Neutrophil priming, caused by cell membranes and microvesicles in packed red blood cell units, is abrogated by leukocyte depletion at collection

被引:50
作者
Cardo, Lisa J. [1 ]
Wilder, Donna [1 ]
Salata, Jeanne [1 ]
机构
[1] Walter Reed Army Inst Res, Dept Blood Res, Transfus Med Branch, Silver Spring, MD 20910 USA
关键词
neutrophils; packed red cells; leukocyte depletion; microvesicles; storage lesion; cell membrane;
D O I
10.1016/j.transci.2008.01.004
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Background and objects: Lipids with platelet activating factor (PAF)-like activity in supernatant of packed red blood cells (PRBC) cause priming of the neutrophil respiratory burst. This effect increases with length of storage. Washing of PRBC has been considered as a means to eliminate this effect; however, the role of the cellular component was not evaluated independently of the supernatant. The source of the inflammatory lipids of the supernatant is likely to be cell membranes altered during ageing in storage and therefore, washing will not eliminate neutrophil priming caused by transfusion of aged PRBC units. The ability of washed PRBC to prime mononuclear cells for another known effect of PAF, the production of IL-8, and the probability that this lipid activity is present on microparticles in PRBC supernatant were also investigated. Materials and methods: At collection 10 units of whole blood were split into two equal aliquots one filtered and one unfiltered. PRBC were prepared and stored at 4 degrees C in CPD-AS5. Each week, fresh neutrophils were incubated with samples of washed PRBC and fixed. Change in CD11b, a marker known to increase on the surface of primed neutrophils, was determined by flow cytometry. To determine whether neutrophil priming ability of PRBC supernatant is contained on microvesicles, centrifuged and uncentrifuged supernatant samples were incubated with fresh neutrophils and change in CD11b expression was determined. Plasma IL-8 levels were also measured after exposure of monocytes from fresh whole blood to filtered and unfiltered washed PRBC with and without the addition of fMLP. Results: Washed PRBC caused a 50-116% increase in CD11b neutrophil surface expression over baseline expression. Filtration of whole blood at collection reduced this CD11b up-regulation by 25-34%. Reduction of priming ability by filtration began on the day of collection and persisted for the storage life of the units. Centrifugation resulted in a reduction of CD11b up-regulation of 11-28% compared with unspun supernatant. Incubation of unfiltered PRBC resulted in priming of mononuclear leukocytes for IL-8 production with a 73-109% increase over baseline, but no increase over baseline was seen for incubation with filtered blood. Conclusion: Washing does not eliminate the ability of PRBC units to prime neutrophils and mononuclear cells, because the cellular component of PRBC, in addition to the supernatant, induces priming. Leukodepletion filters significantly reduce these effects compared with unfiltered PRBC. The in vitro beneficial effect of filtration lasts for the shelf life of 42 day units. The ability of PRBC supernatant to prime neutrophils is present on microvesicles. Published by Elsevier Ltd.
引用
收藏
页码:117 / 125
页数:9
相关论文
共 20 条
[1]   Priming Interleukin 8 production - Role of platelet-activating factor and p38 [J].
Arbabi, S ;
Rosengart, MR ;
Garcia, I ;
Jelacic, S ;
Maier, RV .
ARCHIVES OF SURGERY, 1999, 134 (12) :1348-1353
[2]  
ARNAOUT MA, 1990, BLOOD, V75, P1037
[3]   Plasma from aged stored red blood cells delays neutrophil apoptosis and primes for cytotoxicity: Abrogation by poststorage washing but not prestorage leukoreduction [J].
Biffl, WL ;
Moore, EE ;
Offner, PJ ;
Ciesla, DJ ;
Gonzalez, RJ ;
Silliman, CC .
JOURNAL OF TRAUMA-INJURY INFECTION AND CRITICAL CARE, 2001, 50 (03) :426-431
[4]  
Chin-Yee I, 1998, TRANSFUSION MED, V8, P49
[5]   The red cell storage lesion and its implication for transfusion [J].
ChinYee, I ;
Arya, N ;
dAlmeida, MS .
TRANSFUSION SCIENCE, 1997, 18 (03) :447-458
[6]   Priming differentially regulates neutrophil adhesion molecule expression/function [J].
Condliffe, AM ;
Chilvers, ER ;
Haslett, C ;
Dransfield, I .
IMMUNOLOGY, 1996, 89 (01) :105-111
[7]   SECRETORY PHOSPHOLIPASE A(2) GENERATES THE NOVEL LIPID MEDIATOR LYSOPHOSPHATIDIC ACID IN MEMBRANE MICROVESICLES SHED FROM ACTIVATED CELLS [J].
FOURCADE, O ;
SIMON, MF ;
VIODE, C ;
RUGANI, N ;
LEBALLE, F ;
RAGAB, A ;
FOURNIE, B ;
SARDA, L ;
CHAP, H .
CELL, 1995, 80 (06) :919-927
[8]   Physical properties of erythrocyte ghosts that determine susceptibility to secretory phospholipase A2 [J].
Harris, FM ;
Smith, SK ;
Bell, JD .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2001, 276 (25) :22722-22731
[9]  
HWANG SB, 1990, J LIPID MEDIATOR, V2, P123
[10]  
INGRAHAM LM, 1982, BLOOD, V59, P1259