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    • 2. 发明申请
    • Waveguide plate and process for its production and microtitre plate
    • 波导板及其生产工艺及微量滴定板
    • US20060008206A1
    • 2006-01-12
    • US11208765
    • 2005-08-23
    • Bernd MaisenhoelderJohannes EdlingerClaus Heine-KempkensMichael PawlakGert Duveneck
    • Bernd MaisenhoelderJohannes EdlingerClaus Heine-KempkensMichael PawlakGert Duveneck
    • G02B6/34
    • G01N21/7743G01N21/552G01N21/648G02B6/124G02B6/136G02B6/34G02B2006/12107G02B2006/12147
    • A waveguide plate and a process for making the waveguide plate with a plate-like glass substrate (1), carrying a waveguiding layer (2), with at least one coupling grating on the surface carrying said waveguiding layer (2), which coupling grating is formed as a grating of lines with a period between 150 nm and 1000 nm, the extension of said grating being at least 5 cm with lines parallel to one another, wherein the coupling angle (θ) varies by not more than 0.1°/cm along a line of said grating and wherein the absolute value of the deviation of the coupling angle (θ) on said waveguide plate, from a predefined desired value, does not exceed 0.5°. The deviation from the average value of the coupling angle does not exceed 0.3°, preferably not 0.15° on the whole waveguide plate. The waveguide plate is suitable as part of a sensor platform and of an arrangement of sample compartments for chemo-and bioanalytical investigations in order to produce a coupling grating formed as a line grating with a grating period between 100 nm and 2500 nm.
    • 波导板和用于制造具有板状玻璃基板(1)的波导板的工艺,其在承载所述波导层(2)的表面上具有带有至少一个耦合光栅的波导层(2),该耦合光栅 形成为具有150nm和1000nm之间的周期的线的光栅,所述光栅的延伸至少5cm,线彼此平行,其中耦合角(θ)变化不超过0.1°/ cm 沿着所述光栅的线,并且其中所述波导板上的耦合角(θ)与预定的期望值的偏差的绝对值不超过0.5°。 与整个波导板的耦合角度的平均值的偏差不超过0.3°,最好不超过0.15°。 波导板适合作为传感器平台的一部分和用于化学和生物分析研究的样品室的布置的一部分,以便产生形成为具有在100nm和2500nm之间的光栅周期的线光栅的耦合光栅。
    • 3. 发明授权
    • Waveguide plate and process for its production and microtitre plate
    • 波导板及其生产工艺及微量滴定板
    • US07215850B2
    • 2007-05-08
    • US11208765
    • 2005-08-23
    • Bernd MaisenhoelderJohannes EdlingerClaus HeineMichael PawlakGert Duveneck
    • Bernd MaisenhoelderJohannes EdlingerClaus HeineMichael PawlakGert Duveneck
    • G02B6/34
    • G01N21/7743G01N21/552G01N21/648G02B6/124G02B6/136G02B6/34G02B2006/12107G02B2006/12147
    • A waveguide plate and a process for making the waveguide plate with a plate-like glass substrate (1), carrying a waveguiding layer (2), with at least one coupling grating on the surface carrying said waveguiding layer (2), which coupling grating is formed as a grating of lines with a period between 150 nm and 1000 nm, the extension of said grating being at least 5 cm with lines parallel to one another, wherein the coupling angle (θ) varies by not more than 0.1°/cm along a line of said grating and wherein the absolute value of the deviation of the coupling angle (θ) on said waveguide plate, from a predefined desired value, does not exceed 0.5°. The deviation from the average value of the coupling angle does not exceed 0.3°, preferably not 0.15° on the whole waveguide plate. The waveguide plate is suitable as part of a sensor platform and of an arrangement of sample compartments for chemo-and bioanalytical investigations in order to produce a coupling grating formed as a line grating with a grating period between 100 nm and 2500 nm.
    • 波导板和用于制造具有板状玻璃基板(1)的波导板的工艺,其在承载所述波导层(2)的表面上具有带有至少一个耦合光栅的波导层(2),该耦合光栅 形成为具有150nm和1000nm之间的周期的线的光栅,所述光栅的延伸至少5cm,线彼此平行,其中耦合角(θ)变化不超过0.1°/ cm 沿着所述光栅的线,并且其中所述波导板上的耦合角(θ)与预定的期望值的偏差的绝对值不超过0.5°。 与整个波导板的耦合角度的平均值的偏差不超过0.3°,最好不超过0.15°。 波导板适合作为传感器平台的一部分和用于化学和生物分析研究的样品室的布置的一部分,以便产生形成为具有在100nm和2500nm之间的光栅周期的线光栅的耦合光栅。
    • 5. 发明申请
    • Kit for assay development and serial analysis
    • 用于测定开发和连续分析的试剂盒
    • US20050163659A1
    • 2005-07-28
    • US10514166
    • 2003-05-06
    • Gert DuveneckPeter OroszlanMichael Pawlak
    • Gert DuveneckPeter OroszlanMichael Pawlak
    • G01N33/543G01N21/00
    • G01N33/54353G01N33/54366
    • The invention relates to a kit for assay development and for carrying out a plurality of analyses, comprising a carrier substrate and a placement body jointly forming an arrangement of a plurality of sample compartments comprising said carrier substrate as a base plate, in addition to a plurality of immobilized binding partners for the detection of one or more analytes in one or more samples in a bioaffinity assay, said binding partners being arranged and immobilized on the carrier substrate inside the sample containers always in two-dimensional arrays of discrete measuring areas, wherein always at least one measuring area of an array or a partial surface inside an array or sample compartment, respectively, is provided on the carrier substrate for referencing purposes, and the surface density of the immobilized binding partners, in relation to the surface of the measurement areas, is less than the surface density of a full, i.e. extensive, monolayer of said binding partners. The composition of the inventive kit is such that, surprisingly, it enables a full series of measurements to be carried out on an individual carrier substrate. The invention also relates to an analytical system wherein the inventive kit is used, and to analytical detection methods based thereon and the use thereof.
