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"Sporothrix brasiliensis"
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First Cases of Feline Sporotrichosis Caused by Sporothrix brasiliensis in Paraguay
2023
Sporothrix brasiliensis is an emerging fungal pathogen causing cat-transmitted sporotrichosis, an epi-zoonosis affecting humans, cats and dogs in Brazil and now spreading to neighboring South American countries. Here, we report the first two autochthonous cases of cat-transmitted sporotrichosis in Paraguay. The first case was a four-year-old male cat showing several ulcerative lesions, nasal deformity and respiratory symptoms. The second case was a one-year-old male cat showing a single ulcerated lesion, respiratory symptoms and nasal deformity. Both cases were admitted to a veterinary clinic in Ciudad del Este, Paraguay. Isolates were recovered from swabs of the two cases. Using molecular methods, the isolates were identified as S. brasiliensis.
Journal Article
Non-Zoonotic Transmission of Sporotrichosis: A Translational Study of Forty-Three Cases in a Zoonotic Hyperendemic Area
by
Freitas, Dayvison Francis Saraiva
,
Rabello, Vanessa Brito de Souza
,
Procópio-Azevedo, Anna Carolina
in
Amphotericin B
,
antifungal susceptibility
,
Calmodulin
2024
Over the past two decades, zoonotic sporotrichosis transmitted by naturally infected cats has become hyperendemic in Rio de Janeiro, Brazil. Sporothrix brasiliensis is the main agent involved. However, there are other forms of transmission of sporotrichosis. The aim of this study was to evaluate and associate the epidemiological, clinical and therapeutic data and the susceptibility of Sporothrix spp. to antifungal drugs in 43 non-zoonotic sporotrichosis cases. Forty-three clinical strains of Sporothrix were identified by partial sequencing of the calmodulin gene. An antifungal susceptibility test of amphotericin B, terbinafine, itraconazole, posaconazole and isavuconazole was performed according to the broth microdilution method. Most patients were male (55.8%). Regarding the source of infection, 21 patients (48.8%) reported trauma involving plants and/or contact with soil. Sporothrix brasiliensis was the predominant species (n = 39), followed by S. globosa (n = 3) and S. schenckii (n = 1). Sporothrix brasiliensis was associated with all the sources of infection, reinforcing previous data showing the presence of this species in environmental sources, as well as with all the clinical forms, including severe cases. One clinical strain of Sporothrix brasiliensis was classified as a non-wild-type strain for amphotericin B and another for itraconazole. S. schenckii was classified as non-WT for all the antifungals tested. In this context, it is important to emphasize that non-zoonotic sporotrichosis still occurs in the state of Rio de Janeiro, with S. brasiliensis as the main etiological agent, primarily associated with infections acquired after traumatic inoculation with plants and/or soil contact, followed by S. globosa and S. schenckii. In addition, non-WT strains were found, indicating the need to monitor the antifungal susceptibility profile of these species. It is crucial to investigate other natural sources of S. brasiliensis to better understand this fungal pathogen and its environment and host cycle.
Journal Article
Current Progress on Epidemiology, Diagnosis, and Treatment of Sporotrichosis and Their Future Trends
by
Rozental, Sonia
,
Gonçalves, Sarah Santos
,
de Carvalho, Jamile Ambrósio
in
Acquired immune deficiency syndrome
,
AIDS
,
Animal diseases
2022
Sporotrichosis, a human and animal disease caused by Sporothrix species, is the most important implantation mycosis worldwide. Sporothrix taxonomy has improved in recent years, allowing important advances in diagnosis, epidemiology, and treatment. Molecular epidemiology reveals that S. brasiliensis remains highly prevalent during the cat-transmitted sporotrichosis outbreaks in South America and that the spread of S. brasiliensis occurs through founder effects. Sporothrix globosa and S. schenckii are cosmopolitan on the move, causing major sapronoses in Asia and the Americas, respectively. In this emerging scenario, one-health approaches are required to develop a creative, effective, and sustainable response to tackle the spread of sporotrichosis. In the 21st century, it has become vital to speciate Sporothrix, and PCR is the main pillar of molecular diagnosis, aiming at the detection of the pathogen DNA from clinical samples through multiplex assays, whose sensitivity reaches remarkably three copies of the target. The treatment of sporotrichosis can be challenging, especially after the emergence of resistance to azoles and polyenes. Alternative drugs arising from discoveries or repositioning have entered the radar of basic research over the last decade and point to several molecules with antifungal potential, especially the hydrazone derivatives with great in vitro and in vivo activities. There are many promising developments for the near future, and in this review, we discuss how these trends can be applied to the Sporothrix-sporotrichosis system to mitigate the advance of an emerging and re-emerging disease.
