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2.
BMC Infect Dis ; 24(1): 515, 2024 May 23.
Article in English | MEDLINE | ID: mdl-38778275

ABSTRACT

BACKGROUND: Lagenidium deciduum is an oomycete that can cause infections in mammals that present similarly to pythiosis and mucormycosis. Most of the existing case reports have occurred in canines and have been fatal. In animals, medical therapy has not been successful, so surgical excision is the mainstay of treatment. Lagenidium sp. infections in humans are rare. There is only one case of a human Lagenidium sp. infection in the literature, and it presented as an ocular infection. The human ocular infection was resistant to medical therapy and required a penetrating keratoplasty for cure. Additional reports of effective therapy are needed to guide management of this emerging pathogen. We present the first case of a cutaneous Lagenidium deciduum infection in a human patient, which is also the first documented case of a Lagenidium deciduum infection in an immunocompromised host of any species. CASE PRESENTATION: An 18-year-old female with relapsed acute myeloid leukemia, awaiting a haploidentical stem cell transplant, presented with erythematous cutaneous lesions on her left hip and bilateral buttocks that enlarged and blackened over several days. About 1 week later, boil-like lesions appeared on her bilateral buttocks. The skin lesions were initially presumed to be bacterial in origin, so the patient was treated with clindamycin and cefepime with little improvement. Upon further investigation, fungal cultures and skin biopsies revealed aseptate hyphae, so the patient was switched to isavuconazole and amphotericin B due to concern for mucormycosis. Phenotypic characterization and DNA sequencing were performed by the Fungus Testing Laboratory, University of Texas Health Science Center at San Antonio, which identified the causal fungal organism as Lagenidium deciduum. All of her cutaneous lesions were surgically excised, and the patient was treated with micafungin, terbinafine, doxycycline, and azithromycin. Micafungin and terbinafine were continued until she achieved engraftment post-transplant. CONCLUSIONS: We report the first successful treatment of a human Lagenidium infection in an immunocompromised host through a combination of aggressive surgical excision and prolonged antifungal therapy during the prolonged neutropenia associated with allogeneic stem cell transplant. Prompt diagnosis and management may prevent disseminated oomycosis.


Subject(s)
Antifungal Agents , Lagenidium , Leukemia, Myeloid, Acute , Humans , Female , Leukemia, Myeloid, Acute/complications , Antifungal Agents/therapeutic use , Adolescent , Lagenidium/genetics , Dermatomycoses/microbiology , Dermatomycoses/drug therapy , Immunocompromised Host
3.
Open Vet J ; 14(4): 1072-1075, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38808284

ABSTRACT

Background: Dermatophytosis is a contagious fungal infection that affects mainly cats. It poses significant challenges in veterinary medicine due to its zoonotic potential and impact on animal and public health. Rapid and reliable diagnosis is crucial for preventing the spread of the disease, guiding treatment decisions, and monitoring disease control efforts. Although there are several studies on diagnostic methods in feline dermatophytosis, the comparison between them from the same sample lacks data. The absence of a universally accepted gold standard diagnostic method highlights the need for a multifaceted approach to diagnosing feline dermatophytosis. Aim: This study aims to assess the accuracy and efficacy of different diagnostic techniques comprehensively. Methods: For this, 48 samples of cats were analyzed by dermoscopy, direct hair examination, fungal culture using various media (Mycosel, Sabouraud, and Dermatophyte Test Medium), and polymerase chain reaction (PCR). Results: Direct examination and dermoscopy yielded unsatisfactory results. Mycosel and Sabouraud were suboptimal. DTM demonstrated superior selectivity, making it the most reliable among traditional methods. PCR was the top performer, exhibiting singular sensitivity, specificity, and accuracy. Conclusion: The study suggests that PCR may be the preferred choice for diagnosing feline dermatophytosis in clinical practice, especially when rapid and accurate results are essential.


