• 제목/요약/키워드: B. cepacia

검색결과 48건 처리시간 0.019초

건강한 소아에서 발생한 B. cepacia에 의한 폐농양 1례 (A case of lung abscess caused by Burkholderia cepacia in healthy child)

  • 이정화;이소희;홍성진;최영철;황은구
    • Clinical and Experimental Pediatrics
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    • 제50권1호
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    • pp.89-92
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    • 2007
  • B. cepacia는 그람 음성 호기성 세균으로서 주로 면역 기능 저하 환자들에서 기회 감염의 중요한 원인균으로 알려져 있다. 이 세균은 매우 병원성이 강하여 침습적인 괴사성 감염을 일으키며 사망에까지 이르게 할 수 있다. B. cepacia는 여러 항생제에 높은 저항성을 보이므로 한 가지 항생제의 단독 요법보다는 여러 항생제의 병용용법을 사용해야 한다. 저자들은 건강한 소아에서 자연 발생한 B. cepacia에 의한 폐농양을 경험하였고 meropenem과 trimethoprim/sulfamethoxazole 병용 요법과 수술적 치료를 통해 성공적으로 치유한 1례를 보고하고자 한다.

토양 매립 시험에서 Poly(butylene succinate-co-butylene adipate)의 생분해 특성 (Biodegradation Characteristics of Poly(butylene succinate-co-butylene adipate) during Soil Burial Test)

  • 김말남
    • 환경생물
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    • 제28권3호
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    • pp.150-157
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    • 2010
  • 자연 토양 및 Burkholderia cepacia를 접종한 멸균 토양에 PBSA film을 매립하여 PBSA의 생분해 특성을 조사하였다. 상온에서 80일간 매립 시험을 실시한 결과, 자연 토양에서는 PBSA film의 34.0%, B. cepacia를 접종한 멸균 토양에서는 59.2%의 질량 감소가 일어났으며 PBSA film의 표면 형태 변화도 B. cepacia를 접종한 멸균 토양에 매립한 경우가 자연 토양에 매립한 경우에 비하여 PBSA film 표면의 침식 및 균열이 더 빠르게 일어났다. PBSA film을 매립하였을 때 80일 후 자연 토양에서 세균수는 6~7배 증가한 반면 B. cepacia를 접종한 멸균 토양에서 개체수는 10~14배 증가하였다.

퇴비로부터 분리된 Burkholderia cepacia No.15-2의 특성과 항균 효과 (Characteristics and Antimicrobial Effects of Novel Burkholderia cepacia No. 15-2 Isolated from Compost)

  • Yun, Soon-Il
    • 한국미생물·생명공학회지
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    • 제31권4호
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    • pp.421-428
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    • 2003
  • 길항미생물을 이용한 항곰팡이성 퇴비의 개발을 목적으로 공시 식물로써 Spinacia oleracea L과 식물 병원균 Rhizoctonia solani Kuhn O-28을 모델로 사용하여 수행 되었다. 다양한 음식쓰레기를 일년동안 숙성시킨 퇴비로부터 80 균주를 분리하였고, 그 중 No.15-2 균주가 R. solani Kuhn O-28에 대해 가장 높은 항곰팡이 활성을 보였다. 16S rDNA sequencing과 primer pair PCR에 의해 표현형과 분류학적으로 거의 독성이 없는 것으로 밝혀진 Burkholderia cepacia genomoval V로 분류되었다. 이 B. cepacia No. 15-2가 퇴비화 중에 우점하였으며 그 균수는 15일 동안 거의 $10^{13}$ cfu/g을 유지하였다. S. oleracea L을 배양 했을 경우 R. solani Kuhn O-28에 의한 발병율은 B. cepacia No.15-2를 첨가함으로써 40% 감소하였다. 결론적으로 B. cepacia No.15-2는 다양한 식물의 곰팡이 유래의 병을 방제하는 데 이용 가능할 것으로 사료된다.

Enhancing the Efficacy of Burkholderia cepacia B23 with Calcium Chloride and Chitosan to Control Anthracnose of Papaya During Storage

