Glycocholic acid determination kit

Through the design of the shading and storage mechanism, the contamination and contact risks of the reagent tube during use are solved, and the protection and convenient operation of the reagent tube are achieved.

CN223132719UActive Publication Date: 2025-07-22SHANDONG QUANLI BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422497513.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-16
Publication Date
2025-07-22
Estimated Expiration
2034-10-16

AI Technical Summary

Technical Problem

After the existing glycocholic acid assay kit is opened, the reagent tube is easily contaminated by dust or bacteria in the air, and there is a risk of contact between the hands and other reagent tubes when taken.

Method used

The shading mechanism and storage mechanism are adopted to achieve shading and independent ejection of the reagent tube through the cooperation of rotating parts and elastic parts, avoiding the reagent tube being directly exposed to the air, and disinfection and cleaning by wiping the sponge.

Benefits of technology

Effectively prevent the reagent tube from being contaminated by dust or bacteria in the air, improve the convenience and safety of operation, and avoid the risk of hands contacting other reagent tubes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a glycocholic acid determination kit, and relates to the technical field of kits. Comprising a cylinder body provided with a top cover and a storage mechanism arranged in the cylinder body, the storage mechanism comprises a mounting cylinder, a rotating component, a plurality of connecting rods, a plurality of reagent racks and a plurality of groups of elastic components, the mounting cylinder is arranged on the rotating component, the rotating component is arranged in the cylinder body, and the connecting rods are slidably embedded in the outer wall of the mounting cylinder at equal intervals in the circumferential direction; each reagent rack is fixedly arranged on one side of the outer wall of the connecting rod, and each group of elastic components are arranged on the connecting rod. According to the glycocholic acid determination kit, reagent tubes can be shielded and protected through the shielding mechanism, the situation that after the top cover is opened, all the reagent tubes are directly exposed in the air, and dust or bacteria in the air pollute the reagent tubes is avoided, the reagent tubes can be independently popped out to be taken through the storage mechanism, and the situation that when one reagent tube is taken, the reagent tubes are not damaged is effectively avoided. And the risk that the hand of a user is in contact with other reagent tubes exists.
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Description

Technical Field

[0001] The utility model relates to the technical field of reagent kits, in particular to a cholyglycine determination reagent kit. Background Technique

[0002] Cholyglycine is a conjugated cholic acid synthesized from cholic acid and glycine in the liver and is one of the main cholic acid components. Changes in its content are of great value in the diagnosis and treatment of liver diseases. When the liver is damaged, hepatocytes cannot effectively uptake CG that reaches the liver through the enterohepatic circulation, resulting in an increase in the content of CG in the blood; when there is cholestasis, the liver has difficulty excreting cholic acid and it flows back into the blood circulation, which can also increase the content of CG in the blood.

[0003] The authorized publication number "CN221563897U" records "a cholyglycine determination reagent kit, including a cylinder body and reagent tubes. An installation column is rotatably installed in the cylinder body, and a plurality of tube buckles are equidistantly installed on the outer wall of the installation column. The reagent tubes are arranged on the outer wall of the installation column through the tube buckles. A wiping sponge is installed on the inner wall of the cylinder body, and the side of the wiping sponge away from the inner wall of the cylinder body is in contact with the outer wall of the reagent tube. A transparent plastic bag is installed on the outer wall of the cylinder body. In the utility model, when the reagent tube rotates, it is in contact with the outer wall of the wiping sponge, and the wiping sponge absorbs the disinfectant and wipes the outer surface of the reagent tube for disinfection treatment, which can disinfect the bacteria contaminated on the outer surface of the reagent tube, avoid the reagent tube being contaminated by the bacteria contaminated after the outer wall of the reagent tube contacts the user's hand or the air in the ward, and can disinfect the outer surface of the reagent tube, thereby ensuring the safety of the reagent tube when it is used next time."

