참고자료

[광우병] 프리온 단백질 금속표면과 결합 시 CJD, 광우병 유발

첨부파일

Spontaneous generation of mammalian prions.pdf (606.31 KB)

콜린지 박사 등 영국의 연구자들이 프리온 단백질이 금속표면과 접촉시 CJD나 광우병을
유발하는 감염성 변형 프리온 단백질로 전환될 수 있다는 연구결과를 ‘포유류 프리온의
자연발생적 생성’이라는 제목으로 [미 국립과학원회보(PANS)] 최신호에 발표했습니다.

결과

1. 세포 배양을 통해 금속 표면에 자연발생적인 프리온 단백질 형성이 확실히 나타났다.

2. 적정(Titration)과 생쥐 생물학적 정량(Bioassay)을 통해 자연발생적 프리온의 감염성을
확인했다.

3. 자연발생적 프리온 단백질의 균주분류(Strain Typing)

전문 파일 : http://www.pnas.org/content/early/2010/07/16/1004036107.full.pdf+html

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Spontaneous generation of mammalian prions




  1. Julie A. Edgeworth,
  2. Nathalie Gros,
  3. Jack Alden,
  4. Susan Joiner,
  5. Jonathan D. F. Wadsworth,
  6. Jackie Linehan,
  7. Sebastian Brandner,
  8. Graham S. Jackson,
  9. Charles Weissmann1,2, and
  10. John Collinge1

출처 : http://www.pnas.org/content/early/2010/07/16/1004036107.abstract


+
Author Affiliations




  1. Medical Research Council Prion Unit, Department of Neurodegenerative Disease, University College London Institute of Neurology, London WC1N 3BG, United Kingdom



  • 2Present address: Department of Infectology, Scripps Florida, Jupiter, FL 33458.




  1. Edited by David S. Eisenberg, University of California, Los Angeles, CA, and approved June 29, 2010 (received for review March 28, 2010)



Abstract


Prions are transmissible agents that cause lethal neurodegeneration in humans and other mammals. Prions bind avidly to metal surfaces such as steel wires and, when surface-bound, can initiate infection of brain or cultured cells with remarkable efficiency. While investigating the properties of metal-bound prions by using the scrapie cell assay to measure infectivity, we observed, at low frequency, positive assay results in control groups in which metal wires had been coated with uninfected mouse brain homogenate. This phenomenon proved to be reproducible in rigorous and exhaustive control experiments designed to exclude prion contamination. The infectivity generated in cell culture could be readily transferred to mice and had strain characteristics distinct from the mouse-adapted prion strains used in the laboratory. The apparent ”spontaneous generation” of prions from normal brain tissue could result if the metal surface, possibly with bound cofactors, catalyzed de novo formation of prions from normal cellular prion protein. Alternatively, if prions were naturally present in the brain at levels not detectable by conventional methods, metal surfaces might concentrate them to the extent that they become quantifiable by the scrapie cell assay.





 

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