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    • 2. 发明授权
    • Electrophoretic nucleic acid purification method
    • 电泳核酸纯化方法
    • US6146511A
    • 2000-11-14
    • US016531
    • 1998-01-30
    • Gary SlaterJ. William EfcavitchGuy DrouinPascal MayerJean RousseauHong Yan ZhouClaudia ChiesaRobert RuhfelRoger O'Neill
    • Gary SlaterJ. William EfcavitchGuy DrouinPascal MayerJean RousseauHong Yan ZhouClaudia ChiesaRobert RuhfelRoger O'Neill
    • B01D57/02B03C5/00C07H21/02C07H21/04C12N15/09C12N15/10G01N27/447G01N27/26
    • C12N15/101G01N27/447
    • An electrophoretic method for purifying a nucleic acid sample is disclosed. The method generally comprises the steps of (1) providing a nucleic acid sample comprising a desired nucleic acid and one or more contaminants, (2) providing an electrophoresis matrix having a loading well and a recovery well formed therein, (3) placing the nucleic acid sample into the loading well, (4) performing a first electrophoresis comprising electrophoresing the nucleic acid sample for a first time effective to transport the desired nucleic acid out of the loading well and into the electrophoresis matrix; and (5) performing a second electrophoresis comprising electrophoresing the nucleic acid sample for a second time effective to transport the desired nucleic acid out of the electrophoresis matrix and into the recovery well. According to the method, the first and second electrophoresis steps are effective to substantially reduce the concentration of contaminants relative to the concentration of desired nucleic acid in the nucleic acid sample, thereby producing a purified nucleic acid. In the method, the loading and recovery wells may be the same or different, and the electric fields may be DC or alternating. Also disclosed is a preparative electrophoresis method employing an alternating electrical field.
    • 公开了一种用于纯化核酸样品的电泳方法。 该方法通常包括以下步骤:(1)提供包含所需核酸和一种或多种污染物的核酸样品,(2)提供具有载体孔的电泳基质和其中形成的回收孔,(3) (4)进行第一次电泳,其中包括使核酸样品首次有效地将所需核酸转运到载体孔中并进入电泳基质中; 包括进行第二次电泳,其包括将核酸样品电泳第二次,有效将所需核酸转运到电泳基质内并进入回收井。 根据该方法,第一和第二电泳步骤对于相对于核酸样品中所需核酸浓度显着降低污染物的浓度是有效的,从而产生纯化的核酸。 在该方法中,加载和回收井可以相同或不同,并且电场可以是直流或交替的。 还公开了采用交流电场的制备电泳方法。
    • 3. 发明授权
    • Ion source and accelerator for improved dynamic range and mass selection
in a time of flight mass spectrometer
    • 离子源和加速器,用于在飞行时间质谱仪中改善动态范围和质量选择
    • US06080985A
    • 2000-06-27
    • US940576
    • 1997-09-30
    • David G. WelkieDar Bahatt
    • David G. WelkieDar Bahatt
    • G01N27/62G01N30/72H01J49/40
    • H01J49/147H01J49/40
    • In a mass spectrometer, an ion source in combination with an accelerator comprising an electron source, a gate electrode constructed so as to block the flow of electrons from the source when a potential is applied, a sample introduction means for transporting carrier gas containing analytes, an ionization chamber positioned to receive the flow of electrons and the carrier gas, wherein the flow of electrons ionizes the carrier gas, a pulsed accelerator, and an ion transfer region situated so that the ionized carrier gas travels from the ionization chamber, through the ion transfer region and into an accelerator. The gate electrode and the pulsed accelerator are controlled in a timed relationship to control the amount off carrier gas being ionized and traveling into the accelerator between accelerator pulses so as to improve the dynamic range of the mass spectrometer and to selectively accelerate a particular mass range.