[0004] The above patent can disinfect the bacteria contaminated on the outer surface of the reagent tube and avoid the reagent tube being contaminated by the bacteria contaminated after the outer wall of the reagent tube contacts the user's hand or the air in the ward. However, after opening the top cover of the cylinder body in the above patent, all reagent tubes will be directly exposed to the air, and the reagent tubes will be contaminated by dust or bacteria in the air. Moreover, when taking one reagent tube, there is still a risk that the user's hand will contact other reagent tubes. Content of the Utility Model

[0005] The utility model provides a cholyglycine determination reagent kit. Through a shielding mechanism, the reagent tubes can be shielded and protected to avoid all reagent tubes being directly exposed to the air after opening the top cover, and the reagent tubes will be contaminated by dust or bacteria in the air. Through a storage mechanism, the reagent tubes can be independently ejected for taking, effectively avoiding the risk that the user's hand will contact other reagent tubes when taking one reagent tube.

[0006] To achieve the above purposes, the utility model is realized through the following technical solutions: a cholyglycine determination reagent kit, including:

[0007] A cylinder body installed with a top cover;

[0008] A storage mechanism is provided inside the cylinder. The storage mechanism includes an installation cylinder, a rotating component, a plurality of connecting rods, a plurality of reagent racks, and multiple groups of elastic components. The installation cylinder is provided on the rotating component, and the rotating component is provided inside the cylinder. Each connecting rod is slidably embedded in the outer wall of the installation cylinder at equal intervals in the circumferential direction. Each reagent rack is fixedly arranged on one side of the outer wall of the connecting rod. Each group of elastic components is arranged on the connecting rod;

[0009] A shielding mechanism is provided inside the cylinder. The shielding mechanism includes a shielding rack and a discharge hole. The shielding rack is fixedly arranged on the inner wall of the cylinder, and the discharge hole is opened at the top of the outer wall of the shielding rack;

[0010] There are multiple reagent tubes, and each reagent tube is slidably embedded in the inner wall of the reagent rack.

[0011] Furthermore, the rotating component includes a rotating shaft and a rotating motor. The rotating motor is installed at the bottom of the inner wall of the cylinder through bolts. The rotating shaft is fixedly arranged at the output end of the rotating motor, and the installation cylinder is fixedly sleeved on the inner wall of the rotating shaft.

[0012] Furthermore, each group of elastic components includes a first spring, a first rack, an installation component, and a driving component. The first rack is fixedly arranged on one side of the outer wall of the connecting rod. One end of the first spring is fixedly arranged on the top of the outer wall of the first rack, and the other end of the first spring is fixedly arranged on the top of the inner wall of the installation cylinder. The installation component is arranged inside the installation cylinder, and the driving component is arranged inside the installation cylinder.

[0013] Furthermore, each group of installation components includes an installation rack and a gear. The installation rack is fixedly arranged at the bottom of the inner wall of the installation cylinder. The gear is movably sleeved on the outer wall of the installation rack, and the gear meshes with the first rack.

[0014] Furthermore, each group of driving components includes a moving block, a second rack, a pressing rod, and a second spring. The moving block is slidably embedded in the outer wall of the rotating shaft. The second rack is fixedly arranged on one side of the outer wall of the moving block. The pressing rod is fixedly arranged on the top of the outer wall of the second rack, and the pressing rod slidably penetrates through the top of the outer wall of the installation cylinder. One end of the second spring is fixedly arranged on the bottom of the outer wall of the second rack, and the other end of the second spring is fixedly arranged on the bottom of the inner wall of the installation cylinder. The second rack meshes with the gear.

[0015] Furthermore, two wiping sponges are installed on the inner wall of the cylinder.

[0016] The present utility model provides a glycochenodeoxycholic acid determination kit, which has the following beneficial effects:

[0017] (1) The glycochenodeoxycholic acid assay kit can shield and protect reagent tubes through a shielding mechanism, preventing all reagent tubes from being directly exposed to the air after the top cover is opened, and thus avoiding contamination of the reagent tubes by dust or bacteria in the air.

[0018] (2) The glycochenodeoxycholic acid assay kit can independently eject and retrieve reagent tubes through a storage mechanism, effectively avoiding the risk of the user's hand coming into contact with other reagent tubes when retrieving one reagent tube. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 is a perspective view of the present utility model;

[0020] Figure 2 is a cross-sectional view of the cylinder of the present utility model;

[0021] Figure 3 is a cross-sectional view of the mounting cylinder of the present utility model;

[0022] Figure 4 is a partial exploded view of the present utility model.

