0

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

Home > 0

Am J Physiol 논문 출간되었습니다. 축하합니다.

  • 작성자한진
  • 작성일2006-04-08 23:55:44
  • 조회수2291
Nitric oxide-cGMP-protein kinase G signaling pathway induces anoxic preconditioning through activation of ATP-sensitive K+ channels in rat hearts Dang Van Cuong,1,* Nari Kim,1,* Jae Boum Youm,1 Hyun Joo,1 Mohamad Warda,1 Jae-Wha Lee,2 Won Sun Park,1 Taeho Kim,1 Sunghyun Kang,1 Hyungkyu Kim,1 and Jin Han1 1Mitochondrial Signaling Laboratory, Department of Physiology and Biophysics, College of Medicine, Cardiovascular and Metabolic Disease Center, Biohealth Products Research Center, Inje University; and 2Department of Pharmaceutical Engineering, Silla University, Busan, Korea Submitted 21 July 2005 ; accepted in final form 30 November 2005 Nitric oxide (NO) plays an important role in anoxic preconditioning to protect the heart against ischemia-reperfusion injuries. The present work was performed to study better the NO-cGMP-protein kinase G (PKG) signaling pathway in the activation of both sarcolemmal and mitochondrial ATP-sensitive K+ (KATP) channels during anoxic preconditioning (APC) and final influence on reducing anoxia-reperfusion (A/R)-induced cardiac damage in rat hearts. The upstream regulating elements controlling NO-cGMP-PKG signal-induced KATP channel opening that leads to cardioprotection were investigated. The involvement of both inducible and endothelial NO synthases (iNOS and eNOS) in the progression of this signaling pathway was followed. Final cellular outcomes of ischemia-induced injury after different preconditioning in the form of lactate dehydrogenase release, DNA strand breaks, and malondialdehyde formation as indexes of cell injury and lipid peroxidation, respectively, were investigated. The lactate dehydrogenase and malondialdehyde values decreased in the groups that underwent preconditioning periods with specific mitochondrial KATP channels opener diazoxide (100 µM), nonspecific mitochondrial KATP channels opener pinacidil (50 µM), S-nitroso-N-acetylpenicillamine (SNAP, 300 µM), or -phenyl-1,N2-etheno-8-bromoguanosine-3',5'-cyclicmonophosphorothioate, Sp-isomer (10 µM) before the A/R period. Preconditioning with SNAP significantly reduced the DNA damage. The effect was blocked by glibenclamide (50 µM), 5-hydroxydecanoate (100 µM), NG-nitro-L-arginine methyl ester (200 µM), and -phenyl-1,N2-etheno-8-bromoguanosine-3',5'-cyclic monophosphorothioate, Rp-isomer (1 µM). The results suggest iNOS, rather than eNOS, as the major contributing NO synthase during APC treatment. Moreover, the PKG shows priority over NO as the upstream regulator of NO-cGMP-PKG signal-induced KATP channel opening that leads to cardioprotection during APC treatment.
Total406 [ page26/28 ]
No. 제목 작성자 작성일 조회수
31 Mitochondria and Diabetes 2005.01.30 한진 2005.01.30 2,064
30 건강하게 오래오래 사세요. 2005.01.30 한진 2005.01.30 2,070
29 향후 10년간의 의약품 R&D 예측: 미토콘드리아......심혈관질환의 치료표적 2005.01.30 한진 2005.01.30 2,415
28 말아톤은.... 2005.01.30 한진 2005.01.30 1,935
27 오래 오래 삽시다. 2005.01.30 한진 2005.01.30 3,393
26 중년기의 심혈관 위험인자들이 치매 위험을 증가시켜...... 2005.01.28 한진 2005.01.28 1,933
25 세포 발견이 질병 인식을 이끌어낸다 첨부파일 2005.01.27 강성현 2005.01.27 1,843
24 심장 발작에 대한 9가지 주안점 첨부파일 2005.01.27 강성현 2005.01.27 1,781
23 미토콘드리아에서의 문제점들이 대사적 증후군에 중요한 역할을 한다 첨부파일 2005.01.27 강성현 2005.01.27 1,974
22 보다 나은 근육들을 만듬 첨부파일 2005.01.27 강성현 2005.01.27 2,012
21 다윈의 피리새들 첨부파일 2005.01.27 강성현 2005.01.27 1,924
20 Age well the mitochondria way 2005.01.27 한진 2005.01.27 3,546
19 Mitochondria Make A Comeback, Science (Cover page) 2005.01.27 한진 2005.01.27 3,329
18 The Mitochondrion: Central to Apoptosis (from Science) 2005.01.27 한진 2005.01.27 6,107
17 L-carnitine needed transport fats 2005.01.26 문혜진 2005.01.26 2,661
처음 이전 21 22 23 24 25 26 27 28 다음마지막