• 제목/요약/키워드: cyclosporin

검색결과 193건 처리시간 0.025초

Cyclosporin A에 의한 치은 증식증에서 FGF-5와 FGF-7의 발현 양상에 대한 연구 (THE EXPRESSION OF FGF-5 AND FGF-7 IN THE CYCLOSPORIN A-INDUCED GINGIVAL HYPERPLASIA)

  • 정미향;김성곤;윤경인;남동석
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제32권3호
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    • pp.216-221
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    • 2006
  • Cyclosporin A-induced gingival hyperplasia is frequently found in the patients who have been received an immunosuppressant for the organ transplantation. However, its exact mechanism is still unknown. The expression of FGF-5 and FGF-7 were studied in cyclosporine A-induced gingival hyperplasia (CGH) and inflammatory gingival hyperplasia (IGH). Immunohistochemistry and in situ hybridization were used for localization of protein and mRNA. The expression of FGF-5 and FGF-7 was different from CGH and IGH. FGF-5 and FGF-7 was strongly expressed in fibroblast in CGH (P<0.005 and P<0.05, respectively). FGF-5 mRNA was localized in the middle portion of connective tissue. FGF-7 mRNA was also identified in fibroblasts and mast cells. In conclusion, FGF-5 and FGF-7 were produced excessively by fibroblasts in CGH. Considering their known functions, their expression in CGH is important for production of collagen and proliferation of fibroblasts.

Combination Strategy to Increase Cyclosporin A Productivity by Tolypocladium niveum Using Random Mutagenesis and Protoplast Transformation

  • Lee, Mi-Jin;Duong, Cae Thi Phung;Han, Kyu-Boem;Kim, Eung-Soo
    • Journal of Microbiology and Biotechnology
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    • 제19권9호
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    • pp.869-872
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    • 2009
  • The cyclic undecapeptide cyclosporin A (CyA), one of the most valuable immunosuppressive drugs, is produced nonribosomally by a multifunctional cyclosporin synthetase enzyme complex by the filamentous fungus Tolypocladium niveum. To increase CyA productivity by wild-type T. niveum (ATCC 34921), random mutagenesis was first performed using an antifungal agar-plug colony assay (APCA) selection approach. This generated a mutant strain producing more than 9-fold greater CyA than the wild-type strain. Additionally, a foreign bacterial gene, Vitreoscilla hemoglobin gene (VHb), was transformed via protoplast regeneration and its transcription was confirmed by RT-PCR in the UV-irradiated mutant cell. This led to an additional 33.5% increase of CyA production. Although most protoplast-regenerated T. niveum transformants tend to lose CyA productivity, the optimized combination of random mutagenesis and protoplast transformation described here should be an efficient strategy to generate a commercially valuable, yet metabolite low-producing, fungal species, such as CyA-producing T. niveum.

인진오령산이 흰쥐의 신독성(腎毒性)에 미치는 영향(影響) (Effect of InJinORyungSan on the nephrotoxicity in rat)

  • 김호현;신흥묵;김길훤
    • 대한한의학회지
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    • 제17권2호
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    • pp.133-144
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    • 1996
  • This study investigated the effect of InJinORyungSan on the nephrotoxicity in rat treated with cyclosporin A. Control group were injected with cyclosporin A alone. whereas test group were injected with cyclosporin A and InJinORyungSan extract. In the control group, blood urea nitrogen(BUN), serum creatinine(S-Cr) and renal lipid peroxidation(LPO) level were significantly increased, but renal superoxide dismutase(SOD) activity was significantly decreased. In the kidney of control group, the destruction of distal convoluted tubules(DCT) and proximal convoluted tubules(PCT) were observed in renal cortex, lymphocytes and fibroblast were appeared in the portion of DCT destruction. However, in the test group, BUN, S-Cr and renal LPO level were significantly decreased as compared with control group, on the other hand, renal SOD activity was significantly increased. In the kidney of test group, the destruction of DCT and PCT were repaired as compared with control group. These results demonstrated that InJinORyungSan. can be attributed to recovery from nephrotoxicity, We consider that activated SOD by InJinORyungSan suppress renal LPO or production of free radicals induced by cyclosporin A.

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Cyclosporin A가 봉입된 nanostructured lipid carriers의 물리적 특성연구 (Physical properties of cyclosporin A-loaded nanostructured lipid carriers)

  • 송충길;정석재;심창구;김대덕
    • Journal of Pharmaceutical Investigation
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    • 제38권1호
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    • pp.39-43
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    • 2008
  • Cyclosporin A (CyA), a potent immunosuppressive drug used in allogeneic transplants and autoimmune disease, is a typical water-insoluble drug. Recently, nanoparticle carriers were investigated to improve the intestinal absorption of drugs. In this study, CyA-loaded nanostructured lipid carriers (NLCs) were prepared from a hot o/w emulsion using the high pressure homogenization method. The NLCs were consisted of cationic lipids, solid lipids, liquid lipids (oils), surfactant and stabilizer. Encapsulation efficiency of CyA in NLCs was approximately 71%. The average particle size and zeta potential of NLCs were below 250 nm and above +40 mV, respectively. The morphology of NLCs was confirmed by transmission electron microscopy (TEM) analysis. Compared to the CyA powder, higher in vitro release of CyA from NLCs was observed after burst release within 30 min. Thus, CyA-loaded NLCs could be applied not only for parenteral route but also for gastrointestinal administration, which needs further investigation.