[0023] In the figure: 1. Cylinder; 2. Top cover; 3. Storage mechanism; 301. Mounting cylinder; 302. Connecting rod; 303. Reagent rack; 304. Rotating shaft; 305. Rotating motor; 306. First spring; 307. First rack; 308. Mounting frame; 309. Gear; 310. Moving block; 311. Second rack; 312. Pressing rod; 313. Second spring; 4. Shielding mechanism; 401. Shielding frame; 402. Discharge hole; 5. Reagent tube; 6. Wiping sponge. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0024] The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.

[0025] Please refer to Figures 1-4 , the present utility model provides a technical solution: a glycochenodeoxycholic acid assay kit, comprising:

[0026] A cylinder 1 with a top cover 2 installed;

[0027] The storage mechanism 3 is disposed inside the cylinder body 1. The storage mechanism 3 includes an installation cylinder 301, a rotating member, a plurality of connecting rods 302, a plurality of reagent racks 303, and multiple groups of elastic members. The installation cylinder 301 is disposed on the rotating member, the rotating member is disposed inside the cylinder body 1. Each connecting rod 302 is slidably embedded in the outer wall of the installation cylinder 301 at equal intervals in the circumferential direction. Each reagent rack 303 is fixedly disposed on one side of the outer wall of the connecting rod 302. Each group of elastic members is disposed on the connecting rod 302;

[0028] The shielding mechanism 4 is disposed inside the cylinder body 1. The shielding mechanism 4 includes a shielding rack 401 and a discharge hole 402. The shielding rack 401 is fixedly disposed on the inner wall of the cylinder body 1. The discharge hole 402 is opened at the top of the outer wall of the shielding rack 401;

[0029] There are multiple reagent tubes 5, and each reagent tube 5 is slidably embedded in the inner wall of the reagent rack 303.

[0030] In this embodiment: The inner wall of the top cover 2 is threadedly connected to the outer wall of the cylinder body 1 near the top edge. Through the storage mechanism 3, it is used for the installation and placement of each reagent tube 5, and can quickly take the corresponding reagent tube 5 as needed, avoiding touching other reagent tubes 5. By driving the installation cylinder 301 to rotate through the rotating member, the position of each reagent rack 303 is changed, facilitating the taking of the required reagent rack 303 from the discharge hole 402. At the same time, when the installation cylinder 301 is rotated, the reagent tubes 5 in each reagent rack 303 can be brought into contact with the wiping sponge 6, facilitating the disinfection and cleaning of the outer walls of the reagent tubes 5. Through the connecting rod 302, it is used for the installation and placement of the reagent rack 303. Through the reagent rack 303, it is used for placing and installing the reagent tubes 5. Through the elastic members, the reagent racks 303 on each connecting rod 302 can be driven to lift, so that the reagent tubes 5 slide through the discharge hole 402, facilitating the quick taking of the required reagent tubes 5, improving the convenience and efficiency of the operation. Through the shielding rack 401, the reagent tubes 5 are shielded and protected, avoiding all the reagent tubes 5 being directly exposed to the air after the top cover 2 is opened, and dust or bacteria in the air will contaminate the reagent tubes 5. The material of the shielding rack 401 is transparent plastic, so as to facilitate seeing each reagent tube 5, and the vertical cross-section of the shielding rack 401 is in a T shape.

[0031] Specifically, the rotating member includes a rotating shaft 304 and a rotating motor 305. The rotating motor 305 is installed on the bottom of the inner wall of the cylinder body 1 by bolts. The rotating shaft 304 is fixedly disposed at the output end of the rotating motor 305. The installation cylinder 301 is fixedly sleeved on the inner wall of the rotating shaft 304.

