MULTIPLEXED ANALYSIS OF NUCLEIC ACID HYBRIDIZATION THERMODYNAMICS USING INTEGRATED ARRAYS
    1.
    发明申请
    MULTIPLEXED ANALYSIS OF NUCLEIC ACID HYBRIDIZATION THERMODYNAMICS USING INTEGRATED ARRAYS 有权
    使用集成阵列的核酸混合热力学的多重分析

    公开(公告)号:US20160281149A1

    公开(公告)日:2016-09-29

    申请号:US14665904

    申请日:2015-03-23

    Applicant: InSilixa, Inc.

    CPC classification number: C12Q1/6837 C12Q2527/107 C12Q2565/101 C12Q2565/607

    Abstract: The present disclosure provides methods and devices for simultaneous identification of a plurality of target nucleic acid sequences in a single sample chamber that includes an addressable array of nucleic acid probes attached to a solid surface. Addressable signals can be generated and measured, in real-time, upon hybridization of target sequences at the individual probe locations within the array while the temperature of the system is varied. Such generated signals, as a function temperature, can then be used to compute the properties of nucleic acid hybridization at each addressable location which is ultimately utilized to estimate the sequence of the target nucleic acids. In particular, an integrated semiconductor biosensor array device can be used to measure the addressable signals.

    Abstract translation: 本公开提供用于在单个样品室中同时鉴定多个靶核酸序列的方法和装置,其包括连接到固体表面的可寻址阵列的核酸探针。 当系统的温度变化时,可以在阵列内各个探针位置处的靶序列杂交时,实时产生和测量可寻址信号。 然后,作为功能温度的这样产生的信号可用于计算最终用于估计靶核酸序列的每个可寻址位置处的核酸杂交的性质。 特别地,可以使用集成半导体生物传感器阵列器件来测量可寻址信号。

    Multiplexed analysis of nucleic acid hybridization thermodynamics using integrated arrays

    公开(公告)号:US09708647B2

    公开(公告)日:2017-07-18

    申请号:US14665904

    申请日:2015-03-23

    Applicant: InSilixa, Inc.

    CPC classification number: C12Q1/6837 C12Q2527/107 C12Q2565/101 C12Q2565/607

    Abstract: The present disclosure provides methods and devices for simultaneous identification of a plurality of target nucleic acid sequences in a single sample chamber that includes an addressable array of nucleic acid probes attached to a solid surface. Addressable signals can be generated and measured, in real-time, upon hybridization of target sequences at the individual probe locations within the array while the temperature of the system is varied. Such generated signals, as a function temperature, can then be used to compute the properties of nucleic acid hybridization at each addressable location which is ultimately utilized to estimate the sequence of the target nucleic acids. In particular, an integrated semiconductor biosensor array device can be used to measure the addressable signals.

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