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    • 3. 发明授权
    • Systems and methods for characterization of molecules
    • 表征分子的系统和方法
    • US08099242B2
    • 2012-01-17
    • US11818911
    • 2007-06-15
    • Arnon ChaitBoris Y. Zaslavsky
    • Arnon ChaitBoris Y. Zaslavsky
    • G01N33/48G01N31/00C12Q1/00
    • G01N33/57434G01N33/53G01N33/543G01N33/68G01N33/6803G01N33/6842G01N33/6845G01N2333/96441G01N2333/96455G06F19/00G06F19/12G06F19/18G06F19/704G16H50/50
    • The present invention generally provides systems and methods for the detection, identification, or characterization of differences between properties or behavior of corresponding species in two or more mixtures comprised of molecules, including biomolecules and/or molecules able to interact with biomolecules, using techniques such as partitioning. The experimental conditions established as distinguishing between the mixtures of the molecules using the systems and methods of the invention can also be used, in some cases, for further fractionation and/or characterization of the biomolecules and/or other molecules, using techniques such as single-step or multiple-step extraction, and/or by liquid-liquid partition chromatography. The methods could also be used for discovering and identifying markers associated with specific diagnostics, and can be used for screening for such markers once discovered and identified during diagnostics screening.
    • 本发明通常提供用于检测,鉴定或表征两种或更多种由分子组成的混合物的性质或行为之间的差异的系统和方法,包括生物分子和/或能够与生物分子相互作用的分子,使用诸如 分区 使用本发明的系统和方法区分分子的混合物所建立的实验条件也可以在某些情况下用于进一步分级和/或表征生物分子和/或其他分子,使用诸如单一 - 步骤或多步萃取,和/或通过液 - 液分配色谱法。 该方法还可用于发现和识别与特定诊断相关的标记,并且可以在诊断筛选期间发现和鉴定后用于筛选此类标记物。
    • 4. 发明授权
    • Systems and methods involving data patterns such as spectral biomarkers
    • 涉及数据模式如光谱生物标志物的系统和方法
    • US08437964B2
    • 2013-05-07
    • US13214343
    • 2011-08-22
    • Arnon ChaitBoris Y. Zaslavsky
    • Arnon ChaitBoris Y. Zaslavsky
    • G01N33/48
    • G01N33/6848
    • The present invention is generally related to the separation, fractionation, and/or characterization of molecules and/or biomolecules in one or more mixtures. After fractionation, different phases of a partitioning system can be analyzed via an analytical technique such as spectral analysis, chromatography, or the like, to produce a spectrum or other symbolic representation of the species after fractionation, and the spectra of the various fractions/phases compared to define a comparative spectrum as a marker or otherwise providing information about the sample, including such information that is independent of the original level of abundance of the molecules in the mixture. Comparative spectra of various samples can be compared to each other and/or to controls or reference spectra and/or comparative spectra to determine a variety of information. In some embodiments, the methods can be used for discovering and/or identifying patterns in a mixture of species and/or corresponding patterns of species in a second mixture, where each mixture of species originates from biological systems with different physiological conditions as markers associated with specific diagnostics, and can be used for screening for such markers once discovered and identified during diagnostics screening.
    • 本发明通常涉及一种或多种混合物中分子和/或生物分子的分离,分级和/或表征。 分馏后,分析系统的不同阶段可以通过分析技术(如光谱分析,色谱法等)进行分析,以产生分级后的物种的光谱或其他符号表示,以及各种馏分/相的光谱 比较将比较光谱定义为标记物或以其他方式提供关于样品的信息,包括独立于混合物中分子丰度的原始水平的信息。 可以将各种样品的比较光谱彼此进行比较和/或控制或参考光谱和/或比较光谱以确定各种信息。 在一些实施方案中,所述方法可用于在第二混合物中发现和/或识别物种和/或物种的相应模式的混合物中的模式,其中每种物质混合物源自具有不同生理条件的生物系统作为与 特异性诊断,并且可以用于在诊断筛选期间发现和鉴定后筛选这些标记物。
    • 6. 发明授权
    • Characterization of molecules
    • 分子的表征
    • US08211714B2
    • 2012-07-03
    • US13110345
    • 2011-05-18
    • Arnon ChaitBoris Y. Zaslavsky
    • Arnon ChaitBoris Y. Zaslavsky
    • G01N33/536
    • G01N33/5375G01N33/53G01N33/68Y10T436/10Y10T436/105831
    • The invention involves obtaining signatures of species (including chemical, biological, or biochemical molecules) and/or signatures of interactions between species and using them to characterize species, characterize interactions, and/or identify species that could be useful in a variety of settings. Signatures can be obtained using aqueous multi-phase partitioning and can be used to predict molecular interactions for applications such as drug discovery. A plurality of aqueous multi-phase partitioning arrangements can define an overall system providing an information-intensive signature, maximizing precision and sensitivity.
