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Detection of sepsis in patient blood samples using CD64 expression in a microfluidic cell separation device

机译:在微流体细胞分离装置中使用CD64表达检测患者血液样品中的脓毒症

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A microfluidic affinity separation device was developed for the detection of sepsis in critical care patients. An affinity capture method was developed to capture cells based on changes in CD64 expression in a single, simple microfluidic chip for sepsis detection. Both sepsis patient samples and a laboratory CD64+ expression model were used to validate the microfluidic assay. Flow cytometry analysis showed that the chip cell capture had a linear relationship with CD64 expression in laboratory models. The Sepsis Chip detected an increase in upregulated neutrophil-like cells when the upregulated cell population is as low as 10% of total cells spiked into commercially available aseptic blood samples. In a proof of concept study, blood samples obtained from sepsis patients within 24 hours of diagnosis were tested on the chip to further validate its performance. On-chip CD64+ cell capture from 10 patient samples (619 +/- 340 cells per chip) was significantly different from control samples (32 +/- 11 cells per chip) and healthy volunteer samples (228 +/- 95 cells per chip). In addition, the on-chip cell capture has a linear relationship with CD64 expression indicating our approach can be used to measure CD64 expression based on total cell capture on Sepsis Chip. Our method has proven to be sensitive, accurate, rapid, and cost-effective. Therefore, this device is a promising detection platform for neutrophil activation and sepsis diagnosis.
机译:在关键护理患者中开发了一种微流体亲和分离装置,用于检测脓毒症。开发了亲和捕获方法以基于用于败血症检测的单一简单的微流体芯片中CD64表达的变化来捕获细胞。 Sepsis患者样品和实验室CD64 +表达模型均用于验证微流体测定。流式细胞术分析表明,芯片细胞捕获在实验室模型中与CD64表达具有线性关系。当上调的细胞群低至10%的总细胞掺入市售无菌血液样品时,败血症芯片检测到上调的中性粒细胞样细胞增加。在概念研究的证据中,在芯片上测试了在诊断的24小时内从败血症患者获得的血液样本,以进一步验证其性能。来自10例患者样品的片上CD64 +细胞捕获(每芯片619 +/- 340个细胞)显着不同于对照样品(每芯片32 +/- 11个细胞)和健康的志愿者样品(每芯片228 +/- 95个细胞) 。此外,片上单元捕获具有与CD64表达式的线性关系,表明我们的方法可用于根据SEPSIS芯片上的总细胞捕获来测量CD64表达。我们的方法已被证明是敏感,准确,快速,经济效益。因此,该装置是用于中性粒细胞激活和败血症诊断的有希望的检测平台。

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