용존산소 제한 또는 탄소원 제한 조건의 유가식배양에서의 Cyclosporin A 생합성 연구 (Studies of Cyclosporin A Biosynthesis under the Conditions of Limited Dissolved Oxygen or Carbon Source in Fed-batch Culture)

  • 전계택;박성관;권호균;정연호;정용섭;장용근;이영행
    • KSBB Journal
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    • 제13권2호
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    • pp.203-208
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    • 1998
  • We investigated the effects of dissolved oxygen (D.O.) and fructose (C-source) on cell growth and biosynthesis of cyclosporin A (CyA) produced as a secondary metabolite by a wild-type filamentous fungus, Tolypocladium inflatum. This was performed by controlling the level of D.O. and the residual C-source, as required, through adjustment of medium flow rate, medium concentration and agitation rate in fed-batch cultures. CyA production was furned out to be maximal, when D.O. level was controlled around 10% saturated D.O. and concentration of the C-source was maintained sufficiently low (below 2 g/L) not to cause carbon catabolite repression. Under this culture condition, we obtained the highest values of CyA concentration (507.14 mg/L), Qp (2.11 mg CyA/L/hr), $Y_x/s$ (0.49 g DCW/g fructose), $Y_p/s$<(22.56 mg CyA/g fructose), and YTEX>$_p/x$ (48.31 mg CyA/g DCW), but relatively lower values of cell concentration (11.98 g DCW/L) and cell productivity (0.043 g DCW/L/hr), in comparison with other parallel fed-batch fermentation conditions. These results implied that, in the carbon-limited culture with 10% saturated D.O. level, the producer microorganism utilized the C-source more efficiently for secondary metabolism.

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Spore Inoculum Optimization to Maximize Cyclosporin A Production in Tolypocladium niveum

  • Lee, Mi-Jin;Lee, Han-Na;Han, Kyu-Boem;Kim, Eung-Soo
    • Journal of Microbiology and Biotechnology
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    • 제18권5호
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    • pp.913-917
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    • 2008
  • The cyclic undecapeptide, cyclosporin A (CyA), is one of the most commonly prescribed immunosuppressive drugs. It is generated nonribosomally from a multifunctional cyclosporin synthetase enzyme complex by the filamentous fungus Tolypocladium niveum. In order to maximize the production of CyA by wild-type T. niveum (ATCC 34921), each of three culture stages (sporulation culture, growth culture, and production culture) were sequentially optimized. Among the three potential sporulation media, the SSMA medium generated the highest numbers of T. niveum spores. The SSM and SM media were then selected as the optimal growth and production culture media, respectively. The addition of valine and fructose to the SM production medium was also determined to be crucial for CyA biosynthesis. In this optimized three-stage culture system, 3% of the spore inoculum generated the highest level of CyA productivity in a 15-day T. niveum production culture, thereby implying that the determination of an appropriate size of T. niveum spore inoculum plays a critical role in the maximization of CyA production.

항원수용체자극에 의한 Cytolytic T cell 특이전사체 표현유도 (Antigen Receptor-Mediated Induction of Cytolytic T cell-Specific Transcripts Expression)

  • 김관식;;권병세
    • 대한약리학회지
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    • 제23권1호
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    • pp.45-49
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    • 1987
  • Cytolytic T cell(CTL)에서는 표현되나 다른 세포에서는 표현되지 않는 유전자를 검색하여 최근 저자는 3종의 CTL 특이 cDNA를 cloning하였다. CTL 특이 cDNA의 기능을 규명하기 위하여 CTL L3 cell을 항원수용체를 통하여 혹은 interleukin 2(IL-2)로 자극하여 활성화시킨 후 RNA blot analysis로 각 cDNA clone의 상응전사체 표현양상을 관찰, CTL활성화과정과의 연관성을 실험하였다. 이중 2종의 cDNA상응전사체표현은 항원수용체자극에 의해 현저히 증가된 반면 IL-2는 전혀 영향을 미치지 않았으며 이 같은 전사체표현증가는 cyclosporin A 처리로 완전히 억제되었다. 이상의 결과는 항원수용체자극으로 활성화되는 유전자가 IL-2에 의해 활성화되는 유전자와는 상이함을 보여주는 것이며 또한 2종의 cDNA clone이 IL-2에 의해 활성화되지 않으나 항원수용체를 통하여 중개되며 cyclosporin A에 예민하게 반응하는 CTL활성화과정의 특정경로에 관여하는 것으로 사료된다.

