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    • 12. 发明授权
    • Multi-well microfiltration apparatus
    • 多孔微滤装置
    • US6159368A
    • 2000-12-12
    • US182946
    • 1998-10-29
    • Stephen E. MoringKevin S. BodnerJason H. HalseyJon HoshizakiJoseph JacksonAlfred P. MaddenMark F. OldhamMark T. Reed
    • Stephen E. MoringKevin S. BodnerJason H. HalseyJon HoshizakiJoseph JacksonAlfred P. MaddenMark F. OldhamMark T. Reed
    • G01N1/00B01D29/00B01D35/02B01D53/22B01D61/18B01L3/00C12N15/09G01N35/00G01N35/02G01N35/10B01D63/00
    • B01L3/5025B01D61/18B01L3/50255G01N35/0099B01L2400/049G01N2035/00485G01N2035/102G01N35/028G01N35/1074Y10T436/25
    • The present invention provides multi-well plates and column arrays in which samples (e.g., cell lysates containing nucleic acids of interest, such as RNA) can be analyzed and/or processed. In one embodiment, the microfiltration arrangement is a multilayer structure, including (i) a column plate having an array of minicolumns into which samples can be placed, (ii) a discrete filter element disposed in each minicolumn, (iii) a drip-director plate having a corresponding array of drip directors through which filtrate may egress, and (iv) a receiving-well plate having a corresponding array of receiving wells into which filtrate can flow. The invention provides multi-well microfiltration arrangements that are relatively simple to manufacture and that overcome many of the problems associated with is the prior arrangements relating to (i) cross-contamination due to wicking across a common filter sheet or (ii) individual filter elements entrapping sample constituents within substantial dead volumes. Further, the invention provides multi-well microfiltration arrangements that adequately support discrete filter elements disposed in the wells without creating substantial preferential flow. Additionally, the invention provides multi-well microfiltration arrangements that avoid cross-contamination due to aerosol formation, pendent drops and/or splattering. Other disclosed features of the invention provide for the automated covering or heat-sealing of filtrate samples separately collected in an array of wells.
    • 本发明提供了多孔板和柱阵列,其中可以分析和/或处理样品(例如,含有目标核酸的细胞裂解物,例如RNA)。 在一个实施方案中,微滤装置是多层结构,包括(i)具有可以放置样品的小柱阵列的柱板,(ii)设置在每个小柱中的离散过滤元件,(iii)滴液导向器 板具有相应的滴液导向器阵列,滤液可以通过其排出;以及(iv)接收孔板,其具有滤液能够流过的相应阵列的接收孔。 本发明提供了相对简单的多孔微过滤装置,并且克服了许多与以下问题有关的问题:(i)由于穿过公共过滤片芯线而引起的交叉污染或(ii)单个过滤元件 在大量死体积内捕获样品成分。 此外,本发明提供了多孔微过滤装置,其充分地支撑设置在井中的分立的过滤元件,而不产生实质的优先流动。 另外,本发明提供了多孔微量过滤装置,其避免了由于气溶胶形成,悬挂液滴和/或飞溅而导致的交叉污染。 本发明的其它公开的特征提供了分别收集在孔阵列中的滤液样品的自动覆盖或热封。
    • 13. 发明授权
    • Apparatus and method for avoiding cross-contamination due to pendent drops of fluid hanging from discharge conduits
    • 用于避免由排放管道悬挂的流体悬垂液滴引起的交叉污染的装置和方法
    • US06783732B2
    • 2004-08-31
    • US10199743
    • 2002-07-19
    • Alfred P MaddenJon HoshizakiJason H. HalseyStephen E. MoringMark F. OldhamKevin S. Bodner
    • Alfred P MaddenJon HoshizakiJason H. HalseyStephen E. MoringMark F. OldhamKevin S. Bodner
    • G01N3500
    • B01L3/5025B01D61/18B01L3/50255B01L2400/049G01N35/0099G01N35/028G01N35/1074G01N2035/00485G01N2035/102Y10T436/25
    • The present invention provides multi-well plates and column arrays in which samples (e.g., cell lysates containing nucleic acids of interest, such as RNA) can be analyzed and/or processed. In one embodiment, the microfiltration arrangement is a multilayer structure, including (i) a column plate having an array of minicolumns into which samples can be placed, (ii) a discrete filter element disposed in each minicolumn, (iii) a drip-director plate having a corresponding array of drip directors through which filtrate may egress, and (iv) a receiving-well plate having a corresponding array of receiving wells into which filtrate can flow. The invention provides multi-well microfiltration arrangements that are relatively simple to manufacture and that overcome many of the problems associated with the prior arrangements relating to (i) cross-contamination due to wicking across a common filter sheet or (ii) individual filter elements entrapping sample constituents within substantial dead volumes. Further, the invention provides multi-well microfiltration arrangements that adequately support discrete filter elements disposed in the wells without creating substantial preferential flow. Additionally, the invention provides multi-well microfiltration arrangements that avoid cross-contamination due to aerosol formation, pendent drops and/or splattering. Other disclosed features of the invention provide for the automated covering or heat-sealing of filtrate samples separately collected in an array of wells.
