Rapid screening method for detection of bacteria in platelet concentrates

被引:32
作者
Ribault, S [1 ]
Harper, K [1 ]
Grave, L [1 ]
Lafontaine, C [1 ]
Nannini, P [1 ]
Raimondo, A [1 ]
Faure, IB [1 ]
机构
[1] Hemosyst, F-13006 Marseille, France
关键词
D O I
10.1128/JCM.42.5.1903-1908.2004
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Public awareness has long focused on the risks of the transmission of viral agents through blood product transfusion. This risk, however, pales in comparison to the less publicized danger associated with the transfusion of blood products contaminated with bacteria, in particular, platelet concentrates. Up to 1,000 cases of clinical sepsis after the transfusion of platelet concentrates are reported annually in the United States. The condition is characterized by acute reaction symptoms and the rapid onset of septicemia and carries a 20 to 40% mortality rate. The urgent need for a method for the routine screening of platelet concentrates to improve patient safety has long been recognized. We describe the development of a rapid and highly sensitive method for screening for bacteria in platelet concentrates for transfusion. No culture period is required; and the entire procedure, from the time of sampling to the time that the final result is obtained, takes less than 90 min. The method involves three basic stages: the selective removal of platelets by filtration following activation with a monoclonal antibody, DNA-specific fluorescent labeling of bacteria, and concentration of the bacteria on a membrane surface for enumeration by solid-phase cytometry. The method offers a universal means of detection of live, nondividing, or dead gram-negative and gram-positive bacteria in complex cellular blood products. The sensitivity is higher than those of the culture-based methods available at present, with a detection limit of 10 to 10(2) CFU/ml, depending upon the bacterial strain.
引用
收藏
页码:1903 / 1908
页数:6
相关论文
共 31 条
[1]   Hemovigilance network in France:: organization and analysis of immediate transfusion incident reports from 1994 to 1998 [J].
Andreu, G ;
Morel, P ;
Forestier, F ;
Debeir, J ;
Rebibo, D ;
Janvier, G ;
Hervé, P .
TRANSFUSION, 2002, 42 (10) :1356-1364
[2]  
AUBERT G, 1993, PATHOL BIOL, V41, P434
[3]   Detection of single cells of Cryptococcus neoformans in clinical samples by solid-phase cytometry [J].
Bauters, TGM ;
Swinne, D ;
Stove, V ;
Nelis, HJ .
JOURNAL OF CLINICAL MICROBIOLOGY, 2003, 41 (04) :1736-1737
[4]   Bacterial contamination of platelet concentrates: Incidence, significance, and prevention [J].
Blajchman, MA ;
Goldman, M .
SEMINARS IN HEMATOLOGY, 2001, 38 (04) :20-26
[5]  
BLAJCHMAN MA, 2002, SEMIN HEMATOL, V108, P59
[6]  
BLAJCHMAN MA, 1991, TRANSFUS MED REV, V5, P73
[7]   Growth of bacteria in inoculated platelets: implications for bacteria detection and the extension of platelet storage [J].
Brecher, ME ;
Holland, PV ;
Pineda, AA ;
Tegtmeier, GE ;
Yomtovian, R .
TRANSFUSION, 2000, 40 (11) :1308-1312
[8]   Evaluation of an automated culture system for detecting bacterial contamination of platelets: an analysis with 15 contaminating organisms [J].
Brecher, ME ;
Means, N ;
Jere, CS ;
Heath, D ;
Rothenberg, S ;
Stutzman, LC .
TRANSFUSION, 2001, 41 (04) :477-482
[9]   Evaluation of a new generation of culture bottle using an automated bacterial culture system for detecting nine common contaminating organisms found in platelet components [J].
Brecher, ME ;
Heath, DG ;
Hay, SN ;
Rothenberg, SJ ;
Stutzman, LC .
TRANSFUSION, 2002, 42 (06) :774-779
[10]  
CARROLL RC, 2002, BIOCHEM J, V266, P527