[0032] In this embodiment: When the rotation motor 305 is powered on, it drives the rotation shaft 304 to rotate. The rotation shaft 304 drives the installation cylinder 301 to rotate within the cylinder body 1, which can change the position of each reagent tube 5, so that each reagent tube 5 comes into contact with the wiping sponge 6. At the same time, it can also make each reagent tube 5 move to the lower part of the discharge hole 402 in sequence. The power of the rotation motor 305 comes from an external power source, and it should be electrically connected to the external power source. The internal circuit principle structure belongs to the common knowledge of those skilled in the art and will not be introduced in detail here. Its model can be selected according to the actual usage situation.

[0033] Specifically, each group of the elastic components includes a first spring 306, a first rack 307, an installation component, and a driving component. The first rack 307 is fixedly arranged on one side of the outer wall of the connecting rod 302. One end of the first spring 306 is fixedly arranged on the top of the outer wall of the first rack 307, and the other end of the first spring 306 is fixedly arranged on the top of the inner wall of the installation cylinder 301. The installation component is arranged inside the installation cylinder 301, and the driving component is arranged inside the installation cylinder 301.

[0034] In this embodiment: By driving the installation component through the driving component, the installation component drives the first rack 307 to move. The first rack 307 drives the reagent rack 303 on the connecting rod 302 to rise, enabling the reagent tube 5 to be exposed from the discharge hole 402, thus facilitating the taking of the reagent tube 5 and avoiding contact with other reagent tubes 5 during manual taking. Through the elastic force of the first spring 306, the first rack 307 can be extruded.

[0035] Specifically, each group of installation components includes an installation frame 308 and a gear 309. The installation frame 308 is fixedly arranged at the bottom of the inner wall of the installation cylinder 301. The gear 309 is movably sleeved on the outer wall of the installation frame 308, and the gear 309 meshes with the first rack 307.

[0036] In this embodiment: The installation frame 308 is used for the installation and placement of the gear 309. By rotating the gear 309, the first rack 307 can be driven to move.

[0037] Specifically, each group of driving components includes a moving block 310, a second rack 311, a pressing rod 312, and a second spring 313. The moving block 310 is slidably embedded on the outer wall of the rotation shaft 304. The second rack 311 is fixedly arranged on one side of the outer wall of the moving block 310. The pressing rod 312 is fixedly arranged on the top of the outer wall of the second rack 311, and the pressing rod 312 slidably penetrates through the top of the outer wall of the installation cylinder 301. One end of the second spring 313 is fixedly arranged on the bottom of the outer wall of the second rack 311, and the other end of the second spring 313 is fixedly arranged on the bottom of the inner wall of the installation cylinder 301. The second rack 311 meshes with the gear 309.

[0038] In this embodiment: A plurality of sliding grooves are equidistantly arranged along the circumferential direction on the outer wall of the rotating shaft 304. Each sliding groove is slidably matched with the moving block 310, which can play a guiding role in the movement of the second rack 311. By pressing down the pressing rod 312, the second rack 311 can be moved downward, driving the gear 309 to rotate on the mounting frame 308, thereby driving the first rack 307 to drive the reagent rack 303 on the connecting rod 302 to rise, enabling the reagent tube 5 to be exposed from the discharge hole 402. Through the elastic force of the second spring 313, the second rack 311 and the pressing rod 312 can be pushed up.

[0039] Specifically, two wiping sponges 6 are installed on the inner wall of the cylinder body 1.

[0040] In this embodiment: A connecting pipe is provided inside the wiping sponge 6. One end of the connecting pipe is connected to the external disinfectant solution. After the wiping sponge 6 absorbs the disinfectant solution and comes into contact with the reagent tube 5, it can disinfect and clean the outer wall of the reagent tube 5.

[0041] During use, first open the top cover 2 on the cylinder body 1. According to the need, start the rotating motor 305. The rotating motor 305 drives the rotating shaft 304 to rotate, driving the mounting cylinder 301 to rotate inside the cylinder body 1, moving the required reagent tube 5 to the lower part of the discharge hole 402. Then manually press the pressing rod 312 beside the discharge hole 402 to move the second rack 311 downward, driving the gear 309 to rotate on the mounting frame 308. The gear 309 drives the first rack 307 to drive the reagent rack 303 on the connecting rod 302 to rise, enabling the reagent tube 5 to be exposed from the discharge hole 402, so that the reagent tube 5 can be independently ejected and taken, eliminating the need to manually rummage through and extract the reagent tube 5, greatly improving the operation convenience and efficiency, effectively preventing the user's hand from contacting other reagent tubes 5. Through the shielding frame 401, it can prevent all the reagent tubes 5 from being directly exposed to the air after the top cover 2 is opened, and dust or bacteria in the air will contaminate the reagent tubes 5.