Journal Article
The threat of emerging and re-emerging pathogenic Sporothrix species
by
Orofino-Costa, Rosane
,
Della Terra, Paula Portella
,
Gremião, Isabella Dib
in
Animals
,
Biomedical and Life Sciences
,
Brazil - epidemiology
2020
Sporotrichosis is a neglected subcutaneous mycosis of humans and animals acquired by traumatic inoculation of soil and plant material (classical route) contaminated with infectious propagules of the pathogen or being bitten/scratched by infected cats (alternative route). Within a genus composed of 53 species displaying an essentially environmental core, there are only a few members which have considerable impacts on human or animal health. Infections are typically caused by
S. brasiliensis
,
S. schenckii
or
S. globosa
. Rare mammal pathogens include members of the
S. pallida
and
S. stenocereus
complexes. To illustrate the tremendous impact of emerging zoonotic sporotrichosis on public health, we discuss the main features of the expanding epidemics driven by
S. brasiliensis
in cats and humans. The cat entry in the transmission chain of sporotrichosis, causing epizooties (cat–cat) or zoonosis (cat–human), has contributed to the definition of new paradigms in
Sporothrix
transmission, reaching epidemic levels, making the disease a serious public health problem. Indeed,
S. brasiliensis
infection in humans and animals is likely to become even more important in the future, with projections of its expansion in biogeographic domains and host range, as well as greater virulence in mammals. Therefore, lessons from a long-standing outbreak in the state of Rio de Janeiro about the source and distribution of the etiological agents among outbreak areas can be used to create better control and prevention plans and increase awareness of sporotrichosis as a serious emerging zoonotic disease.
Journal Article
A One Health Approach to Combatting Sporothrix brasiliensis: Narrative Review of an Emerging Zoonotic Fungal Pathogen in South America
by
Caceres, Diego H.
,
Pereira, Jose Guillermo
,
Beer, Karlyn D.
in
cat-transmitted sporotrichosis
,
fungi
,
One Health
2020
Cat-transmitted sporotrichosis caused by Sporothrix brasiliensis has become a major public health concern and presents a distinct divergence from the traditional epidemiology of sporotrichosis. This emerging fungal pathogen spreads readily among cat populations, and human infections occur exclusively via zoonotic transmission. While sporotrichosis is an implantation mycosis that typically manifests as cutaneous lesions in humans and cats, severe extracutaneous manifestations are more common with S. brasiliensis than other Sporothrix species infections. Rapid diagnosis and appropriate treatment regimens are critical for successful clinical resolution of sporotrichosis in both cats and humans. Species-level identification of Sporothrix is possible with molecular diagnostics and necessary for tracking the geographic expansion of S. brasiliensis and better understanding its epidemiology. Combatting cat-transmitted sporotrichosis requires a One Health approach to successfully implement public health control measures.
Journal Article
Guideline for the management of feline sporotrichosis caused by Sporothrix brasiliensis and literature revision
by
de Macedo Assunção Pereira, Romeika Herminia
,
de Farias, Marconi Rodrigues
,
Martins da Silva da Rocha, Elisabeth
in
Animals
,
Biomedical and Life Sciences
,
Cats
2021
We herein present a Brazilian guideline for the management of feline sporotrichosis, a mycosis caused by
Sporothrix brasiliensis.