Subject(s)
Cat Diseases , Polymerase Chain Reaction , Sensitivity and Specificity , Tinea , Cats , Animals , Cat Diseases/diagnosis , Cat Diseases/microbiology , Tinea/veterinary , Tinea/diagnosis , Tinea/microbiology , Polymerase Chain Reaction/veterinary , Dermoscopy/veterinary , Dermatomycoses/veterinary , Dermatomycoses/diagnosis , Dermatomycoses/microbiology
4.
Int J Med Mushrooms ; 26(6): 13-23, 2024.
Article in English | MEDLINE | ID: mdl-38801085

ABSTRACT

Brazil-grown outdoor-cultivated Agaricus brasiliensis KA21 fruiting body (KA21) significantly increases the production of serum anti-beta-glucan antibody. Therefore, KA21 ingestion may be useful for the prevention and alleviation of fungal infections. This study aimed to determine the effects of KA21 in fungal infections in animals. KA21 was administered to nine dogs infected with Malassezia. Notably, the anti-beta-glucan antibody titer remained unchanged or tended to decrease in the oral steroid arm, whereas in the non-steroid arm, antibody titer increased in almost all animals after KA21 ingestion. Dogs showing improved clinical symptoms exhibited increased anti-beta-glucan antibody titers. The results of this study suggest that KA21 ingestion may alleviate the symptoms of Malassezia and other fungal infections and that continuous ingestion may help prolong recurrence-free intervals. Additionally, the ingestion of KA21 during oral steroid dosage reduction or discontinuation may enable smoother steroid withdrawal.


Subject(s)
Agaricus , Dog Diseases , Fruiting Bodies, Fungal , Malassezia , Animals , Dogs , Agaricus/chemistry , Fruiting Bodies, Fungal/chemistry , Malassezia/drug effects , Dog Diseases/microbiology , Dog Diseases/drug therapy , Dermatomycoses/veterinary , Dermatomycoses/prevention & control , Dermatomycoses/drug therapy , Dermatomycoses/microbiology , beta-Glucans/administration & dosage , beta-Glucans/pharmacology , Male , Brazil , Dermatitis/drug therapy , Dermatitis/veterinary , Dermatitis/microbiology , Dermatitis/prevention & control , Female , Antibodies, Fungal/blood
5.
Med Mycol ; 62(5)2024 May 03.
Article in English | MEDLINE | ID: mdl-38734886

ABSTRACT

Despite previous reports on the emergence of Malassezia pachydermatis strains with decreased susceptibility to azoles, there is limited information on the actual prevalence and genetic diversity of azole-resistant isolates of this yeast species. We assessed the prevalence of azole resistance in M. pachydermatis isolates from cases of dog otitis or skin disease attended in a veterinary teaching hospital during a 2-year period and analyzed the ERG11 (encoding a lanosterol 14-α demethylase, the primary target of azoles) and whole genome sequence diversity of a group of isolates that displayed reduced azole susceptibility. Susceptibility testing of 89 M. pachydermatis isolates from 54 clinical episodes (1-6 isolates/episode) revealed low minimum inhibitory concentrations (MICs) to most azoles and other antifungals, but 11 isolates from six different episodes (i.e., 12.4% of isolates and 11.1% of episodes) had decreased susceptibility to multiple azoles (fluconazole, itraconazole, ketoconazole, posaconazole, ravuconazole, and/or voriconazole). ERG11 sequencing of these 11 azole-resistant isolates identified eight DNA sequence profiles, most of which contained amino acid substitutions also found in some azole-susceptible isolates. Analysis of whole genome sequencing (WGS) results revealed that the azole-resistant isolates from the same episode of otitis, or even different episodes affecting the same animal, were more genetically related to each other than to isolates from other dogs. In conclusion, our results confirmed the remarkable ERG11 sequence variability in M. pachydermatis isolates of animal origin observed in previous studies and demonstrated the value of WGS for disentangling the epidemiology of this yeast species.


We analyzed the prevalence and diversity of azole-resistant Malassezia pachydermatis isolates in a veterinary hospital. A low prevalence of multi-azole resistance (c.10% of isolates and cases) was found. Whole genome and ERG11 sequencing of resistant isolates revealed remarkable genetic diversity.


