• Title/Summary/Keyword: Trichophyton rubrum

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Dermatophytosis by Trichophyton rubrum and T raubitschekii in dogs (Trichophyton rubrum 및 Trichophyton raubitschekii에 의한 개 피부사상균증에 관한 연구)

  • Choi, Won-pil
    • Korean Journal of Veterinary Research
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    • v.38 no.4
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    • pp.823-828
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    • 1998
  • This study was carried out to determine the causative agent and the clinical features of dermatophytosis occurred in 3 dogs from Tae-gu, Korea between 1996 and 1997. Specimens of hair and scale, collected from skin lesions were inoculated on potato dextrose agar and mycobiotic agar supplemented with thiamine and inositol. The agar plates were incubated at $25^{\circ}C$ for 2 weeks. Growing fungi isolated were identified by the morphological and growth characterization on bromocresol purple-milk solids-glucose medium, Christensen urea broth and trichophyton media, and by hair perforation tests. Skin lesions were observed in legs, abdomen, ears, face and head with alopecia of various sizes accompanied by itching and/or inflammation. The causative agent of dermatophytosis in the 3 dogs was identified as Microsprum gypseum and Trichophyton rubrum (mixed infection, dog 1), T rubrum (dog 2) and T raubitschekii (dog 3). The dermatophytosis by T rubrum and T raubitschekii was first found on animals in Korea.

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In vitro Antifungal Activity of Limonene against Trichophyton rubrum

  • Chee, Hee-Youn;Kim, Hoon;Lee, Min-Hee
    • Mycobiology
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    • v.37 no.3
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    • pp.243-246
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    • 2009
  • In this study, the antifungal activities of limonene against Trichophyton rubrum were evaluated via broth microdilution and vapor contact assays. In both assays, limonene was shown to exert a potent antifungal effect against T. rubrum. The volatile vapor of limonene at concentrations above $1{\mu}l$/800 ml air space strongly inhibited the growth of T. rubrum. The MIC value was 0.5% v/v in the broth microdilution assay. The antifungal activity of limonene against T. rubrum was characterized as a fungicidal effect.

Genetic Variations of Trichophyton rubrum Clinical Isolates from Korea

  • Yoon, Nam-Sup;Kim, Hyunjung;Park, Sung-Bae;Park, Min;Kim, Sunghyun;Kim, Young-Kwon
    • Biomedical Science Letters
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    • v.24 no.3
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    • pp.221-229
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    • 2018
  • Trichophyton rubrum is one of the well-known pathogenic fungi and causes dermatophytosis and cutaneous mycosis in human world widely. However, there are not an available sequence type (ST) classification methods and previous studies for T. rubrum until now. Therefore, currently, molecular biological tools using their DNA sequences are used for genotype identification and classification. In the present study, in order to characterize the genetic diversity and the phylogenetic relation of T. rubrum clinical isolates, five different housekeeping genes, such as actin (ACT), calmodulin (CAL), RNA polymerase II (RPB2), superoxide dismutase 2 (SOD2), and ${\beta}$-tubulin (BT2) were analyzed using by multilocus sequence typing (MLST). Also, DNA sequence analysis was performed to examine the differences between the sequences of Trichophyton strains and the identified genetic variations sequence. As a result, most of the sequences were shown to have highly matched rates in their housekeeping genes. However, genetic variations were found on three different positions of ${\beta}$-tubulin gene and were shown to have changed from $C{\rightarrow}G$ (1766), $G{\rightarrow}T$ (1876), and $C{\rightarrow}A$ (1886). To confirm the association with T. rubrum inheritance, a phylogenetic tree analysis was performed. It was classified as four clusters, but there was little significant correlation. Even so, MLST analysis is believed to be helpful for determining the genetic variations of T. rubrum in cases where there is more large-scale data accumulation. In conclusion, the present study demonstrated the first MLST analysis of T. rubrum in Korea and explored the possibility that MLST could be a useful tool for studying the epidemiology and evolution of T. rubrum through further studies.

The Antifungal Activity of Bee Venom against Dermatophytes

  • Yu, A-Reum;Kim, Jum-Ji;Park, Gil-Sun;Oh, Su-Mi;Han, Chung-Sub;Lee, Mi-Young
    • Journal of Applied Biological Chemistry
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    • v.55 no.1
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    • pp.7-11
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    • 2012
  • The antifungal activities of the bee venom against Trichophyton mentagrophytes and Trichophyton rubrum were determined by using modified broth dilution assay. The most common dermatophytes, named T. mentagrophytes and T. rubrum, were known to cause a variety of cutaneous infections in humans and animals. The bee venom exhibited prominent antifungal activities against the two dermatophytes tested in this investigation. Moreover, the antifungal activities of the bee venom were much stronger than that of fluconazole, one of the commercial antifungal drugs used in the treatment and prevention of superficial and systemic fungal infections. The result suggests that bee venom could be developed as a natural antifungal drug.

