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    • 1. 发明申请
    • Methods and Apparatus for Cell-Free Microfluidic-Assisted Biosynthesis
    • 无细胞微流体辅助生物合成的方法和装置
    • US20160002611A1
    • 2016-01-07
    • US14735132
    • 2015-06-09
    • Andreas MershinVincent NoireauxJames Francis PelletierNeil A. Gershenfeld
    • Andreas MershinVincent NoireauxJames Francis PelletierNeil A. Gershenfeld
    • C12N9/10C12M1/00C12P1/00
    • C12N9/1029C12M47/06C12M47/10C12P21/02C12Y203/01
    • A trans-disciplinary system for cell-free biosynthesis includes a cell-free transcription-translation (TX-TL) tool and modular, generalizable microfluidic architectures. Both components of the system are independently functional and are combinable into a cell-free biosynthesis platform. In the first component, modular plasmid libraries are used to program bacterial cell-free TX-TL systems. Each plasmid holds one gene or operon, and all the genes are controlled by the same promoter, so that the stoichiometry of enzyme synthesis is determined by the stoichiometry of plasmids in the reaction. In the second part, in order to facilitate high throughput mixing and matching of gene units from the modular plasmid libraries, a modular, reconfigurable, flexible, and scalable microfluidic architecture is employed. The microfluidic modules share common form factors and port/valve locations, so that a small set of module types, with multiple instances of each type interconnected in different geometries, allows simple reconfiguration to achieve different modes of operation.
    • 用于无细胞生物合成的跨学科系统包括无细胞转录转译(TX-TL)工具和模块化,可推广的微流体结构。 系统的两个组分都是独立的功能,可组合成无细胞的生物合成平台。 在第一个组分中,使用模块化质粒文库来编程细菌无细胞的TX-TL系统。 每个质粒含有一个基因或操纵子,所有基因都由相同的启动子控制,因此酶合成的化学计量通过反应中质粒的化学计量来确定。 在第二部分中,为了促进来自模块化质粒文库的基​​因单元的高通量混合和匹配,采用了模块化的,可重构的,灵活的和可扩展的微流体结构。 微流体模块具有共同的形状因子和端口/阀位置,使得具有不同几何形状互连的每种类型的多个实例的一小组模块类型允许简单的重新配置以实现不同的操作模式。
    • 6. 发明申请
    • Methods and Apparatus for Artificial Olfaction
    • 人工嗅觉的方法和装置
    • US20150362469A1
    • 2015-12-17
    • US14815574
    • 2015-07-31
    • Andreas MershinAsmamaw WassieYael MaguireDavid KongShuguang ZhangPatrick MoranKarolina Corin
    • Andreas MershinAsmamaw WassieYael MaguireDavid KongShuguang ZhangPatrick MoranKarolina Corin
    • G01N33/00
    • G01N33/0031G01N27/00
    • In exemplary implementations of this invention, an electronic olfactor determines whether a scent being tested matches the scent of a positive control. The electronic olfactor can perform this scent matching even in a changing olfactory environment, and even if the positive control scent is a combination of hundreds or thousands of different odorants. No prior training is needed, and no attempt is made to identify a single odorant that is unambiguously responsible for a scent. Instead, a computer compares the total scent pattern of a positive control sample with the total scent pattern of a test sample, across a sweep of many permutations of electrical inputs to scent sensors, to try to find any condition under which the total scent patterns do not match. If such a condition cannot be found, then the computer declares a match between the test and target scents.
