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1.
Mycoses ; 67(6): e13751, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38825584

ABSTRACT

BACKGROUND: Kerion is a severe type of tinea capitis that is difficult to treat and remains a public health problem. OBJECTIVES: To evaluate the epidemiologic features and efficacy of different treatment schemes from real-world experience. METHODS: From 2019 to 2021, 316 patients diagnosed with kerion at 32 tertiary Chinese hospitals were enrolled. We analysed the data of each patient, including clinical characteristics, causative pathogens, treatments and outcomes. RESULTS: Preschool children were predominantly affected and were more likely to have zoophilic infection. The most common pathogen in China was Microsporum canis. Atopic dermatitis (AD), animal contact, endothrix infection and geophilic pathogens were linked with kerion occurrence. In terms of treatment, itraconazole was the most applied antifungal agent and reduced the time to mycological cure. A total of 22.5% of patients received systemic glucocorticoids simultaneously, which reduced the time to complete symptom relief. Furthermore, glucocorticoids combined with itraconazole had better treatment efficacy, with a higher rate and shorter time to achieving mycological cure. CONCLUSIONS: Kerion often affects preschoolers and leads to serious sequelae, with AD, animal contact, and endothrix infection as potential risk factors. Glucocorticoids, especially those combined with itraconazole, had better treatment efficacy.


Subject(s)
Antifungal Agents , Itraconazole , Microsporum , Tinea Capitis , Humans , Child, Preschool , Antifungal Agents/therapeutic use , Male , Female , Tinea Capitis/drug therapy , Tinea Capitis/epidemiology , Tinea Capitis/microbiology , Itraconazole/therapeutic use , China/epidemiology , Microsporum/isolation & purification , Child , Infant , Glucocorticoids/therapeutic use , Treatment Outcome , Dermatitis, Atopic/drug therapy , Dermatitis, Atopic/epidemiology , Dermatitis, Atopic/microbiology , Risk Factors , Adolescent , Adult , Middle Aged , Retrospective Studies
2.
Pak J Pharm Sci ; 37(2): 257-263, 2024 Mar.
Article in English | MEDLINE | ID: mdl-38767092

ABSTRACT

The objective of this study was to identify the major compounds present in Cedar tar obtained by distillation of Cedrus atlantica wood from the Taza forest (Morocco) and to evaluate its antidermatophytic activity in vitro against the three strains of dermatophytes most widespread in Morocco, considered the main prevailing causes of fungal infections of the skin, hair and nails. GC/MS analysis revealed that cedar tar is composed mainly of hydrocarbon sesquiterpenes and oxygenated sesquiterpenes, with nine major compounds identified, including α-Cedrene, ß-Cadinene, γ-Cadinene, ß-Himachelene, α-Turmerone, ß-Turmerone, Ar-tumerone, α-Atlantone and Himachalol. The evaluation of antifungal activity was carried out by the micro dilution technique. The MIC values found were 100µg/mL, 2µg/mL and 0.1µg/mL on Trichophyton rubrum, Trichophyton mentagrophytes and Microsporum canis strains respectively. The observed strong antifungal activity of cedar tar is attributed to the prevalence of oxygenated and hydrocarbon sesquiterpenes, known for their established antidermatophytic properties. This study highlights the potential of the Atlas Cedar tar as an effective antifungal agent for the treatment of superficial mycoses, particularly dermatophytoses.


Subject(s)
Antifungal Agents , Arthrodermataceae , Cedrus , Microbial Sensitivity Tests , Microsporum , Microsporum/drug effects , Antifungal Agents/pharmacology , Antifungal Agents/isolation & purification , Arthrodermataceae/drug effects , Cedrus/chemistry , Sesquiterpenes/pharmacology , Sesquiterpenes/isolation & purification , Plant Extracts/pharmacology , Plant Extracts/chemistry , Gas Chromatography-Mass Spectrometry , Phytochemicals/pharmacology , Phytochemicals/isolation & purification , Phytochemicals/analysis , Phytochemicals/chemistry , Morocco
3.
Article in English | MEDLINE | ID: mdl-38747851

