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    • 2. 发明申请
    • NANOPIPETTE APPARATUS FOR MANIPULATING CELLS
    • 用于操作细胞的纳米技术装置
    • WO2013012452A3
    • 2013-04-25
    • PCT/US2012026781
    • 2012-02-27
    • UNIV CALIFORNIASEGER R ADAMACTIS PAOLOVILOZNY BOAZPOURMAND NADER
    • SEGER R ADAMACTIS PAOLOVILOZNY BOAZPOURMAND NADER
    • C12M1/42C12N13/00
    • B82Y5/00B01J2219/00371B01L3/502715B01L3/50273B01L2300/0645B82Y15/00G01N33/48728G01Q60/44
    • Disclosed herein are methods and systems for controlled ejection of desired material onto surfaces including single cells using nanopipettes, as well as ejection and into cells. Some systems are directed to a method and system comprising nanopipettes combined with an xyz controller for depositing a user defined pattern on an arbitrary substrate for the purpose of controlled cell adhesion and growth. Alternate embodiments are directed to a method and system comprising nanopipettes combined with an xyz controller and electronic control of a voltage differential in a bore of the nanopipette electroosmotically injecting material into a cell in a high-throughput manner and with minimal damage to the cell. Yet other embodiments are directed to method and system comprising functionalized nanopipettes combined with scanning ion conductance microscopy for studying molecular interactions and detection of biomolecules inside a single living cell.
    • 本文公开了用于将所需材料控制喷射到表面上的方法和系统,包括使用纳米移液管的单个细胞,以及喷射和进入细胞。 一些系统涉及一种方法和系统,其包括与xyz控制器组合的纳米移液器,用于将用户定义的图案沉积在任意基底上,以便控制细胞粘附和生长。 替代实施例涉及一种方法和系统,其包括与xyz控制器组合的纳米移液器,并且以高通量方式以高通量方式电动地将材料的孔中的电压差电子控制到电池中并以最小的细胞损伤来电子控制。 其他实施方案涉及包括与扫描离子电导显微镜结合的功能化纳米小片剂用于研究单个活细胞内的分子相互作用和生物分子的检测的方法和系统。
    • 9. 发明申请
    • SCANNING ION CONDUCTANCE MICROSCOPY
    • 扫描离子导管显微镜
    • WO2015136260A1
    • 2015-09-17
    • PCT/GB2015/050688
    • 2015-03-10
    • IONSCOPE LTD
    • RICHARDSON, Andrew James
    • G01Q10/06G01Q60/44
    • G01Q60/44G01Q10/02G01Q10/06G01Q60/02G01Q60/60
    • A method for interrogating a surface of a sample bathed in electrolyte solution using SICM, comprising: controlling the potential between first and second electrodes bathed in the electrolyte solution to induce an ion current in the electrolyte solution, a submerged portion of the first electrode being contained within a micropipette and the second electrode being external to the micropipette; recording the ion current whilst controlling the micropipette to move with respect to a stage supporting the sample; and determining, from the ion current and calibration data, the surface height profile of the sample. Said potential can be controlled according to a spread spectrum modulated signal. Said micropipette motion can be according to an AC mode pattern having a modulation frequency greater than a resonant frequency of an assembly of the micropipette, first electrode and a first piezoelectric actuator configured to control z-axis motion of said micropipette.
    • 一种用于询问使用SICM浸在电解质溶液中的样品的表面的方法,包括:控制浸在电解质溶液中的第一和第二电极之间的电位,以引起电解质溶液中的离子电流,第一电极的浸没部分被包含 并且所述第二电极位于所述微量移液管外部; 记录离子电流同时控制微量移液器相对于支撑样品的载物台移动; 以及从离子电流和校准数据确定样品的表面高度分布。 可以根据扩频调制信号来控制所述电位。 所述微量移液管运动可以根据具有大于微量移液管组件,第一电极和被配置为控制所述微量移液管的z轴运动的第一压电致动器的组件的共振频率的调制频率的AC模式图案。