• Title/Summary/Keyword: ChsC

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Suppressive Effects of Chenilyeomgamibang (CGB) and Chenggihaedok-san (CHS) on TNCB(trinitrochlorobenzene)-induced Atopic Dermtitis NC/Nga Mice Model (TNCB로 유발한 아토피피부염 생쥐 모델에서 천일염가미방(天日鹽加味方)과 청기해독산(淸肌解毒散)의 병용 효과)

  • Lee, Kyoung-Mee;Gim, Seon-Bin;Choi, Hak-Ju;Choi, Jeong-June;Roh, Seong-Soo;Kim, Dong-Hee
    • The Korea Journal of Herbology
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    • v.24 no.4
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    • pp.215-224
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    • 2009
  • Objectives : Atopic dermatitis is a chronic inflammatory disease characterized by typically distributed eczematous skin lesion with pruritus, lichenification and dry skin. In this study, we performed to assess the therapeutic effects of co-treatment of Chenilyeomgamibang (CGB) and Chenggihaedok-san (CHS, C&C) on the TNCB(trinitrochlorobenzene)-induced atopic dermatitis in NC/Nga mice, characterized by the onset of atopic dermatitis along with an increase the number of inflammatory cells and dysregulation of Th2 cytokines. Methods : Defined amount of CGB was sprayed on mice skin and CHS was simultaneously orally administrated to TNCB treated NC/Nga mice for 5 weeks. The immune cell types were caracterized by flow cytometry using each specific antibody. The amount of Th2 cytokines in serum and splenocytes culture supernatant were measured by ELISA. Results : Administration of C&C significantly reduced clinical dermatitis severity including pruritus, edema, eczematous and erythema. Histological findings indicated that the thickening of epidermis/dermis and dermal infiltration of inflammatory cells were dramatically reduced. Flow cytometry analysis showed that infiltrated immune cell numbers of CCR3+, B220+/IgE+, Gr-1+/CD11b+, and CD117+ were significantly reduced in C&C-treated dorsal skin lesion. Furthermore, T cell composition rate in PBMC was also dramatically decreased by the treatment. C&C greatly down-regulated production of Th2 cytokines including IL-4, IL-5, IL-13 in the serum. The down- regulatory effects of C&C on these Th2 cytokines production were also detected in CD3/ CD28 activated splenocytes. Conclusions : These results indicated that C&C is a plausible therapeutic agent for treatment of atopic dermatitis through regulating the Th2 skewed immune system.

Genomics Reveals Traces of Fungal Phenylpropanoid-flavonoid Metabolic Pathway in the Filamentous Fungus Aspergillus oryzae

  • Juvvadi Praveen Rao;Seshime Yasuyo;Kitamoto Katsuhiko
    • Journal of Microbiology
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    • v.43 no.6
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    • pp.475-486
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    • 2005
  • Fungal secondary metabolites constitute a wide variety of compounds which either playa vital role in agricultural, pharmaceutical and industrial contexts, or have devastating effects on agriculture, animal and human affairs by virtue of their toxigenicity. Owing to their beneficial and deleterious characteristics, these complex compounds and the genes responsible for their synthesis have been the subjects of extensive investigation by microbiologists and pharmacologists. A majority of the fungal secondary metabolic genes are classified as type I polyketide synthases (PKS) which are often clustered with other secondary metabolism related genes. In this review we discuss on the significance of our recent discovery of chalcone synthase (CHS) genes belonging to the type III PKS superfamily in an industrially important fungus, Aspergillus oryzae. CHS genes are known to playa vital role in the biosynthesis of flavonoids in plants. A comparative genome analyses revealed the unique character of A. oryzae with four CHS-like genes (csyA, csyB, csyC and csyD) amongst other Aspergilli (Aspergillus nidulans and Aspergillus fumigatus) which contained none of the CHS-like genes. Some other fungi such as Neurospora crassa, Fusarium graminearum, Magnaporthe grisea, Podospora anserina and Phanerochaete chrysosporium also contained putative type III PKSs, with a phylogenic distinction from bacteria and plants. The enzymatically active nature of these newly discovered homologues is expected owing to the conservation in the catalytic residues across the different species of plants and fungi, and also by the fact that a majority of these genes (csyA, csyB and csyD) were expressed in A. oryzae. While this finding brings filamentous fungi closer to plants and bacteria which until recently were the only ones considered to possess the type III PKSs, the presence of putative genes encoding other principal enzymes involved in the phenylpropanoid and flavonoid biosynthesis (viz., phenylalanine ammonia-lyase, cinnamic acid hydroxylase and p-coumarate CoA ligase) in the A. oryzae genome undoubtedly prove the extent of its metabolic diversity. Since many of these genes have not been identified earlier, knowledge on their corresponding products or activities remain undeciphered. In future, it is anticipated that these enzymes may be reasonable targets for metabolic engineering in fungi to produce agriculturally and nutritionally important metabolites.