ABSTRACT

Microsporum canis, one of the most widespread dermatophytes worldwide, is a zoonotic microorganism that transmits infection from reservoirs such as cats and dogs to humans. This microorganism is associated with Tinea corporis and other clinical manifestations; however, few studies have used genetic surveillance to determine and characterize the process of zoonotic transmission. In this study, we show a clear example of zoonotic transmission from a cat to an intrafamilial environment, where it caused Tinea corporis by infection with M. canis. Molecular characterization using the b-tubulin gene and Random Amplified Polymorphic DNA analysis made it possible to determine that the six isolates of M. canis obtained in this study belonged to the same genetic variant or clone responsible for reservoir-reservoir or reservoir-human transmission.


Subject(s)
Cat Diseases , Microsporum , Tinea , Zoonoses , Microsporum/isolation & purification , Microsporum/genetics , Microsporum/classification , Cats/microbiology , Animals , Tinea/microbiology , Tinea/transmission , Tinea/veterinary , Cat Diseases/microbiology , Cat Diseases/transmission , Zoonoses/microbiology , Zoonoses/transmission , Pets/microbiology , Humans , Dogs , Random Amplified Polymorphic DNA Technique , Male , Female , Dog Diseases/microbiology , Dog Diseases/transmission , DNA, Fungal/genetics
4.
Acta Trop ; 255: 107237, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38723739

ABSTRACT

The surge in domestic cat adoption across India, particularly the rising preference for high-pedigree cats, coupled with environmental factors, has resulted in increased incidence of dermatophytosis among feline companions. Despite this growing concern, there is a noticeable scarcity of studies in India delving into the etiological factors contributing to dermatophytosis in cats. This disease is a threat to animal health and carries public health significance, given that cats are recognized reservoir hosts for Microsporum canis, a common dermatophyte affecting humans and animals. This study endeavours to identify the dermatophytes affecting cats and establish a standardized therapeutic regimen while accounting for the local stigma surrounding the regular bathing of cats. The study involved the examination of 82 cats presenting dermatological lesions, when subjected to cultural examination in dermatophyte test medium revealed 36 afflicted with dermatophytes. Isolates were presumptively identified by staining using lactophenol cotton blue, Chicago sky blue 6B, and Calcofluor white stains. Molecular-level identification of the isolates was confirmed through PCR-RFLP, amplifying the Internal Transcribed Spacer Sequence of 16 s rDNA, followed by restriction digestion using the Mva1 enzyme. Among the thirty-six isolates, 29 were identified as M. canis, while the remaining 7 were M. gypseum. The cases were categorized into five groups and treated with Lime Sulphur dip, 4 % chlorhexidine shampoo, a shampoo containing 2 % miconazole and 4 % chlorhexidine, oral itraconazole alone, and a combination of oral itraconazole with lime-Sulphur dip. Statistical analysis revealed that the response was notably swifter with lime Sulphur dip when considering only topical therapy. Moreover, the mycological cure was most expeditious when combining Lime Sulphur dip with oral itraconazole. These findings underscore the pivotal role of topical biocides in feline dermatophytosis treatment, potentially reducing the reliance on specific antifungals and thereby contributing to the mitigation of antimicrobial resistance emergence.


Subject(s)
Antifungal Agents , Cat Diseases , Microsporum , Tinea , Cats/microbiology , Animals , Cat Diseases/microbiology , Cat Diseases/drug therapy , India/epidemiology , Tinea/veterinary , Tinea/microbiology , Tinea/drug therapy , Tinea/epidemiology , Antifungal Agents/therapeutic use , Microsporum/isolation & purification , Microsporum/genetics , Male , Female , Arthrodermataceae/isolation & purification , Arthrodermataceae/genetics , Arthrodermataceae/classification , Arthrodermataceae/drug effects , Itraconazole/therapeutic use , Polymerase Chain Reaction , Polymorphism, Restriction Fragment Length , DNA, Fungal/genetics , DNA, Ribosomal Spacer/genetics
5.
Am J Trop Med Hyg ; 110(5): 965-967, 2024 May 01.
Article in English | MEDLINE | ID: mdl-38531098