    • 本发明提供了多孔板和柱阵列,其中可以分析和/或处理样品(例如,含有目标核酸的细胞裂解物,例如RNA)。 在一个实施方案中,微滤装置是多层结构,包括(i)具有可以放置样品的小柱阵列的柱板,(ii)设置在每个小柱中的离散过滤元件,(iii)滴液导向器 板具有相应的滴液导向器阵列,滤液可以通过其排出;以及(iv)接收孔板,其具有滤液能够流过的相应阵列的接收孔。 本发明提供了相对简单的多孔微量过滤装置,并且克服了许多与先前布置有关的问题,这些问题涉及(i)由于芯毛穿过公共过滤片引起的交叉污染或(ii)截留的单个过滤器元件 大量死体积的样品成分。 此外,本发明提供了多孔微过滤装置,其充分地支撑设置在井中的分立的过滤元件,而不产生实质的优先流动。 此外,本发明提供了多孔微滤装置,其避免了由于气溶胶形成,悬垂滴和/或飞溅而导致的交叉污染。 本发明的其它公开的特征提供了分别收集在孔阵列中的滤液样品的自动覆盖或热封。
    • 14. 发明授权
    • Multi-well microfiltration apparatus and method for avoiding cross-contamination
    • 多孔微滤装置及避免交叉污染的方法
    • US06506343B1
    • 2003-01-14
    • US09565202
    • 2000-05-04
    • Kevin S. BodnerAlfred P. MaddenJason H. HalseyMark F. OldhamStephen E. MoringJon Hoshizaki
    • Kevin S. BodnerAlfred P. MaddenJason H. HalseyMark F. OldhamStephen E. MoringJon Hoshizaki
    • B01D3500
    • B01L3/5025B01D61/18B01L3/50255B01L2400/049G01N35/0099G01N35/028G01N35/1074G01N2035/00485G01N2035/102Y10T436/25
    • The present invention provides multi-well plates and column arrays in which samples (e.g., cell lysates containing nucleic acids of interest, such as RNA) can be analyzed and/or processed. In one embodiment, the microfiltration arrangement is a multilayer structure, including (i) a column plate having an array of minicolumns into which samples can be placed, (ii) a discrete filter element disposed in each minicolumn, (iii) a drip-director plate having a corresponding array of drip directors through which filtrate may egress, and (iv) a receiving-well plate having a corresponding array of receiving wells into which filtrate can flow. The invention provides multi-well microfiltration arrangements that are relatively simple to manufacture and that overcome many of the problems associated with the prior arrangements relating to (i) cross-contamination due to wicking across a common filter sheet or (ii) individual filter elements entrapping sample constituents within substantial dead volumes. Further, the invention provides multi-well microfiltration arrangements that adequately support discrete filter elements disposed in the wells without creating substantial preferential flow. Additionally, the invention provides multi-well microfiltration arrangements that avoid cross-contamination due to aerosol formation, pendent drops and/or splattering. Other disclosed features of the invention provide for the automated covering or heat-sealing of filtrate samples separately collected in an array of wells.