The Effect of Low Molecular Weight Chitosan with and without Other Preservatives on the Characteristics of Kimchi during Fermentation (Chitosan과 다른 보존제 첨가에 따른 김치의 저장성 향상)

  • Son, Yu-Mee;Kim, Kwang-Ok;Jeon, Dong-Won;Kyung, Kyu-Hang
    • Korean Journal of Food Science and Technology
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    • v.28 no.5
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    • pp.888-896
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    • 1996
  • This study was conducted to investigate the preservative effects of low molecular weight chitosan with and without other preservatives on kimchi at $10^{\circ}C$ during 12 days of fermentation. The pH and titratable acidity of kimchi with preservatives (PSV) were higher and lower, respectively, than those of control kimchi (CON). The decrease in reducing sugar content was more remarkable in CON than in PSV as the fermentation proceeded. Contents of lactic acid and acetic acid were lower in PSV, especially in kimchi with chitosan dissolved in acetic acid (CH-B) and in the one containing both chitosan and Na-benzoate (CHS) than those in CON. The numbers of total viable cells, Leuconostoc sp. and Lactobacillus plantarum were higher in CON than those in PSV. Sensory firmness and green flavor were significantly lower in CON than in CH-B and CHS. Sourness and staled flavor of CH-B and CHS tended to be lower than those of other kimchi samples.

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Changes In Mechanical Strength of Compression HIP Screws in Relation to Design Variations - A Biomechanical Analysis

  • Moon S. J.;Lee H. S.;Jun S. C.;Jung T. G.;Ahn S. Y.;Lee H.;Lee S. J.
    • Journal of Biomedical Engineering Research
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    • v.26 no.2
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    • pp.123-127
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    • 2005
  • Compression Hip Screw (CHS) is one of the most widely-used prostheses for the treatment of intertrochanteric fractures because of its strong fixation capability. Fractures at the neck and screw holes are frequently noted as some of its clinical drawbacks, which warrant more in-depth biomechanical analysis on its design variables. The purpose of this study was to evaluate changes in the strength with respect to the changes in design such as the plate thickness and the number of screw holes. Both mechanical test and FEM analysis were used to systematically investigate the sensitivities of the above-mentioned design variables. For the first part of the mechanical test, CHS (n=20) were tested until failure. The CHS specimens were classified into four groups: Group Ⅰ was the control group with the neck thickness of 6-㎜ and 5 screw holes on the side plate, Group Ⅱ 6-㎜ thick and 8 holes, Group Ⅲ 7.5-㎜ thick and 5 holes, and Group Ⅳ 7.5-㎜ thick and 8 holes. Then, the fatigue test was done for each group by imparting 50% and 75% of the failure loads for one million cycles. For the FEM analysis, FE models were made for each group. Appropriate loading and boundary conditions were applied based on the failure test results. Stresses were assessed. Mechanical test results indicated that the failure strength increased dramatically by 80% with thicker plate. However, the strength remained unchanged or decreased slightly despite the increase in number of holes. These results indicated the higher sensitivity of plate thickness to the implant strength. No fatigue failures were observed which suggested the implant could withstand at least one million cycles of fatigue load regardless of the design changes. Our FEM results also supported the above results by showing a similar trend in stress as those of mechanical test. In summary, our biomechanical results were able to show that plate thickness could be a more important variable in design for reinforcing the strength of CHS than the number of screw holes.

