Fluorescence Triggering: A General Strategy for Enumerating and Phenotyping Extracellular Vesicles by Flow Cytometry

被引:142
作者
Arraud, Nicolas [1 ]
Gounou, Celine [1 ]
Turpin, Delphine [1 ]
Brisson, Alain R. [1 ]
机构
[1] Univ Bordeaux, IPB, CNRS, Mol Imaging & NanoBioTechnol,UMR CBMN 5248, Alle Geoffroy St Hilaire, F-33600 Pessac, France
关键词
annexin A5; blood plasma; cell-derived microparticles; flow cytometry; fluorescence triggering; phosphatidylserines; platelet; erythrocyte; TISSUE FACTOR; CIRCULATING MICROPARTICLES; SIZE; STANDARDIZATION; MICROVESICLES; PLATELETS; EXOSOMES; VESICULATION; ANNEXIN-A5; EXPOSURE;
D O I
10.1002/cyto.a.22669
中图分类号
Q5 [生物化学];
学科分类号
070307 [化学生物学];
摘要
Plasma contains cell-derived extracellular vesicles (EVs) which participate in various physiopathological processes and have potential biomedical applications. Despite intense research activity, knowledge on EVs is limited mainly due to the difficulty of isolating and characterizing sub-micrometer particles like EVs. We have recently reported that a simple flow cytometry (FCM) approach based on triggering the detection on a fluorescence signal enabled the detection of 50x more Annexin-A5 binding EVs (Anx5+ EVs) in plasma than the conventional FCM approach based on light scattering triggering. Here, we present the application of the fluorescence triggering approach to the enumeration and phenotyping of EVs from platelet free plasma (PFP), focusing on CD41+ and CD235a+ EVs, as well as their sub-populations which bind or do not bind Anx5. Higher EV concentrations were detected by fluorescence triggering as compared to light scattering triggering, namely 40x for Anx5+ EVs, 75x for CD41+ EVs, and 15x for CD235a+ EVs. We found that about 30% of Anx5+ EVs were of platelet origin while only 3% of them were of erythrocyte origin. In addition, a majority of EVs from platelet and erythrocyte origin do not expose PS, in contrast to the classical theory of EV formation. Furthermore, the same PFP samples were analyzed fresh and after freeze-thawing, showing that freeze-thawing processes induce an increase, of about 35%, in the amount of Anx5+ EVs, while the other EV phenotypes remain unchanged. The method of EV detection and phenotyping by fluorescence triggering is simple, sensitive and reliable. We foresee that its application to EV studies will improve our understanding on the formation mechanisms and functions of EVs in health and disease and help the development of EV-based biomarkers. (c) 2015 International Society for Advancement of Cytometry
引用
收藏
页码:184 / 195
页数:12
相关论文
共 57 条
[11]
Annexin-A5 assembled into two-dimensional arrays promotes cell membrane repair [J].
Bouter, Anthony ;
Gounou, Celine ;
Berat, Remi ;
Tan, Sisareuth ;
Gallois, Bernard ;
Granier, Thierry ;
d'Estaintot, Beatrice Langlois ;
Poeschl, Ernst ;
Brachvogel, Bent ;
Brisson, Alain R. .
NATURE COMMUNICATIONS, 2011, 2
[12]
Flow cytometric detection of viruses [J].
Brussaard, CPD ;
Marie, D ;
Bratbak, G .
JOURNAL OF VIROLOGICAL METHODS, 2000, 85 (1-2) :175-182
[13]
Interference of chylomicrons in analysis of platelets by flow cytometry [J].
Cantero, M ;
Conejo, JR ;
Parra, T ;
Jiménez, A ;
Carballo, F ;
de Arriba, G .
THROMBOSIS RESEARCH, 1998, 91 (01) :49-52
[14]
A new microparticle size calibration standard for use in measuring smaller microparticles using a new flow cytometer [J].
Chandler, W. L. ;
Yeung, W. ;
Tait, J. F. .
JOURNAL OF THROMBOSIS AND HAEMOSTASIS, 2011, 9 (06) :1216-1224
[15]
Clemetson K.J., 2002, PLATELET RECEPTORS P, P65
[16]
DACHARYPRIGENT J, 1993, BLOOD, V81, P2554
[17]
Microparticles are new biomarkers of septic shock-induced disseminated intravascular coagulopathy [J].
Delabranche, Xavier ;
Boisrame-Helms, Julie ;
Asfar, Pierre ;
Berger, Asael ;
Mootien, Yoganaden ;
Lavigne, Thierry ;
Grunebaum, Lelia ;
Lanza, Francois ;
Gachet, Christian ;
Freyssinet, Jean-Marie ;
Toti, Florence ;
Meziani, Ferhat .
INTENSIVE CARE MEDICINE, 2013, 39 (10) :1695-1703
[18]
Sizing and phenotyping of cellular vesicles using Nanoparticle Tracking Analysis [J].
Dragovic, Rebecca A. ;
Gardiner, Christopher ;
Brooks, Alexandra S. ;
Tannetta, Dionne S. ;
Ferguson, David J. P. ;
Hole, Patrick ;
Carr, Bob ;
Redman, Christopher W. G. ;
Harris, Adrian L. ;
Dobson, Peter J. ;
Harrison, Paul ;
Sargent, Ian L. .
NANOMEDICINE-NANOTECHNOLOGY BIOLOGY AND MEDICINE, 2011, 7 (06) :780-788
[19]
Imaging Flow Cytometry Elucidates Limitations of Microparticle Analysis by Conventional Flow Cytometry [J].
Erdbruegger, Uta ;
Rudy, Christine K. ;
Etter, Mark E. ;
Dryden, Kelly A. ;
Yeager, Mark ;
Klibanov, Alexander L. ;
Lannigan, Joanne .
CYTOMETRY PART A, 2014, 85A (09) :756-770
[20]
Nanoparticle analysis of circulating cell-derived vesicles in ovarian cancer patients [J].
Gercel-Taylor, Cicek ;
Atay, Safinur ;
Tullis, Richard H. ;
Kesimer, Mehmet ;
Taylor, Douglas D. .
ANALYTICAL BIOCHEMISTRY, 2012, 428 (01) :44-53