oxide (NO), interleukin-6 (IL-6), and IL-10 by murine macrophages was also evaluated. Results: All extracts showed antifungal activity against at least two yeast species. Streptomyces spp. LAP11, LDB2, and LDB17 inhibited C. neoformans growth by 40–93%. Most extracts (except LAP2) also inhibited C. gattii. None inhibited C. albicans, but all inhibited C. glabrata (40–90%). Streptomyces sp. LAP8 extract increased nitric oxide production by approximately 347-fold in murine macrophages, while LDB11 extract suppressed LPS-induced TNF-α production by 70% and simultaneously increased IL-10 secretion, suggesting immunosuppressive potential. Conclusions: The results revealed that Cerrado actinobacteria-derived aqueous extracts are potential sources of antifungal and immunomodulatory biocompounds.
Journal Article
Pathogenic Delivery: The Biological Roles of Cryptococcal Extracellular Vesicles
by
Castelli, Rafael F.
,
Reis, Flavia C. G.
,
Rodrigues, Marcio L.
in
biogenesis
,
cells
,
Cryptococcus neoformans
2020
Extracellular vesicles (EVs) are produced by all domains of life. In fungi, these structures were first described in Cryptococcus neoformans and, since then, they were characterized in several pathogenic and non-pathogenic fungal species. Cryptococcal EVs participate in the export of virulence factors that directly impact the Cryptococcus–host interaction. Our knowledge of the biogenesis and pathogenic roles of Cryptococcus EVs is still limited, but recent methodological and scientific advances have improved our understanding of how cryptococcal EVs participate in both physiological and pathogenic events. In this review, we will discuss the importance of cryptococcal EVs, including early historical studies suggesting their existence in Cryptococcus, their putative mechanisms of biogenesis, methods of isolation, and possible roles in the interaction with host cells.
Journal Article