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Separation of Leishmania-infected macrophages by step-SPLITT fractionation

机译:逐步SPLITT分级分离利什曼原虫感染的巨噬细胞

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After a primary infection protocol of macrophages with Leishmania amazonensis, the percentage of infection drops as infection progresses and the uninfected population of macrophages mask the effects of infection for electrophysiological studies. In order to increase or maintain the infection percentage, we introduce an enrichment process after primary infection, which increases the possibility of following the infection longer times than any known process. A membraneless separation technique, step-SPLITT fractionation, implying flow and transverse gravity field in a ribbon-like channel, was used for enriching samples of macrophages infected with particles and with L. amazonensis. We demonstrate the capability of the s-SPLITT of generating, from a mixture resulting from a primary infection, an enriched and a depleted fraction with infected cells, without using any selective labeling pre-processing. It is also shown that a continuous sorting is possible without damaging cells and the losses of matter into the separation chamber is minimal.
机译:在使用亚马逊利什曼原虫进行巨噬细胞的主要感染方案后,随着感染的进展,感染的百分比下降,未感染的巨噬细胞群体掩盖了感染的电生理研究作用。为了增加或保持感染率,我们在初次感染后引入了富集过程,与任何已知过程相比,增加了进行更长时间感染的可能性。使用无膜分离技术,逐步SPLITT分级分离,暗示带状通道中的流动和横向重力场来富集感染了颗粒和亚马逊乳杆菌的巨噬细胞样品。我们证明了s-SPLITT能够从原发感染产生的混合物中产生感染细胞富集和耗尽的馏分,而无需使用任何选择性标记预处理。还显示出可以连续分选而不损坏细胞,并且物质进入分离室的损失最小。

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