0

Cardiovascular and Metabolic Disease Center
Mitochondrial Research Affinity Collaboration-Laboratories & Engineering

Home > 0

Mitochondrial dysfunction and redox signaling in atrial tachyarrhythmia

  • 작성자한진
  • 작성일2008-06-08 13:16:45
  • 조회수4008
  • 첨부파일첨부파일
http://www.news-medical.net/?id=37738 Researchers at the University Hospital of Magdeburg (Germany) have discovered that atrial tachycardia is associated with mitochondrial dysfunction and oxidative stress followed by the activation of the NF-kB signalling pathway with induction of NF-kB target gene expression in atrial tissue. Their study will appear in the May 08 issue of Experimental Biology and Medicine. Multiple tachycardia-associated factors appear to contribute to this response, which all are directly or indirectly linked to oxidative stress. Accordingly, blockade of the angiotensin II type 1 receptor, inhibition of L-type calcium channels, inhibition of NADPH oxidase, applications of antioxidants, and inhibition of NF-?? activation were all found to abolish or decrease the tachycardia-dependent changes in the atrial tissue. The interdisciplinary research team, led by Uwe Lendeckel, a professor of Experimental Internal Medicine and Andreas Goette, Deputy Chief of Cardiology, designed the study to determine the influence of tachyarrhythmia on endocardial dysfunction (called endocardial remodelling) and to decipher the molecular mechanism(s) that translate pathologically increased heart rates into myocardial/endocardial dysfunction. Endocardial dysfunction appears as a well recognised risk factor for thromboembolic events in patients with atrial fibrillation (AF). Therefore, the underlying pathophysiology of endocardial remodelling is of clinical importance. "The facts that equal results were observed in ex vivo atrial tissue from patients with AF and in ex vivo rapidly paced tissue samples from patients with sinus rhythm (SR), together with the observation that verapamil most potently prevented oxidative stress and associated signalling pathway activation, led us to conclude that the elevated frequency per se and concomitant Ca2+-overload precede and induce mitochondrial dysfunction and oxidative stress in AF" said Lendeckel. Goette added "Our results have several clinical implications. Atrial ischemia produces an increase in cellular calcium load and oxidative stress in the atria. Thereby, atrial ischemia provides a specific substrate for AF. Recent experimental and clinical data showed that calcium channel blockers have a specific efficacy to prevent AF in this specific situation. Thus, our data provide more information about the potential pathophysiologic mechanism explaining why calcium channel blockers are effective and useful to attenuate atrial cellular remodelling especially under conditions of increased cellular calcium load and oxidative stress". The authors say " the use of ex vivo human atrial tissue from patients with and without AF as well as the rapid pacing of atrial tissue slices to mimic AF ex vivo is a valuable approach to identify molecular and cellular effects that are solely due to the AF excluding the effects of concomitant cardiac diseases." Dr. Steven R. Goodman, Editor-in-Chief of Experimental Biology and Medicine said "Professor Lendeckel, Professor Goette and colleagues have demonstrated that inward calcium current via L-type calcium channels contributes to oxidative stress and increased expression of oxidative stress markers and adhesion molecules during cardiac tachyarrhythmia.". He further stated "These observations are important to the understanding of the molecular mechanisms by which calcium overload and resulting mitochondrial dysfunction and resulting oxidative stress impact atrial remodelling during atrial fibrillation." Experimental Biology and Medicine is the journal of the Society of Experimental Biology and Medicine. http://www.sebm.org
Total406 [ page3/28 ]
No. 제목 작성자 작성일 조회수
376 우리가 사는 지구는? 2011.05.26 김나리 2011.05.26 2,626
375 Error bars in experimental biology 첨부파일 2011.05.02 허혜진 2011.05.02 3,129
374 파킨슨 질병은 미토콘드리아 complex 1 손상 보다 microtuble 에 의해서 생길수도... 라는 논문 2011.03.08 김형규 2011.03.08 5,385
373 운동을 안해도,운동한 것처럼 건강한 심장을 만들어 주는 유전자 2011.01.06 서대윤 2011.01.06 3,901
372 2010 ㅡmitophysiology conference, Young Investigator Award 수상 2010.11.16 김형규 2010.11.16 3,358
371 3차원 세포의 세계 2010.10.27 김민희 2010.10.27 2,642
370 인제대 '심혈관.대사질환센터' 중점연구소 선정 -연합뉴스 2010.08.10 김형규 2010.08.10 4,078
369 7월 연구노트 작성 우수상 시상 2010.08.03 김민희 2010.08.03 2,992
368 NYAS 리뷰 논문 게재 - 김형규,하승희 2010.08.02 김형규 2010.08.02 3,726
367 박원선 교수님과 최일환 교수님의 논문이 publish 되었습니다. 2010.07.09 최성우 2010.07.09 4,351
366 김형규-부티투 4회 미토콘드리아 연구의학회 best research award 수상 첨부파일 2010.07.06 김형규 2010.07.06 2,194
365 6월 연구노트 작성 우수상 시상 2010.06.28 최성우 2010.06.28 2,544
364 4th Conference of Korean Society for Mitochondrial Reaserch and Medicine 첨부파일 2010.06.17 최성우 2010.06.17 3,673
363 5월 연구노트 작성 우수상 시상 2010.05.31 최성우 2010.05.31 3,002
362 안준석 - 제18회 기초의학 학술대회,학생논문발표대회 최우수상 수상 첨부파일 2010.05.28 최성우 2010.05.28 3,379
처음이전 1 2 3 4 5 6 7 8 9 10 다음 마지막