Tumor vaccine storage device

By designing a tumor vaccine storage device with multiple storage tanks and lifting components, the problem of cross-infection of vaccines and inappropriate storage environment is solved, and safe and effective vaccine storage and access is achieved.

CN223253654UActive Publication Date: 2025-08-22XIAN ZHONGMEI HONGKANG MEDICAL LAB CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202520102090.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-16
Publication Date
2025-08-22
Estimated Expiration
2035-01-16

AI Technical Summary

Technical Problem

Existing vaccine storage devices cannot be distinguished and stored according to the type of vaccine, resulting in cross-infection and contamination, and it is easy to affect the effectiveness of the vaccine when taken.

Method used

A tumor vaccine storage device is designed, including multiple storage tanks and lifting components. The lifting components realize the partition storage and safe use of different types of vaccines. Combined with refrigeration tanks and temperature monitoring, it ensures that the vaccine is stored in a suitable environment.

Benefits of technology

It effectively reduces the risk of cross-infection, ensures that the vaccine is stored at the right temperature, and improves the safety and effectiveness of the access process.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223253654U_ABST
    Figure CN223253654U_ABST
Patent Text Reader

Abstract

The utility model belongs to the technical field of vaccine storage, and particularly relates to a tumor vaccine storage device which comprises a storage box and a protective cover arranged on the storage box and matched with the storage box, a storage device is placed in the storage box, and a plurality of sets of storage grooves are formed in the storage device. The lifting assembly is arranged in the storage groove and comprises a lifting cylinder arranged in the storage groove in a sliding mode, the bottom of the lifting cylinder is connected with a lifting spring through a fixing pin column, the lifting spring is fixedly connected with the bottom of the storage groove, the outer side of the lifting cylinder is connected with a limiting rod in a sliding mode, and the limiting rod is arranged in the storage groove through the limiting spring. According to the tumor vaccine storage box, the storage device is placed in the storage box, and the storage grooves are formed, so that different kinds of tumor vaccines can be conveniently placed, and the situation of cross infection of the vaccines can be effectively reduced. And meanwhile, the vaccines are placed in the storage grooves and can be driven through the lifting assemblies, so that the tumor vaccines are conveniently taken and placed, and pollution is avoided during taking and placing.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The utility model belongs to the technical field of vaccine storage, and specifically relates to a tumor vaccine storage device. Background Art

[0002] Tumor vaccines are therapeutic approaches designed to stimulate the body's immune system to recognize and attack tumor cells. They are typically created by introducing a patient's own tumor cells or associated antigens, thereby training the immune system to recognize and eliminate tumor cells. Vaccine designs and mechanisms of action vary widely, including chimeric antibodies, cytokines, and DNA vaccines.

[0003] Tumor vaccines primarily include protein subunit vaccines, peptide vaccines, and DNA vaccines. These vaccines typically need to be stored at low temperatures (e.g., 2-8°C) to maintain their activity and stability. Furthermore, tumor vaccines are sensitive to environmental factors such as light and humidity, so they must be stored away from direct sunlight and excessive humidity.

[0004] Existing vaccine storage devices fail to differentiate vaccines by type, leading to bacterial contamination when different vaccine types are stored together. Furthermore, storing different types of vaccines together can easily lead to cross-infection. Furthermore, due to the different vaccine types, the entire vaccine storage device must be opened to access the vaccine, which can affect its effectiveness. Utility Model Content

[0005] The purpose of this utility model is to provide a tumor vaccine storage device. By providing multiple storage slots within a storage box, different types of tumor vaccines can be placed separately, effectively reducing cross-contamination. Furthermore, a lifting assembly within the storage slots facilitates the removal and placement of tumor vaccines, ensuring that contamination is avoided during removal and placement.

[0006] The technical solutions adopted by this utility model are as follows:

[0007] A tumor vaccine storage device comprises a storage box and a protective cover provided on and adapted to the storage box, wherein a storage container is placed in the storage box and a plurality of storage slots are provided in the storage container;

[0008] A lifting assembly is provided in the storage tank, the lifting assembly includes a lifting cylinder slidably provided in the storage tank, a lifting spring is connected to the bottom of the lifting cylinder via a fixed pin, the lifting spring is fixedly connected to the bottom of the storage tank, the outer side of the lifting cylinder is slidably connected to a limit rod, and the limit rod is provided in the storage tank via a limit spring;

[0009] Among them, by placing the vaccine in the storage groove, pressing the lifting component to make the pressing force act on the top of the lifting cylinder, and then it can slide downward in the storage groove, driving the vaccine to the storage position for cooling and storage. At this time, the limit rod is acted on by the limit spring in the sliding groove on the lifting cylinder to fix the lifting cylinder and ensure that the vaccine is stably located in the storage position, ensuring safety during storage.

