Terahertz non-bianisotropic metamaterial unmarked sensor, and preparation method and use thereof

A bi-anisotropic, label-free technology, applied in the analysis of materials, material analysis by optical means, instruments, etc., can solve the problems of low detection cost, short detection process time and high cost

Active Publication Date: 2018-11-16
ZAOZHUANG UNIV
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Problems solved by technology

[0003] The invention provides a terahertz non-bi-anisotropic superstructure material label-free sensor, a preparation method and a method for testing cancer cell concentration and apoptosis trend, which solve the problems of long test time and high cost in traditional flow cytometry label detection technology. Insufficient, the realization of the detection process is short and the detection cost is low

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  • Terahertz non-bianisotropic metamaterial unmarked sensor, and preparation method and use thereof
  • Terahertz non-bianisotropic metamaterial unmarked sensor, and preparation method and use thereof
  • Terahertz non-bianisotropic metamaterial unmarked sensor, and preparation method and use thereof

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[0041] In the following, the present invention will be further clarified with reference to the drawings and specific embodiments. It should be understood that these embodiments are only used to illustrate the present invention and not to limit the scope of application of the present invention. After reading the present invention, those skilled in the art have All modifications in equivalent forms fall within the scope defined by the appended claims of this application.

[0042] The terahertz non-biisotropic metamaterial label-free sensor of the present invention is an asymmetric double-opening metal resonance ring that can generate electromagnetically induced transparent resonance peaks, inoculate cells on its surface through cell culture, and finally use a back-transmission method Detect the deviation of the resonance frequency of the device to test the concentration of cancer cells. Such as Figure 5 Shown.

[0043] The terahertz non-biisotropic metamaterial label-free sensor of...

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Abstract

The invention relates to a terahertz non-bianisotropic metamaterial unmarked sensor, and a preparation method and a use thereof, and belongs to the biotechnical field. The unmarked sensor comprises aflexible substrate polyimide, a metal layer is arranged on the flexible substrate polyimide, the metal layer comprises a lower titanium metal layer having a thickness of 20 nm and an upper gold metallayer having a thickness of 200 nm, the titanium metal layer is arranged on the flexible substrate polyimide, and the metal layer is a metal resonance ring with two openings. The asymmetric metal resonance ring with two openings is designed to realize electromagnetic induction of a transparent formant, the surface of a metamaterial is inoculated with cells through cell culture, the resonance frequency shift of a device is detected in a back transmission manner, and the theoretic sensitivity reaches up to 455 GHz/RIU, so the concentration of cancer cells can be rapidly preliminarily detected inan unmarked manner, and the apoptosis trend of oral cancer cells HSC3 under different anticancer drug action times is obtained.

Description

Technical field [0001] The invention relates to a terahertz non-biisotropic metamaterial label-free sensor, preparation and application, and belongs to the field of biotechnology. Background technique [0002] The application of terahertz technology in public safety, communication, and biomedicine has attracted much attention. The terahertz metamaterials can achieve controllable electromagnetic response by designing the corresponding unit geometric structure, that is, people only need to design the resonant structure to flexibly control their electromagnetic properties. This characteristic is in the terahertz non-biaxially anisotropic superstructure. Functional devices such as non-label sensors of structural materials have shown great application prospects, especially in the high-sensitivity sensing and identification of biological samples. Traditional flow cytometry technology can detect the cell concentration, but the test time is long and the cost is high. Summary of the inv...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01N21/3586
CPCG01N21/3586
Inventor 闫昕张璋梁兰菊杨茂生韦德泉王猛姚建铨
Owner ZAOZHUANG UNIV
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