Subject(s)
Antifungal Agents , Azoles , Dog Diseases , Drug Resistance, Fungal , Genetic Variation , Malassezia , Microbial Sensitivity Tests , Dogs , Animals , Malassezia/genetics , Malassezia/drug effects , Malassezia/isolation & purification , Malassezia/classification , Azoles/pharmacology , Dog Diseases/microbiology , Dog Diseases/epidemiology , Antifungal Agents/pharmacology , Prevalence , Otitis/microbiology , Otitis/epidemiology , Otitis/veterinary , Dermatitis/microbiology , Dermatitis/veterinary , Dermatitis/epidemiology , Dermatomycoses/microbiology , Dermatomycoses/veterinary , Dermatomycoses/epidemiology , Whole Genome Sequencing , Sterol 14-Demethylase/genetics
6.
BMC Infect Dis ; 24(1): 473, 2024 May 06.
Article in English | MEDLINE | ID: mdl-38711014

ABSTRACT

BACKGROUND: The incidence of Talaromyces marneffei (T. marneffei) infection has increased in recent years with the development of organ transplantation and the widespread use of immunosuppressive agents. However, the lack of clinical suspicion leading to delay or misdiagnosis is an important reason for the high mortality rate in non-human immunodeficiency virus (HIV) and non-endemic population. Herein, we report a case of disseminated T. marneffei infection in a non-HIV and non-endemic recipient after renal transplant, who initially presented with skin rashes and subcutaneous nodules and developed gastrointestinal bleeding. CASE PRESENTATION: We describe a 54-year-old renal transplantation recipient presented with scattered rashes, subcutaneous nodules and ulcerations on the head, face, abdomen, and right upper limb. The HIV antibody test was negative. The patient had no obvious symptoms such as fever, cough, etc. Histopathological result of the skin lesion sites showed chronic suppurative inflammation with a large number of fungal spores. Subsequent fungal culture suggested T. marneffei infection. Amphotericin B deoxycholate was given for antifungal treatment, and there was no deterioration in the parameters of liver and kidney function. Unfortunately, the patient was soon diagnosed with gastrointestinal bleeding, gastrointestinal perforation and acute peritonitis. Then he rapidly developed multiple organ dysfunction syndrome and abandoned treatment. CONCLUSIONS: The risk of fatal gastrointestinal bleeding can be significantly increased in kidney transplant patients with T. marneffei infection because of the long-term side effects of post-transplant medications. Strengthening clinical awareness and using mNGS or mass spectrometry technologies to improve the detection rate and early diagnosis of T. marneffei are crucial for clinical treatment in non-HIV and non-endemic population.


Subject(s)
Kidney Transplantation , Mycoses , Talaromyces , Transplant Recipients , Humans , Male , Middle Aged , Amphotericin B/therapeutic use , Antifungal Agents/therapeutic use , Deoxycholic Acid , Dermatomycoses/diagnosis , Dermatomycoses/microbiology , Dermatomycoses/drug therapy , Drug Combinations , Fatal Outcome , Kidney Transplantation/adverse effects , Mycoses/diagnosis , Mycoses/drug therapy , Mycoses/microbiology , Talaromyces/isolation & purification
7.
Mycoses ; 67(2): e13702, 2024 Feb.
Article in English | MEDLINE | ID: mdl-38558435

ABSTRACT

BACKGROUND: Epidermophyton floccosum (E. floccosum), an anthropophilic dermatophyte, is the primary causative agent of skin conditions such as tinea cruris, tinea pedis and tinea corporis. OBJECTIVES: This study aimed to determine the prevalence and characteristics of E. floccosum-induced dermatophytosis, with particular emphasis on the types of infections and demographic profiles. METHODS: In this retrospective study, patient records from the dermatology outpatient clinic were scrutinized, covering the timeframe from January 2009 to December 2020. Eligibility for the study required a dermatophytosis diagnosis verified by microscopic examination and fungal culture. RESULTS: Of the 4669 confirmed dermatophytosis cases, 82 (1.8%) were attributable to E. floccosum infection. The proportions of male and female patients with E. floccosum infections were 50.0% each. The most common presentation was tinea pedis (39.0%), followed by tinea cruris (37.8%) and tinea corporis (26.8%). The mean age at disease onset for tinea cruris was 38.7 ± 18.7 years, which was lower than that for tinea pedis (50.6 ± 14.2 years) and tinea corporis (53.5 ± 16.4 years). However, these age differences were not statistically significant. A continuous decrease in E. floccosum isolation was observed over the study period. CONCLUSIONS: There was a steady decline in the prevalence of E. floccosum dermatophytosis over the 12-year study period. Despite the decreasing trend, tinea cruris, tinea corporis and tinea pedis remained the predominant clinical manifestations of E. floccosum infection.