[0010] Furthermore, a sliding groove is provided on the outside of the lifting cylinder, a guide groove is provided below the sliding groove, and a sliding block is provided to slide inside the sliding groove, and the top of the sliding block is fixedly connected to the sliding groove through a return spring.

[0011] Furthermore, a fixer is provided above the lifting cylinder, the fixer is slidably connected to the storage slot, and a fixing hole is opened in the fixer.

[0012] Furthermore, a plurality of cooling slots are provided at the bottom of the storage container corresponding to each group of the storage slots, a cooling box is provided in the cooling slots for sliding movement via guide rails, and a plurality of cooling slots are provided in the cooling box.

[0013] Furthermore, a display panel is provided on one side of the storage box, and the display panels are electrically connected to the temperature sensors in the refrigeration tanks respectively.

[0014] Furthermore, a plurality of protective plates are provided above the protective cover for rotation via a connecting shaft, and the plurality of protective plates respectively correspond to the positions of the storage slots, and a plurality of elastic pressers are provided at the bottom of the protective plate, and the plurality of elastic pressers correspond to the positions of the storage slots.

[0015] The technical effects achieved by this utility model are:

[0016] The present invention provides a tumor vaccine storage device that can effectively place and retrieve tumor vaccines through the use of a lifting assembly. During storage, the lifting assembly can be used to position the vaccine in an effective storage position, facilitating low-temperature storage. When extraction is required, the vaccine can be extracted by pressing the vaccine in the protective hole, ensuring safety during extraction.

[0017] The present invention provides a tumor vaccine storage device that effectively separates and stores vaccines by dividing the interior of the storage box into different types of storage areas. It also effectively monitors the temperature within the storage tank to ensure that the vaccines are stored in a suitable environment without affecting their use. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a schematic diagram of the overall structure of this utility;

[0019] Figure 2This is a partial cross-sectional view of the overall structure of the utility model;

[0020] Figure 3 This is a practical Figure 2 A in the middle is an enlarged structural diagram;

[0021] Figure 4 It is a schematic diagram of the overall structure of this practical lifting component.

[0022] In the accompanying drawings, the components represented by the reference numerals are as follows:

[0023] 10. Storage box; 101. Display panel; 11. Storage container; 12. Storage slot; 13. Refrigeration slot; 14. Refrigeration box; 20. Protective cover; 21. Connecting shaft; 22. Protective plate; 23. Elastic presser; 30. Lifting assembly; 31. Lifting cylinder; 311. Fixing pin; 312. Sliding slot; 313. Guide slot; 314. Sliding block; 32. Lifting spring; 33. Limiting rod; 331. Limiting spring; 34. Fixer. DETAILED DESCRIPTION

[0024] In order to make the purpose and advantages of the present invention more clearly understood, the present invention is described in detail below with reference to the following embodiments. It should be understood that the following text is only used to describe one or several specific implementation methods of the present invention and does not strictly limit the scope of protection specifically claimed by the present invention.

[0025] like Figures 1-4 As shown, a tumor vaccine storage device comprises a storage box 10 and a protective cover 20 provided on and adapted to the storage box 10. A storage container 11 is placed in the storage box 10, and a plurality of storage slots 12 are provided in the storage container 11.

[0026] The lifting assembly 30 is disposed in the storage tank 12 and includes a lifting cylinder 31 that is slidably disposed in the storage tank 12. A lifting spring 32 is connected to the bottom of the lifting cylinder 31 via a fixed pin 311. The lifting spring 32 is fixedly connected to the bottom of the storage tank 12. A limit rod 33 is slidably connected to the outer side of the lifting cylinder 31. The limit rod 33 is disposed in the storage tank 12 via a limit spring 331.

[0027] Among them, by placing the vaccine in the storage groove 12, pressing the lifting component 30 so that the pressing force acts on the top of the lifting cylinder 31, it can then slide downward in the storage groove 12, driving the vaccine to the storage position for cooling and storage. At this time, the limiting rod 33 is acted on by the limiting spring 331 in the sliding groove 312 on the lifting cylinder 31, fixing the lifting cylinder 31 to ensure that the vaccine is stably located in the storage position and ensuring safety during storage.

[0028] It should be noted that a micro power supply (not shown) is provided within the storage box 10. The storage slot 12 is provided with a rubber material to protect the tumor vaccine and ensure its safety during storage. The overall shape of the sliding block 314 is trapezoidal, with inclined surfaces on the upper and lower sides.