    • 本发明涉及获得物种(包括化学,生物或生物化学分子)的签名和/或物种之间的相互作用的签名,并使用它们来表征物种,表征相互作用,和/或识别可在各种设置中有用的物种。 可以使用水性多相分配获得签名,并且可以用于预测用于药物发现的应用的分子相互作用。 多个水性多相分配装置可以定义提供信息密集型签名的整体系统,从而使精度和灵敏度最大化。
    • 7. 发明申请
    • SYSTEMS AND METHODS INVOLVING DATA PATTERNS SUCH AS SPECTRAL BIOMARKERS
    • 涉及数据模式的系统和方法如光谱生物标志物
    • US20110297824A1
    • 2011-12-08
    • US13214343
    • 2011-08-22
    • Arnon ChaitBoris Y. Zaslavsky
    • Arnon ChaitBoris Y. Zaslavsky
    • H01J49/26
    • G01N33/6848
    • The present invention is generally related to the separation, fractionation, and/or characterization of molecules and/or biomolecules in one or more mixtures. After fractionation, different phases of a partitioning system can be analyzed via an analytical technique such as spectral analysis, chromatography, or the like, to produce a spectrum or other symbolic representation of the species after fractionation, and the spectra of the various fractions/phases compared to define a comparative spectrum as a marker or otherwise providing information about the sample, including such information that is independent of the original level of abundance of the molecules in the mixture. Comparative spectra of various samples can be compared to each other and/or to controls or reference spectra and/or comparative spectra to determine a variety of information. In some embodiments, the methods can be used for discovering and/or identifying patterns in a mixture of species and/or corresponding patterns of species in a second mixture, where each mixture of species originates from biological systems with different physiological conditions as markers associated with specific diagnostics, and can be used for screening for such markers once discovered and identified during diagnostics screening.
    • 本发明通常涉及一种或多种混合物中分子和/或生物分子的分离,分级和/或表征。 分馏后,分析系统的不同阶段可以通过分析技术(如光谱分析,色谱法等)进行分析,以产生分级后的物种的光谱或其他符号表示,以及各种馏分/相的光谱 比较将比较光谱定义为标记物或以其他方式提供关于样品的信息,包括独立于混合物中分子丰度的原始水平的信息。 可以将各种样品的比较光谱彼此进行比较和/或控制或参考光谱和/或比较光谱以确定各种信息。 在一些实施方案中,所述方法可用于在第二混合物中发现和/或识别物种和/或物种的相应模式的混合物中的模式,其中每种物质混合物源自具有不同生理条件的生物系统作为与 特异性诊断,并且可以用于在诊断筛选期间发现和鉴定后筛选这些标记物。
    • 8. 发明授权
    • Systems and methods involving data patterns such as spectral biomarkers
    • 涉及数据模式如光谱生物标志物的系统和方法
    • US08041513B2
    • 2011-10-18
    • US11641611
    • 2006-12-19
    • Arnon ChaitBoris Y. Zaslavsky
    • Arnon ChaitBoris Y. Zaslavsky
    • G01N33/48
    • G01N33/6848
    • The present invention is generally related to the separation, fractionation, and/or characterization of molecules and/or biomolecules in one or more mixtures. After fractionation, different phases of a partitioning system can be analyzed via an analytical technique such as spectral analysis, chromatography, or the like, to produce a spectrum or other symbolic representation of the species after fractionation, and the spectra of the various fractions/phases compared to define a comparative spectrum as a marker or otherwise providing information about the sample, including such information that is independent of the original level of abundance of the molecules in the mixture. Comparative spectra of various samples can be compared to each other and/or to controls or reference spectra and/or comparative spectra to determine a variety of information. In some embodiments, the methods can be used for discovering and/or identifying patterns in a mixture of species and/or corresponding patterns of species in a second mixture, where each mixture of species originates from biological systems with different physiological conditions as markers associated with specific diagnostics, and can be used for screening for such markers once discovered and identified during diagnostics screening.
    • 本发明通常涉及一种或多种混合物中分子和/或生物分子的分离,分级和/或表征。 分馏后,分析系统的不同阶段可以通过分析技术(如光谱分析,色谱法等)进行分析,以产生分级后的物种的光谱或其他符号表示,以及各种馏分/相的光谱 将比较光谱定义为标记物或以其他方式提供关于样品的信息,包括独立于混合物中分子丰度的原始水平的信息。 可以将各种样品的比较光谱彼此进行比较和/或控制或参考光谱和/或比较光谱以确定各种信息。 在一些实施方案中,所述方法可用于在第二混合物中发现和/或识别物种和/或物种的相应模式的混合物中的模式,其中每种物质混合物源自具有不同生理条件的生物系统作为与 特异性诊断,并且可以用于在诊断筛选期间发现和鉴定后筛选这些标记物。