Study on Combination of External Gosamgamibang and Internal Chenggihaedok-san for the Treatment of Atopic Dermatitis (아토피피부염에 대한 고삼가미방(苦參加味方)과 청기해독산(淸肌解毒散)의 겸용 투여 효과)

  • Ko, Hong-Yun;Kim, Dong-Hee
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.23 no.6
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    • pp.1282-1291
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    • 2009
  • A combined prescription of GGB and CHS (G&C prescription group) was used to investigate its effects on immune related factors and histological changes in atopic dermatitis(AD) induced mice. Significant decrease of atopic dermatitis clinical index in G&C prescription group. In DLN, G&C prescription group significantly modulated the immune cells. G&C prescription group also showed significant effect on the immune cells of the dorsal skin as well as DLN. The group indicated significant decrease of the biosynthesis of IL-4, IL-5, IL-13, GM-CSF, cytokines in serum. On the other hand, the biosynthesis of TNF-$\alpha$ was decreased. G&C prescription group significantly decreased the immunoglobulin IgE levels in serum. The results suggest that G&C prescription significantly improves atopic dermatitis through regulation of immune cells and cytokines. Comparative studies with Protopic ointment also showed that G&C prescription showed significant effect in AD patients, and active application of the prescription in clinicals is anticipated. However, the reason for the results that oppose to those of previous studies should be investigated. Also, therapeutic effects of both internal and external applications should be studied individually as well as for any synergistic effects. Safety, toxicity, as well as stability studies should follow to develop G&C prescription into long-term external clinical product.

Morphological and Genetic Characteristics of Colletotrichum gloeosporioides Isolated from Newly Emerging Static-Symptom Anthracnose in Apple

  • Jeon, Yongho;Cheon, Wonsu
    • 한국균학회소식:학술대회논문집
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    • 2014.10a
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    • pp.34-34
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    • 2014
  • Filamentous fungi of the genus Colletotrichum (teleomorph, Glomerella) are considered major plant pathogens worldwide. Cereals, legumes, vegetables, and fruit trees may be seriously affected by this pathogen (1). Colletotrichum species cause typical disease symptoms known as anthracnoses, characterized by sunken necrotic tissue, where orange conidial masses are produced. Anthracnose appears in both developing and mature plant tissues (2). We investigated disease occurrence in apple orchards from 2013 to 2014 in northern Gyeongbuk province, Korea. Typical anthracnose with advanced symptoms was observed in all apple orchards studied. Of late, static fruit spot symptoms are being observed in apple orchards. A small lesion, which does not expand further and remains static until the harvesting season, is observed at the beginning of fruit growth period. In our study, static symptoms, together with the typical symptoms, were observed on apples. The isolated fungus was tested for pathogenicity on cv. 'Fuji apple' (fully ripe fruits, unripe fruits, and cross-section of fruits) by inoculating the fruits with a conidial suspension ($10^5$ conidia/ml). In apple inoculated with typical anthracnose fungus, the anthracnose symptoms progressed, and dark lesions with salmon-colored masses of conidia were observed on fruit, which were also soft and sunken. However, in apple inoculated with fungi causing static symptoms, the size of the spots did not increase. Interestingly, the shape and size of the conidia and the shape of the appressoria of both types of fungi were found to be similar. The conidia of the two types of fungi were straight and cylindrical, with an obtuse apex. The culture and morphological characteristics of the conidia were similar to those of C. gloeosporioides (5). The conidia of C. gloeosporioides germinate and form appressoria in response to chemical signals such as host surface wax and the fruitripening hormone ethylene (3). In this study, the spores started to germinate 4 h after incubation with an ethephon suspension. Then, the germ tubes began to swell, and subsequently, differentiation into appressoria with dark thick walls was completed by 8 h. In advanced symptoms, fungal spores of virtually all the appressoria formed primary hyphae within 16 h. However, in the static-symptom fungus spores, no primary hyphae formed by 16 h. The two types of isolates exhibited different growth rates on medium containing apple pectin, Na polypectate, or glucose as the sole carbon. Static-symptom fungi had a >10% reduction in growth (apple pectin, 14.9%; Na polypectate, 27.7%; glucose, 10.4%). The fungal isolates were also genetically characterized by sequencing. ITS regions of rDNA, chitin synthase 1 (CHS1), actin (ACT), and ${\beta}$-tubulin (${\beta}t$) were amplified from isolates using primer pairs ITS 1 and ITS 4 (4), CHS-79F and CHS-354R, ACT-512F and ACT-783R, and T1 and ${\beta}t2$ (5), respectively. The resulting sequences showed 100% identity with sequences of C. gloeosporioides at KC493156, and the sequence of the ${\beta}$t gene showed 100% identity with C. gloeosporioides at JX009557.1. Therefore, sequence data from the four loci studied proves that the isolated pathogen is C. gloeosporioides. We also performed random amplified polymorphic DNA-PCR, which showed clearly differentiated subgroups of C. gloeosporioides genotypes. The clustering of these groups was highly related to the symptom types of the individual strains.