ABSTRACT

Tinea capitis is a common fungal infection caused by dermatophytes in children, but it is rare in infants. Although oral itraconazole has been widely used to treat tinea capitis, its use in infants is limited due to its low prevalence in this age group. A previous study reported the effectiveness of itraconazole continuous therapy in treating infantile tinea capitis caused by Microsporum canis. However, this approach has not been extended to tinea capitis caused by other fungi. In this study, we present four cases of infantile tinea capitis treated with continuous itraconazole oral solution therapy (5 mg/kg/day). Two patients were infected with M. canis, one patient with Nannizzia gypsea, and another with Trichophyton tonsurans. This study assesses the efficacy and safety of itraconazole oral solution continuous therapy, expanding our understanding by demonstrating its effectiveness for infantile tinea capitis caused by T. tonsurans and N. gypsea.


Subject(s)
Antifungal Agents , Itraconazole , Tinea Capitis , Humans , Itraconazole/therapeutic use , Itraconazole/administration & dosage , Tinea Capitis/drug therapy , Tinea Capitis/microbiology , Antifungal Agents/therapeutic use , Antifungal Agents/administration & dosage , Infant , Male , Female , Administration, Oral , Microsporum/drug effects , Treatment Outcome
6.
Int J Mol Sci ; 25(5)2024 Feb 22.
Article in English | MEDLINE | ID: mdl-38473782

ABSTRACT

Microsporum canis is a widely distributed dermatophyte, which is among the main etiological agents of dermatophytosis in humans and domestic animals. This fungus invades, colonizes and nourishes itself on the keratinized tissues of the host through various virulence factors. This review will bring together the known information about the mechanisms, enzymes and their associated genes relevant to the pathogenesis processes of the fungus and will provide an overview of those virulence factors that should be better studied to establish effective methods of prevention and control of the disease. Public databases using the MeSH terms "Microsporum canis", "virulence factors" and each individual virulence factor were reviewed to enlist a series of articles, from where only original works in English and Spanish that included relevant information on the subject were selected. Out of the 147 articles obtained in the review, 46 were selected that reported virulence factors for M. canis in a period between 1988 and 2023. The rest of the articles were discarded because they did not contain information on the topic (67), some were written in different languages (3), and others were repeated in two or more databases (24) or were not original articles (7). The main virulence factors in M. canis are keratinases, fungilisins and subtilisins. However, less commonly reported are biofilms or dipeptidylpeptidases, among others, which have been little researched because they vary in expression or activity between strains and are not considered essential for the infection and survival of the fungus. Although it is known that they are truly involved in resistance, infection and metabolism, we recognize that their study could strengthen the knowledge of the pathogenesis of M. canis with the aim of achieving effective treatments, as well as the prevention and control of infection.


Subject(s)
Microsporum , Virulence Factors , Humans , Animals , Virulence Factors/metabolism , Microsporum/genetics , Microsporum/metabolism , Animals, Domestic , Subtilisins/metabolism
9.
BMC Vet Res ; 20(1): 58, 2024 Feb 19.
Article in English | MEDLINE | ID: mdl-38374006

ABSTRACT

BACKGROUND: Staphylococcus spp and Microsporum canis are zoonotic microorganisms which can cause infections and systemic diseases. The bone infection is usually caused by invasion of pathogen through the hematologic route. Mixed osteomyelitis caused by bacteria and fungi is rare, and to date, there have been no reports of mixed osteomyelitis with Staphylococcus spp. and Microsporum canis. CASE PRESENTATION: This essay reports an atypical presentation of mixed osteomyelitis (Staphylococcus spp. and Microsporum canis) in a domestic cat. A 15-month-old female Persian cat was presented to a veterinary service; the main complaint was the appearance of a nodule in the mandibular ventral rostral region. A radiographic exam performed on the animal showed proliferative and osteolytic bone lesions. The patient was submitted to a biopsy for histopathological evaluation, along with bacterial and fungal cultures. Results showed mixed osteomyelitis by Staphylococcus spp. and Microsporum canis. Microbial Sensitivity Test was performed to choose a more suitable treatment. Two surgical procedures were executed to resect and curette the lesion, and treatments with anti-inflammatory, antibiotic, and antifungal drugs were established, showing a positive clinical evolution. After 8 months of treatment, the patient's owner moved to a different city, and the animal was seen by other veterinarians, who followed along with the same treatment. However, due to complications and a diminishing quality of life over 4 years of diagnosis, the patient was euthanized. CONCLUSION: Given the above, mixed osteomyelitis is difficult to treat and can cause losses of life quality resulting death, especially in infections where M. canis is the agent causing the disease. Bacterial osteomyelitis is more frequently reported. But the lack of investigation of microorganisms other than bacteria, such as fungal cases, may imply in underdiagnosed cases. Treatment of osteomyelitis can be difficult considering the difficulties in isolating the pathological agent, resistance to the drug used, prolonged treatment time, and cost.


