Immunolabeling instrument convenient for protecting and limiting labeled sample

By designing an immunolabelerator containing a placement component, using the combination of the placement box and a mobile limiting scaffold, the problem of the media being easily mixed and contaminated during sampling is solved, the effective protection limit of the test tube is achieved, and the accuracy of the experiment is improved.

CN222913665UActive Publication Date: 2025-05-27YIFU BIOTECHNOLOGIES NANTONG CO LTD
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Patent Information

Application Number
CN202421660530.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-14
Publication Date
2025-05-27
Estimated Expiration
2034-07-14

AI Technical Summary

Technical Problem

During sampling, existing immunolabelers are prone to dissipation and mixing of test tubes of different media, causing contamination between test tubes.

Method used

An immunomarker including a body and a placement assembly is designed, which includes a first delivery base, a tube duct assembly, a second delivery base, a motor chamber, a delivery limit bracket and a detection assembly. Through the coordination of the placement box and the moving limit bracket, the protective limit for the test tube is achieved, and the test tubes of different media are prevented from contacting and mixing.

Benefits of technology

It effectively prevents contamination between test tubes, ensures separation and isolation of sampling media, and improves the accuracy and reliability of the experiment.

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Abstract

The utility model discloses an immunolabeling instrument capable of conveniently protecting and limiting a labeled sample, which relates to the technical field of immunolabeling instruments and comprises a machine body and a placing component mounted above the inner wall of the machine body. The placing assembly comprises a first conveying base, a pipe placing assembly, a second conveying base, a first motor chamber, a conveying limiting support and a detection assembly, the pipe placing assembly is installed above the first conveying base, and the second conveying base is installed on the left side of the first conveying base; a first motor chamber is arranged on the side, away from the first conveying base, of the second conveying base, a conveying limiting support is arranged at the center of the first motor chamber and the center of the first conveying base, and a detection assembly is arranged above the conveying limiting support. The placing assembly enables the test tubes to be placed, the test tubes are protected and classified through a placing chamber and a partition baffle, and the test tubes placed in a placing box are limited through a moving limiting part.
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Description

Technical Field

[0001] The utility model relates to the technical field of immunoassay instruments, in particular to an immunoassay instrument which is convenient for protecting and limiting labeled samples. Background Technique

[0002] An immunoassay instrument is an instrument that operates using immunoassay techniques. It can be used to detect and analyze specific biomolecules, such as antigens or antibodies. This technique usually involves using markers such as fluorescein, enzymes, radioisotopes, or electron-dense substances to label antigens or antibodies, and then detecting through antigen-antibody reactions. The immunoassay technique not only improves the sensitivity of detection, making it possible to qualitatively or quantitatively detect trace substances, but also, in combination with microscopy or electron microscopy techniques, can accurately locate and detect the detection object. However, when placing test tubes, due to different sampling media, when the sampling substances inside the test tubes disperse, it will cause contamination between the test tubes. Therefore, an immunoassay instrument that is convenient for protecting and limiting labeled samples is needed.

[0003] The application number retrieved is: CN201611246054.1, a fully automatic cell immunoassay instrument, which can effectively improve the efficiency of cell labeling.

[0004] However, the existing immunoassay instruments still have certain defects in actual use: when sampling samples and placing the sampling test tubes, different sampling test tubes with different media will cause the sampling media inside the test tubes to mix when placed together and the sampling media disperses, resulting in contamination between the test tubes. For this reason, we propose an immunoassay instrument that is convenient for protecting and limiting labeled samples. Content of the Utility Model

[0005] In order to make up for the above deficiencies, the utility model provides an immunoassay instrument that is convenient for protecting and limiting labeled samples, aiming to improve the problem that when sampling samples and placing the sampling test tubes, different sampling test tubes with different media will cause the sampling media inside the test tubes to mix when placed together and the sampling media disperses, resulting in contamination between the test tubes.

[0006] The present utility model realizes an immuno-labeling instrument that is convenient for protecting and limiting labeled samples through the following technical solutions. The immuno-labeling instrument includes a body and a placement assembly. A placement assembly is installed above the inner wall of the body, and the placement assembly includes a first conveying base, a tube placement assembly, a second conveying base, a first motor chamber, a conveying limit bracket, and a detection assembly. A tube placement assembly is installed above the first conveying base, a second conveying base is installed on the left side of the first conveying base, a first motor chamber is provided on the side of the second conveying base away from the first conveying base, a conveying limit bracket is provided at the centers of the first motor chamber and the first conveying base, and a detection assembly is provided above the conveying limit bracket.