    • 本发明提供了多孔板和柱阵列,其中可以分析和/或处理样品(例如,含有目标核酸的细胞裂解物,例如RNA)。 在一个实施方案中,微滤装置是多层结构,包括(i)具有可以放置样品的小柱阵列的柱板,(ii)设置在每个小柱中的离散过滤元件,(iii)滴液导向器 板具有相应的滴液导向器阵列,滤液可以通过其排出;以及(iv)接收孔板,其具有滤液能够流过的相应阵列的接收孔。 本发明提供了相对简单的多孔微量过滤装置,并且克服了许多与先前布置有关的问题,这些问题涉及(i)由于芯毛穿过公共过滤片引起的交叉污染或(ii)截留的单个过滤器元件 大量死体积的样品成分。 此外,本发明提供了多孔微过滤装置,其充分地支撑设置在井中的分立的过滤元件,而不产生实质的优先流动。 此外,本发明提供了多孔微滤装置,其避免了由于气溶胶形成,悬垂滴和/或飞溅而导致的交叉污染。 本发明的其它公开的特征提供了分别收集在孔阵列中的滤液样品的自动覆盖或热封。
    • 15. 发明授权
    • Multi-well microfiltration apparatus
    • 多孔微滤装置
    • US06338802B1
    • 2002-01-15
    • US09565566
    • 2000-05-04
    • Kevin S. BodnerAlfred P. MaddenJoseph JacksonJason H. HalseyMark T. ReedWard FryeMark F. OldhamStephen E. MoringJon Hoshizaki
    • Kevin S. BodnerAlfred P. MaddenJoseph JacksonJason H. HalseyMark T. ReedWard FryeMark F. OldhamStephen E. MoringJon Hoshizaki
    • B01D6100
    • B01L3/5025B01D61/18B01L3/50255B01L2400/049G01N35/0099G01N35/028G01N35/1074G01N2035/00485G01N2035/102Y10T436/25
    • The present invention provides multi-well plates and column arrays in which samples (e.g., cell lysates containing nucleic acids of interest, such as RNA) can be analyzed and/or processed. In one embodiment, the microfiltration arrangement is a multilayer structure, including (i) a column plate having an array of minicolumns into which samples can be placed, (ii) a discrete filter element disposed in each minicolumn, (iii) a drip-director plate having a corresponding array of drip directors through which filtrate may egress, and (iv) a receiving-well plate having a corresponding array of receiving wells into which filtrate can flow. The invention provides multi-well microfiltration arrangements that are relatively simple to manufacture and that overcome many of the problems associated with the prior arrangements relating to (i) cross-contamination due to wicking across a common filter sheet or (ii) individual filter elements entrapping sample constituents within substantial dead volumes. Further, the invention provides multi-well microfiltration arrangements that adequately support discrete filter elements disposed in the wells without creating substantial preferential flow. Additionally, the invention provides multi-well microfiltration arrangements that avoid cross-contamination due to aerosol formation, pendent drops and/or splattering. Other disclosed features of the invention provide for the automated covering or heat-sealing of filtrate samples separately collected in an array of wells.
    • 本发明提供了多孔板和柱阵列,其中可以分析和/或处理样品(例如,含有目标核酸的细胞裂解物,例如RNA)。 在一个实施方案中,微滤装置是多层结构,包括(i)具有可以放置样品的小柱阵列的柱板,(ii)设置在每个小柱中的离散过滤元件,(iii)滴液导向器 板具有相应的滴液导向器阵列,滤液可以通过其排出;以及(iv)接收孔板,其具有滤液能够流过的相应阵列的接收孔。 本发明提供了相对简单的多孔微量过滤装置,并且克服了许多与先前布置有关的问题,这些问题涉及(i)由于芯毛穿过公共过滤片引起的交叉污染或(ii)截留的单个过滤器元件 大量死体积的样品成分。 此外,本发明提供了多孔微过滤装置,其充分地支撑设置在井中的分立的过滤元件,而不产生实质的优先流动。 此外,本发明提供了多孔微滤装置,其避免了由于气溶胶形成,悬垂滴和/或飞溅而导致的交叉污染。 本发明的其它公开的特征提供了分别收集在孔阵列中的滤液样品的自动覆盖或热封。
    • 19. 发明授权
    • Pipette-loaded bioassay assembly for detecting molecular or cellular events
    • 用于检测分子或细胞事件的移液器生物测定组件
    • US06461808B1
    • 2002-10-08
    • US09880746
    • 2001-06-12
    • Kevin S. BodnerAndrew P. Sandham
    • Kevin S. BodnerAndrew P. Sandham
    • C12Q100
    • G01N22/00G01N33/54373Y10T436/11Y10T436/119163
    • A pipette-loaded bioassay includes a measurement probe and a pipette tip. The measurement probe includes a probe head configured to launch an incident test signal and a connecting end configured to receive the incident test signal from a signal source. The pipette tip includes a sample interrogation region which is electromagnetically coupled to the probe head, the sample interrogation region configured to retain a plug of sample solution and constructed from a material which is substantially transparent to the incident test signal. The incident test signal electromagnetically couples through the sample interrogation region and to the molecular or cellular events occurring within the sample solution. The interaction of the incident test signal with the molecular or cellular events produces a modulated test signal which can be recovered and used to identify the molecular or cellular events occurring in a subsequently tested sample.
    • 移液管装载的生物测定包括测量探针和移液管尖。 测量探头包括被配置为发射入射测试信号的探头和被配置为从信号源接收入射测试信号的连接端。 移液管尖端包括电磁耦合到探针头的样品询问区域,样品询问区域被配置为保持样品溶液塞并由对入射的测试信号基本透明的材料构成。 事件测试信号通过样品询问区域电磁耦合到样品溶液中发生的分子或细胞事件。 事件测试信号与分子或细胞事件的相互作用产生调制的测试信号,其可以被回收并用于鉴定随后测试的样品中发生的分子或细胞事件。