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首页> 外文期刊>Journal of Immunological Methods >Optimized isolation of renal plasma cells for flow cytometric analysis
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Optimized isolation of renal plasma cells for flow cytometric analysis

机译:流式细胞术分析优化肾脏等离子体细胞的分离

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摘要

Plasma cells (PCs) secrete antibodies and play an essential role in protective immunity, but also in pathogenesis of antibody-mediated diseases. Physiologically, PCs mainly reside within bone marrow and spleen. In autoimmune diseases such as systemic lupus erythematosus (SLE) autoantibody-producing PCs can also be found at sites of inflammation, e.g. in nephritic kidneys. Therefore, efficient methods are required to reliably analyze and compare PCs at different sites. Flow cytometry and ELISpot analyses are frequently employed for PC characterization and require the preparation of single cell suspensions. To that end, enzymatic digestion is commonly used to isolate immune cells from solid organs like kidneys, occasionally also from lymphoid organs. In this study we show that enzymatic digestion using collagenase may lead to a loss of certain surface markers, e.g. the PC markers CD138 and CD267 (TACI). Therefore, we established an optimized protocol for preparing renal single cells by merely applying mechanical tissue disruption. Omitting enzymatic digestion, this method enables a reliable characterization of viable renal PCs by flow cytometry and cell sorting. We further show that mechanic cell preparation is favorable for lymphocytic immune cell enrichment, while enzymatic disruption improves the yield of digitating or stroma cell populations.
机译:血浆细胞(PCS)分泌抗体并在保护性免疫中发挥重要作用,也可以在抗体介导的疾病的发病机制中起作用。生理学上,PC主要位于骨髓和脾脏中。在自身免疫疾病,如系统性红斑狼疮(SLE)的自身抗体 - 生产PCS也可以在炎症的炎症点发现,例如,在肾病肾脏。因此,需要有效的方法来可靠地分析和比较不同位点的PC。流式细胞术和ELISPOT分析经常用于PC表征,并需要制备单细胞悬浮液。为此,酶促消化通常用于将免疫细胞与肾脏等固体器官隔离,偶尔也来自淋巴器官。在该研究中,我们表明使用胶原酶的酶消化可能导致某些表面标志物的损失,例如, PC标记CD138和CD267(TACI)。因此,我们通过仅施加机械组织破坏来建立优化方案,用于制备肾单细胞。省略酶消化,该方法通过流式细胞术和细胞分选能够可靠地表征活肾PC。我们进一步表明,机械电池制剂有利于淋巴细胞免疫细胞富集,而酶破坏提高了数字或基质细胞群的产率。

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