Immunophenotype profile by flow cytometry reveals different subtypes of extracellular vesicles in porcine seminal plasma

被引:12
|
作者
Barranco, Isabel [1 ]
Alvarez-Barrientos, Alberto [2 ]
Parra, Ana [1 ]
Martinez-Diaz, Pablo [1 ]
Lucas, Xiomara [1 ]
Roca, Jordi [1 ]
机构
[1] Univ Murcia, Fac Vet Sci, Dept Med & Anim Surg, Murcia, Spain
[2] Univ Extremadura, Serv Tecn Aplicadas Biociencias, Badajoz, Spain
关键词
Ejaculate; Extracellular vesicles; Flow cytometry; Pig; Seminal plasma; HSP90; SPERMATOZOA; EXPRESSION; MOTILITY; PROTEINS; EXOSOMES; BOAR;
D O I
10.1186/s12964-024-01485-1
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Background Porcine seminal plasma (SP) is endowed with a heterogeneous population of extracellular vesicles (sEVs). This study evaluated the immunophenotypic profile by high-sensitivity flow cytometry of eight sEV subpopulations isolated according to their size (small [S-sEVs] and large [L-sEVs]) from four different SP sources, namely three ejaculate fractions (the first 10 mL of the sperm rich fraction [SRF-P1], the remaining SRF [SRF-P2], and the post-SRF [PSRF]) and entire ejaculate (EE). Methods Seminal EVs were isolated using a size exclusion chromatography-based protocol from six SP pools (five ejaculates/pool) of each SP source and characterized using complementary approaches including total protein (BCA (TM) assay), particle size distribution (dynamic light scattering), morphology (transmission electron microscopy), and purity (albumin by Western blot). Expression of CD9, CD63, CD81, CD44 and HSP90 beta was analyzed in all sEV subpopulations by high-sensitivity flow cytometry according to MIFlowCyt-EV guidelines, including an accurate calibration, controls, and discrimination by CFSE-labelling. Results Each sEV subpopulation exhibited a specific immunophenotypic profile. The percentage of sEVs positive for CD9, CD63, CD81 and HSP90 beta differed between S- and L-sEVs (P < 0.0001). Specifically, the percentage of sEVs positive for CD9 and CD63 was higher and that for CD81 was lower in S- than L-sEVs in the four SP sources. However, the percentage of HSP90 beta-positive sEVs was lower in S-sEVs than L-sEVs in the SRF-P1 and EE samples. The percentage of sEVs positive for CD9, CD63, and CD44 also differed among the four SP sources (P < 0.0001), being highest in PSRF samples. Notably, virtually all sEV subpopulations expressed CD44 (range: 88.04-98.50%). Conclusions This study demonstrated the utility of high-sensitivity flow cytometry for sEV immunophenotyping, allowing the identification of distinct sEV subpopulations that may have different cellular origin, cargo, functions, and target cells.
引用
收藏
页数:17
相关论文
共 50 条
  • [41] Measurement of Extracellular Vesicles and Other Submicron Size Particles by Flow Cytometry
    Lannigan, Joanne
    Nolan, John P.
    Zucker, Robert
    CYTOMETRY PART A, 2016, 89A (02) : 109 - 110
  • [42] OPTIMIZATION OF THE CHARACTERIZATION BY FLOW CYTOMETRY OF THE EXTRACELLULAR VESICLES OF THE MESENCHYMAL STROMAL CELLS
    Lopes Ramos, T.
    Sanchez-Abarca, L., I
    Muntion, S.
    Preciado, S.
    Puig Moron, N.
    Ortega, R.
    Lopez-Ruano, G.
    Hernandez-Hernandez, A.
    Redondo, A.
    Rodriguez Serrano, C.
    Sanchez-Guijo, F.
    Del Canizo, C.
    HAEMATOLOGICA, 2015, 100 : 200 - 200
  • [43] Protein Profiling of Malaria-Derived Extracellular Vesicles Reveals Distinct Subtypes
    Opadokun, Tosin
    Agyapong, Jeffrey
    Rohrbach, Petra
    MEMBRANES, 2022, 12 (04)
  • [44] Refractive index to evaluate staining specificity of extracellular vesicles by flow cytometry
    de Rond, L.
    Libregts, S. F. W. M.
    Rikkert, L. G.
    Hau, C. M.
    van der Pol, E.
    Nieuwland, R.
    van Leeuwen, T. G.
    Coumans, F. A. W.
    JOURNAL OF EXTRACELLULAR VESICLES, 2019, 8 (01):
  • [45] Techniques to improve detection and analysis of extracellular vesicles using flow cytometry
    Inglis, Heather C.
    Danesh, Ali
    Shah, Avani
    Lacroix, Jacques
    Spinella, Philip C.
    Norris, Philip J.
    CYTOMETRY PART A, 2015, 87A (11) : 1052 - 1063
  • [46] High Resolution Flow Cytometry Reveals Abnormal Distribution of Placental Extracellular Vesicles in Murine Placental Insufficiency Model.
    Marek, Nicole
    Morita, Mayu
    Canaday, Pam
    Morgan, Terry K.
    REPRODUCTIVE SCIENCES, 2017, 24 : 91A - 92A
  • [47] Comparison of Generic Fluorescent Markers for Detection of Extracellular Vesicles by Flow Cytometry
    de Rond, Leonie
    van der Pol, Edwin
    Hau, Chi M.
    Varga, Zoltan
    Sturk, Auguste
    van Leeuwen, Ton G.
    Nieuwland, Rienk
    Coumans, Frank A. W.
    CLINICAL CHEMISTRY, 2018, 64 (04) : 680 - 689
  • [48] Amnis ImageStream - Analysis of individual extracellular vesicles by imaging flow cytometry
    Tertel, T.
    Giebel, B.
    CYTOTHERAPY, 2020, 22 (05) : S55 - S55
  • [49] Fast, Accurate And Reliable Detection of Extracellular Vesicles in Human Plasma by Flow Cytometry: a Step Toward Personalized Medicine
    Farhat, Maya
    Fortin, Carl
    Martel, Catherine
    ARTERIOSCLEROSIS THROMBOSIS AND VASCULAR BIOLOGY, 2019, 39
  • [50] Prostate extracellular vesicles in patient plasma as a liquid biopsy platform for prostate cancer using nanoscale flow cytometry
    Biggs, Colleen N.
    Siddiqui, Khurram M.
    Al-Zahrani, Ali A.
    Pardhan, Siddika
    Brett, Sabine I.
    Guo, Qiu Q.
    Yang, Jun
    Wolf, Philipp
    Power, Nicholas E.
    Durfee, Paul N.
    MacMillan, Connor D.
    Townson, Jason L.
    Brinker, Jeffrey C.
    Fleshner, Neil E.
    Izawa, Jonathan I.
    Chambers, Ann F.
    Chin, Joseph L.
    Leong, Hon S.
    ONCOTARGET, 2016, 7 (08) : 8839 - 8849