Oxidative stress in lung tissue induced by CO2 pneumoperitoneum in the rat

被引:41
作者
Pross, M
Schulz, HU
Flechsig, A
Manger, T
Halangk, W
Augustin, W
Lippert, H
Reinheckel, T
机构
[1] Otto Von Guericke Univ, Dept Surg, D-39120 Magdeburg, Germany
[2] Otto Von Guericke Univ, Dept Pathol Biochem, D-39120 Magdeburg, Germany
来源
SURGICAL ENDOSCOPY AND OTHER INTERVENTIONAL TECHNIQUES | 2000年 / 14卷 / 12期
关键词
pneumoperitoneum; carbon dioxide; laparoscopic surgery; lung; oxidative stress; lipid peroxidation;
D O I
10.1007/s004640000189
中图分类号
R61 [外科手术学];
学科分类号
摘要
Background. Clinical trials have found that the pneumoperitoneum has potentially hazardous side effects. The biochemical basis of organ injury induced by pneumoperitoneum is, however, not well defined. Since oxidative stress is believed to play an important role in many pathological conditions, we set out to examine oxidative stress markers in the lung, liver, kidney, and pancreas by using a rat model of laparoscopy with CO2 pneumoperitoneum and comparing it to a group with gasless laparoscopy. Methods: Malondialdehyde (for lipid peroxidation), protein-bound carbonyls (for protein oxidation), reduced and oxidized glutathione, and the neutrophil marker myeloperoxidase were evaluated in tissue homogenates at 2 h, 6 h, and 18 h after laparoscopy. Immunoblotting was used to analyze the modification of lung proteins by 4-hydroxynonenal at 6 h. Results: Significant lipid peroxidation was found selectively in lungs at 2 h and 6 h after CO2 pneumoperitoneum. This was accompanied by a loss of glutathione but only minor protein oxidation. Further, lung proteins were clearly modified by the aldehydic product of lipid peroxidation 4-hydroxynonenal. Myeloperoxidase in lungs increased continuously up to 18 h in both experimental groups, but there were higher levels in the group with pneumoperitoneum. Conclusion: Oxidative stress is likely to contribute to the impairment of pulmonary function after laparoscopic operations using a CO2 pneumoperitoneum.
引用
收藏
页码:1180 / 1184
页数:5
相关论文
共 19 条
[1]   MICROTITER PLATE ASSAY FOR THE MEASUREMENT OF GLUTATHIONE AND GLUTATHIONE DISULFIDE IN LARGE NUMBERS OF BIOLOGICAL SAMPLES [J].
BAKER, MA ;
CERNIGLIA, GJ ;
ZAMAN, A .
ANALYTICAL BIOCHEMISTRY, 1990, 190 (02) :360-365
[2]   Protein carbonyl measurement by a sensitive ELISA method [J].
Buss, H ;
Chan, TP ;
Sluis, KB ;
Domigan, NM ;
Winterbourn, CC .
FREE RADICAL BIOLOGY AND MEDICINE, 1997, 23 (03) :361-366
[3]  
CHIU AW, 1995, J AM COLL SURGEONS, V181, P397
[4]  
Davies KJA, 1995, BIOCHEM SOC SYMP, P1, DOI 10.1042/bss0610001
[5]   CHEMISTRY AND BIOCHEMISTRY OF 4-HYDROXYNONENAL, MALONALDEHYDE AND RELATED ALDEHYDES [J].
ESTERBAUER, H ;
SCHAUR, RJ ;
ZOLLNER, H .
FREE RADICAL BIOLOGY AND MEDICINE, 1991, 11 (01) :81-128
[6]   OPEN VERSUS LAPAROSCOPIC CHOLECYSTECTOMY - A COMPARISON OF POSTOPERATIVE PULMONARY-FUNCTION [J].
FRAZEE, RC ;
ROBERTS, JW ;
OKESON, GC ;
SYMMONDS, RE ;
SNYDER, SK ;
HENDRICKS, JC ;
SMITH, RW .
ANNALS OF SURGERY, 1991, 213 (06) :651-654
[7]   Efflux of reduced glutathione after exposure of human lung epithelial cells to crocidolite asbestos [J].
Golladay, SA ;
Park, SH ;
Aust, AE .
ENVIRONMENTAL HEALTH PERSPECTIVES, 1997, 105 :1273-1277
[8]  
Johnson PL, 1997, J REPROD MED, V42, P255
[9]   Postoperative pulmonary function after laparoscopic and open cholecystectomy [J].
Karayiannakis, AJ ;
Makri, GG ;
Mantzioka, A ;
Karousos, D ;
Karatzas, G .
BRITISH JOURNAL OF ANAESTHESIA, 1996, 77 (04) :448-452
[10]   Laparoscopic cholecystectomy using abdominal wall retraction - Hemodynamics and gas exchange, a comparison with conventional pneumoperitoneum [J].
Meijer, DW ;
Rademaker, BPM ;
Schlooz, S ;
Bemelman, WA ;
deWit, LT ;
Bannenberg, JJG ;
Stijnen, T ;
Gouma, DF .
SURGICAL ENDOSCOPY-ULTRASOUND AND INTERVENTIONAL TECHNIQUES, 1997, 11 (06) :645-649