[0007] Further, the tube placement assembly includes a first placement chamber, a second placement chamber, a placement box, a partition baffle, and a connection bracket. A second placement chamber is provided on the right side of the first placement chamber. The placement diameter of the first placement chamber is larger than that of the second placement chamber. Placement boxes are provided above the inner walls of both the first placement chamber and the second placement chamber. Partition baffles are installed on both sides of the first placement chamber and the second placement chamber, and a connection bracket is installed on the left side of the partition baffle.

[0008] Further, the detection assembly includes a mounting bracket, a docking plate, a connecting rod, and a slide rail. A docking plate is installed on the side of the mounting bracket away from the first conveying base through bolts. A connecting rod is provided on the side of the docking plate away from the mounting bracket, and a slide rail is installed above the connecting rod through bolts.

[0009] Further, the detection assembly further includes a connection housing, a second motor chamber, and a detection probe. A second motor chamber is installed above the connection housing through bolts, and a detection probe is installed on the left side of the connection housing through bolts.

[0010] Further, a moving limit bracket is installed at the centers of the first conveying base and the tube placement assembly, and a limit groove is provided above the moving limit bracket.

[0011] Further, conveying grooves are provided above both the first conveying base and the second conveying base, and a docking block is provided at the center of the conveying groove.

[0012] The present utility model provides an immuno-labeling instrument that is convenient for protecting and limiting labeled samples, and has the following beneficial effects:

[0013] After the sampling medium is separately placed inside the test tubes, when the test tubes are placed, the test tubes are separately placed inside the placement box. When the placement box is placed, the corresponding placement box is placed inside the placement assembly along the moving limit bracket. According to the different sampling media in the test tubes, when the placement box enters the first placement chamber and the second placement chamber, the first placement chamber and the second placement chamber will be separated and blocked from each other by a partition baffle, so as to protectively separate the test tubes from each other. At the same time, the placement box is installed inside the moving limit bracket. By means of the moving limit bracket, when the placement box moves, the test tubes inside the placement box can be restricted by the moving limit bracket during the movement of the placement box. The specific content is as follows:

[0014] Above the inner wall of the machine body, a placement assembly is installed. The placement assembly includes a first conveying base, a tube placement component, a second conveying base, a first motor chamber, a conveying limit bracket, and a detection component. Above the first conveying base, a tube placement component is installed. On the left side of the first conveying base, a second conveying base is installed. On the side of the second conveying base away from the first conveying base, a first motor chamber is provided. At the centers of the first motor chamber and the first conveying base, a conveying limit bracket is provided. Above the conveying limit bracket, a detection component is provided. The tube placement component includes a first placement chamber, a second placement chamber, a placement box, a partition baffle, and a connecting bracket. On the right side of the first placement chamber, a second placement chamber is provided. The placement diameter of the first placement chamber is larger than that of the second placement chamber. Above the inner walls of the first placement chamber and the second placement chamber, placement boxes are provided. On both sides of the first placement chamber and the second placement chamber, partition baffles are installed. On the left side of the partition baffle, a connecting bracket is installed. The detection component includes a mounting bracket, a docking plate, a connecting rod, and a slide rail. On the side of the mounting bracket away from the first conveying base, a docking plate is installed by bolts. On the side of the docking plate away from the mounting bracket, a connecting rod is provided. Above the connecting rod, a slide rail is installed by bolts. Description of the Drawings

[0015] Figure 1 It is a schematic diagram of the overall structure of an immuno-labeling instrument for conveniently protecting and limiting labeled samples according to the present utility model;

[0016] Figure 2 It is a schematic diagram of the structure of the tube placement component of an immuno-labeling instrument for conveniently protecting and limiting labeled samples according to the present utility model;

[0017] Figure 3 It is a schematic diagram of the structure of the detection component of an immuno-labeling instrument for conveniently protecting and limiting labeled samples according to the present utility model;

[0018] Figure 4Schematic diagram of the structure of the mobile limit bracket of an immunolabeling instrument that facilitates the protection and limit of labeled samples according to the present utility model;

[0019] Figure 5 Schematic diagram of the structure of the second conveying base of an immunolabeling instrument that facilitates the protection and limit of labeled samples according to the present utility model.