Subject(s)
Cat Diseases , Dermatomycoses , Microsporum , Osteomyelitis , Cats , Female , Animals , Dermatomycoses/veterinary , Quality of Life , Antifungal Agents/therapeutic use , Osteomyelitis/drug therapy , Osteomyelitis/veterinary , Cat Diseases/drug therapy
10.
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
11.
J Pediatr Health Care ; 38(3): 424-431, 2024.
Article in English | MEDLINE | ID: mdl-38165291

ABSTRACT

Dermatophytoses of the skin and scalp are common disorders in the pediatric population. The resemblance of the clinical presentation to other dermatoses can make fungal infections challenging to diagnose. We present three cases of dermatophytoses in children. The presence of fungi within skin lesions was confirmed in all cases. The diagnoses were "id" reaction in response to Trichophyton tonsurans infection, Kerion celsi because of Microsporum canis infection, and hair loss during microsporosis. Based on our review and clinical experience, we suggest diagnostic paths and treatments for dermatophytoses in children.


Subject(s)
Antifungal Agents , Humans , Male , Child , Female , Antifungal Agents/therapeutic use , Tinea/diagnosis , Tinea/drug therapy , Tinea/microbiology , Child, Preschool , Diagnosis, Differential , Microsporum/isolation & purification , Tinea Capitis/diagnosis , Tinea Capitis/drug therapy , Tinea Capitis/microbiology , Trichophyton/isolation & purification , Microsporidiosis/diagnosis
12.
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
13.
Vet Med Sci ; 10(1): e1316, 2024 Jan.
Article in English | MEDLINE | ID: mdl-37904671

ABSTRACT

INTRODUCTION: Microsporum canis is the most common dermatophyte infecting pets and their owners, and its long duration of treatment and increasing rate of drug resistance have caused the attention of researchers to be directed towards the use of nanoparticles and new alternatives for treatment. This study investigated the antifungal effects of zinc oxide (ZnO) nanoparticles on clinical isolates of M. canis in dogs and cats and subtilisin 1 (SUB1) gene expression. MATERIALS AND METHODS: Zinc oxide nanoparticles were prepared using the wet chemical method at a concentration of 4000 ppm. Its antifungal potential was evaluated at concentrations of 62.5-4000 ppm by disk diffusion and microdilution methods against 10 isolates of M. canis. The effect of this product on SUB1 gene expression was investigated by quantitative real-time PCR method. RESULTS: The results of the disk diffusion test showed that the highest inhibitory diameter was at the highest concentration of ZnO nanoparticles (34 mm), and the inhibitory zone was observed in dilutions up to 250 ppm. The minimum inhibitory concentration (MIC) of ZnO nanoparticles was between 250 and 500 ppm, and the minimum fungicidal concentration was between 500 and 1000 ppm. There was a significant reduction in SUB1 gene expression in sub-MIC concentration (125-250 ppm) (p < 0.05). CONCLUSION: This study showed that ZnO nanoparticles have a concentration-dependent inhibitory effect on M. canis. Moreover, ZnO nanoparticles could decrease the expression of SUB1, an enzyme involved in fungi adhesion to the epidermis. Nevertheless, more studies must be done in the future to determine the possible side effects and safety of ZnO nanoparticles along with their efficacy in vivo.