  • Rahman, M.A.;Mahmud, T.M.M.;Kadir, J.;Rahman, R. Abdul;Begum, M.M.
    • The Plant Pathology Journal
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    • 제25권4호
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    • pp.361-368
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    • 2009
  • The efficacy of the combination of Burkholderia cepacia B23 with 0.75% chitosan and 3% calcium chloride ($CaCl_2$) as a biocontrol treatment of anthracnose disease of papaya caused by Colletotrichum gloeosporioides, was evaluated during storage. The growth of B. cepacia B23 in papaya wounds and on fruit surfaces was not affected in presence of chitosan and $CaCl_2$ or combination throughout the storage period. The combination of B. cepacia B23 with chitosan-$CaCl_2$ was more effective in controlling the disease than either B. cepacia B23 or chitosan or other combination treatments both in inoculated and naturally infected fruits. Combining B. cepacia B23 with chitosan-$CaCl_2$ gave the complete control of anthracnose infection in artificially inoculated fruits stored at $14^{\circ}C$ and 95% RH for 18 days, which was similar to that obtained with fungicide $benocide^{(R)}$. Moreover, this combination offered a greater control by reducing 99% disease severity in naturally infected fruits at the end of 14 days storage at $14^{\circ}C$ and 95% RH and six days post ripening at $28\pm2^{\circ}C$, which was superior to that found with $benocide^{(R)}$ or other treatments tested. Thus, postharvest application of B. cepacia B23 with chitosan-$CaCl_2$ as enhancers represents a promising alternative to synthetic fungicides for the control of anthracnose in papaya during storage.

Synergistic Antimicrobial Action of Thymol and Sodium Bisulfate against Burkholderia cepacia and Xanthomonas maltophilia Isolated from the Space Shuttle Water System

  • Kim, Du-Woon;Day, Donal F.
    • Food Science and Biotechnology
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    • 제15권2호
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    • pp.321-323
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    • 2006
  • A combination of thymol and sodium bisulfate was found to be an effective biocidal agent against strains of Burkholderia cepacia and of Xanthomonas maltophilia that were found in the space shuttle water system. Potassium iodide (KI), the biocidal agent used in the past, had a minimum inhibitory concentration (MIC) of 50,000 ppm against the two B. cepacia (541 STS-81 and 1119 STS-91) strains, whereas that of thymol and sodium bisulfate was 2,400 and 950 ppm, which was 21 and 53 times lower than that of KI for B. cepacia, respectively. The MIC value for the combination of thymol and sodium bisulfate was 4 times lower than that for thymol or sodium bisulfate alone against B. cepacia (541 STS-81, 1119 STS-91) or Pseudomonas cepacia (ATCC 31941). The fractional inhibitory concentration (FIC) of the combination of thymol and sodium bisulfate for all organisms tested was less than 0.5, indicating a strong synergistic effect.

Flagellin Administration Protects Respiratory Tract from Burkholderia cepacia Infection

  • Zgair, Ayaid Khadem
    • Journal of Microbiology and Biotechnology
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    • 제22권7호
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    • pp.907-916
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    • 2012
  • Burkholderia cepacia is an important pathogen that often causes pneumonia in immunocompromised individuals. Here, it was demonstrated that the TLR5 agonist flagellin could locally activate innate immunity. This was characterized by rapid expressions of IL-$1{\beta}$, TNF-${\alpha}$, and iNOS mRNA and a delay in the expression of IL-10 mRNA. A significant elevation in the IL-$1{\beta}$, TNF-${\alpha}$, and nitric oxide levels was also noted. In the respiratory tract, flagellin induced neutrophil infiltration into the airways, which was observed by histopathological examination and confirmed by the neutrophil count and level of myeloperoxidase activity. This was concomitant with a high activity of alveolar macrophages that engulfed and killed B. cepacia in vitro. The flagellin mucosal treatment improved the B. cepacia clearance in the mouse lung. Thus, the present findings illustrate the profound stimulatory effect of flagellin on the lung mucosal innate immunity, a response that needs to be exploited therapeutically to prevent the development of respiratory tract infection by B. cepacia.

Burkholderia Cepacia Causing Nosocomial Urinary Tract Infection in Children

  • Lee, Ki Wuk;Lee, Sang Taek;Cho, Heeyeon
    • Childhood Kidney Diseases
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    • 제19권2호
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    • pp.143-147
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    • 2015
  • Purpose: Burkholderia cepacia is an aerobic, glucose-non-fermenting, gram-negative bacillus that mainly affects immunocompromised and hospitalized patients. Burkholderia cepacia has high levels of resistance to many antimicrobial agents, and therapeutic options are limited. The authors sought to analyze the incidence, clinical manifestation, risk factors, antimicrobial sensitivity and outcomes of B. cepacia urinary tract infection (UTI) in pediatric patients. Methods: Pediatric patients with urine culture-proven B. cepacia UTI between January 2000 and December 2014 at Samsung Medical Center, a tertiary referral hospital in Seoul, Republic of Korea, were included in a retrospective analysis of medical records. Results: Over 14 years, 14 patients (male-to-female ratio of 1:1) were diagnosed with B. cepacia UTI. Of 14 patients with UTI, 11 patients were admitted to the intensive care unit, and a bladder catheter was present in 9 patients when urine culture was positive for B. cepacia. Patients had multiple predisposing factors for UTI, including double-J catheter insertion (14.2%), vesico-ureteral reflux (28.6%), congenital heart disease (28.6%), or malignancy (21.4%). Burkholderia cepacia isolates were sensitive to piperacillin-tazobactam and sulfamethoxazole-trimethoprim, and resistant to amikacin and colistin. Treatment with parenteral or oral antimicrobial agents including piperacillin-tazobactam, ceftazidime, meropenem, and sulfamethoxazole-trimethoprim resulted in complete recovery from UTI. Conclusion: Burkholderia cepacia may be a causative pathogen for nosocomial UTI in pediatric patients with predisposing factors, and appropriate selection of antimicrobial therapy is necessary because of high levels of resistance to empirical therapy, including aminoglycosides.