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구강 편평세포암종 세포주에서 Cyclosporin A와 Taxol 투여시 PI-3 kinase/Akt1 Pathway에 의한 세포사멸 병용효과 (APOPTOTIC EFFECT IN COMBINATION OF CYCLOSPORIN A AND TAXOL ON ORAL SQUAMOUS CELL CARCINOMA CELL LINE THROUGH THE PI-3 KINASE/AKT1 PATHWAY)

  • 김규영;이재훈
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제33권5호
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    • pp.426-436
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    • 2007
  • Oral cancer take up 2-6% of all carcinomas and squamous cell carcinoma, which is the most common type in oral cancer, has a poor prognosis due to its high metastasis and recurrence rates. In treating oral cancer, chemotherapy to the primary, metastasized and recurrent lesion is a very important and useful treatment, even though its widespread usage is limited due to high general toxicity and local toxicity to other organs. Taxol, a microtubule stabilizing agent, is an anticancer drug that induces cell apoptosis by inhibiting depolymerization of microtubules in between the metaphase and anaphase of the cell mitosis. Recently, its effectiveness and mechanism on various tumor has been reported. However, not much research has been done on the application of Taxol to oral squamous cell carcinoma. Cyclosporin A, which is an immunosuppressant, is being used on cancers and when co-administered with Taxol, effectiveness of Taxol is enhanced by inhibition of Taxol induced multidrug resistance. In this study, Cyclosporin A with different concentration of Taxol was co-administered to HN22, the oral squamous cell carcinomacell line. To observe the cell apoptosis and the mechanisms that take part in this process, mortality evaluation of tumor cell using wortmannin, c-DNA microarray, RT-PCR analysis, cytometry analysis and western blotting were used, and based upon the observation on the effect and mechanism of the agent, the following results were obtained: 1. The HN22 cell line viability was lowest when $100{\mu}M$ of Wortmannin and $5{\mu}g/ml$ of Taxol were co-administered, showing that Taxol participates in P13K-AKT1 pathway. 2. In c-DNA microarray, where $1{\mu}g/ml$ of cyclosporine A and 3mg/ml of Taxol were co-administered, no up regulation of AKT1, PTEN and BAD c-DNA that participate in cell apoptosis was observed. 3. When $1{\mu}g/ml$ of Cyclosporin A was applied alone to HN22 cell line, no difference was found in AKT1, PTEN and BAD mRNA expression. 4. Increased AKT1, mRNA expression was observed when $3{\mu}g/ml$ of Taxol was applied alone to HN22 cell line. 5. When $1{\mu}g/ml$ of Cyclosporin A and Taxol($3{\mu}g/ml\;and\;5{\mu}g/ml$) were co-administered to HN22 cell line, PTEN mRNA expression increased, whereas AKT1 and BAD mRNA decreased. 6. As a result of cytometry analysis, in the group of Cyclosporin A($1{\mu}g/ml$) and Taxol($3{\mu}g/ml$) co-administration, increased Annxin V was observed, which shows that apoptosis occurred by deformation of plasma membrane. However, no significant difference was observed with vary ing concentration. 7. In western blot analysis, no caspase 3 was observed in the group of Cyclosporin A($1{\mu}g/ml$) and Taxol($3{\mu}g/ml$) co-administration. From the results of this study, it can be concluded that synergistic effect can be observed in combination therapy of Taxol and Cyclosporin A on oral squamous cell carcinoma cell line, where decreased activity of the cell line was observed. This resulted in decreased AKT1 and BAD mRNA and increased PTEN mRNA expression and when wortmannin and Taxol were co-administered, the viability decreased which confirms that Taxol decreases the viability of tumor cell line. Hence, when Taxol and cyclosporine A are co-administered, it can be assumed that cell apoptosis occurs through AKt1 pathway.

Both Quantitative and Qualitative Alterations of $Ca^{2+}$ Release Channel in Heart are Induced by Chronic Treatment of an Immunosuppressant, Cyclosporin A

  • Kim, Do-Han
    • 한국생물물리학회:학술대회논문집
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    • 한국생물물리학회 1997년도 학술발표회
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    • pp.18-18
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    • 1997
  • Chronic treatment with cyclosporin A (CsA) were shown to induce reversible alterations of contractile properties in rat heart. To define the molecular mechanisms underlying the physiological alterations, the $Ca^{2+}$ release channel (CRC) and $Ca^{2+}$-ATPase in rat sarcoplasmic reticulum (SR) were examined.(omitted)

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Characterization of Single Channel Properties of Cardiac $Ca^{2+}$ Release Channel in Rats Treated with the Immunosuppressant Drug, Cyclosporin A

  • Lee, Eun-Hui;Park, Chul-Seung;Kim, Do-Han
    • 한국생물물리학회:학술대회논문집
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    • 한국생물물리학회 1997년도 학술발표회
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    • pp.29-29
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    • 1997
  • Cyclosporin A (CsA) is widely used to suppress rejection in rcipients of solid organ or bone marrow transplants. A variety .of toxic side effects of this agent such as cardiotoxicity have been reported. However the underlying molecular mechanisms for the cardiotoxicity are not well resolved.(omitted)

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