Antifungal Activity of Chitosans on Candida albicans and Trichophyton rubrum and its Induction of Apoptosis (키토산의 Candida albicans와 Trichophyton rubrum에 대한 항진균 작용과 Apoptosis 유도작용)

  • Chee, Hee-Youn
    • The Korean Journal of Mycology
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    • v.34 no.2
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    • pp.119-121
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    • 2006
  • The antifungal activity of chitosan ($M.W.\;400,000{\sim}500,000$) and chitooligosaccharide ($M.W.\;3,500{\sim}5,000$) was investigated against Candida albicans and Trichophyton rubrum. Chitosan showed antifungal activity against C. albicans and T. rubrum at 50 and 100 ng/ml, respectively while chitooligosaccharide did not suppress the growth of fungus. The mode of antifungal activity of chitosan was found to be fungicidal activity. In order to investigate the induction of apoptosis by chitosan, exposure of phosphatidylserine on the surface of the cytoplasmic membrane was observed by the FITC-annexin V reaction. The results showed that chitosan induced apoptosis on C. albicans.

The Experimental Study on Antifungal effects of mixture of Sophorae Subprostratae Radix, Acoti Radix, and Hibisci Syriaci Cortex by the Three Types of Extraction on three species of the dermatophytes. (다양한 山豆根·川烏·木槿皮 혼합물 용액이 足部白癬菌에 미치는 영향)

  • Choi, Kwan-ho;Yoo, Jin-gon;Seo, Hyung-sik
    • The Journal of Korean Medicine Ophthalmology and Otolaryngology and Dermatology
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    • v.16 no.1
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    • pp.77-93
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    • 2003
  • This experimental study was performed to investigate the antifungal effects of mixture of Sophorac Subprostratae Radix, Aconti Radix, and Hibisci Syriaci Cortex by the three types of extraction in the dermatophytes such as Trichophyton rubrum, Trichophyton mentagrophytes, and Epidermophyton floccosum. The following results were obtained by using Minimum Inhibition Concentration(MIC) and Inhibition Zone. 1. MIC on Trichophyton mentagrophytes in Sample S-2, Sample S-3, and Sample-Y were 10${\mu}l$, respectively, showing the highest antifungal effect. 2. MIC on Epidermophyton floccosum in Sample S-2, Sample S-3, and Sample-Y were 10㎕ respectively, showing the highest antifungal effect. 3. MIC on Trichophyton rubrum in Sample S-3, Sample-Y were 10${\mu}l$ respectively, showing the highest antifungal effect. 4. The size of inhibition zone on Trichophyton mentagrophytes for Sample S-3 were 22.3mm in 10${\mu}l$, showing the highest antifungal effect. 5. The size of inhibition zone on Epidermophyton floccosum for Sample S-3 was 34.3mm in 10${\mu}l$, showing the highest antifungal effect. 6. The size of inhibition zone on Trichophyton rubrum for Sample-Y was 26.5mm in 10${\mu}l$, showing the highest antifungal effect. Whereas. in extractions, that of Sample S-3 was 12.5mm in 10${\mu}l$, showing the highest antifungal effect. 7. From the above results, Sample S-3 on Trichophyton mentagrophytes, Epidermophyton floccosum and Sample-Y on Trichophyton rubrum showed the highest antifungal effects. This results suggests that vinegar extraction excels other extraction method using water or ethanol to measure the antifungal effect on dermatophytes. In addition, the result shows that the extract of herbal medicines can be used to tinea pedis and if further study is performed, the use of the extract of herbal medicines will be valuable and beneficial in the clinical medicines. [NOTE] · S-S2 : 12-13w/v$\%$ Vinegar extract of mixture of Sophorae Subprostratae Radix, Aconti Radix, and Hibisci Syriaci Cortex. · S-S3 : 18-19w/v$\%$ Vinegar extract of mixture of Sophorae Subprostratae Radix, Aconti Radix, and Hibisci Syriaci Cortex. · S-Y : Miconazole nitrate

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Antifungal Activity of Non-thermal Dielectric Barrier Discharge Plasma Against Clinical Isolates of Dermatophytes

  • Ali, Anser;Hong, Young June;Lee, SeungHyun;Choi, Eun Ha;Park, Bong Joo
    • Proceedings of the Korean Vacuum Society Conference
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    • 2014.02a
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    • pp.260-260
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    • 2014
  • Dermatophytes can invade in keratinized tissues and cause dermatophytosis [1] that rank among the most widespread and common infectious diseases world-wide. Although several systemically and topically administered drugs with activities against these fungi are available, still complete eradication of some of these infections, is difficult and relapses and remissions are often observed [2,3]. In addition, some people are allergic to many of the available drugs which add complications even more. Therefore, the search for novel, selective and more effective therapy is always required and it may help the clinicians to choose the correct treatment for their patients. Non-thermal plasmas primarily generate reactive species and recently have emerged as an efficient tool for medical applications including sterilization. In this study, we evaluated the ability of non-thermal dielectric barrier discharge (DBD) plasma for the inactivation of clinical isolates of Trichophyton genera, Trichophyton mentagrophytes (T. mentagrophytes) and Trichophyton rubrum (T. rubrum), which cause infections of nails and skin and, are two of the most frequently isolated dermatophytes [4]. Our results showed that DBD plasma has considerable time dependent inactivation potential on both T. mentagrophytes and T. rubrum in-vitro. Furthermore, the mechanisms for plasma based T. mentagrophytes and T. rubrum inactivation and planning for in-vivo future studies will be discussed.