Subject(s)
Dermatomycoses , Tinea cruris , Tinea , Humans , Male , Female , Tinea Pedis/epidemiology , Retrospective Studies , Prevalence , Tinea/epidemiology , Tinea/microbiology , Epidermophyton , Dermatomycoses/microbiology
8.
Commun Biol ; 7(1): 440, 2024 Apr 10.
Article in English | MEDLINE | ID: mdl-38600171

ABSTRACT

Infectious diseases are influenced by interactions between host and pathogen, and the number of infected hosts is rarely homogenous across the landscape. Areas with elevated pathogen prevalence can maintain a high force of infection and may indicate areas with disease impacts on host populations. However, isolating the ecological processes that result in increases in infection prevalence and intensity remains a challenge. Here we elucidate the contribution of pathogen clade and host species in disease hotspots caused by Ophidiomyces ophidiicola, the pathogen responsible for snake fungal disease, in 21 species of snakes infected with multiple pathogen strains across 10 countries in Europe. We found isolated areas of disease hotspots in a landscape where infections were otherwise low. O. ophidiicola clade had important effects on transmission, and areas with multiple pathogen clades had higher host infection prevalence. Snake species further influenced infection, with most positive detections coming from species within the Natrix genus. Our results suggest that both host and pathogen identity are essential components contributing to increased pathogen prevalence.


Subject(s)
Dermatomycoses , Animals , Dermatomycoses/epidemiology , Dermatomycoses/microbiology , Disease Hotspot , Snakes/microbiology , Europe/epidemiology , Prevalence
11.
J Mycol Med ; 34(2): 101475, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38479291

ABSTRACT

Malassezia pachydermatis is often reported as the causative agent of dermatitis in dogs. This study aims to evaluate the in vitro and in vivo antifungal activity of azoles and terbinafine (TRB), alone and in combination with the 8-hydroxyquinoline derivatives (8-HQs) clioquinol (CQL), 8-hydroxyquinoline-5-(n-4-chlorophenyl)sulfonamide (PH151), and 8-hydroxyquinoline-5-(n-4-methoxyphenyl)sulfonamide (PH153), against 16 M. pachydermatis isolates. Susceptibility to the drugs was evaluated by in vitro broth microdilution and time-kill assays. The Toll-deficient Drosophila melanogaster fly model was used to assess the efficacy of drugs in vivo. In vitro tests showed that ketoconazole (KTZ) was the most active drug, followed by TRB and CQL. The combinations itraconazole (ITZ)+CQL and ITZ+PH151 resulted in the highest percentages of synergism and none of the combinations resulted in antagonism. TRB showed the highest survival rates after seven days of treatment of the flies, followed by CQL and ITZ, whereas the evaluation of fungal burden of dead flies showed a greater fungicidal effect of azoles when compared to the other drugs. Here we showed for the first time that CQL is effective against M. pachydermatis and potentially interesting for the treatment of malasseziosis.


Subject(s)
Antifungal Agents , Azoles , Dermatomycoses , Drosophila melanogaster , Malassezia , Microbial Sensitivity Tests , Animals , Antifungal Agents/pharmacology , Malassezia/drug effects , Malassezia/growth & development , Azoles/pharmacology , Dermatomycoses/drug therapy , Dermatomycoses/microbiology , Drosophila melanogaster/microbiology , Drosophila melanogaster/drug effects , Dogs , Terbinafine/pharmacology , Drug Synergism , Drug Therapy, Combination , Dog Diseases/microbiology , Dog Diseases/drug therapy , Ketoconazole/pharmacology , Oxyquinoline/pharmacology , Sulfonamides/pharmacology , Itraconazole/pharmacology , Clioquinol/pharmacology , Disease Models, Animal
12.
Mycoses ; 67(2): e13699, 2024 Feb.
Article in English | MEDLINE | ID: mdl-38366288