[0042] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and inventive concept of the present invention, makes equivalent substitutions or changes, and all should be covered within the protection scope of the present invention.

Claims

1. A kit for determining glycocholic acid, characterized in that, Comprising: A cylinder body (1) installed with a top cover (2); A storage mechanism (3) disposed inside the cylinder body (1), the storage mechanism (3) includes a mounting cylinder (301), a rotating member, a plurality of connecting rods (302), a plurality of reagent racks (303) and multiple groups of elastic members. The mounting cylinder (301) is disposed on the rotating member, the rotating member is disposed inside the cylinder body (1), each of the connecting rods (302) is slidably embedded in the outer wall of the mounting cylinder (301) at equal intervals along the circumferential direction, each of the reagent racks (303) is fixedly disposed on one side of the outer wall of the connecting rod (302), and each group of elastic members is disposed on the connecting rod (302); A shielding mechanism (4) disposed inside the cylinder body (1), the shielding mechanism (4) includes a shielding frame (401) and a discharge hole (402), the shielding frame (401) is fixedly disposed on the inner wall of the cylinder body (1), and the discharge hole (402) is opened at the top of the outer wall of the shielding frame (401); A plurality of reagent tubes (5), each of the reagent tubes (5) is slidably embedded in the inner wall of the reagent rack (303).

2. The glycochenodeoxycholic acid assay kit according to claim 1, characterized in that: The rotating member includes a rotating shaft (304) and a rotating motor (305), the rotating motor (305) is installed at the bottom of the inner wall of the cylinder body (1) by bolts, the rotating shaft (304) is fixedly disposed at the output end of the rotating motor (305), and the mounting cylinder (301) is fixedly sleeved on the inner wall of the rotating shaft (304).

3. The glycochenodeoxycholic acid assay kit according to claim 2, wherein: Each group of elastic members includes a first spring (306), a first rack (307), a mounting component and a driving component. The first rack (307) is fixedly disposed on one side of the outer wall of the connecting rod (302), one end of the first spring (306) is fixedly disposed at the top of the outer wall of the first rack (307), and the other end of the first spring (306) is fixedly disposed at the top of the inner wall of the mounting cylinder (301). The mounting component is disposed inside the mounting cylinder (301), and the driving component is disposed inside the mounting cylinder (301).

4. The glycochenodeoxycholic acid assay kit according to claim 3, wherein: Each group of mounting components includes a mounting frame (308) and a gear (309). The mounting frame (308) is fixedly disposed at the bottom of the inner wall of the mounting cylinder (301), the gear (309) is movably sleeved on the outer wall of the mounting frame (308), and the gear (309) meshes with the first rack (307).

5. The glycochenodeoxycholic acid assay kit according to claim 4, wherein: Each group of driving components includes a moving block (310), a second rack (311), a pressing rod (312) and a second spring (313). The moving block (310) is slidably embedded in the outer wall of the rotating shaft (304), the second rack (311) is fixedly disposed on one side of the outer wall of the moving block (310), the pressing rod (312) is fixedly disposed at the top of the outer wall of the second rack (311), and the pressing rod (312) slidably penetrates through the top of the outer wall of the mounting cylinder (301). One end of the second spring (313) is fixedly disposed at the bottom of the outer wall of the second rack (311), and the other end of the second spring (313) is fixedly disposed at the bottom of the inner wall of the mounting cylinder (301). The second rack (311) meshes with the gear (309).

6. The glycochenodeoxycholic acid assay kit according to claim 5, characterized in that: Two wiping sponges (6) are installed on the inner wall of the cylinder body (1).

Citation Information

Patent Citations

  • Glycocholic acid determination kit

    CN221563897U