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Syphilis diagnosis micro-fluidic apparatus with liquid flow driving additional member being easy to detach

A microfluidic device, a liquid flow-driven technology, applied in the field of analysis and testing, can solve the problems of large flow resistance, which has not been properly solved, and difficulty in passing fine liquid flow.

Inactive Publication Date: 2016-11-23
NINGBO UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0007] But it's not that simple
[0008] First, this polydimethylsiloxane material, the material referred to by the acronym PDMS, is itself a strongly hydrophobic material. Microchannels are built on this material. If the microchannels are not targeted The modification operation of the surface of the channel, then, after the overall assembly is completed, that is, after the cover is covered, because the inner surface of the micro channel in the structure occupies most of the inner surface of the liquid flow channel, then the PDMS micro channel The strong hydrophobic characteristic of the inner surface of the channel is the decisive factor, which will make it very difficult for the polar liquid flow similar to the aqueous solution to pass through, and its flow resistance is so large that even ordinary micropumps are difficult to push. Of course, If the cover sheet also chooses to use the PDMS material, then the problem is basically the same, with little difference; therefore, in the prior art, it is necessary to modify and modify the inner surface of the microchannel on the PDMS material; then , is this modification operation for the inner surface of the PDMS microchannel very troublesome? That's not the problem. What constitutes a serious technical problem is another problem: the PDMS polymer molecules in the bulk phase of the PDMS material substrate have the characteristics of automatic diffusion and migration to the surface. The characteristics of polymer molecules diffusing and migrating to the surface automatically will make the modified state of the inner surface of the microchannel modified by the surface modification unable to maintain for a long enough time, and the microgroove after surface modification The maintenance time of the inner surface state of the channel is roughly only enough to complete the time required for the internal test experiment in the laboratory; in other words, the inner surface of the PDMS microchannel after surface modification or surface modification is formed after modification The surface state of the surface does not last long, but quickly tends to or changes back to the surface state before the surface modification, and returns to the original strongly hydrophobic surface state in a relatively short period of time. Then, just imagine, Can such microfluidic chips be produced in large quantities, stored in large quantities, and widely promoted? The answer is obvious, that is, impossible
This problem has also existed for many years, and so far, it has not been properly solved

Method used

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  • Syphilis diagnosis micro-fluidic apparatus with liquid flow driving additional member being easy to detach
  • Syphilis diagnosis micro-fluidic apparatus with liquid flow driving additional member being easy to detach

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Embodiment Construction

[0053] exist figure 1 and figure 2 In the illustrated embodiment of the present case, the structure of the microfluidic device includes a multi-channel microfluidic chip, and the structure of the microfluidic chip includes a substrate 19 and a cover sheet 20 that are attached to each other and installed together. Both the substrate 19 and the cover sheet 20 are plates or sheets, and the surface of the substrate 19 facing the cover sheet 20 contains a channel structure formed by a molding process or an etching process, and the substrate 19 also contains The window structure connected to the channel structure and pierced through the substrate is formed through a molding process, an etching process or a simple punching process, and the substrate 19 and the cover 20 that are attached to each other are jointly constructed to contain A microfluidic chip with a pipeline structure and a liquid pool structure connected thereto. The liquid pools are liquid pool 1, liquid pool 2, and l...

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Abstract

The invention relates to a syphilis diagnosis micro-fluidic apparatus with a liquid flow driving additional member being easy to detach and belongs to the field of analysis and test. In the prior art, a process of producing a substrate of a syphilis diagnosis micro-fluidic chip with polydimethylsiloxane (PDMS), which is low in cost and is easy to process, becomes a technical target. The PDMS has an intensive hydrophobic surface, and effects of specific surface modification and the like cannot be maintained durably, so that the invention aims to solve the related problems. In the embodiment, PDMS having an original ecological surface is employed as the substrate, wherein an elastic clamp, of which a clamping arm is equipped with a micro-ultrasonic transducer, clamps and is located on a position nearby a terminal of a test sample fluid in the micro-fluidic chip through elasticity, so that ultrasonic wave reduces interface tension; and meanwhile, with the strong absorption capability of the PDMS to the ultrasonic wave, quick attenuation of intensity of the ultrasonic wave in a short distance is achieved, thus forming difference between the interface tensions at the two ends of the chip, so that the test sample fluid flows to the direction of the terminal along a capillary path which is originally hydrophobic.

Description

technical field [0001] The invention relates to a microfluidic device for syphilis diagnosis with easily disassembled accessories for liquid flow driving. The microfluidic device is a special device for diagnosing syphilis antigens based on antigen / antibody specific reactions, and belongs to the field of analysis and testing. Background technique [0002] For the technical background of multi-channel microfluidic syphilis diagnosis, please refer to CN 200910152141.4 and other invention patent applications. [0003] As far as the overall overview of microfluidic technology itself is concerned, you can refer to the monograph "Illustrated Microfluidic Chip Laboratory" published by the famous microfluidic expert Mr. Lin Bingcheng not long ago, which has been published by Science Press. The past, present, and future prospects of microfluidic technology, etc., have detailed and long-form discussions that go deep into specific details. [0004] So, let's talk about the key issues ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01N33/68G01N33/571G01N27/327
CPCG01N27/3278G01N33/571
Inventor 干宁崔焕冯小彬张佳斌严清潘慕云李天华任元龙李榕生
Owner NINGBO UNIV
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