This guideline is an effort of a national technical group organized by the Working Group on
Sporothrix
and Sporotrichosis of the International Society for Human and Animal Mycology (ISHAM). This publication intends to provide information on clinical-epidemiological aspects of this zoonosis, as well as a literature revision. Moreover, it gives some practical information on diagnosis and treatment of feline sporotrichosis. It also contains information that can be helpful for the prevention and control of
S. brasiliensis
transmission
.
Journal Article
Rising Incidence of Sporothrix brasiliensis Infections, Curitiba, Brazil, 2011–2022
by
Cáceres, Diego H.
,
Vicente, Vânia A.
,
Queiroz-Telles, Flávio
in
Biopsy
,
Brazil
,
Brazil - epidemiology
2023
Zoonotic outbreaks of sporotrichosis are increasing in Brazil. We examined and described the emergence of cat-transmitted sporotrichosis (CTS) caused by the fungal pathogen Sporothrix brasiliensis. We calculated incidence and mapped geographic distribution of cases in Curitiba, Brazil, by reviewing medical records from 216 sporotrichosis cases diagnosed during 2011-May 2022. Proven sporotrichosis was established in 84 (39%) patients and probable sporotrichosis in 132 (61%). Incidence increased from 0.3 cases/100,000 outpatient visit-years in 2011 to 21.4 cases/100,000 outpatient visit-years in 2021; of the 216 cases, 58% (n = 126) were diagnosed during 2019-2021. The main clinical form of sporotrichosis was lymphocutaneous (63%), followed by localized cutaneous (24%), ocular (10%), multisite infections (3%), and cutaneous disseminated (<0.5%). Since the first report of CTS in Curitiba in 2011, sporotrichosis has increased substantially, indicating continuous disease transmission. Clinician and public awareness of CTS and efforts to prevent transmission are needed.
Journal Article
Comparative genomics of the major fungal agents of human and animal Sporotrichosis: Sporothrix schenckii and Sporothrix brasiliensis
by
da Silveira, José F
,
Lopes-Bezerra, Leila M
,
Stajich, Jason E
in
Adaptation, Biological
,
Animal Genetics and Genomics
,
Animals
2014
Background
The fungal genus
Sporothrix
includes at least four human pathogenic species. One of these species,
S. brasiliensis
, is the causal agent of a major ongoing zoonotic outbreak of sporotrichosis in Brazil. Elsewhere, sapronoses are caused by
S. schenckii
and
S. globosa.
The major aims on this comparative genomic study are: 1) to explore the presence of virulence factors in
S. schenckii and S. brasiliensis
; 2) to compare
S. brasiliensis,
which is cat-transmitted and infects both humans and cats with
S. schenckii
, mainly a human pathogen; 3) to compare these two species to other human pathogens (Onygenales) with similar thermo-dimorphic behavior and to other plant-associated Sordariomycetes.
Results
The genomes of
S. schenckii and S. brasiliensis
were pyrosequenced to 17x and 20x coverage comprising a total of 32.3 Mb and 33.2 Mb, respectively. Pair-wise genome alignments revealed that the two species are highly syntenic showing 97.5% average sequence identity. Phylogenomic analysis reveals that both species diverged about 3.8-4.9 MYA suggesting a recent event of speciation. Transposable elements comprise respectively 0.34% and 0.62% of the
S. schenckii
and
S. brasiliensis
genomes and expansions of
Gypsy
-like elements was observed reflecting the accumulation of repetitive elements in the
S. brasiliensis
genome. Mitochondrial genomic comparisons showed the presence of group-I intron encoding homing endonucleases (HE’s) exclusively in
S. brasiliensis
. Analysis of protein family expansions and contractions in the
Sporothrix
lineage revealed expansion of LysM domain-containing proteins, small GTPases, PKS type1 and leucin-rich proteins. In contrast, a lack of polysaccharide lyase genes that are associated with decay of plants was observed when compared to other Sordariomycetes and dimorphic fungal pathogens, suggesting evolutionary adaptations from a plant pathogenic or saprobic to an animal pathogenic life style.