[0020] In the figure: 1, body; 2, placement assembly; 3, first conveying base; 4, tube placement assembly; 401, first placement chamber; 402, second placement chamber; 403, placement box; 5, partition baffle; 6, connection bracket; 7, second conveying base; 8, first motor chamber; 9, conveying limit bracket; 10, detection assembly; 11, mounting bracket; 12, docking plate; 13, connecting rod; 14, slide rail; 15, connection housing; 16, second motor chamber; 17, detection probe; 18, mobile limit bracket; 1801, limit groove; 19, conveying groove; 20, docking block. Specific embodiments

[0021] The following further describes in detail the embodiments of the present utility model in conjunction with the accompanying drawings and examples. The following examples are used to illustrate the present utility model, but cannot be used to limit the scope of the present utility model.

[0022] As Figure 1 - Figure 5 shown, an immunolabeling instrument that facilitates the protection and limit of labeled samples includes a body 1 and a placement assembly 2. The placement assembly 2 is installed above the inner wall of the body 1, and the placement assembly 2 includes a first conveying base 3, a tube placement assembly 4, a second conveying base 7, a first motor chamber 8, a conveying limit bracket 9, and a detection assembly 10. A tube placement assembly 4 is installed above the first conveying base 3, a second conveying base 7 is installed on the left side of the first conveying base 3, a first motor chamber 8 is provided on the side of the second conveying base 7 away from the first conveying base 3, a conveying limit bracket 9 is provided at the center of the first motor chamber 8 and the first conveying base 3, and a detection assembly 10 is provided above the conveying limit bracket 9. Among them, the test tubes after sampling are evenly placed inside the placement box 403, and are inserted into the first placement chamber 401 and the second placement chamber 402 to complete the placement of the test tubes. After the placement of the test tubes is completed, at this time, the placement box 403 in the tube placement assembly 4 is engaged with the mobile limit bracket 18. At this time, the first conveying base 3 drives the placement box 403 to be conveyed into the conveying limit bracket 9 through the docking block 20, so that the detection assembly 10 can detect the test tubes inside the placement box 403. During the detection process, the test tubes will not come into contact with other media. The movement of the test tubes is restricted by the mobile limit bracket 18, and the test tubes with different sampling samples are also blocked by the partition baffle 5, so as to protect and limit the test tubes from each other.

[0023] The tube placing assembly 4 includes a first placing chamber 401, a second placing chamber 402, a placing box 403, a partition baffle 5 and a connecting bracket 6. The second placing chamber 402 is provided on the right side of the first placing chamber 401. The placing diameter of the first placing chamber 401 is larger than that of the second placing chamber 402. Placing boxes 403 are provided above the inner walls of both the first placing chamber 401 and the second placing chamber 402. Partition baffles 5 are installed on both sides of the first placing chamber 401 and the second placing chamber 402, and a connecting bracket 6 is installed on the left side of the partition baffle 5. The spaces between the first placing chamber 401 and the second placing chamber 402 inside the tube placing assembly 4 are different. By using different spaces, the tubes can be placed and classified. After separating the tubes and completing the classification, the partition baffle can be used to isolate the tubes of different sampling products, thereby protecting the tubes and preventing the tubes of different samplings from contacting each other.

[0024] The detection assembly 10 includes a mounting bracket 11, a docking plate 12, a connecting rod 13 and a slide rail 14. A docking plate 12 is installed on the side of the mounting bracket 11 away from the first conveying base 3 by bolts. A connecting rod 13 is provided on the side of the docking plate 12 away from the mounting bracket 11, and a slide rail 14 is installed above the connecting rod 13 by bolts. The detection assembly 10 further includes a connecting housing 15, a second motor chamber 16 and a detection probe 17. The second motor chamber 16 is installed above the connecting housing 15 by bolts, and the detection probe 17 is installed on the left side of the connecting housing 15 by bolts. In the placing boxes 403 inside the first placing chamber 401 and the second placing chamber 402 of the detection assembly 10, the docking block 20 is driven by a motor, and the docking block 20 moves along the conveying groove 19, so that the corresponding placing box 403 moves along the restriction of the moving limit bracket 18. Thus, when the placing box 403 moves, the deviation of the movement of the placing box 403 is restricted by the moving limit bracket 18, and the movement of the placing box 403 is restricted. When the placing box 403 enters the conveying limit bracket 9 during the movement process, the placing box 403 is restricted while the movement of the placing box 403 is completed. At this time, when the second motor chamber 16 drives the connecting housing 15, the connecting housing 15 moves through the connecting rod 13 and the slide rail 14, and the connecting housing 15 drives the detection probe 17 to move, so that the detection probe 17 detects the tube.