Subject(s)
Cat Diseases , Dog Diseases , Microsporum , Nanoparticles , Zinc Oxide , Cats , Animals , Dogs , Antifungal Agents/pharmacology , Antifungal Agents/therapeutic use , Zinc Oxide/pharmacology , Zinc Oxide/therapeutic use , Cat Diseases/drug therapy , Cat Diseases/microbiology , Dog Diseases/drug therapy
14.
Pediatr Dermatol ; 41(2): 302-306, 2024.
Article in English | MEDLINE | ID: mdl-37823546

ABSTRACT

Tinea capitis is a common disease in children but rare in newborns younger than 1 month of age. Only 29 cases of tinea capitis in newborns have been described in indexed literature from 1990 until now. While antifungal agents can be used topically and systemically, systemic antifungal therapy is generally accepted as the treatment of choice for tinea capitis due to limited penetration of topical agents into the hair follicle. However, there is a lack of data on the use of systemic antifungal agents in newborns, and there are reports of successful treatment of tinea capitis in newborns using only topical therapy. In this paper, we present a case of tinea capitis in a 29-day-old female baby and review the previous 29 reported cases.


Subject(s)
Antifungal Agents , Tinea Capitis , Female , Humans , Infant, Newborn , Administration, Oral , Antifungal Agents/therapeutic use , Microsporum , Tinea Capitis/diagnosis , Tinea Capitis/drug therapy , Tinea Capitis/microbiology
15.
Mycoses ; 67(1): e13675, 2024 Jan.
Article in English | MEDLINE | ID: mdl-37983862

ABSTRACT

Kerion Celsi is an inflammatory, deep fungal infection of the scalp. It is rare in neonates but gets more common in children about 3 years and older. It represents with swelling, boggy lesions, pain, alopecia and purulent secretions. Secondary bacterial infection is not unusual after maceration. Extracutaneous manifestations include regional lymphadenopathy, fever and very rare fungemia. Id-reactions can occur. Diagnosis is based on clinical suspicion, clinical examination and medical history. Diagnosis should be confirmed by microscopy, fungal culture and molecular procedures. The most common isolated fungal species are anthropophilic Trichophyton (T.) tonsurans and zoophilic Microsporum (M.) canis, while geophilic species and moulds rarely cause Kerion Celsi. Treatment is medical with systemic and topical antifungals supplemented by systemic antibiotics when necessary, while surgery needs to be avoided. Early and sufficient treatment prevents scarring alopecia. The most important differential diagnosis is bacterial skin and soft tissue infections.


Subject(s)
Tinea Capitis , Child , Infant , Infant, Newborn , Humans , Tinea Capitis/diagnosis , Tinea Capitis/drug therapy , Tinea Capitis/microbiology , Trichophyton , Microsporum , Skin/pathology , Alopecia/diagnosis , Alopecia/drug therapy , Alopecia/etiology
16.
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
17.
Pol J Vet Sci ; 26(4): 629-634, 2023 Dec 12.
Article in English | MEDLINE | ID: mdl-38088306

ABSTRACT

Dermatophytes from Microsporum, Trichophyton and Epidermophyton genera are divided into geophilic, zoophilic and anthropophilic species which cause skin infection in humans and wide group of animals, mainly mammals. Main species causing dermatophytosis in dogs and cats are Microsporum and Trichophyton. Conventional mycological diagnostic technique includes Saburaud Dextrose Agar (SAD) and others medium cultures, 10% KOH mount and direct microscopy of hairs and scraping. Molecular diagnostic become more frequent in veterinary practice due to shortening of waiting time. In this study we based on two PCR methods. The nested PCR amplified CHS1 gene for dermatophytes detection, and multiplex PCR coding ITS1 and ITS2 fragments for species identification of detected derpatophytes. Most frequently detected species was Microsporum canis, mainly in young cats. Geophilic Microsporum gypseum and anthropophilic Trichophyton rubrum was found primarily in dogs. Molecular methods in dermatophytosis identification are rapid in contrast to routinely, long lasting culture.


