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首页> 外文期刊>Veterinary Immunology and Immunopathology >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
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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

机译:优化了从外周血和对小型反刍动物产生单核细胞衍生巨噬细胞的不同亚型免疫细胞亚群的体外分离

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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 % (n degrees monocytes/n degrees 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 non expensive 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). Under the conditions of this study, the use of centrifugation in density gradients allow for the simultaneous purification of PBMCs and neutrophils, with high purity of both populations, from the same sample of blood. The isolation of monocytes could be subsequently achieved through two different methods, i.e. based on immunomagnetic columns or adherence. The preference between both methods would depend on the necessities of the experiment, the initial sample with high purity of monocytes or a final population of MDMs required.
机译:采用健康绵羊(n=3)和山羊(n=3)的外周血,建立一种同时分离外周血单个核细胞(PBMC)和中性粒细胞的有效方法,并对单核细胞纯化和单核细胞源性巨噬细胞(MDM)产生的方案进行标准化。在这两个物种中,当通过密度梯度处理棕黄色外壳和红细胞层(RBC)的混合物时,与仅使用棕黄色外壳相比,获得了显著富集的PBMC群体,其纯度和通过流式细胞术测定的细胞数量更高(p<0.05)。随后,中性粒细胞可从位于PBMCs组分下方的层中分离出来,其纯度显著高于流式细胞术测定的85%,高于无密度梯度方案获得的中性粒细胞(<60%)(p<0.05)。这项技术将允许从同一血液样本中分离两个细胞群。当使用免疫磁性柱时,从PBMC中纯化出纯单核细胞群CD14(+)细胞,其允许17%(n度单核细胞/n度PBMC)的产量和通过流式细胞术建立的高百分比表达CD14(+)(88%)、MHC-II+(91.5%)和CD11b(+)(94%)。另一方面,基于前者的粘附能力,从PBMC中纯化单核细胞的经典且不昂贵的方法可以显著降低单核细胞的产量(4.6%),表面标记物的表达百分比分别下降到35%、65%和55%(p<0.001),表明分离出混合细胞群。在培养物中添加浓度为25至125 ng/mL的GM-CSF,与不添加补充物或使用自体血清相比,产生的MDM数量从5%增加到20%。然而,在这两个物种中,通过粘附法纯化单核细胞比通过免疫磁性柱分离的单核细胞获得更高的MDM产量(p<0.001)。在本研究的条件下,使用密度梯度离心可以从同一血液样本中同时纯化PBMC和中性粒细胞,两个群体的纯度都很高。单核细胞的分离随后可以通过两种不同的方法实现,即基于免疫磁性柱或粘附。两种方法之间的选择取决于实验的必要性,需要高纯度单核细胞的初始样本或最终的MDM群体。

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