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Studies on electron Bernstein wave heating in CHS and LHD at NIFS

  • Yoshimura, Y.;Igami, H.;Margalet-Ferrando, S.;Nagasaki, K.;Kubo, S.;Shimozuma, T.;Isobe, M.;Suzuki, C.;Shimizu, A.;Akiyama, T.;Takahashi, C.;Nagaoka, K.;Nishimura, S.;Minami, T.;Matsuoka, K.;Okamura, S.;Mutoh, T.
    • Proceedings of the Korean Vacuum Society Conference
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    • 2007.08a
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    • pp.181-181
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    • 2007
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Effects of Aqueous Extract from Lonicera Japonica Flower on Trimellitic Anhydride-induced Contact Hypersensitivity in BALB/c Mice (수용성 금은화 추출물이 Trimellitic Anhydride 유도 마우스 접촉성 과민반응에 미치는 영향)

  • Lee, Jung-No;Jeong, Seung-Il;Jang, Seon-Il
    • The Korea Journal of Herbology
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    • v.23 no.2
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    • pp.51-58
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    • 2008
  • Objectives : Trimellitic anhydride (TMA), a sensitizer that induces occupational asthma and atopic dermatitis, is widely used industrially to make epoxy and alkyd resins, plasticizers, high temperature polymer, and surfactants. The aim of this study was to investigative the effects of aqueous extracts of Lonicera japonica Flower(LJFAE) on TMA-induced contact hypersensitivity (CHS) in Balb/c mice. Methods : The dried flowers of L. japonica were extracted with distilled water at $100^{\circ}C$ for 7 h. The extract was freeze-dried following filteration through 0.45 ${\mu}m$ filter. Mice were orally administrated with or without LJFE of a different doses(25-100 mg/kg) for 28 days. In the challenge period, mice were externally applied at difference doses of LJFAE one time per day 30 min before TMA treatment. We examined the effects of LJFAE on the the serum levels of IgE and prostagladin E2 (PGE2), the Thl/Th2 cytokine production of spleen cells, ear swelling responses, and the leukocyte infiltration induced by TMA. Results : The orally and externally administration of LJFAE dose-dependently reduced the serum levels of IgE and PGE2 production as well as ear swelling responses and leukocyte infiltration in TMA-induced Balb/c mice. Furthermore, the levels of Thl (TNF-${\alpha}$, IFN-${\gammer}$, IL-2)/Th2 (IL-4, IL-5, IL-13) cytokine production from spleen cells stimulated with anti-CD3 and CD28 mAbs was markedly suppressed by the orally and externally treatment with LJFAE in a concentration dependent manner. Conclusions : These results suggest that LJFAE suppresses the inflammatory mediators and regulates the Thl/Th2 cytokines. Therefore, these properties may contribute to the strong anti-CHS response effect of LJFAE.

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The Determination of Chitin Synthases by Varying pH and Divalent Cations in Candida albicans

  • Choi, Won-Ja
    • Journal of Microbiology and Biotechnology
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    • v.8 no.6
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    • pp.613-617
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    • 1998
  • The Chsl, Chs2, and Chs3 activities of a pathogenic fungus, Candida albicans, perform the same biochemical reactions, but exert different functions. Therefore, the determination of each enzyme activity is important. The three chitin synthases differ in their optimal pH and the effect of divalent cations as either stimulatory or inhibitory factors. The CAChsl, CAChs2, and CAChs3 activities are optimal at pH 7.5, 6.5, and 8.5, respectively. $Co^{2+} stimulates CAChsl and CAChs3, but inhibits CAChs2. $Ni^{2+}$ inhibits CAChsl and CAChs2 with little effect on CAChs3. $Mg^{2+}$ stimulates CAChs2 and CAChs3, but hardly affects CAChsl. These characteristics are similar to those of the Saccharomyces cerevisiae enzymes except in degree. The sensitivity against $Ni^{2+}$ of CAChsl is higher than that of CAChs2, whereas the reverse is true in S. cerevisiae. Metal dependence of chitin synthases in C. albicans is less marked than that in S. cerevisiae, except for CAChs2. The activities of CAChsl and CAChs3 from EDTA-treated membranes were increased 1.5 fold, while that of CAChs2 was stimulated 7 fold in the presence of divalent cations. These results could provide new criteria for screening systems of antifungal agents.

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