Oxidized phospholipids inhibit phagocytosis and impair outcome in gram-negative sepsis in vivo

被引:57
作者
Knapp, Sylvia
Matt, Ulrich
Leitinger, Norbert
van der Poll, Tom
机构
[1] Med Univ Vienna, Austrian Acad Sci, Res Ctr Mol Med, Dept Internal Med 1, A-1090 Vienna, Austria
[2] Univ Amsterdam, Acad Med Ctr, Ctr Expt & Mol Med, NL-1105 AZ Amsterdam, Netherlands
[3] Univ Amsterdam, Acad Med Ctr, Ctr Infect & Immun Amsterdam, NL-1105 AZ Amsterdam, Netherlands
[4] Univ Virginia, Cardiovasc Res Ctr, Charlottesville, VA 22908 USA
[5] Univ Virginia, Dept Pharmacol, Charlottesville, VA 22908 USA
关键词
D O I
10.4049/jimmunol.178.2.993
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Oxidized phospholipids that are generated during inflammation exert anti-inflammatory properties and prevent death during murine endotoxemia. Oxidized 1-paimitoyl-2-arachidonoyi-sit-glycero-3-phosphorylcholine (OxPAPC) inhibits the interaction of LPS with LPS-binding protein and CD14. In this study, we determined the functional properties of OxPAPC and potential interference with CD14 during abdominal sepsis caused by Escherichia coli. Administration of OxPAPC rendered mice highly susceptible to E. coli peritonitis, as indicated by an accelerated mortality and enhanced bacterial outgrowth and dissemination. CD14(-/-) mice also displayed increased mortality and bacterial outgrowth and OxPAPC did not further impair host defense in these animals. The mechanisms by which OxPAPC and CD14 deficiency impaired the immune response differed: whereas CD14(-/-) mice demonstrated a strongly reduced recruitment of phagocytes to the site of the infection, OxPAPC did not influence the influx of inflammatory cells but strongly diminished the phagocytosing capacity of neutrophils and macrophages by a CD14-independent mechanism. Furthermore, OxPAPC potently inhibited uptake of fluorospheres as well as receptor-mediated endocytosis and fluid-phase pinocytosis. These data suggest that oxidized phospholipids such as produced during inflammatory reactions may contribute to mortality during Gram-negative sepsis in vivo via impairment of the phagocytic properties of professional phagocytes.
引用
收藏
页码:993 / 1001
页数:9
相关论文
共 49 条
[41]   IC14, an anti-CD14 antibody, inhibits endotoxin-mediated symptoms and inflammatory responses in humans [J].
Verbon, A ;
Dekkers, PEP ;
ten Hove, T ;
Hack, CE ;
Pribble, JP ;
Turner, T ;
Souza, S ;
Axtelle, T ;
Hoek, FJ ;
van Deventer, SJH ;
van der Poll, T .
JOURNAL OF IMMUNOLOGY, 2001, 166 (05) :3599-3605
[42]   Lysines 128 and 132 enable lipopolysaccharide binding to MD-2, leading to Toll-like receptor-4 aggregation and signal transduction [J].
Visintin, A ;
Latz, E ;
Monks, BG ;
Espevik, T ;
Golenbock, DT .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (48) :48313-48320
[43]   A RAPID AND SIMPLE MICROFLUOROMETRIC PHAGOCYTOSIS ASSAY [J].
WAN, CP ;
PARK, CS ;
LAU, BHS .
JOURNAL OF IMMUNOLOGICAL METHODS, 1993, 162 (01) :1-7
[44]   Structural identification by mass spectrometry of oxidized phospholipids in minimally oxidized low density lipoprotein that induce monocyte/endothelial interactions and evidence for their presence in vivo [J].
Watson, AD ;
Leitinger, N ;
Navab, M ;
Faull, KF ;
Horkko, S ;
Witztum, JL ;
Palinski, W ;
Schwenke, D ;
Salomon, RG ;
Sha, W ;
Subbanagounder, G ;
Fogelman, AM ;
Berliner, JA .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (21) :13597-13607
[45]   Interleukin-18 facilitates the early antimicrobial host response to Escherichia coli peritonitis [J].
Weijer, S ;
Sewnath, ME ;
de Vos, AF ;
Florquin, S ;
van der Sluis, K ;
Gouma, DJ ;
Takeda, Y ;
Akira, S ;
van der Poll, T .
INFECTION AND IMMUNITY, 2003, 71 (10) :5488-5497
[46]   CD14, A RECEPTOR FOR COMPLEXES OF LIPOPOLYSACCHARIDE (LPS) AND LPS BINDING-PROTEIN [J].
WRIGHT, SD ;
RAMOS, RA ;
TOBIAS, PS ;
ULEVITCH, RJ ;
MATHISON, JC .
SCIENCE, 1990, 249 (4975) :1431-1433
[47]   Targeted deletion of the lipopolysaccharide (LPS)-binding protein gene leads to profound suppression of LPS responses ex vivo, whereas in vivo responses remain intact [J].
Wurfel, MM ;
Monks, BG ;
Ingalls, RR ;
Dedrick, RL ;
Delude, R ;
Zhou, DH ;
Lamping, N ;
Schumann, RR ;
Thieringer, R ;
Fenton, MJ ;
Wright, SD ;
Golenbock, D .
JOURNAL OF EXPERIMENTAL MEDICINE, 1997, 186 (12) :2051-2056
[48]  
Yang C, 2002, J ENVIRON SCI-CHINA, V14, P1
[49]   Myeloperoxidase functions as a major enzymatic catalyst for initiation of lipid peroxidation at sites of inflammation [J].
Zhang, RL ;
Brennan, ML ;
Shen, ZZ ;
MacPherson, JC ;
Schmitt, D ;
Molenda, CE ;
Hazen, SL .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (48) :46116-46122