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    SCOPUS KCI등재

    담도배액관의 폐색기전에 관한 연구  :  전자현미경소견 및 폐색물질의 성분분석을 중심으로 A Electron Microscopy Study and Analysis of the Clogging Material = A Study for Mechanism of Occlusion of Biliary Stents

    한글로보기

    https://www.riss.kr/link?id=A3244795

    • 저자

      김진홍 (순천향대학교 의과대학 내과학교실) ;  김홍수 (순천향대학교 의과대학 내과학교실) ;  이문성 (순천향대학교 의과대학 내과학교실) ;  조성원 (순천향대학교 의과대학 내과학교실) ;  심찬섭 (순천향대학교 의과대학 내과학교실) ;  조영덕 (순천향대학교 의과대학 내과학교실) ;  김선주 (순천향대학교 의과대학 내과학교실)

    • 발행기관
    • 학술지명
    • 권호사항
    • 발행연도

      1990

    • 작성언어

      Korean

    • KDC

      513.3

    • 등재정보

      SCOPUS,KCI등재,ESCI

    • 자료형태

      학술저널

    • 발행기관 URL
    • 수록면

      57-63(7쪽)

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    • 중단사유

      ※ 발행기관의 정책으로 인하여 개인 판매가 중단된 논문입니다. 구독기관 이용자는 [유료 KISS] 홈페이지에서 원문을 이용해 주시기 바랍니다.

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    Endoscopic biliary stents provide effective palliation of malignant obstructive jaundice in patients who are not surgical candidates. Unfortunately the stents in current use have a tendency to block. The clogging phenomenon also severely restricts the value of stents in patients with benign strictures. We studied the mechanism of the occlusion of biliary stents to find ways to prevent it. We have examined 17 blocked stents by electron microscopy(EM), infrared absorption spectrophotometry, and bacteriological cultures. The mean time to stent clogging with 10 french stents was 131 days, and with 12 French stents was 143 days. The differece between the clogging time of the two stents was statistically not sigificant. Scanning EM showed that the internal surfaces of the stent were covered with bacteria embedded in a condensed fibrillar intercellular matrix. The bacteris form a surrounding fibrillar extracellular product which anchors them to the stent. Inorganic crystals were rarely seen, because they presumable dissolved during the fixing for EM. These EM findings are typical of a biofilm. As major components of the occluding material calcium bilirubinate was identified in 15 stents by infrared absorption spectrophotometry. 7 different microorgainsms were isolated from the 17 blocked biliary stents. 6 of the isolates were gram-negative, and 1 was gram-positive. The most frequently isolated genus was Escherichia, which was found in 8 stents, followed by proteus, Pseudomonas, and Morganella, which was found in 2 stents respectvely. We propose that stent colgging is initiated by bacterial adhesion and growth of a biofilm. The bacteria then deconjugate bilirubin in bile and the lumen is progressively occluded by deposition of calcium bilirubinate and further biofilm formation.
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    Endoscopic biliary stents provide effective palliation of malignant obstructive jaundice in patients who are not surgical candidates. Unfortunately the stents in current use have a tendency to block. The clogging phenomenon also severely restricts the...

    Endoscopic biliary stents provide effective palliation of malignant obstructive jaundice in patients who are not surgical candidates. Unfortunately the stents in current use have a tendency to block. The clogging phenomenon also severely restricts the value of stents in patients with benign strictures. We studied the mechanism of the occlusion of biliary stents to find ways to prevent it. We have examined 17 blocked stents by electron microscopy(EM), infrared absorption spectrophotometry, and bacteriological cultures. The mean time to stent clogging with 10 french stents was 131 days, and with 12 French stents was 143 days. The differece between the clogging time of the two stents was statistically not sigificant. Scanning EM showed that the internal surfaces of the stent were covered with bacteria embedded in a condensed fibrillar intercellular matrix. The bacteris form a surrounding fibrillar extracellular product which anchors them to the stent. Inorganic crystals were rarely seen, because they presumable dissolved during the fixing for EM. These EM findings are typical of a biofilm. As major components of the occluding material calcium bilirubinate was identified in 15 stents by infrared absorption spectrophotometry. 7 different microorgainsms were isolated from the 17 blocked biliary stents. 6 of the isolates were gram-negative, and 1 was gram-positive. The most frequently isolated genus was Escherichia, which was found in 8 stents, followed by proteus, Pseudomonas, and Morganella, which was found in 2 stents respectvely. We propose that stent colgging is initiated by bacterial adhesion and growth of a biofilm. The bacteria then deconjugate bilirubin in bile and the lumen is progressively occluded by deposition of calcium bilirubinate and further biofilm formation.

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