ABSTRACT

BACKGROUND: Superficial mycoses are fungal infections limited to the outermost layers of the skin and its appendages. The chief causative agents of these mycoses are dermatophytes and yeasts. The diagnosis of dermatophytosis can be made by direct mycological examination with potassium hydroxide (10%-30%) of biological material obtained from patients with suspected mycosis, providing results more rapid than fungal cultures, which may take days or weeks. This information, together with clinical history and laboratory diagnosis, ensures that the appropriate treatment is initiated promptly. However, false negative results are obtained in 5%-15%, by conventional methods of diagnosis of dermatophytosis. OBJECTIVES: To study the metabolic profiles of the commonly occurring dermatophytes by NMR spectroscopy. PATIENTS/MATERIALS: We have used 1D and 2D Nuclear Magnetic Resonance (NMR) experiments along with Human Metabolome Database (HMDB) and Chenomx database search for identification of primary metabolites in the methanol extract of two fungal species: Trichophyton mentagrophyte (T. mentagrophyte) and Trichophyton rubrum (T. rubrum). Both standard strains and representative number of clinical isolates of these two species were investigated. Further, metabolic profiles obtained were analysed using multivariate analysis. RESULTS: We have identified 23 metabolites in the T. mentagrophyte and another 23 metabolites in T. rubrum. Many important metabolites like trehalose, proline, mannitol, acetate, GABA and several other amino acids were detected, which provide the necessary components for fungal growth and metabolism. Altered metabolites were defined between Trichophyton mentagrophyte and T. rubrum strains. CONCLUSION: We have detected many metabolites in the two fungal species T. mentagrophyte and T. rubrum by using NMR spectroscopy. NMR spectroscopy provides a holistic snapshot of the metabolome of an organism. Key metabolic differences were identified between the two fungal strains. We need to perform more studies on metabolite profiling of the samples from these species for their rapid diagnosis and prompt treatment.


Subject(s)
Arthrodermataceae , Dermatomycoses , Tinea , Humans , Trichophyton , Dermatomycoses/microbiology , Tinea/diagnosis , Tinea/microbiology , Magnetic Resonance Spectroscopy
13.
Med Mycol J ; 65(1): 1-5, 2024.
Article in English | MEDLINE | ID: mdl-38417881

ABSTRACT

Microsporum canis is a type of dermatophyte that causes zoonotic dermatophytosis in cats and dogs. We report three cases of tinea corporis due to M. canis from a single household with a domestic cat as a pet. The cases included a woman in her thirties (mother), a girl in her teens (older sister), and a girl in her teens (younger sister). Following sudden hair loss in the domestic cat, annular erythema with pruritus and scales appeared on the face, neck, and limbs of the older sister, younger sister, and mother, sequentially; they subsequently visited our hospital. Potassium hydroxide direct microscopy revealed filamentous fungi on all three women. In addition, short-haired colonies with a white to yellowish-white color and extending in a radial manner were found in cultures using a flat plate agar medium. A slide culture with the same medium indicated pointed spindle-shaped macroconidia with 7-8 septa. Therefore, the cases were diagnosed as tinea corporis due to M. canis. Genetic analysis of the cells of the cat and the mother, older sister, and younger sister using multilocus microsatellite typing (MLMT) indicated that all cases were classified into the same genotype, suggesting that the transmission route of these cases was familial. Here, we show that MLMT is useful in identifying the infection route in cases of tinea corporis due to M. canis.


Subject(s)
Dermatomycoses , Tinea , Humans , Adolescent , Female , Animals , Dogs , Cats , Tinea/diagnosis , Tinea/veterinary , Microsporum/genetics , Mothers , Microsatellite Repeats/genetics , Dermatomycoses/diagnosis , Dermatomycoses/microbiology
14.
Res Vet Sci ; 168: 105153, 2024 Mar.
Article in English | MEDLINE | ID: mdl-38219470