[0025] A moving limit bracket 18 is installed at the center of the first conveying base 3 and the tube placing assembly 4, and a limit groove is provided above the moving limit bracket 18. The placing box 403 moves along the limit groove inside the moving limit, so that when the placing box 403 moves, the moving limit bracket 18 restricts the movement of the placing box 403 during the movement process.

[0026] Above both the first conveying base 3 and the second conveying base 7, there is a conveying groove 19 provided, and a docking block 20 is provided at the center of the conveying groove 19. The docking block 20 is installed on the track. When the motor drives the track to rotate, the track drives the docking block 20 to rotate.

[0027] In summary, in this utility model, through the machine body 1 and the placement component 2, where the placement component 2 is installed inside the machine body 1. The first conveying base 3 and the second conveying base 7 are provided in the placement component 2, and the placement component 2 is installed on the first conveying base 3. At this time, a first placement chamber 401 and a second placement chamber 402 are provided inside the placement component 2. Placement boxes 403 are placed inside both the first placement chamber 401 and the second placement chamber 402, and the sizes of the placement boxes 403 are the same. Therefore, when collecting the test tubes for collection and sampling, the test tubes are inserted into the collection boxes, and according to different samplings, the test tubes are respectively placed inside the first placement chamber 401 and the second placement chamber 402. Through the partition baffle 5, the protection and isolation between the test tubes are completed. After the isolation is completed, when the test tubes need to be moved, at this time, the motor drives the docking block 20 through the track, and the docking block 20 drives the corresponding placement box 403 to move, so that the placement box 403 moves along the limit groove in the movement limit, so that when the placement box 403 moves, the placement box 403 can be restricted during the movement through the limit groove, thereby avoiding collision and vibration of the placement box 403 during the movement.

Claims

1. An immunolabeling instrument for conveniently protecting and limiting the labeled sample, comprising a body (1) and a placement component (2), characterized in that: A placement component (2) is installed above the inner wall of the machine body (1), and the placement component (2) includes a first conveying base (3), a tube placing component (4), a second conveying base (7), a first motor room (8), a conveying limit bracket (9) and a detection component (10), and the tube placing component (4) is installed above the first conveying base (3), and the second conveying base (7) is installed on the left side of the first conveying base (3), and the first motor room (8) is arranged on the side of the second conveying base (7) away from the first conveying base (3), and the conveying limit bracket (9) is arranged at the center of the first motor room (8) and the first conveying base (3), and the detection component (10) is arranged above the conveying limit bracket (9).

2. The immunolabeling instrument for protecting and limiting labeled samples according to claim 1, characterized in that: The tube placement assembly (4) comprises a first placement chamber (401), a second placement chamber (402), a placement box (403), a partition baffle (5) and a connecting bracket (6), and the second placement chamber (402) is arranged on the right side of the first placement chamber (401), and the placement diameter of the first placement chamber (401) is larger than the placement diameter of the second placement chamber (402), and placement boxes (403) are arranged on the upper sides of the inner walls of the first placement chamber (401) and the second placement chamber (402), and the partition baffles (5) are installed on both sides of the first placement chamber (401) and the second placement chamber (402), and the connecting bracket (6) is installed on the left side of the partition baffle (5).

3. The immunolabeling instrument for protecting and limiting labeled samples according to claim 1, characterized in that: The detection component (10) comprises a mounting bracket (11), a docking plate (12), a connecting rod (13) and a slide rail (14), wherein the docking plate (12) is installed on a side of the mounting bracket (11) away from the first conveying base (3) via bolts, and the connecting rod (13) is provided between the docking plate (12) and the side away from the mounting bracket (11), and the slide rail (14) is installed above the connecting rod (13) via bolts.

4. The immunolabeling instrument for protecting and limiting labeled samples according to claim 1, characterized in that: The detection assembly (10) further comprises a connecting shell (15), a second motor chamber and a detection probe (17), wherein the second motor chamber (16) is installed on the top of the connecting shell (15) by means of bolts, and the detection probe (17) is installed on the left side of the connecting shell (15) by means of bolts.

5. The immunolabeling instrument for protecting and limiting labeled samples according to claim 1, characterized in that: A movable limiting bracket (18) is installed at the center of the first conveying base (3) and the tube placing assembly (4), and a limiting groove is arranged above the movable limiting bracket (18).

6. The immunolabeling instrument for protecting and limiting labeled samples according to claim 1, characterized in that: A conveying groove (19) is arranged above the first conveying base (3) and the second conveying base (7), and a docking block (20) is arranged at the center of the conveying groove (19).

Citation Information

Patent Citations

  • Full-automatic cell immunolabeling instrument

    CN106526161A