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    • 3. 发明授权
    • Ion-selective quantum dots
    • 离子选择量子点
    • US08114662B2
    • 2012-02-14
    • US11888663
    • 2007-07-31
    • Heather A. ClarkDaniel I. HarjesJohn M. Dubach
    • Heather A. ClarkDaniel I. HarjesJohn M. Dubach
    • G01N33/53C12M1/34B82B3/00C12Q1/02C12Q1/20
    • G01N33/588B82Y5/00B82Y15/00G01N33/5005G01N33/54313G01N33/6872G01N33/84G01N2333/726Y10S977/774
    • The invention provides ion-selective sensors comprising quantum dots capable of selectively measuring ions, e.g., Na+, K+, Cl−, etc., in various environments, including in the cytosol of a living cell. Quantum dots are attractive probes for microscopy due to their photophysical advantages over fluorescent dyes, including prolonged photostability, brightness and quantum efficiency. In certain embodiments, a sensor comprises one or more quantum dots, a pH-sensitive dye, and optionally an ion-selective component such as an ionophore. These elements may, for example, be disposed in a polymer matrix. In certain embodiments, the sensors may detect ionic analytes by selective ion extraction by the polymer, thereby inducing a pH change within the sensor which in turn changes the absorbance of the pH-sensitive dye. The change of absorbance may in turn attenuate the intensity of detectable emissions, e.g., fluorescence, from the quantum dot by directly absorbing its fluorescence emission.
    • 本发明提供了离子选择性传感器,其包括量子点,其能够选择性地测量各种环境中的离子,例如Na +,K +,Cl-等,包括在活细胞的胞质溶胶中。 量子点是显微镜的有吸引力的探针,因为它们比荧光染料的光物理优点,包括延长的光稳定性,亮度和量子效率。 在某些实施方案中,传感器包括一个或多个量子点,pH敏感染料和任选的离子选择性组分,例如离子载体。 这些元素可以例如被设置在聚合物基质中。 在某些实施方案中,传感器可以通过聚合物的选择性离子提取来检测离子分析物,从而在传感器内引起pH变化,从而改变pH敏感染料的吸光度。 吸光度的变化可以通过直接吸收其荧光发射来衰减来自量子点的可检测发射强度,例如荧光强度。
    • 4. 发明申请
    • Intracellular nanosensors and methods for their introduction into cells
    • 细胞内纳米传感器及其引入细胞的方法
    • US20090142274A1
    • 2009-06-04
    • US12287937
    • 2008-10-14
    • Heather A. ClarkDaniel I. HarjesJohn M. Dubach
    • Heather A. ClarkDaniel I. HarjesJohn M. Dubach
    • A61K49/00C12Q1/02C12M1/00G01N33/53
    • G01N33/588B82Y5/00B82Y15/00G01N21/6458G01N27/3335G01N2021/6439
    • The invention provides ion-selective sensors capable of selectively measuring ions, e.g., Na+, K+, Cl−, etc., in the cytosol of a single living cell. The sensor comprises one or more quantum dots or a fluorescent dye, a pH-sensitive dye, and optionally an ion-selective component such as an ionophore. These elements may, for example, be disposed in a polymer matrix. The polymer matrix comprises an internalizing moiety which enables the sensor to localize within the cytosol of a cell. The internalizing moiety comprises a small molecule or peptide such as an amine, antepennepedia, mastoparan, or melittin that react under acidic conditions to release a sensor from the confines of a endosome. Once in the cytosol the sensors may detect ionic analytes by selective ion extraction by the polymer, thereby inducing a pH change within the sensor which in turn changes the absorbance of the pH-sensitive dye. The change of absorbance may in turn attenuate the intensity of detectable emissions, e.g., fluorescence, from the quantum dot or dye by directly absorbing its fluorescence emission.
    • 本发明提供能够选择性地测量单个活细胞的胞质溶胶中的离子,例如Na +,K +,Cl-等的离子选择性传感器。 传感器包括一个或多个量子点或荧光染料,pH敏感染料和任选的离子选择性组分如离子载体。 这些元素可以例如被设置在聚合物基质中。 聚合物基质包括使得传感器能够定位在细胞的胞质溶胶内的内化部分。 内化部分包含在酸性条件下反应以从内体的范围释放传感器的小分子或肽,例如胺,对映体,mastoparan或蜂毒素。 一旦在细胞溶质中,传感器可以通过聚合物的选择性离子提取来检测离子分析物,从而在传感器内引起pH变化,从而改变pH敏感染料的吸光度。 吸光度的变化可以通过直接吸收其荧光发射来衰减来自量子点或染料的可检测发射强度,例如荧光强度。
    • 8. 发明授权
    • Intracellular nanosensors and methods for their introduction into cells
    • 细胞内纳米传感器及其引入细胞的方法
    • US08263358B2
    • 2012-09-11
    • US12287937
    • 2008-10-14
    • Heather A. ClarkDaniel I. HarjesJohn M. Dubach
    • Heather A. ClarkDaniel I. HarjesJohn M. Dubach
    • C12Q1/02C12M1/00G01N33/53G01N33/52A61K49/00B82B3/00
    • G01N33/588B82Y5/00B82Y15/00G01N21/6458G01N27/3335G01N2021/6439
    • The invention provides ion-selective sensors capable of selectively measuring ions, e.g., Na+, K+, Cl−, etc., in the cytosol of a single living cell. The sensor comprises one or more quantum dots or a fluorescent dye, a pH-sensitive dye, and optionally an ion-selective component such as an ionophore. These elements may, for example, be disposed in a polymer matrix. The polymer matrix comprises an internalizing moiety which enables the sensor to localize within the cytosol of a cell. The internalizing moiety comprises a small molecule or peptide such as an amine, antepennepedia, mastoparan, or melittin that react under acidic conditions to release a sensor from the confines of a endosome. Once in the cytosol the sensors may detect ionic analytes by selective ion extraction by the polymer, thereby inducing a pH change within the sensor which in turn changes the absorbance of the pH-sensitive dye. The change of absorbance may in turn attenuate the intensity of detectable emissions, e.g., fluorescence, from the quantum dot or dye by directly absorbing its fluorescence emission.
    • 本发明提供能够选择性地测量单个活细胞的胞质溶胶中的离子,例如Na +,K +,Cl-等的离子选择性传感器。 传感器包括一个或多个量子点或荧光染料,pH敏感染料和任选的离子选择性组分如离子载体。 这些元素可以例如被设置在聚合物基质中。 聚合物基质包括使得传感器能够定位在细胞的胞质溶胶内的内化部分。 内化部分包含在酸性条件下反应以从内体的范围释放传感器的小分子或肽,例如胺,对映体,mastoparan或蜂毒素。 一旦在细胞溶质中,传感器可以通过聚合物的选择性离子提取来检测离子分析物,从而在传感器内引起pH变化,从而改变pH敏感染料的吸光度。 吸光度的变化可以通过直接吸收其荧光发射来衰减来自量子点或染料的可检测发射强度,例如荧光强度。