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    • 1. 发明申请
    • CONTINUOUS-FLOW DEFORMABILITY-BASED CELL SEPARATION
    • 基于连续流动可变性的细胞分离
    • US20110081674A1
    • 2011-04-07
    • US12899197
    • 2010-10-06
    • Jongyoon HANHansen BowPatrick Abgrall
    • Jongyoon HANHansen BowPatrick Abgrall
    • C12N5/071C12Q1/02C12N13/00C12N5/09
    • C12N13/00C12M47/04C12Q1/025G01N33/5008G01N33/5091
    • This invention provides methods utilizing a microfluidic device that can quickly and accurately discern differences in deformability between individual cells and sets of cells and continuously fractionate populations of cells based on their deformability. This information may be important in disease diagnosis and treatment efficacy monitoring. For example such a device may be able to determine the stage of malarial infection by using red blood cell deformability. Additionally, methods of the invention may be used as a tool to screen drugs that can make cells more flexible in diseases such as sickle cell anemia that causes sickle cell crises. The relatively low manufacturing and operation costs of methods of the invention enable this device to be used in resource-limited settings to diagnose and monitor disease.
    • 本发明提供了利用微流体装置的方法,其可以快速且准确地辨别各个细胞和细胞组之间的变形能力的差异,并且基于它们的可变形性连续分离细胞群体。 该信息在疾病诊断和治疗功效监测中可能是重要的。 例如,这种装置可以通过使用红细胞变形能力来确定疟疾感染的阶段。 此外,本发明的方法可以用作筛选药物的工具,所述药物可使细胞在诸如引起镰状细胞危机的镰状细胞性贫血等疾病中更加灵活。 本发明方法的相对低的制造和操作成本使得该装置能够在资源有限的设置中用于诊断和监测疾病。
    • 2. 发明授权
    • Continuous-flow deformability-based cell separation
    • 连续流变形性细胞分离
    • US08771933B2
    • 2014-07-08
    • US12899197
    • 2010-10-06
    • Jongyoon HanHansen BowPatrick Abgrall
    • Jongyoon HanHansen BowPatrick Abgrall
    • A01N1/02
    • C12N13/00C12M47/04C12Q1/025G01N33/5008G01N33/5091
    • This invention provides methods utilizing a microfluidic device that can quickly and accurately discern differences in deformability between individual cells and sets of cells and continuously fractionate populations of cells based on their deformability. This information may be important in disease diagnosis and treatment efficacy monitoring. For example such a device may be able to determine the stage of malarial infection by using red blood cell deformability. Additionally, methods of the invention may be used as a tool to screen drugs that can make cells more flexible in diseases such as sickle cell anemia that causes sickle cell crises. The relatively low manufacturing and operation costs of methods of the invention enable this device to be used in resource-limited settings to diagnose and monitor disease.
    • 本发明提供了利用微流体装置的方法,其可以快速且准确地辨别各个细胞和细胞组之间的变形能力的差异,并且基于它们的可变形性连续分离细胞群体。 该信息在疾病诊断和治疗功效监测中可能是重要的。 例如,这种装置可以通过使用红细胞变形能力来确定疟疾感染的阶段。 此外,本发明的方法可以用作筛选药物的工具,所述药物可使细胞在诸如引起镰状细胞危机的镰状细胞性贫血等疾病中更加灵活。 本发明方法的相对低的制造和操作成本使得该装置能够在资源有限的设置中用于诊断和监测疾病。