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首页> 外文期刊>Analytical chemistry >Microfluidic Chemical Cytometry of Peptide Degradation in Single Drug-Treated Acute Myeloid Leukemia Cells
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Microfluidic Chemical Cytometry of Peptide Degradation in Single Drug-Treated Acute Myeloid Leukemia Cells

机译:药物治疗的急性髓性白血病细胞中肽降解的微流化学细胞计数。

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Microfluidic systems show great promise for single-cell analysis; however, as these technologies mature, their utility must be validated by studies of biologically relevant processes. An important biomedical application of these systems is characterization of tumor cell heterogeneity. In this work, we used a robust microfluidic platform to explore the heterogeneity of enzyme activity in single cells treated with a chemotherapeutic drug. Using chemical cytometry, we measured peptide degradation in the U937 acute myeloid leukemia (AML) cell line in the presence and absence of the aminopeptidase inhibitor Tosedostat (CHR-2797). The analysis of 99 untreated cells revealed rapid and consistent degradation of the peptide reporter within 20 min of loading. Results from drug-treated cells showed inhibited, but ongoing degradation of the reporter. Because the device operates at an average sustained throughput of 37 ± 7 cells/h, we were able to sample cells over the course of this time-dependent degradation. In data from 498 individual drug-treated cells, we found a linear dependence of degradation rate on amount of substrate loaded superimposed upon substantial heterogeneity in peptide processing in response to inhibitor treatment. Importantly, these data demonstrated the potential of microfluidic systems to sample biologically relevant analytes and time-dependent processes in large numbers of single cells.
机译:微流体系统显示出对单细胞分析的巨大希望;但是,随着这些技术的成熟,必须通过对生物学相关过程的研究来验证其实用性。这些系统的重要生物医学应用是肿瘤细胞异质性的表征。在这项工作中,我们使用了强大的微流控平台来探索用化学治疗药物处理的单细胞中酶活性的异质性。使用化学细胞计数法,我们在存在和不存在氨基肽酶抑制剂Tosedostat(CHR-2797)的情况下,测量了U937急性髓样白血病(AML)细胞系中的肽降解。对99个未处理细胞的分析显示,在上样20分钟内,肽报道分子迅速而一致地降解。经药物处理的细胞的结果显示报告基因受到抑制,但仍在继续降解。由于该设备的平均持续吞吐能力为37±7个细胞/小时,因此我们能够在与时间相关的降解过程中对细胞进行采样。在来自498个经过药物处理的单个细胞的数据中,我们发现降解速率对负载的底物量的线性依赖性,该底物的量与响应抑制剂处理的肽加工中的基本异质性叠加在一起。重要的是,这些数据证明了微流体系统在大量单个细胞中采样生物学相关分析物和时间依赖性过程的潜力。

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