ABSTRACT

Despite the increasing interest in studying the gut mycobiota of dogs, the association between fungal colonization and the development of digestive disorders in this species remains largely understudied. On the other hand, the high prevalence of antifungal-resistant yeasts detected in previous studies in samples from animals represents a major threat to public health. We analyzed the presence of culturable yeasts in 112 rectal swab samples obtained from dogs with digestive disorders attended in a veterinary teaching hospital. Our results revealed that Malassezia pachydermatis was frequently isolated from the studied dog population (33.9% of samples), and that the isolation of this yeast was significantly associated to the age of animals, but not to their sex, disease group, or the presence of vomits and/or diarrhea. In contrast, other yeast species were less prevalent (17.9% of samples in total), and their isolation was not significantly associated to any variable included in the analysis. Additionally, we observed that 97.5% of the studied M. pachydermatis isolates (n = 158, 1-6 per positive episode) displayed a minimum inhibitory concentration (MIC) value >4 µg/ml to nystatin, 31.6% had a MIC ≥32 µg/ml to fluconazole, and 27.2% had a MIC >4 µg/ml to amphotericin B. The antifungal susceptibility profiles of non-Malassezia (n = 43, 1-7 per episode) were more variable and included elevated MIC values for some antifungal-species combinations. These results confirm that the intestine of dogs is a reservoir of opportunistic pathogenic yeasts and suggest that the prevalence of M. pachydermatis colonization depends more on the age of animals than on any specific digestive disorder.


Subject(s)
Dermatomycoses , Dog Diseases , Microbiota , Dogs , Animals , Antifungal Agents/pharmacology , Antifungal Agents/therapeutic use , Hospitals, Animal , Dermatomycoses/drug therapy , Dermatomycoses/microbiology , Dermatomycoses/veterinary , Hospitals, Teaching , Dog Diseases/drug therapy , Microbial Sensitivity Tests/veterinary
15.
Comp Immunol Microbiol Infect Dis ; 104: 102100, 2024 Jan.
Article in English | MEDLINE | ID: mdl-38043450

ABSTRACT

Microsporum canis is considered the common dermatophyte agent associated with ringworm in felines and canines. In the present study, we sampled n = 548 felines and canines for the probable isolation of M. canis. The rate of isolation from the cats and dogs was 70.27 % (52/74) and 1.68 % (8/474), respectively and Persian cats were found to be highly susceptible to M. canis infection. The strains were evaluated for their production of phospholipase, lipase, catalase, and hemolysis and their ability to grow at 35 â„ƒ. All the strains were identified as low producers of catalase and n = 17 strains exhibited high thermotolerance ability. Terbinafine was found to be the most effective antifungal drug and fluconazole was the least effective, in vitro. AFLP analysis revealed three genotypes of M. canis with 15 sub-clusters showing ≥ 90 % similarity and 7 sub-clusters exhibiting 100 % similarity. However, the phenotypic characters cannot be attributed based on the AFLP profiles.


Subject(s)
Cat Diseases , Dermatomycoses , Dog Diseases , Animals , Cats , Dogs , Antifungal Agents/pharmacology , Antifungal Agents/therapeutic use , Catalase/pharmacology , Dermatomycoses/drug therapy , Dermatomycoses/microbiology , Dermatomycoses/veterinary , DNA Fingerprinting/veterinary , Cat Diseases/microbiology , Amplified Fragment Length Polymorphism Analysis/veterinary , Dog Diseases/microbiology , Microsporum/genetics
16.
Mol Ecol ; 33(2): e17210, 2024 Jan.
Article in English | MEDLINE | ID: mdl-38010927

ABSTRACT

Emerging infectious diseases in wildlife species caused by pathogenic fungi are of growing concern, yet crucial knowledge gaps remain for diseases with potentially large impacts. For example, there is detailed knowledge about host pathology and mechanisms underlying response for chytridiomycosis in amphibians and white-nose syndrome in bats, but such information is lacking for other more recently described fungal infections. One such disease is ophidiomycosis, caused by the fungus Ophidiomyces ophidiicola, which has been identified in many species of snakes, yet the biological mechanisms and molecular changes occurring during infection are unknown. To gain this information, we performed a controlled experimental infection in captive Prairie rattlesnakes (Crotalus viridis) with O. ophidiicola at two different temperatures: 20 and 26°C. We then compared liver, kidney, and skin transcriptomes to assess tissue-specific genetic responses to O. ophidiicola infection. Given previous histopathological studies and the fact that snakes are ectotherms, we expected highest fungal activity on skin and a significant impact of temperature on host response. Although we found fungal activity to be localized on skin, most of the differential gene expression occurred in internal tissues. Infected snakes at the lower temperature had the highest host mortality whereas two-thirds of the infected snakes at the higher temperature survived. Our results suggest that ophidiomycosis is likely a systemic disease with long-term effects on host response. Our analysis also identified candidate protein coding genes that are potentially involved in host response, providing genetic tools for studies of host response to ophidiomycosis in natural populations.


