Method of screening medicaments with high accuracy and high repeatability

An accurate and repeatable technology, applied in the direction of biochemical equipment and methods, microbial measurement/inspection, etc., can solve the problems of high cost of raw materials, difficulty in preparing arrays of electrospun fibers, and difficulty in electrospinning fibers, so as to ensure accuracy and repeatability, large market practical value, mature and easy-to-operate technology

Inactive Publication Date: 2015-07-22
吕小芹
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the chips in the prior art all have the problems of high processing difficulty, scarcity of raw materials or high cost of raw materials, making it difficult for drug screening chips to be widely used.
[0005] In particular, the use of electrospun fibers to prepare drug screening systems, especially chip screening systems, has always been faced with the technical problems that it is difficult to prepare a specific array of electrospun fibers, and it is difficult to fit the electrospun fibers to the size of the chip.

Method used

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  • Method of screening medicaments with high accuracy and high repeatability
  • Method of screening medicaments with high accuracy and high repeatability
  • Method of screening medicaments with high accuracy and high repeatability

Examples

Experimental program
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Effect test

Embodiment 1

[0038] 1) Preparation of patterned fiber electrospinning receiving plate: first coat positive photoresist on the insulating glass sheet, then cover with a layer of photomask, and etch with a photoetching machine; then use DC magnetron technology to etch after etching A layer of metallic silver is deposited on the glass sheet, the shape of the deposited metallic silver is fold line shape, and the pattern width is 80 μm; finally, the remaining positive photoresist is cleaned;

[0039] 2) Preparation of patterned electrospun fibers: dissolve the medical high molecular polymer in an organic solvent, and use the resultant in step 1) as an electrospinning receiving plate to prepare patterned electrospun fibers by electrospinning technology; control the diameter of the resulting fiber to be 400 nm;

[0040] The medical high molecular polymer is polylactic acid, and the organic solvent is acetone;

[0041] 3) Place the SU-8 on the silicon wafer, use photolithography to remove the re...

Embodiment 2

[0045] 1) Preparation of patterned fiber electrospinning receiving plate: first coat positive photoresist on the insulating glass sheet, then cover with a layer of photomask, and etch with a photoetching machine; then use DC magnetron technology to etch after etching A layer of metallic silver is deposited on the glass sheet, the shape of the deposited metallic silver is a fold line shape, and the pattern width is 40 μm; finally, the remaining positive photoresist is cleaned;

[0046] 2) Preparation of patterned electrospun fibers: dissolve the medical high molecular polymer in an organic solvent, and use the resultant in step 1) as an electrospinning receiving plate to prepare patterned electrospun fibers by electrospinning technology; control the diameter of the resulting fiber to be 300 nm;

[0047] The medical polymer is polycaprolactone, and the organic solvent is acetone and dimethylformamide (9:1 v / v);

[0048] 3) Place the SU-8 on the silicon wafer, use photolithogra...

Embodiment 3

[0052] 1) Preparation of patterned fiber electrospinning receiving plate: first coat positive photoresist on the insulating glass sheet, then cover with a layer of photomask, and etch with a photoetching machine; then use DC magnetron technology to etch after etching A layer of metallic silver is deposited on the glass sheet, the shape of the deposited metallic silver is a broken line shape, and the pattern width is 20 μm; finally, the remaining positive photoresist is washed away;

[0053] 2) Preparation of patterned electrospun fibers: dissolve the medical high molecular polymer in an organic solvent, and use the resultant in step 1) as an electrospinning receiving plate to prepare patterned electrospun fibers by electrospinning technology; control the diameter of the resulting fiber to be 200 nm;

[0054] The medical high molecular polymer is polyurethane, and the organic solvent is acetone;

[0055] 3) Place the SU-8 on the silicon wafer, use photolithography to remove t...

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Abstract

The invention provides a method of screening medicaments with high accuracy and high repeatability. The method comprises the following steps: 1) preparing a patterned fiber electrospinning receiving board, and preparing a receiving board with a patterned metal silver layer by utilizing a photoetching technology and a direct current magnetron sputtering technology; 2) preparing patterned electrospinning fibers, and carrying out electrostatic spinning on an object obtained in the step 1); 3) preparing a PDMS cavity; 4) connecting the objects obtained in the second and third steps by virtue of plasma treatment; and 5) inoculating primary mouse myocardial cells to the patterned electrospinning fibers in the object obtained in the step 4), pumping a culture medium into the cavity of the object obtained in the step 4) by virtue of an injection pump, then pumping the medicaments, recording the beating frequency of the myocardial cells within 20 days after the medicaments are pumped to obtain an EC50 value, and screening the medicaments according to the EC50 value. According to the method disclosed by the invention, normal growth of the cells in smaller cavity is realized, and the method also has the effects of screening the medicaments and reusing and is high in the accuracy and the repeatability.

Description

Technical field [0001] The invention belongs to the field of drug screening, and specifically relates to a drug screening method with high accuracy and high repeatability. technical background [0002] Drug screening is to screen out highly effective new drugs or lead compounds from natural or synthetic compounds. The process of drug screening is the process of conducting drug activity experiments on compounds, and the activity experiments on compounds have gradually changed from early confirmatory experiments to screening experiments. It is an important part of the modern drug development process to test and obtain specific physiologically active compounds. step. [0003] In the prior art, two-hybrid drug selection technology, recombinant receptor drug selection technology, and transgenic animal model drug selection technology all have the disadvantages of complicated technical steps, high detection cost, and poor accuracy. [0004] In recent years, chip drug screening technol...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C12Q1/02
Inventor 刘耀文叶劲松吴贺君陈淑娟何利李美良王淑瑶
Owner 吕小芹
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