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Optimized in vitro isolation of different subpopulation of immune cells from peripheral blood and comparative techniques for generation of monocyte-derived macrophages in small ruminants

Authors :
CSIC-ULE - Instituto de Ganadería de Montaña (IGM)
Universidad de León
Ministerio de Ciencia, Innovación y Universidades (España)
Benavides, Julio [0000-0001-9706-100X]
Pérez Pérez, Valentín [0000-0003-0075-1587]
Arteche-Villasol, Noive
Benavides, Julio
Espinosa Cerrato, José
Vallejo García, Raquel
Royo González, Marcos
Ferreras, Mª del Carmen
Pérez Pérez, Valentín
Gutiérrez-Expósito, Daniel
CSIC-ULE - Instituto de Ganadería de Montaña (IGM)
Universidad de León
Ministerio de Ciencia, Innovación y Universidades (España)
Benavides, Julio [0000-0001-9706-100X]
Pérez Pérez, Valentín [0000-0003-0075-1587]
Arteche-Villasol, Noive
Benavides, Julio
Espinosa Cerrato, José
Vallejo García, Raquel
Royo González, Marcos
Ferreras, Mª del Carmen
Pérez Pérez, Valentín
Gutiérrez-Expósito, Daniel
Publication Year :
2020

Abstract

Peripheral blood from healthy sheep (n = 3) and goats (n = 3) were employed to establish an efficient method for simultaneous isolation of peripheral blood mononuclear cells (PBMCs) and neutrophils and to standardize protocols for monocyte purification and generation of monocyte-derived macrophages (MDMs). In both species, a significantly enriched population of PBMCs, with higher purity and number of cells determined by flow cytometry, was achieved when processing through a density gradient a mixture of buffy-coat and red blood cell layer (RBC) in comparison to the use of just the buffy-coat (p < 0.05). Neutrophils could be subsequently isolated from the layer, located underneath PBMCs fraction with significant higher purity rates, higher than 85 % determined by flow cytometry, than those obtained with protocols without density gradients (< 60 %) (p < 0.05). This technique would allow the isolation of both cell populations from the same sample of blood. A pure cell population of monocytes, CD14+ cells, was purified from PBMCs when using immunomagnetic columns, which allow for 17 % (nº monocytes/nº PBMCs) of yield and high percentages of expression of CD14+ (88 %), MHC-II+ (91.5 %) and CD11b+ (94 %) established by flow cytometry. On the other hand, the classical and nonexpensive purification of monocytes from PBMCs based on the adherence capacity of the former, allowed significantly lower yield of monocytes (4.6 %), with percentages of surface markers expression that dropped to 35 %, 65 % and 55 %, respectively (p < 0.001), suggesting the isolation of a mixed population of cells. The addition of GM-CSF to the culture, at concentration from 25 to 125 ng/mL, enhanced proportionally the number of MDMs generated compared to the absence of supplementation or the use of autologous serum from 5% to 20 %. However, purification of monocytes through the adherence method achieved higher yields of MDMs than those isolated through immunomagnetic columns in both species (p < 0.001

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1286559640
Document Type :
Electronic Resource