0

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

Home > 0

Inadequate cytoplasmic antioxidant enzymes response contributes to the oxidative stress in human hypertension.

  • 작성자한진
  • 작성일2007-01-06 13:44:38
  • 조회수3717
  • 첨부파일첨부파일
Am J Hypertens. 2007 Jan;20(1):62-9. Inadequate cytoplasmic antioxidant enzymes response contributes to the oxidative stress in human hypertension. Chaves FJ, Mansego ML, Blesa S, Gonzalez-Albert V, Jimenez J, Tormos MC, Espinosa O, Giner V, Iradi A, Saez G, Redon J. Research Unit, University of Valencia, Valencia, Spain. Untreated hypertensive patients show increased oxidative stress and decreased antioxidant enzyme activity in mononuclear cells. Therefore, the objective of this study was to determine whether or not the low antioxidant enzyme activity observed in mononuclear cells of hypertensive subjects is in part dependent on a defective activity of antioxidant mechanisms. Activity and mRNA level of antioxidant enzymes, CuZn- and Mn-superoxide dismutases, catalase, glutathione peroxidase type 1, and glutathione reductase were simultaneously measured in mononuclear cells of controls (n = 38) and hypertensive subjects (n = 35), in the absence of and during antihypertensive treatment. An increase in oxidative stress and a decrease in the activity of cytoplasmic enzymes were observed in untreated hypertensive patients. Concurrently, CuZn-superoxide dismutase and glutathione reductase mRNA levels were significantly reduced, and glutathione peroxidase type 1 mRNA was slightly reduced. In contrast, increased activity and mRNA levels of the mitochondrial Mn-superoxide dismutase were observed. Antihypertensive treatment, nonpharmacologic with or without a drug regimen of beta-blocker or angiotensin AT1 receptor blocker was administered for a 3-month period. Afterward, after the improvement in oxidative stress during treatment, a recovery of the cytoplasmic antioxidant enzymatic activity and a more profound decrease in mRNA levels were observed for CuZn-superoxide dismutase, glutathione peroxidase type 1, and glutathione reductase. Meanwhile mitochondrial enzymatic activity decreased, as did the mRNA level. The inadequate response of the main cytoplasmatic antioxidant systems, as well as of the enzymes participating in the maintenance of glutathione levels, may contribute to the vulnerability of hypertensives to oxidative stress.
Total406 [ page17/28 ]
No. 제목 작성자 작성일 조회수
166 RNAi: A Powerful Reverse Genetic Tool (1) 2006.06.07 고재홍 2006.06.07 2,125
165 언제까지 공부해야하나? (1)첨부파일 2006.06.04 한진 2006.06.04 1,905
164 Mitochondrial physiology in tumourigenesis 2006.05.31 한진 2006.05.31 2,646
163 mitochondrial respiration 2006.05.31 한진 2006.05.31 7,415
162 커피 하루 1-3잔, 심혈관질환 예방에 도움 (1) 2006.05.27 김태호 2006.05.27 1,860
161 Cell - table of contents 2006.05.20 김형규 2006.05.20 7,166
160 science table of contents 2006.05.20 김형규 2006.05.20 4,983
159 Nature- table of contents 2006.05.20 김형규 2006.05.20 10,569
158 1번 염색체 해독 완료…인간게놈 ‘유전자 지도’ 완성 (2) 2006.05.18 김태호 2006.05.18 2,232
157 Scientists report Parkinson's discovery 첨부파일 2006.05.07 한진 2006.05.07 3,209
156 설창원 (2) 2006.05.04 한진 2006.05.04 1,879
155 Parkin’, ‘PINK1’ 단백질에 대한 논문이 동시에 나왔습니다. 참고바랍니다. (2)첨부파일 2006.05.04 한진 2006.05.04 4,402
154 Science of Sport: If you "feel the burn," you need to bulk up your mitochondria 첨부파일 2006.05.03 한진 2006.05.03 3,563
153 Possible target for future therapies aimed at delaying or stopping Alzheimer's disease 2006.05.02 한진 2006.05.02 1,895
152 Understanding Cell Death May Bring New Life To Kidney Treatment 2006.04.21 한진 2006.04.21 2,192
처음 이전 11 12 13 14 15 16 17 18 19 20 다음 마지막