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    • 3. 发明申请
    • APPARATUS FOR ANALYTE SENSING AND ASSOCIATED METHODS
    • 分析仪感应及相关方法
    • WO2011110734A1
    • 2011-09-15
    • PCT/FI2011/050050
    • 2011-01-25
    • NOKIA CORPORATIONBAILEY, Marc
    • BAILEY, Marc
    • G01N33/53G01N33/558G01N33/58
    • G01N33/54306G01N33/54366Y10T436/25375Y10T436/255
    • An apparatus for the selective release of a bound species (707) based on the presence of an analyte (704), the apparatus comprising: a first (706) and second receptor species (709), the first receptor species (706) linked with a bound species (707) and configured to interact with an analyte (704) to form a first intermediate complex (711), the bound species (707) for causing increased porosity of a membrane (717) of an in-contact analyte sensor apparatus to correspondingly increase exposure of a sensing element of the analyte sensor apparatus to allow for production of a detectable electrical signal which can be used to sense the presence of the analyte (704), the second receptor species (709) for interacting with the first intermediate complex (711) to form a second intermediate complex (712); and a cleaving species, the cleaving species configured to interact with the second intermediate complex (709) to release the bound species (707) for use in sensing the presence of the analyte (704).
    • 一种用于基于分析物(704)的存在选择性释放结合物质(707)的装置,所述装置包括:第一受体(706)和第二受体物种(709),所述第一受体物种(706)与 结合物质(707)并且被配置为与分析物(704)相互作用以形成第一中间复合物(711),所述结合物质(707)用于引起接触式分析物传感器装置的膜(717)的增加的孔隙率 以相应地增加分析物传感器装置的感测元件的曝光,以允许产生可用于感测分析物(704)的存在的可检测电信号,用于与第一中间体相互作用的第二受体物质(709) 复合物(711)以形成第二中间体复合物(712); 和切割物种,所述切割物质配置为与第二中间复合物(709)相互作用以释放用于感测分析物(704)的存在的结合物质(707)。
    • 9. 发明申请
    • DEVICES, SYSTEMS AND METHODS FOR SEPARATING MAGNETIC PARTICLES
    • 用于分离磁性颗粒的装置,系统和方法
    • WO2010089138A1
    • 2010-08-12
    • PCT/EP2010/000736
    • 2010-02-05
    • CAPROTEC BIOANALYTICS GMBHLENZ, Thomas
    • LENZ, Thomas
    • G01N35/00B03C1/02
    • B03C1/288B03C1/0332B03C2201/18B03C2201/22G01N35/0098Y10T436/255
    • A method and device for separating from samples magnetic particles that contain capture compounds on their surfaces. The device includes a magnet; a sheath having an orienting pin adapted to concentrate or direct a magnetic field of the magnet; and a magnetizable plate with a lid hole for receiving a vessel lid of a vessel, the magnetizable plate configured to receive the sheath and position the orienting pin over the vessel lid to separate molecules from a reaction mixture. It can be used to separate magnetic beads from a sample in a reaction vial. In an exemplary method, magnetic beads and a sample are mixed in a reaction vial. During the incubation, molecules from the sample attach to the magnetic particles. The magnetic beads with attached molecules are collected in the lids of the reaction vessel by a magnetic separator device while the reaction mixture (the supernatant) is removed. The separated magnetic particles attracted by a magnet of the device to the lid of the vessel carrying the molecules of interest through affinity-based attachment chemistry are released into a new vessel containing a solution by removal of the separator device without the need for pipettes or liquid handling devices.
    • 用于从样品中分离含有表面上的捕获化合物的磁性颗粒的方法和装置。 该装置包括磁体; 具有适于集中或引导磁体的磁场的定向销的护套; 以及具有用于容纳容器的容器盖的盖孔的可磁化板,所述可磁化板被配置为接收护套并将定向销定位在容器盖上方以将反应混合物分离。 它可以用于从反应瓶中的样品中分离出磁珠。 在示例性方法中,磁珠和样品在反应小瓶中混合。 在孵育期间,来自样品的分子附着到磁性颗粒上。 将带有附着分子的磁珠通过磁选机器收集在反应容器的盖中,同时除去反应混合物(上清液)。 通过基于亲和性的附着化学将装置的磁体吸引到携带有关分子的容器的盖子上的分离的磁性颗粒通过除去分离器装置而释放到含有溶液的新容器中,而不需要移液管或液体 处理设备。