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    • 55. 发明授权
    • Device and method for rapidly lysing cells or viruses
    • 用于快速裂解细胞或病毒的装置和方法
    • US07531138B2
    • 2009-05-12
    • US11560890
    • 2006-11-17
    • Su-hyeon KimJeong-gun Lee
    • Su-hyeon KimJeong-gun Lee
    • B01L3/00G01N1/00C12M1/00
    • C12M47/06B01L3/5027C12N1/066C12N13/00G01N1/44Y10T137/2496Y10T436/25
    • A cell lysis device for lysing cells or viruses, comprising a cell lysis tube having a sample inlet; a pump connected to the cell lysis tube for transferring a sample into the tube; a sealing unit for reversibly sealing a specific region of the tube; and a laser source for generating a laser is provided. Further, a method of lysing cells or viruses using the cell lysis device is provided. The method comprises introducing a sample containing cells or viruses and optionally magnetic beads to the cell lysis tube through the sample inlet; transferring the sample to a specific region in the cell lysis tube by means of the pump; temporarily sealing the region of the cell lysis tube where the sample is placed with the sealing unit; irradiating the sample with the laser; removing the sealing unit from the cell lysis tube; and discharging the sample from the cell lysis tube by means of the pump.
    • 一种用于裂解细胞或病毒的细胞裂解装置,包括具有样品入口的细胞裂解管; 连接到细胞裂解管的泵,用于将样品转移到管中; 用于可逆地密封管的特定区域的密封单元; 并提供用于产生激光的激光源。 此外,提供了使用细胞裂解装置裂解细胞或病毒的方法。 该方法包括通过样品入口将含有细胞或病毒的样品和任选的磁珠引入细胞裂解管; 通过泵将样品转移到细胞裂解管中的特定区域; 用密封单元临时密封放置样品的细胞溶解管的区域; 用激光照射样品; 从细胞裂解管中取出密封单元; 并通过泵从细胞裂解管排出样品。
    • 58. 发明授权
    • Target particles-separating device and method using multi-orifice flow fractionation channel
    • 目标颗粒分离装置和使用多孔流量分馏通道的方法
    • US08590710B2
    • 2013-11-26
    • US13156630
    • 2011-06-09
    • Tae-seok SimJeong-gun LeeHyo-il JungKi-ho Kwon
    • Tae-seok SimJeong-gun LeeHyo-il JungKi-ho Kwon
    • B07C5/00
    • B01L3/502761B01L3/502753B01L2200/0652B01L2300/087B01L2400/0487
    • A device separating target particles in a fluid sample includes first through third multi-orifice flow fractionation (“MOFF”) channels, each including a multi-orifice segment with an inlet and an outlet at opposite ends, and an alternating series of contraction channels and expansion chambers interconnected in a lengthwise direction; a first separation unit including a first separation channel which is interconnected in fluid communication with a center region of the outlet of the first MOFF channel, and first branch channels which are interconnected in fluid communication with sidewall regions of the outlet of the first MOFF channel, and respectively with inlets of the second and third MOFF channels; and buffer inlets which are connected to the inlets of the second and third MOFF channels and through which a buffer flows into the second and third MOFF channels.
    • 分离流体样品中的目标颗粒的装置包括第一至第三多孔流动分馏(“MOFF”)通道,每个通道包括具有相对端的入口和出口的多孔段,以及交替的一系列收缩通道和 膨胀室沿长度方向互相连接; 第一分离单元,其包括与第一MOFF通道的出口的中心区域流体连通的第一分离通道和与第一MOFF通道的出口的侧壁区域流体连通地互连的第一分支通道, 并分别具有第二和第三MOFF通道的入口; 以及连接到第二和第三MOFF通道的入口并且缓冲器通过其流入第二和第三MOFF通道的缓冲器入口。