Subject(s)
Arthrodermataceae , Cat Diseases , Dermatomycoses , Dog Diseases , Tinea , Humans , Animals , Cats , Dogs , Arthrodermataceae/genetics , Dermatomycoses/diagnosis , Dermatomycoses/epidemiology , Dermatomycoses/veterinary , Poland/epidemiology , Cat Diseases/diagnosis , Cat Diseases/epidemiology , Dog Diseases/diagnosis , Dog Diseases/epidemiology , Microsporum/genetics , Trichophyton/genetics , Multiplex Polymerase Chain Reaction/veterinary , Tinea/diagnosis , Tinea/epidemiology , Tinea/veterinary , Mammals/genetics
18.
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
19.
Enferm. infecc. microbiol. clín. (Ed. impr.) ; 41(8): 501-504, oct. 2023. ilus, tab
Article in Spanish | IBECS | ID: ibc-226409

ABSTRACT

Introducción Las dermatofitosis humanas son el grupo más extendido de infecciones causadas por hongos. Estos son capaces de invadir los tejidos que contienen queratina de los animales. Nannizzia nana (N. nana) puede causar tiña en cerdos y que de manera excepcional puede producir infecciones en humanos. Métodos Realizamos una búsqueda en PubMed de artículos publicados desde el 1 de enero de 1990 hasta el 31 de marzo del 2022 para identificar casos adicionales. Los términos de búsqueda empleados fueron «Microsporum nanum» y «Nannizzia nana». Resultados Tras la revisión bibliográfica identificamos un total 16 casos de dermatofitosis por N. nana desde 1990. En la mayoría de los pacientes, el diagnóstico clínico fue tinea corporis y los antifúngicos más utilizados fueron terbinafina y griseofulvina. Conclusión N. nana es una especie de dermatofito aislada infrecuentemente en humanos, pero que representa una fuente potencial de dermatofitosis en personas que entran en contacto directo o indirecto con animales y con el suelo (AU)


Introduction Human dermatophytoses are the most widespread infections caused by fungi. These are capable of invading the keratin-containing tissues of animals. Nannizzia nana (N. nana) can cause ringworm in pigs and rarely cause infections in humans. Methods We conducted a search using PubMed for articles published from January 1, 1990 to March 31, 2022 to identify additional cases. The search terms used were “Microsporum nanum” and “Nannizzia nana”. Results After reviewing the literature, we identified a total of 16 cases of dermatophytosis due to N. nana since 1990. In most of the patients, the clinical diagnosis was tinea corporis and the most widely used antifungals were: terbinafine and griseofulvin. Conclusion N. nana is a dermatophyte species isolated infrequently in humans, but it represents a potential source of dermatophytosis in people who come into direct or indirect contact with animals and soil (AU)


Subject(s)
Humans , Female , Middle Aged , Tinea/microbiology , Tinea/diagnosis , Microsporum , Tinea/drug therapy , Terbinafine/therapeutic use , Antifungal Agents/therapeutic use
20.
Med Mycol J ; 64(3): 63-72, 2023.
Article in English | MEDLINE | ID: mdl-37648500

ABSTRACT

Microsporum canis, a major causative agent of zoonotic dermatophytosis, has become prevalent in Japan. Molecular epidemiological surveys using multilocus microsatellite typing (MLMT), a sensitive genotyping tool for fungi, have been conducted to reveal intraspecies polymorphisms of M. canis.The present study utilized MLMT optimized for Japanese strains of M. canis to analyze epidemic trends of fungal infection. Six individual loci were targeted; namely, MS1, 2, 4, 5, 6, and 7. Analysis of data from 1974 through 2022 identified 416 strains, which were sorted into 60 genotypes by MLMT.The major genotypes showed changes in dominance during this period-changes that may reflect historical increases and decreases in the numbers of patients infected with M. canis patients. The main origins of infection included animal breeders and pet stores, as well as stray cat communities. Forty-nine episodes of familial outbreaks and cohabitant animal infections were recorded, and genotypes responsible for each episode were determined. MLMT analysis is not only a robust tool to understand population structures, but likely the most suitable method for tracking M. canis infections.


Subject(s)
Canidae , Microsporum , Animals , Cats , Japan/epidemiology , Molecular Epidemiology , Microsporum/genetics , Microsatellite Repeats
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