Hypercapnia via reduced rate and tidal volume contributes to lipopolysaccharide-induced lung injury

被引:74
作者
Lang, JD
Figueroa, M
Sanders, KD
Aslan, M
Liu, YL
Chumley, P
Freeman, BA
机构
[1] Univ Alabama Birmingham, Dept Anesthesiol, Birmingham, AL 35233 USA
[2] Univ Alabama Birmingham, Dept Biochem & Mol Genet, Birmingham, AL 35233 USA
[3] Univ Alabama Birmingham, Ctr Free Rad Biol, Birmingham, AL 35233 USA
关键词
carbon dioxide; low tidal volume ventilation; lung injury;
D O I
10.1164/rccm.200302-305OC
中图分类号
R4 [临床医学];
学科分类号
1002 ; 100602 ;
摘要
Appreciating that CO2 modifies the chemical reactivity of nitric oxide (NO)-derived inflammatory oxidants, we investigated whether hypercapnia would modulate pulmonary inflammatory responses. Rabbits (n = 72) were ventilated with approximately 7-ml/kg tidal volume for 6 hours. Animals were randomized to one of the following conditions: eucapnia (Pa-CO2 at approximately 35-40 mm Hg), eucapnia + lipopolysaccharide (LPS), eucapnia + LPS + inhaled NO (iNO delivered at approximately 20 ppm), hypercapnia (Pa-CO2 at approximately 60 mm Hg), hypercapnia + LPS, and hypercapnia + LPS + iNO. The hypercapnia + LPS groups compared with groups exposed to eucapnia + LPS displayed significantly increased bronchoalveolar lavage fluid protein concentrations (p < 0.05), lung wet-to-dry ratios (p < 0.05), bronchoalveolar lavage fluid cell counts (p < 0.05), and lung histologic alterations consistent with greater injury. Furthermore, expression of inducible nitric oxide synthase (p < 0.05), tissue myeloperoxidase content (p < 0.05), and formation of lung protein 3-nitrotyrosine derivatives (p < 0.05) was greatest under conditions of hypercapnia + LPS. Groups exposed to hypercapnic conditions without LPS did not manifest these changes. The inhalation of iNO attenuated selected indices of lung injury. We conclude that hypercapnia induced by means of reduced rate and tidal volume amplifies pulmonary inflammatory responses.
引用
收藏
页码:147 / 157
页数:11
相关论文
共 61 条
[21]   Peroxynitrite reaction with carbon dioxide/bicarbonate: Kinetics and influence on peroxynitrite-mediated oxidations [J].
Denicola, A ;
Freeman, BA ;
Trujillo, M ;
Radi, R .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1996, 333 (01) :49-58
[22]   Atelectasis causes vascular leak and lethal right ventricular failure in uninjured rat lungs [J].
Duggan, M ;
McCaul, CL ;
McNamara, PJ ;
Engelberts, D ;
Ackerley, C ;
Kavanagh, BP .
AMERICAN JOURNAL OF RESPIRATORY AND CRITICAL CARE MEDICINE, 2003, 167 (12) :1633-1640
[23]   Microtubule dysfunction by posttranslational nitrotyrosination of α-tubulin:: A nitric oxide-dependent mechanism of cellular injury [J].
Eiserich, JP ;
Estévez, AG ;
Bamberg, TV ;
Ye, YZ ;
Chumley, PH ;
Beckman, JS ;
Freeman, BA .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1999, 96 (11) :6365-6370
[24]   Permissive hypercapnia impairs pulmonary gas exchange in the acute respiratory distress syndrome [J].
Feihl, F ;
Eckert, P ;
Brimioulle, S ;
Jacobs, O ;
Schaller, MD ;
Mélot, C ;
Naeije, R .
AMERICAN JOURNAL OF RESPIRATORY AND CRITICAL CARE MEDICINE, 2000, 162 (01) :209-215
[25]  
FINER NN, 2001, COCHRANE DATABASE SY
[26]  
Fioretto Jose R, 2004, Pediatr Crit Care Med, V5, P469, DOI 10.1097/01.PCC.0000137986.83738.D7
[27]   Pathogenesis and treatment of the adult respiratory distress syndrome [J].
Fulkerson, WJ ;
MacIntyre, N ;
Stamler, J ;
Crapo, JD .
ARCHIVES OF INTERNAL MEDICINE, 1996, 156 (01) :29-38
[28]   Adaptation of the nitrate reductase and Griess reaction methods for the measurement of serum nitrate plus nitrite levels [J].
Giovannoni, G ;
Land, JM ;
Keir, G ;
Thompson, EJ ;
Heales, SJR .
ANNALS OF CLINICAL BIOCHEMISTRY, 1997, 34 :193-198
[29]   PULMONARY ALVEOLAR EPITHELIAL INDUCIBLE NO SYNTHASE GENE-EXPRESSION - REGULATION BY INFLAMMATORY MEDIATORS [J].
GUTIERREZ, HH ;
PITT, BR ;
SCHWARZ, M ;
WATKINS, SC ;
LOWENSTEIN, C ;
CANIGGIA, I ;
CHUMLEY, P ;
FREEMAN, BA .
AMERICAN JOURNAL OF PHYSIOLOGY-LUNG CELLULAR AND MOLECULAR PHYSIOLOGY, 1995, 268 (03) :L501-L508
[30]   Intravascular infusion of acid promotes intrapulmonary inducible nitric oxide synthase activity and impairs blood oxygenation in rats [J].
Haque, IU ;
Huang, CJ ;
Scumpia, PO ;
Nasiroglu, O ;
Skimming, JW .
CRITICAL CARE MEDICINE, 2003, 31 (05) :1454-1460