    • 在本发明的示例性实施方案中,电子嗅觉元件确定被测试的香味是否与阳性对照的香味相匹配。 电子嗅觉剂即使在不断变化的嗅觉环境中也可以进行这种气味的匹配,即使阳性对照气味是数百种或数千种不同气味剂的组合。 不需要进行任何先前的培训,也没有尝试确定一个明确负责香味的单一加臭剂。 相反,计算机将阳性对照样品的总气味模式与测试样品的总气味模式进行比较,以扫描多次电气输入到气味传感器的排列,以尝试找到总气味图案的任何条件 不匹配。 如果找不到这样的条件,那么计算机会声明测试和目标气味之间的匹配。
    • 8. 发明申请
    • Bio-Sensing Nanodevice
    • 生物传感纳米技术
    • US20090156427A1
    • 2009-06-18
    • US12183916
    • 2008-07-31
    • Shuguang ZhangAndreas MershinLiselotte KaiserBrian CookJohanna F. Graveland-BikkerManu PrakashDavid KongYael Maguire
    • Shuguang ZhangAndreas MershinLiselotte KaiserBrian CookJohanna F. Graveland-BikkerManu PrakashDavid KongYael Maguire
    • C40B30/10B01J19/00C40B40/10C40B60/12C40B30/00C12P21/00
    • G01N33/54366G01N2333/726
    • The invention provides a bio-sensing nanodevice comprising: a stabilized biologically-derived G-protein coupled receptor—the olfactory receptor—on a support, a real time receptor-ligand binding detection method, an odorant delivery system and an odorant recognition program. The biologically-derived G-protein coupled receptor can be stabilized on nanotechnology using surfactant peptide. The said nanodevice provides a greater surface area for better precision and sensitivity to odorant detection. The invention further provides a microfluidic chip containing a stabilized biologically-derived G-protein coupled receptor—the olfactory receptor—immobilized on a support, and arranged in at least two dimensional microarray system. The invention also provides a method of delivering odorant comprising the step of manipulating the bubbles in complex microfluidic networks wherein the bubbles travel in a microfluidic channel carrying a variety of gas samples to a precise location on a chip. The invention further provides method of fabricating hOR17-4 olfactory receptor.
    • 本发明提供一种生物感测纳米装置,其包括:稳定的生物衍生的G蛋白偶联受体 - 支持物上的嗅觉受体,实时受体 - 配体结合检测方法,加味剂递送系统和气味识别程序。 生物衍生的G蛋白偶联受体可以使用表面活性剂肽在纳米技术上稳定。 所述纳米器件提供更大的表面积,以提高气味检测的精度和灵敏度。 本发明进一步提供了一种微流控芯片,其包含稳定的生物衍生的G蛋白偶联受体 - 嗅觉受体 - 固定在载体上,并且布置在至少二维微阵列系统中。 本发明还提供了一种递送加臭剂的方法,其包括在复杂微流体网络中操作气泡的步骤,其中气泡在携带各种气体样品的微流体通道中移动到芯片上的精确位置。 本发明还提供了制备hOR17-4嗅觉受体的方法。
    • 9. 发明授权
    • Methods and apparatus for artificial olfaction
    • 人造嗅觉的方法和装置
    • US09140677B2
    • 2015-09-22
    • US13966169
    • 2013-08-13
    • Andreas MershinAsmamaw WassieYael MaguireDavid KongShuguang ZhangPatrick MoranKarolina Corin
    • Andreas MershinAsmamaw WassieYael MaguireDavid KongShuguang ZhangPatrick MoranKarolina Corin
    • G01N33/00G01N27/00
    • G01N33/0031G01N27/00
    • In exemplary implementations of this invention, an electronic olfactor determines whether a scent being tested matches the scent of a positive control. The electronic olfactor can perform this scent matching even in a changing olfactory environment, and even if the positive control scent is a combination of hundreds or thousands of different odorants. No prior training is needed, and no attempt is made to identify a single odorant that is unambiguously responsible for a scent. Instead, a computer compares the total scent pattern of a positive control sample with the total scent pattern of a test sample, across a sweep of many permutations of electrical inputs to scent sensors, to try to find any condition under which the total scent patterns do not match. If such a condition cannot be found, then the computer declares a match between the test and target scents.
    • 在本发明的示例性实施方案中,电子嗅觉元件确定被测试的香味是否与阳性对照的香味相匹配。 电子嗅觉剂即使在不断变化的嗅觉环境中也可以进行这种气味的匹配,即使阳性对照气味是数百种或数千种不同气味剂的组合。 不需要进行任何先前的培训,也没有尝试确定一个明确负责香味的单一加臭剂。 相反,计算机将阳性对照样品的总香味图案与测试样品的总香味图案进行比较,以扫描许多排列的电气输入到香味传感器,以尝试找到任何条件,在这些条件下总香味图案 不匹配。 如果找不到这样的条件,那么计算机会声明测试和目标气味之间的匹配。