Rotenone Prevents Impact-Induced Chondrocyte Death

被引:118
作者
Goodwin, Wendy [1 ]
McCabe, Daniel [1 ]
Sauter, Ellen [1 ]
Reese, Eric [1 ]
Walter, Morgan [1 ]
Buckwalter, Joseph A. [1 ]
Martin, James A. [1 ]
机构
[1] Univ Iowa, Dept Orthopaed & Rehabil, Iowa City, IA 52242 USA
基金
美国国家卫生研究院;
关键词
cartilage injury; mitochondria; viability; NITRIC-OXIDE SYNTHASE; ARTICULAR-CARTILAGE; EXPERIMENTAL OSTEOARTHRITIS; COLLAGENASE EXPRESSION; OXYGEN; EXPLANTS; TISSUE; DAMAGE; DEGRADATION; INVOLVEMENT;
D O I
10.1002/jor.21091
中图分类号
R826.8 [整形外科学]; R782.2 [口腔颌面部整形外科学]; R726.2 [小儿整形外科学]; R62 [整形外科学(修复外科学)];
学科分类号
100224 [整形外科学];
摘要
Mechanical insult to articular cartilage kills chondrocytes, an event that may increase the risk of posttraumatic osteoarthritis. Recent reports indicate that antioxidants decrease impact-induced chondrocyte death, but the source(s) of oxidants, the time course of oxidant release, and the identity of the oxidative species generated in response to injury are unknown. A better understanding of these processes could lead to new treatments of acute joint injuries. To that end, we studied the kinetics and distribution of oxidant production in osteochondral explants subjected to a single, blunt-impact injury. We followed superoxide production by measuring the time-dependent accumulation of chondrocyte nuclei stained with the superoxide-sensitive probe dihydroethidium. The percentage of chondrocytes that were dihydroethidium-positive was 35% above baseline 10 min after impact, and 65% above baseline 60 min after impact. Most positive cells were found within and near areas contacted directly by the impact platen. Rotenone, an electron transport chain inhibitor, was used to test the hypothesis that mitochondria contribute to superoxide release. Rotenone treatment significantly reduced dihydroethidium staining, which remained steady at 15% above baseline for up to 60 min postimpact. Moreover, rotenone reduced chondrocyte death in impact sites by more than 40%, even when administered 2 h after injury (p<0.001). These data show that much of the acute chondrocyte mortality caused by in vitro impact injuries results from superoxide release from mitochondria, and suggest that brief exposure to free radical scavengers could significantly improve chondrocyte viability following joint injury. (C) 2010 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 28:1057-1063, 2010
引用
收藏
页码:1057 / 1063
页数:7
相关论文
共 35 条
[1]
The NOX family of ROS-generating NADPH oxidases: Physiology and pathophysiology [J].
Bedard, Karen ;
Krause, Karl-Heinz .
PHYSIOLOGICAL REVIEWS, 2007, 87 (01) :245-313
[2]
Beecher B R, 2007, Iowa Orthop J, V27, P1
[3]
Posttraumatic osteoarthritis: A first estimate of incidence, prevalence, and burden of disease [J].
Brown, Thomas D. ;
Johnston, Richard C. ;
Saltzman, Charles L. ;
Marsh, J. Lawrence ;
Buckwalter, Joseph A. .
JOURNAL OF ORTHOPAEDIC TRAUMA, 2006, 20 (10) :739-744
[4]
Joint injury, repair, and remodeling [J].
Buckwalter, JA ;
Brown, TD .
CLINICAL ORTHOPAEDICS AND RELATED RESEARCH, 2004, (423) :7-16
[5]
Articular cartilage injuries [J].
Buckwalter, JA .
CLINICAL ORTHOPAEDICS AND RELATED RESEARCH, 2002, (402) :21-37
[6]
Caspase inhibitors reduce severity of cartilage lesions in experimental osteoarthritis [J].
D'Lima, Darryl ;
Hermida, Juan ;
Hashimoto, Sanshiro ;
Colwell, Clifford ;
Lotz, Martin .
ARTHRITIS AND RHEUMATISM, 2006, 54 (06) :1814-1821
[7]
Mitochondrial DNA mutations, oxidative stress, and aging [J].
Golden, TR ;
Melov, S .
MECHANISMS OF AGEING AND DEVELOPMENT, 2001, 122 (14) :1577-1589
[8]
NAD(P)H oxidase activity of Nox4 in chondrocytes is both inducible and involved in collagenase expression [J].
Grange, Laurent ;
Nguyen, Minh Vu Chuong ;
Lardy, Bernard ;
Derouazi, Madiha ;
Campion, Yannick ;
Trocme, Candice ;
Paclet, Marie-Helene ;
Gaudin, Philippe ;
Morel, Francoise .
ANTIOXIDANTS & REDOX SIGNALING, 2006, 8 (9-10) :1485-1496
[9]
Role of reactive oxygen species in cell signalling pathways [J].
Hancock, JT ;
Desikan, R ;
Neill, SJ .
BIOCHEMICAL SOCIETY TRANSACTIONS, 2001, 29 :345-350
[10]
Oxygen and reactive oxygen species in cartilage degradation: friends or foes? [J].
Henrotin, Y ;
Kurz, B ;
Aigner, T .
OSTEOARTHRITIS AND CARTILAGE, 2005, 13 (08) :643-654