Cryopreservation alters the membrane and cytoskeletal protein profile of platelet microparticles

被引:57
作者
Raynel, Sarah [1 ,2 ]
Padula, Matthew P. [2 ]
Marks, Denese C. [1 ]
Johnson, Lacey [1 ]
机构
[1] Australian Red Cross Blood Serv, Res & Dev, Alexandria, NSW, Australia
[2] Univ Technol Sydney, Prote Core Facil, Sydney, NSW 2007, Australia
关键词
FROZEN-BLOOD PRODUCTS; ACTIVATED PLATELETS; DIMETHYL-SULFOXIDE; ENDOTHELIAL-CELLS; MICROVESICLES; PLASMA; SURFACE; HEMOSTASIS; SURVIVAL; ADHESION;
D O I
10.1111/trf.13165
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
BACKGROUNDCryopreservation of platelets (PLTs) in dimethyl sulfoxide (DMSO) and storage at -80 degrees C extends the PLT shelf life to at least 2 years, allowing greater accessibility in military and rural environments. While cryopreserved PLTs have been extensively characterized, the microparticles formed as a result of cryopreservation are yet to be fully described. STUDY DESIGN AND METHODSApheresis PLTs were cryopreserved at -80 degrees C with 5% DMSO and sampled before freezing and after thawing. Microparticle number, size, surface receptor phenotype, and function were assessed by microscopy, flow cytometry, dynamic light scattering, and thrombin-generating capacity. Proteomic changes were examined using two-dimensional gel electrophoresis and Western blotting. RESULTSPLT cryopreservation resulted in a 15-fold increase in the number of microparticles compared to fresh PLTs. The surface receptor phenotype of these microparticles differed to microparticles from fresh PLTs, with more microparticles expressing glycoprotein (GP)IV, GPIIb, and the GPIb-V-IX complex. Cryopreservation drastically altered the abundance of many cytoskeletal proteins in the PLT microparticles, including actin, filamin, gelsolin, and tropomyosin. Despite these changes, PLT microparticles were functional and contributed to phosphatidylserine- and tissue factor- induced thrombin generation. CONCLUSIONThis study demonstrates that PLT microparticles formed by cryopreservation are phenotypically distinct from those present before freezing. These differences may be associated with the procoagulant properties of cryopreserved PLTs.
引用
收藏
页码:2422 / 2432
页数:11
相关论文
共 51 条
[1]   The putative diabetic plasma marker, soluble CD36, is non-cleaved, non-soluble and entirely associated with microparticles [J].
Alkhatatbeh, M. J. ;
Mhaidat, N. M. ;
Enjeti, A. K. ;
Lincz, L. F. ;
Thorne, R. F. .
JOURNAL OF THROMBOSIS AND HAEMOSTASIS, 2011, 9 (04) :844-851
[2]   Platelet-derived microparticles stimulate proliferation, survival, adhesion, and chemotaxis of hematopoietic cells [J].
Baj-Krzyworzeka, M ;
Majka, M ;
Pratico, D ;
Ratajczak, J ;
Vilaire, G ;
Kijowski, J ;
Reca, R ;
Janowska-Wieczorek, A ;
Ratajczak, MZ .
EXPERIMENTAL HEMATOLOGY, 2002, 30 (05) :450-459
[3]   Fresh, liquid-preserved, and cryopreserved platelets: adhesive surface receptors and membrane procoagulant activity [J].
Barnard, MR ;
MacGregor, H ;
Ragno, G ;
Pivacek, LE ;
Khuri, SF ;
Michelson, AD ;
Valeri, CR .
TRANSFUSION, 1999, 39 (08) :880-888
[4]   Identification and validation of platelet low biological variation proteins, superior to GAPDH, actin and tubulin, as tools in clinical proteomics [J].
Baumgartner, Roland ;
Umlauf, Ellen ;
Veitinger, Michael ;
Guterres, Sheila ;
Rappold, Eduard ;
Babeluk, Rita ;
Mitulovic, Goran ;
Oehler, Rudolf ;
Zellner, Maria .
JOURNAL OF PROTEOMICS, 2013, 94 :540-551
[5]   CYTOSKELETAL DOMAINS IN THE ACTIVATED PLATELET [J].
BEARER, EL .
CELL MOTILITY AND THE CYTOSKELETON, 1995, 30 (01) :50-66
[6]   Proteomic characterization of human platelet-derived microparticles [J].
Capriotti, Anna Laura ;
Caruso, Giuseppe ;
Cavaliere, Chiara ;
Piovesana, Susy ;
Samperi, Roberto ;
Lagana, Aldo .
ANALYTICA CHIMICA ACTA, 2013, 776 :57-63
[7]   Shedding of procoagulant microparticles from unstimulated platelets by integrin-mediated destabilization of actin cytoskeleton [J].
Cauwenberghs, Sandra ;
Feijge, Marion A. H. ;
Harper, Alan G. S. ;
Sage, Stewart O. ;
Curvers, Joyce ;
Heemskerk, Johan W. M. .
FEBS LETTERS, 2006, 580 (22) :5313-5320
[8]   Infusible platelet membrane microvesicles: A potential transfusion substitute for platelets [J].
Chao, FC ;
Kim, BK ;
Houranieh, AM ;
Liang, FH ;
Konrad, MW ;
Swisher, SN ;
Tullis, JL .
TRANSFUSION, 1996, 36 (06) :536-542
[9]   Proteomic and functional characterisation of platelet microparticle size classes [J].
Dean, William L. ;
Lee, Menq J. ;
Cummins, Timothy D. ;
Schultz, David J. ;
Powell, David W. .
THROMBOSIS AND HAEMOSTASIS, 2009, 102 (04) :711-718
[10]   A randomized controlled trial evaluating recovery and survival of 6% dimethyl sulfoxide-frozen autologous platelets in healthy volunteers [J].
Dumont, Larry J. ;
Cancelas, Jose A. ;
Dumont, Deborah F. ;
Siegel, Alan H. ;
Szczepiorkowski, Zbigniew M. ;
Rugg, Neeta ;
Pratt, P. Gayle ;
Worsham, D. Nicole ;
Hartman, Elizabeth L. ;
Dunn, Susan K. ;
O'Leary, Margaret ;
Ransom, Janet H. ;
Michael, Rodney A. ;
Macdonald, VictorW. .
TRANSFUSION, 2013, 53 (01) :128-137