    • 本发明涉及用于测定开发和用于进行多个分析的试剂盒,其包括载体基底和放置体,该载体基底和放置体除了多个之外,共同形成包括所述载体基底作为基板的多个样品室的布置 用于在生物亲和力测定中检测一个或多个样品中的一种或多种分析物的固定化结合配偶体,所述结合伙伴被布置和固定在样品容器内的载体基质上,总是在离散测量区域的二维阵列中,其中总是 为了参考目的,在载体基底上分别提供阵列或样品室内的阵列或部分表面的至少一个测量区域,并且固定的结合物的表面密度相对于测量区域的表面 小于所述结合配偶体的完整的,即广泛的单层的表面密度。 本发明的试剂盒的组成使得令人惊奇的是,它使得能够在单个载体基底上进行全系列的测量。 本发明还涉及其中使用本发明的试剂盒的分析系统,以及基于其的分析检测方法及其用途。
    • 7. 发明申请
    • Analytical platform and detection method with the analytes to be determined in a sample as immobilized specific binding partners
    • 分析平台和检测方法与样品中待测定的分析物作为固定化的特异性结合配偶体
    • US20050059014A1
    • 2005-03-17
    • US10653386
    • 2003-09-03
    • Michael PawlakEginhard SchickPeter Oroszlan
    • Michael PawlakEginhard SchickPeter Oroszlan
    • G01N33/566C12M1/00C12M1/34C12Q1/68G01N21/76G01N33/53G01N33/543G01N33/553
    • G01N33/54353G01N33/54373
    • The present invention is related to an analytical platform and a method performed therewith for the analysis of a multitude of “nature-identical” samples for analytes which are contained therein and are of biological relevance as binding partners in specific binding reactions, wherein said samples or dilutions of said samples of the same relative molecular composition as the original samples, with the analytes to be determined contained therein, as a first plurality of specific binding partners, are deposited in discrete measurement areas in at least one one- or two-dimensional array of measurement areas on an evanescent field sensor platform as a solid support without a change in the relative molecular composition, compared with the original relative molecular composition of the sample, one or more tracer compounds as a second plurality of specific binding partners, for the specific determination of analytes out of the first plurality of specific binding partners contained in the samples, are brought into contact with the samples deposited in said discrete measurement areas in a single step or multiple steps of a specific binding reaction, changes in opto-electronic signals, resulting from the binding of tracer compounds to analytes contained in the samples in discrete measurement areas or to specific binding partners bound to the analytes contained in the measurement areas in the evanescent field of the evanescent field sensor platform are measured laterally resolved, and the presence of the analytes to be specifically detected is determined qualitatively and/or quantitatively from the relative amount of the changes in said opto-electronic signals from the corresponding measurement areas.
    • 本发明涉及一种分析平台及其分析方法,用于分析大量与分析物相似的“自然相同”的样品,其中所含的分析物样品在其中包含并具有生物相关性,作为特异性结合反应中的结合配偶体,其中所述样品或 与原始样品相同的相对分子组成的所述样品与其中包含的待测定的分析物作为第一多个特异性结合配偶体的稀释沉积在至少一个一维或二维阵列的离散测量区域中 相对于样品的原始相对分子组成,作为第二多个特异性结合配偶体的一个或多个示踪剂化合物,作为固体支持物的ev逝场传感器平台上的测量区域作​​为固体支持物而没有相对分子组成的变化 确定包含在第一个多个具体约束伙伴中的分析物 在与单独的步骤或特定结合反应的多个步骤中,沉积在所述离散测量区域中的样品与示踪剂化合物与样品中包含的分析物的离散性的光电子信号的变化相接触 测量区域或与消逝场传感器平台的消逝场中测量区域中包含的分析物结合的特异性结合配体进行横向分辨测定,并且特异性检测的分析物的存在是从定性和/或定量的 相应测量区域的所述光电信号的相对变化量。