Conclusions
Comparative genomic data suggest a unique ecological shift in the
Sporothrix
lineage from plant-association to mammalian parasitism, which contributes to the understanding of how environmental interactions may shape fungal virulence. . Moreover, the striking differences found in comparison with other dimorphic fungi revealed that dimorphism in these close relatives of plant-associated Sordariomycetes is a case of convergent evolution, stressing the importance of this morphogenetic change in fungal pathogenesis.
Journal Article
Genetic diversity and antifungal susceptibility profiles in causative agents of sporotrichosis
by
Brihante, Raimunda Sâmia Nogueira
,
da Costa Sidrim, José Júlio
,
Colombo, Arnaldo Lopes
in
Animals
,
Antifungal agents
,
Antifungal Agents - pharmacology
2014
Background
Sporotrichosis is a chronic subcutaneous mycosis of humans and animals, which is typically acquired by traumatic inoculation of plant material contaminated with
Sporothrix
propagules, or via animals, mainly felines.
Sporothrix
infections notably occur in outbreaks, with large epidemics currently taking place in southeastern Brazil and northeastern China. Pathogenic species include
Sporothrix brasiliensis
,
Sporothrix schenckii s. str.
,
Sporothrix globosa
, and
Sporothrix luriei
, which exhibit differing geographical distribution, virulence, and resistance to antifungals. The phylogenetically remote species
Sporothrix mexicana
also shows a mild pathogenic potential
.
Methods
We assessed a genetically diverse panel of 68 strains. Susceptibility profiles of medically important
Sporothrix
species were evaluated by measuring the MICs and MFCs for amphotericin B (AMB), fluconazole (FLC), itraconazole (ITC), voriconazole (VRC), posaconazole (PCZ), flucytosine (5FC), and caspofungin (CAS). Haplotype networks were constructed to reveal interspecific divergences within clinical
Sporothrix
species to evaluate genetically deviant isolates.
Results
ITC and PCZ were moderately effective against
S. brasiliensis
(MIC
90
= 2 and 2 μg/mL, respectively) and
S. schenckii
(MIC
90
= 4 and 2 μg/mL, respectively). PCZ also showed low MICs against the rare species
S. mexicana
. 5FC, CAS, and FLC showed no antifungal activity against any
Sporothrix
species. The minimum fungicidal concentration ranged from 2 to >16 μg/mL for AMB against
S. brasiliensis
and
S. schenckii
, while the MFC
90
was >16 μg/mL for ITC, VRC, and PCZ.
Conclusion
Sporothrix
species in general showed high degrees of resistance against antifungals. Evaluating a genetically diverse panel of strains revealed evidence of multidrug resistant phenotypes, underlining the need for molecular identification of etiologic agents to predict therapeutic outcome.
Journal Article
Sporothrix brasiliensis: A Review of an Emerging South American Fungal Pathogen, Its Related Disease, Presentation and Spread in Argentina
by
Mas, Javier
,
Nusblat, Alejandro D.
,
Gisbert, Amelia
in
cat-transmitted sporotrichosis
,
diagnosis
,
Review
2021
Sporotrichosis, caused by Sporothrix schenckii and related species, is the most frequent implantation mycosis in Latin America. In Argentina, over the last 8 years, there have been 0.16 new cases per month of feline sporotrichosis in 2011, increasing to 0.75 cases per month in 2019 and involving zoonotic transmission to humans. Molecular identification by polymerase chain reaction (PCR) detected Sporothrix brasiliensis in these feline and zoonotic outbreaks. This study will focus on different feline and human sporotrichosis outbreaks caused by S. brasiliensis in Argentina during 2011–2019. We will address the sources of infection and environmental hotspots, as well as the application of several treatment strategies for improving the pharmacotherapy of the different clinical forms of the disease. Finally, we will provide a detailed summary of the clinical aspects and new advances in host–pathogen interactions, virulence factors and immune response, focusing on state-of-the-art diagnostic tools and potential vaccine candidates.
Journal Article