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    • 1. 发明申请
    • Automated laboratory for high-throughput biological assays and RNA interference
    • 用于高通量生物测定和RNA干扰的自动化实验室
    • US20050054083A1
    • 2005-03-10
    • US10837218
    • 2004-04-30
    • Minh VuongTodd BennettJavier FloresBrian GrotDaniel HaleHuy NguyenWalter NilesTuong PhanSteve RodemsJeff StackPeter Coassin
    • Minh VuongTodd BennettJavier FloresBrian GrotDaniel HaleHuy NguyenWalter NilesTuong PhanSteve RodemsJeff StackPeter Coassin
    • B23B27/04C12M1/34C12N20060101
    • G01N35/1074G01N35/028
    • The invention is an automated multiple-purpose, integrated laboratory system comprising interchangeable modular elements for the construction and measurement of biological assays. The functions of the modular elements may include multiwell platform handling, chemical reagent or cell management, volumetric transfer of liquids for assay construction or for recovery of reaction products for analysis, incubation under controlled environmental conditions, measurement of spectrometric signals originating from the assays, processing and analysis of the resulting spectrometric data, and other functions. The modular elements are arranged around a number of robotic elements that deliver plates to different modular elements, transfer plates to groups of modules served by a different robotic element, or other actions necessary in plate handling. Liquid transfer to and from multiwell platforms, necessary for assay construction or for the initiation of physiological events in cells, is partitioned among different modules specialized for transferring nanoliter or smaller volume quantities of chemical concentrates, or microliter quantities of assay reagents, cells, media and other assay constituents. Applications of this invention include the quantitation and analysis of the expression of multiple genes in cells, measurement of multi-gene expression kinetics, analysis of activation or suppression of multiple signal transduction pathways, screening chemical compounds for modulatory effects on multi-gene expression or on signal transduction pathways or on other biochemical networks of cells, or other analytical biological or biochemical assays.
    • 本发明是一种自动多功能综合实验室系统,包括用于构建和测量生物测定的可互换模块化元件。 模块化元件的功能可以包括多井平台处理,化学试剂或细胞管理,用于测定构建的液体的体积转移或用于回收用于分析的反应产物,在受控环境条件下孵育,来自测定的光谱信号的测量,处理 并对所得光谱数据进行分析等功能。 模块化元件围绕若干机器人元件布置,其将板递送到不同的模块元件,将板传递到由不同的机器人元件服务的模块组或板处理中所需的其他动作。 液体转移至多孔平台,用于测定结构或细胞中生理事件发生所必需的多孔平台,在专门用于转移纳升或更小体积量的化学浓缩物或微量的测定试剂,细胞,培养基和 其他检测成分。 本发明的应用包括细胞中多个基因的表达的定量和分析,多基因表达动力学的测定,多重信号转导途径的激活或抑制分析,筛选化合物对多基因表达的调节作用或 信号转导途径或细胞的其他生物化学网络或其他分析生物或生物化学测定。
    • 5. 发明申请
    • Reagent dispenser and dispensing method
    • 试剂分配器和分配方法
    • US20050032241A1
    • 2005-02-10
    • US10789183
    • 2004-02-26
    • Peter CoassinJavier FloresDavid NicolTroy PetersonPhilip SalzmannT. Vuong
    • Peter CoassinJavier FloresDavid NicolTroy PetersonPhilip SalzmannT. Vuong
    • B01D20060101B01J4/00B01L3/02G01N35/10
    • B01L3/0241B01J4/001G01N35/1002G01N35/1009G01N35/1074Y10T436/2575
    • A method and apparatus is disclosed for automated on-the-fly dispensing of reagents. The apparatus includes a detachable reagent dispensing module supported by a support frame. The dispensing module includes a self-contained pressurized fluid delivery subsystem that facilitates efficient attachment and detachment of the module, including pressurized reagent containers and associated accessories arranged such that each reagent container has a discrete fluid path terminating at a corresponding discrete reagent dispensing tip. The dispensing tips are supported in a common dispensing head, and are arranged geometrically such that the centers of the dispensing tips are separated by distances corresponding to relevant dimensions of particular assay plates to be used therewith. Such a geometric arrangement allows for dispensing of multiple reagents substantially simultaneously into multiple corresponding target wells of the assay plate, efficiently and precisely.
    • 公开了用于自动化的试剂分配的方法和装置。 该装置包括由支撑框架支撑的可拆卸的试剂分配模块。 分配模块包括独立的加压流体递送子系统,其有助于模块的有效附接和分离,包括加压的试剂容器和相关联的附件,其布置成使得每个试剂容器具有终止于相应的分立的试剂分配尖端的离散流体路径。 分配尖端被支撑在共同的分配头中,并且几何地布置成使得分配尖端的中心与对应于要与其一起使用的特定测定板的相关尺寸相对应的距离分开。 这种几何布置允许基本上同时将多个试剂分配到分析板的多个相应的目标孔中,并且被有效和准确地分配。
    • 9. 发明申请
    • Method and system for precise dispensation of a liquid
    • 精确分配液体的方法和系统
    • US20050006417A1
    • 2005-01-13
    • US10837221
    • 2004-04-30
    • David NicolBinh NguyenPeter Coassin
    • David NicolBinh NguyenPeter Coassin
    • B01L3/02B67D7/08B67D7/30B67D5/08
    • B01L3/0241B01L3/0275B01L2300/0838B01L2400/0439B01L2400/0487
    • Devices, systems, and methods for the precise dispensation of small volumes of liquids are presented. A fluid microdispenser comprises a liquid-filled tube, an actuator coupled to the tube, and a tip at one end of the tube. When the actuator applies an actuation pressure, a precise volume of liquid is ejected from the orifice of the tip. The orifice is manufactured to control the volume of liquid ejected by each actuation and, therefore, may have a diameter smaller than that of the liquid-filled tube. The invention comprises systems, methods, and devices so that the inner diameter of the liquid-filled tube is decreased (tapered) to that of the orifice so as to maximize transmission to the orifice of the pressure generated by the actuation stimulus. This enables the volume of liquid ejected by each stimulus to be reproducibly controlled by the amplitude of the actuation stimulus.
    • 提出了用于精确分配少量液体的装置,系统和方法。 流体微分配器包括充满液体的管,耦合到管的致动器和管的一端的尖端。 当致动器施加致动压力时,精确体积的液体从尖端的孔喷出。 制造孔口以控制由每次致动喷射的液体的体积,因此可以具有比液体填充管的直径更小的直径。 本发明包括系统,方法和装置,使得充满液体的管的内径减小(锥形)到孔口的内径,从而最大程度地使通过致动刺激产生的压力对孔的传递。 这使得可以通过致动刺激的振幅可再现地控制由每个刺激喷射的液体的体积。