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    • 4. 发明公开
    • METHOD FOR PREDICTING ORGAN TRANSPLANT REJECTION USING NEXT-GENERATION SEQUENCING
    • 使用下一代测序预测器官移植排斥的方法
    • EP3285193A1
    • 2018-02-21
    • EP15889288.5
    • 2015-06-11
    • Eone Diagnomics Genome Center Co., Ltd.
    • LEE, Min SeobKWON, Sun Jae
    • G06F19/22G06F19/10C12Q1/68
    • C12Q1/68G06F19/10G06F19/22
    • The present invention relates to a method for non-invasively predicting an organ transplant rejection by measuring the ratio between an organ-donor-specific nucleic acid sequence and a recipient-specific nucleic acid sequence in a biological sample of an organ transplant recipient and, more specifically, to a method for predicting an organ transplant rejection by measuring the ratio of a donor-derived marker sequence and a recipient-derived marker sequence regarding three or more markers selected in Tables 1 to 10 by testing a biological sample (e.g. blood) of an organ transplant recipient and predicting the organ transplant rejection based on the measurement. The method for predicting an organ transplant rejection using next-generation sequencing (NGS) according to the present invention or a digital base amplification technique can apply even to a very small amount of sample, is faster and inexpensive, is fast in the rate of data analysis, can apply to all organ transplants of all races in the word, and can simultaneously detect error probability of a sequence analysis, and thus is useful to non-invasively predict the organ transplant rejection.
    • 本发明涉及通过测量器官移植接受者的生物样品中器官供体特异性核酸序列和受体特异性核酸序列之间的比率来非侵入性地预测器官移植排斥的方法, 具体而言,涉及通过测定表1〜10中选择的3种以上的标记物的供体来源的标记物序列与来自受体来源的标记物序列的比例,通过对生物样品(例如血液)进行检测来预测器官移植排斥反应的生物学样品 基于测量结果预测器官移植排斥反应。 使用根据本发明的下一代测序(NGS)或数字基础扩增技术预测器官移植排斥的方法甚至可以应用于非常少量的样本,更快且更便宜,数据速率快 分析可适用于所有种族的器官移植,并可同时检测出序列分析的错误概率,因此有助于非侵入性预测器官移植排斥反应。
    • 8. 发明公开
    • PROCÉDÉ ET DISPOSITIF DE CARACTÉRISATION DU POUVOIR INHIBITEUR D'UNE MOLÉCULE SUR UN MICROORGANISME
    • PROCÉDÉET DISPOSITIF DECARACTÉRISATIONDU POUVOIR INHIBITEUR D'UNEMOLÉCULESUR UN MICROORGANISME
    • EP3234173A1
    • 2017-10-25
    • EP15808767.6
    • 2015-11-30
    • bioMérieux
    • TOURNOUD, MaudMAHE, Pierre
    • C12Q1/18C12Q1/04G06F19/10C12Q1/06G01N33/569
    • C12Q1/18C12Q1/04C12Q1/06G01N33/569G06F19/10
    • A method for estimating a magnitude G
      inhib quantifying the inhibitory capacity of a molecule on a type of microorganism comprises: the preparation (50) of a plurality of samples, comprising microorganisms of said type, a nutritive medium for the microorganisms and an initial quantity of the molecule per microorganism, which increases in a range [Q
      min , Q
      max ] as a function of a classification of the samples; the measurement (50) of the growth of the microorganisms in the samples as a function of time; and the determination (52) of the magnitude G
      inhib as a function of the growth measurements. The determination (52) of the magnitude G
      inhib comprises: - for each sample, the calculation (66) of a value reflecting the growth of the microorganism of said type on the basis of growth measurements; the classification (68) of the values calculated for the samples as a function of the classification of the samples; and the determination (70) of the magnitude G
      inhib as a function of the change in the values classified.
    • 用于估计量值G抑制分子对一类微生物的抑制能力的方法包括:多种样品的制备(50),所述样品包含所述类型的微生物,微生物的营养培养基和初始量的 作为样品分类的函数,每个微生物的分子增加[Q min,Q max] 样品中微生物生长的测量(50)作为时间的函数; 以及幅度G的确定(52)作为生长测量的函数来抑制。 G大小抑制的确定(52)包括: - 对于每个样品,基于生长测量结果计算(66)反映所述类型微生物生长的值; 作为样本分类的函数的针对样本计算的值的分类(68) 以及幅度G的确定(70)作为所分类的值的变化的函数来进行抑制。
    • 9. 发明公开
    • Système pour l'évaluation d'au moins un analyte susceptible d'être contenu dans un échantillon liquide déposé sur un dispositif immunochromatographique
    • Systèmepour l'évaluationd'au moins un analyte susceptible d'étrecontenu dans unéchantillonliquidedéposésur un dispositif immunochromatographique
    • EP3218715A1
    • 2017-09-20
    • EP15801916.6
    • 2015-11-10
    • NG Biotech
    • STANKOV, MilovanSTANKOV-PUGES, Milovan
    • G01N33/53G06F19/00A61B5/00G01N33/558
    • G01N33/558A61B5/0022G06F19/00G06F19/10G16H10/40
    • The present invention relates to a system for the qualitative and/or quantitative evaluation of at least one analyte likely to be contained in a liquid sample deposited on an immunochromatographic device (2). The evaluation system (1) comprises a reading device (3) and an analysis device (5) that are structurally separate from one another. The reading device (3) comprises means (31) for receiving said immunochromatographic device (2), and means (32) for acquiring at least one digital image of its display area (24). The analysis device (5) comprises means (51) for processing the at least one digital image, which are suitable for the qualitative and/or quantitative evaluation of the at least one analyte likely to be contained in the liquid sample, and means for outputting the result of the evaluation. The evaluation system (1) comprises means (4, 33) for transmitting, via a telecommunications network (R), the at least one digital image acquired from the reading device (3) to the remote analysis device (5).
    • 本发明涉及用于定性和/或定量评估可能包含在沉积在免疫色谱装置(2)上的液体样品中的至少一种分析物的系统。 评估系统(1)包括在结构上彼此分离的读取装置(3)和分析装置(5)。 读取装置(3)包括用于接收所述免疫色谱装置(2)的装置(31)和用于获取其显示区域(24)的至少一个数字图像的装置(32)。 分析装置(5)包括用于处理至少一个数字图像的装置(51),其适于定性和/或定量评估可能包含在液体样品中的至少一种分析物,以及用于输出 评估的结果。 评估系统(1)包括用于经由电信网络(R)将从读取设备(3)获取的至少一个数字图像发送到远程分析设备(5)的装置(4,33)。