Subject(s)
Biological Phenomena , Dermatomycoses , Venomous Snakes , Animals , Dermatomycoses/genetics , Dermatomycoses/veterinary , Dermatomycoses/microbiology , Crotalus , Gene Expression Profiling
17.
J Basic Microbiol ; 64(1): 22-31, 2024 Jan.
Article in English | MEDLINE | ID: mdl-37551993

ABSTRACT

Dermatophytes are highly infectious fungi that cause superficial infections in keratinized tissues in humans and animals. This group of fungi is defined by their ability to digest keratin and encompasses a wide range of species. We investigated a critical adhesion protein, subtilisin 3, utilized by Microsporum canis during initial stages of infection, analyzing its production and expression under varying growth conditions. Additionally, as this protein must be expressed and produced for dermatophyte infections to occur, we developed and optimized a diagnostic antibody assay targeting this protein. Subtilisin 3 levels were increased in culture when grown in baffled flasks and supplemented with either l-cysteine or cat hair. As subtilisin 3 was also produced in cultures not supplemented with keratin or cysteine, this study demonstrated that subtilisin 3 production is not reliant on the presence of keratin or its derivatives. These findings could help direct future metabolic studies of dermatophytes, particularly during the adherence phase of infections.


Subject(s)
Dermatomycoses , Subtilisin , Animals , Humans , Subtilisin/metabolism , Dermatomycoses/microbiology , Keratins , Microsporum/metabolism
18.
Med Mycol J ; 64(4): 85-94, 2023.
Article in Japanese | MEDLINE | ID: mdl-38030276

ABSTRACT

This is a report of the results of the epidemiological survey on dermatomycoses conducted in 2021. A total of 9,442 patients with dermatomycosis were reported for one year. They include 8,151 (86.3%) with dermatophytosis, 796 (8.4%) with candidiasis, 484 (5.1%) with Malassezia infection, and 11 (0.1%) with deep cutaneous mycosis. In order, the most common types of dermatophytoses were tinea pedis (4,195 cases, 2,341 males and 1,854 females), tinea unguium (2,711 cases, 1,509 males and 1,202 females), tinea corporis (674 cases, 445 males and 229 females), tinea cruris (399 cases, 305 males and 94 females), tinea manus (125 cases, 78 males and 47 females), and tinea capitis (47 cases, 25 males and 22 females). The number of cases of tinea pedis and tinea unguium increased during the summer. A higher percentage of patients were aged 80 or older than in previous surveys. These findings may reflect the increasing percentage of elderly patients seen and the superannuation of the population. As in previous surveys, Trichophyton rubrum and Trichophyton interdigitale were the two most frequently isolated species of fungi causing dermatophytoses. Microsporum canis and Trichophyton tonsurans were the two species most often causing tinea capitis.Regarding cutaneous candidiasis, while candidal intertrigo was the most common in previous surveys, diaper candidiasis in the elderly was the most common in this survey. A background check revealed that this was because a facility included a semi-prophylactic approach to address diaper candidiasis occurring within the ward.Malassezia infections by Malassezia folliculitis clearly increased with each survey. The tendency of certain facilities with many reports of Malassezia folliculitis suggests that it is greatly affected by the presence of physicians familiar with the disease.


Subject(s)
Candidiasis, Cutaneous , Candidiasis , Dermatomycoses , Folliculitis , Onychomycosis , Tinea Capitis , Tinea , Male , Aged , Female , Humans , Tinea Pedis/epidemiology , Dermatomycoses/epidemiology , Dermatomycoses/microbiology , Onychomycosis/epidemiology , Japan/epidemiology , Tinea/epidemiology , Tinea/microbiology , Candidiasis/epidemiology , Trichophyton
19.
Med Mycol ; 61(10)2023 Oct 05.
Article in English | MEDLINE | ID: mdl-37804177