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The Anti-Microbial Activity of Modified Chitosan. (변형 키토산의 항균효과)

  • 정병옥;강성태;정석진
    • Microbiology and Biotechnology Letters
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    • v.26 no.4
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    • pp.338-344
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    • 1998
  • New type of chitosan derivatives, chitosan-g-MAP, were synthesized by graft copolymerization of mono (2-methacryloyl oxyethyl) acid phosphate (MAP) into chitosan, in order to solubilize chitosan in water. Ceric ammonium nitrate was used as an initiator for graft copolymerization. The optimal conditions for graft copolymerization were determined on the basis of reaction temperature, time, and the concentration of initiator and monomer. The reaction conditions for the highest percentage of grafting were as follows: an initiator concentration, 3.5${\times}$10$\^$-3/ M; monomer concentration, 0.19 M; and reaction temperature, 40$^{\circ}C$ The reaction rate reached the maximum value after 4 hrs of reaction. Antifungal activity was tested against Candida albicans, Trichophyton rubrum and Trichophyton violaceum by using chitosan-g-MAP and two other chitosan samples which have degree of deacetylation of 70% (DA-7) and 90% (DA-90). Their antifungal activities were investigated in weak acidic range. Maximum antifungal activity of them was observed at pH 5.75. Chitosan-g-MAP inhibited thoroughly the growth of Candida albicans and Trichophyton violaceum. Howerver, DA-70 and DA-90 showed higher antifungal activities on Trichophyton rubrum than that of chitosan-g-MAP.

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Antifungal Activities of meOH Extracts from Three Korean Mistletose against Tyromyces palustris, Endothia nitschkei and Trichophyton rubrum (3종의 한국산 겨우살이 메탄올 추출물의 Tyromyces palustris, Endothia nitschkei 그리고 Trichophyton rubrum에 대한 항균활성)

  • 안원영;최원실;박미진
    • Journal of Korea Foresty Energy
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    • v.19 no.1
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    • pp.49-60
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    • 2000
  • The traditional Korea medical book already recorded various biological activities of the Korean mistletoes. The objective of this study was examine antifungal activities of MeOH extract from the Korean mistletoe through column chromatography on three fungi, such as Tyromyces palustris Endothia nitschkei and Trichophyton rubrum. No mistletoes had anti-fungal activity against T. palusties. Extracts of V. album var. coloratum showed the highest hyphal growth-inhibitory activity against E. nitschkei and leaf extract of this species had higher activity than twig extract. Further fractionation of most active fraction and following antifungal assay showed that its anti-fungal activity might be caused by synergism if its components. It was suggested that Viscum album var. coloratum shows significantly antifungal activities against E. nitschkei and T. rubrum. Further examination is needed to find out more exact active compounds.

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Identification and Phylogenetic Relationship of Dermatophytes Based on RFLP Analysis and Nucleotide Sequence of Internal Transcribed Spacer (ITS)1 in Nuclear Ribosome DNA (ITS-RFLP와 ITS1 염기서열 분석에 의한 피부사상균의 동정과 계통적 유연관계)

  • Choi, Yeon-Hwa;Lee, Yeong-Seon;Yoo, Jae-Il;Kim, Bong-Su
    • The Journal of the Korean Society for Microbiology
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    • v.35 no.1
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    • pp.49-60
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    • 2000
  • ITSI-5.8S-ITSII rDNA region was amplified from the reference strains and clinical isolates with ITS1 and ITS4 primers. These primers amplified DNA fragments of 550 bp in Microsporum audouinii and Trichophyton violaceum, 700 bp in Microsporum gypseum, Trichophyton mentagrophytes, Trichophyton rubrum, and Trichophyton tonsurans, and 750 bp in Microsporum ferreugineum and Microsporum canis. The restriction enzyme patterns of PCR products digested with 13 restriction enzyme including PstI were distint among the genera, whereas identical in the same species. Examination of the ITS (Internal Transcribed Spacers)1 nucleotide sequence revealed that there was the genetic difference in each genera and species. Phylogenetic relationship among each species showed that the Trichophyton mentagrophytes was more closely related Trichophyton tonsurans than Trichophyton rubrum, and Microsporum gypseum was less related than Microsporum spp..

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