파프리카 병원균들에 대한 길항미생물, Burkholderia cepacia strain YJK2의 분리 및 특성 (Isolation and Characterization of Burkholderia cepacia strain YJK2, Antagonistic Microorganism of Paprika Pathogens)

  • 양수정;김형무;주호종
    • 한국유기농업학회지
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    • 제23권1호
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    • pp.133-148
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    • 2015
  • Although several adverse effects have been increased in recent years, synthetic agro-chemicals have been widely used to control diseases on paprika. This research was conducted to isolate and to characterize the antagonistic microorganism to control major paprika diseases, gray mold rot, fruit and stem rot, phytophthora blight, sclerotium rot, and wilt disease. Analysis of the fatty acid and analysis of the 16S rDNA gene sequence revealed that YKJ2 isolated in this research belongs to a group of Burkholderia cepacia. Specially, 16S rDNA gene sequence of YKJ2 showed 99% of sequence similarity with B. cepacia. Observation through the optical microscope revealed that YKJ2 was effective on suppression of the spore germination and the hyphal growth of pathogens. YKJ2 treatment on pathogens induced marked morphological changes like hyphal swelling and degradation of cell wall. In the case of phytophthora blight, the zoosporangium formation was restrained. On the basis of the results of this study, we propose that an antagonistic microorganism, B. cepacia, found in this study naming as "B. cepacia strain YKJ2" and has great potential as one of biological control agents against major diseases of paprika.

Cloning and Expression of Pseudomonas cepacia catB Gene in Pseudomonas putida

  • Song, Seung-Yeon;Jung, Young-Hee;Lee, Myeong-Sok;Lee, Ki-Sung;Kim, Young-Soo;Kim, Chi-Kyung;Choi, Sang-Ho;Min, Kyung-Hee
    • Journal of Microbiology
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    • 제34권4호
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    • pp.334-340
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    • 1996
  • The enzyme, cis,cis-muconate lactonizing enzyme has been proposed to play a key role in the $\beta$-ketoadipate pathway of benzoate degradation. A 3.2-kb EcoRI fragment termed as pRSU2, isolated from a Pseudomonas cepacia genomic library was able to complement the catB defective mutant. Several relevant restriction enzyme sites were determined within the cloned fragment. In Pseudomonas putida SUC2 carrying pRSU2, the enzyme activity was relatively higher than those of the induced or partially induced state of wild type P. putida PRS2000. It was probably due to higher expression of P. cepacia catB in P. putida PRS2000. It was probably due to higher expression of P. cepacia catB in P. putida. One possible interpretation of these results is that the catB promoter in P. cepacia is recognized within P. putida, resulting in the almost same expression level.

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Burkholderia cepacia YK-2에서 페녹시계 제초제 2,4-Dichlorophenoxyacetic Acid에 의한 스트레스 충격 단백질 DnaK와 GroEL의 생성 (Production of Stress Shock Proteins DnaK and GroEL in Burkholderia cepacia YK-2 by Phenoxyherbicide 2,4-Dichlorophenoxyacetic Acid as an Environmental Contaminant)

  • 조윤석;박상호;김치경;오계헌
    • 미생물학회지
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    • 제35권4호
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    • pp.270-276
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    • 1999
  • 환경오염원으로서 페녹시계 제초제인 ,2,4-D(2,4-dichlorophenoxyacetic acid)에 노출된 토양으로부터 분리된 세균인 Burkholderia cepacia YK-2에서 2,4-D에 의한 스트레스 충격 단백질의 생성을 조사하였다. 활발하게 생장을 하고 있는 B. cepacia YK-2의 배양은 다양한 농도의 2,4-D에 노출되어 스트레스 충격단백질을 생성하였다. 이 반응은 43kDa의 DnaK와 41kDa의 GroEL 단백질의 생성을 수반하였으며, 이 단백질들은 anti-DnaK 단일 항체와 anti-GroEL 단일 항체를 사용한 SDS-PAGE과 Western blot을 통하여 확인되었다. 생성된 총 스트레스 충격 단백질은 2-D PAGE 에 의하여 분석되었다. 다양한 2,4-D농도와 노출 시간에 따른 B. cepacia YK-2의 생존율을 분석한 결과, 이 세균의 생존율은 스트레스 충격 단백질의 생성과 비례하였다.

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