ABSTRACT

Dermatophytosis is a superficial cutaneous infection, most commonly caused by fungal species such as Microsporum canis, Nannizzia gypsea (Microsporum gypseum), and Trichophyton mentagrophytes in dogs and cats. The zoonotic potential of these species is concerning, as companion animals are increasingly close to their owners. Therefore, the objectives of the study were to evaluate the current prevalence of Nannizzia-causing canine and feline dermatophytosis in Curitiba and Metropolitan Region, as well as perform phenotypic and phylogenetic characterizations of these isolates. Thus, 241 skin and fur samples from 163 dogs and 78 cats were analyzed from 2020 to 2021. The samples were obtained from animals of three sources: Veterinary Hospital of the Federal University of Paraná, animal shelters, and private clinics. The diagnosis was performed through phenotypic characterization and sequencing ITS rDNA region. Among 97 positive samples for dermatophytes, Nannizzia was identified in 14 (14.4%) samples, while other dermatophyte genera were found in the remaining 83 (85.6%) samples. Among the canine samples, nine (90%) were N. gypsea, and one (10%) was N. incurvata. Whereas in feline samples, three (75%) were N. gypsea, and one (25%) was N. incurvata. It was concluded that among 97 animals infected with dermatophytes, dogs (24.4%; 10/41) were significantly more affected by Nannizzia than cats (7.1%; 4/56) (P < .05). According to molecular analyses, the ITS rDNA region provided satisfactory results for species-level identification of Nannizzia, confirming the first report of N. incurvata as an etiological agent of canine and feline dermatophytosis in Brazil.


Nannizzia genus affected significantly more dogs (24.4%) than cats (7.1%) (P < .05). The ITS rDNA exhibited higher accuracy for identifying dermatophytes compared to phenotypic diagnosis, allowing the confirmation of the first reports of N. incurvata as an etiological agent of dermatophytosis in dogs and cats in Brazil.


Subject(s)
Arthrodermataceae , Cat Diseases , Dermatomycoses , Dog Diseases , Tinea , Animals , Cats , Dogs , Cat Diseases/diagnosis , Cat Diseases/epidemiology , Cat Diseases/microbiology , Brazil/epidemiology , Phylogeny , Dog Diseases/diagnosis , Dog Diseases/epidemiology , Dog Diseases/microbiology , Microsporum , Tinea/microbiology , Tinea/veterinary , DNA, Ribosomal , Dermatomycoses/epidemiology , Dermatomycoses/veterinary , Dermatomycoses/microbiology
20.
Expert Rev Anti Infect Ther ; 21(12): 1327-1338, 2023.
Article in English | MEDLINE | ID: mdl-37883074

ABSTRACT

INTRODUCTION: Malassezia spp. are a group of lipid-dependent basidiomycetes yeasts acting as commensal organisms of the human and animal skin. However, under some not well-defined circumstances, these yeasts may switch to opportunistic pathogens triggering a number of skin disorders with different clinical presentations. The genus comprises of 18 lipid-dependent species with a variable distribution in the hosts and pathologies thus suggesting a host- and microbe-specific interactions. AREA COVERED: This review highlighted and discussed the most recent literature regarding the genus Malassezia as a commensal or pathogenic organisms highlighting Malassezia-associated skin disorders in humans and animals and their antifungal susceptibility profile. A literature search of Malassezia associated skin disorders was performed via PubMed and Google scholar (up to May 2023), using the different keywords mainly associated with Malassezia skin disorders and Malassezia antifungal resistance. EXPERT OPINION: Malassezia yeasts are part of the skin mycobiota and their life cycle is strictly associated with the environment in which they live. The biochemical, physiological, or immunological condition of the host skin selects Malassezia spp. or genotypes able to survive in a specific environment by changing their metabolisms, thus producing virulence factors or metabolites which can cause skin disorders with different clinical presentations.


Subject(s)
Dermatitis, Seborrheic , Dermatomycoses , Malassezia , Tinea Versicolor , Humans , Animals , Tinea Versicolor/drug therapy , Tinea Versicolor/microbiology , Tinea Versicolor/pathology , Dermatomycoses/drug therapy , Dermatomycoses/microbiology , Antifungal Agents/pharmacology , Antifungal Agents/therapeutic use , Dermatitis, Seborrheic/drug therapy , Dermatitis, Seborrheic/microbiology , Skin/microbiology , Skin/pathology , Lipids
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