    • 在质谱仪中,与包含电子源的加速器组合的离子源,构成为当施加电位时阻挡电子从源极流动的栅电极,用于输送含有分析物的载气的样品引入装置, 定位成接收电子流和载气的电离室,其中电子流使载气离子化,脉冲加速器和离子转移区域,使离子化的载气从电离室通过离子 转移区域并进入加速器。 以定时关系控制栅电极和脉冲加速器,以控制离子化的载气量和加速器脉冲之间的加速器中的量,从而改善质谱仪的动态范围并选择性地加速特定的质量范围。
    • 8. 发明授权
    • Detection of specific sequences in nucleic acids
    • 检测核酸中的特定序列
    • US5962223A
    • 1999-10-05
    • US574826
    • 1995-12-19
    • Norman M. WhiteleyMichael W. HunkapillerAlexander N. Glazer
    • Norman M. WhiteleyMichael W. HunkapillerAlexander N. Glazer
    • C12Q1/68C07H21/04C12P19/34
    • C12Q1/6862C12Q1/6813C12Q1/6827Y10S435/803Y10S435/81
    • The invention provides a method for diagnosis of genetic abnormalities or other genetic conditions which can be readily automated. The method is used to determine the presence or absence of a target sequence in a sample of denatured nucleic acid and entails hybridizing the sample with a probe complementary to a diagnostic portion of the target sequence (the diagnostic probe), and with a probe complementary to a nucleotide sequence contiguous with the diagnostic portion (the contiguous probe), under conditions wherein the diagnostic probe remains bound substantially only to the sample nucleic acid containing the target sequence. The diagnostic probe and contiguous probe are then covalently attached to yield a target probe which is complementary to the target sequence, and the probes which are not attached are removed. In the preferred mode, one of the probes is labeled so that the presence or absence of the target sequence can then be tested by melting the sample nucleic acid-target probe duplex, eluting the dissociated target probe, and testing for the label. In another embodiment, the testing is accomplished without first removing probes not covalently attached, by attaching a hook to the probe that is not labeled, so that the labeled target probe may be recovered by catching the hook. In both instances, the presence of both the diagnostic probe and the contiguous probe is required for the label to appear in the assay. The above method is then applied to the detection of genetic diseases.
    • 本发明提供了一种用于诊断遗传异常或其他遗传病症的方法,其可以容易地自动化。 该方法用于确定变性核酸样品中靶序列的存在或不存在,并且需要将样品与与靶序列(诊断探针)的诊断部分互补的探针杂交,并且与探针互补 在诊断探针保持基本上仅与包含靶序列的样品核酸结合的条件下,与诊断部分(连续探针)连续的核苷酸序列。 然后将诊断探针和连续探针共价连接以产生与靶序列互补的靶探针,并且除去未连接的探针。 在优选模式中,其中一个探针被标记,使得靶序列的存在或不存在可以通过熔化样品核酸 - 靶标探针双链体,洗脱解离的靶标探针和测试标签来测试。 在另一个实施方案中,通过将钩连接到未标记的探针上,而无需首先除去未共价连接的探针,从而可以通过捕捉钩来回收标记的靶探针而进行测试。 在这两种情况下,诊断探针和连续探针的存在是标签出现在测定中所必需的。 然后将上述方法应用于遗传疾病的检测。
    • 10. 发明授权
    • Method and apparatus for reducing the distortion of a sample zone
eluting from a capillary electrophoresis capillary
    • 用于减少从毛细管电泳毛细管洗脱的样品区变形的方法和装置
    • US5833826A
    • 1998-11-10
    • US766009
    • 1996-12-13
    • Eric S. Nordman
    • Eric S. Nordman
    • G01N27/447G01N27/26
    • G01N27/44717
    • An electrophoresis system including means for reducing the distortion of a sample zone eluting from a capillary electrophoresis separation capillary is disclosed. The system includes one or more separation capillaries, each separation capillary having an inlet end and an outlet end; a first electrode in electrical communication with the inlet ends of the separation capillaries; a second electrode in electrical communication with the outlet ends of the separation capillaries; and one or more focusing electrodes in electrical communication with the outlet ends of the separation capillaries. In operation, the voltage of each of the electrodes is adjusted such that (i) the sample zone is transported from the inlet end to the outlet end of the separation capillaries and (ii) the distortion of the sample zone eluting from the separation capillaries is reduced.
    • 公开了一种包括用于减少从毛细管电泳分离毛细管洗脱的样品区变形的装置的电泳系统。 该系统包括一个或多个分离毛细管,每个分离毛细管具有入口端和出口端; 与分离毛细管的入口端电连通的第一电极; 与分离毛细管的出口端电连通的第二电极; 以及一个或多个聚焦电极与分离毛细管的出口端电连通。 在操作中,调节每个电极的电压,使得(i)样品区域从分离毛细管的入口端输出到出口端,和(ii)从分离毛​​细管洗脱的样品区域的变形是 减少