[0029] In this embodiment, the storage box 10 provides effective protection for vaccine storage. The placement of a reservoir 11 within the storage box 10 effectively supports vaccine storage and ensures vaccine safety during storage. Multiple storage slots 12 within the storage box 11 allow for compartmentalized vaccine storage, effectively reducing the risk of bacterial infection during vaccine storage. A protective cover 20, compatible with the storage box 10, effectively reduces the ingress of airborne dust and microorganisms into the storage box 10, ensuring vaccine purity and safety. Furthermore, a lifting assembly 30 is positioned within the storage slots 12 to raise and lower the tumor vaccine, ensuring effective refrigerated storage. The lifting cylinder 31 within the lifting assembly 30 is positioned within the storage slots 12 to support the vaccine, effectively facilitating its storage and retrieval. A fixing pin 311 is provided at the bottom of the lifting cylinder 31, serving as its primary support component. Its sliding connection to the bottom of the storage slots 12 ensures stability during movement. By disposing a lifting spring 32 outside the fixed pin 311, when the lifting cylinder 31 descends, the lifting spring 32 is compressed to store energy. When the lifting cylinder 31 is no longer restricted by the limiting rod 33, the energy is released and the vaccines are lifted and lowered through the lifting cylinder 31, making it easy to access. The limiting rod 33 cooperates with the lifting cylinder 31 through the limiting spring 331. When it descends to a specified position, the limiting rod 33 applies resistance to the lifting cylinder 31 through the limiting spring 331, thereby preventing the lifting cylinder 31 from rising under the action of the lifting spring 32, ensuring effective storage of the vaccines.

[0030] like Figure 3 、 Figure 4As shown, by providing a sliding groove 312 on the outside of the lifting cylinder 31 and cooperating with the limiting rod 33 to limit the lifting cylinder 31, the range of movement of the lifting cylinder 31 can be precisely controlled while preventing it from exceeding the operating height. By providing a guide groove 313 below the sliding groove 312, the limiting rod 33 can be effectively guided, ensuring that the limiting rod 33 can effectively move into the sliding groove 312 during use and effectively limit the bottom of the sliding groove 312, preventing the lifting cylinder 31 from rebounding under the action of the lifting spring 32. Simultaneously, a sliding block 314 is slidably arranged within the sliding groove 312. When the lifting cylinder 31 descends again, it drives the sliding block 314 and compresses the limiting rod 33, forcing the limiting rod 33 above the sliding block 314. When the lifting cylinder 31 is no longer under pressure, the lifting spring 32 will drive the lifting cylinder 31 to rise. It should be noted that the elastic force of the limiting spring 331 is greater than the return spring above the sliding block 314. At this time, the limiting spring 331 drives the limiting rod 33, exerting pressure on the sliding block 314, and sliding downward in the sliding groove 312 relative to the rise of the lifting cylinder 31. When the sliding block 314 is in contact with the upper part of the sliding groove 312, the sliding block 314 exerts pressure on the limiting rod 33, causing it to contract and slide from the surface of the sliding block 314 into the guide groove 313, releasing the limit on the lifting cylinder 31, allowing the lifting cylinder 31 to move the vaccine up to the extraction position.

[0031] Preferably, by providing a holder 34 (made of a material with good thermal conductivity, or a hollow frame according to actual conditions, which will not be described in detail here) above the lifting cylinder 31, the vaccine can be effectively fixed to ensure that it does not shake during storage. At the same time, by pressing the holder 34, power can be effectively applied to the lifting cylinder 31 to prevent direct pressure on the vaccine, which would affect the effectiveness of the vaccine. By providing a fixing hole in the holder 34 for placing the vaccine, and the interior of the fixing hole is made of a flexible material, the vaccine can be effectively protected from being squeezed.

[0032] like Figure 2, by opening a plurality of refrigeration grooves 13 at the bottom of the storage container 11, for placing ice bags, and ensuring that the temperature of the storage tank 12 can be kept stable. Among them, the inside of the refrigeration groove 13 is connected to the refrigeration box 14 through a guide rail, and a plurality of cooling grooves are opened in the refrigeration box 14, and ice bags are placed in the cooling grooves, which can effectively generate cold energy to reduce the temperature in the storage tank 12 to meet the storage needs of the vaccine. It should be noted that the refrigeration box 14 is connected to the refrigeration groove 13 by magnetic attraction, which can effectively ensure that the refrigeration box 14 will not move during use, and a sealing strip is provided on the refrigeration box 14, which can effectively prevent the leakage of the internal temperature and ensure the sealing of the vaccine during storage. It should be noted that a temperature sensor is correspondingly provided in the refrigeration groove 13, which can effectively monitor the temperature in the storage tank 12 and ensure the safety of the vaccine during storage.

[0033] Preferably, by providing a display panel 101 on the outside of the storage box 10 and electrically connecting the display panel 101 to the temperature sensor in the cooling tank 13, the current storage temperature can be effectively observed. At the same time, the display panel 101 can provide a real-time monitoring function, which helps to extend the shelf life of the vaccine and maintain its activity.

[0034] In addition, regarding the power supply problem of the above-mentioned sensors and display panels, a built-in battery (conventional method) can be selected, which will not be described in detail here.

[0035] like Figure 2 A plurality of protective plates 22 are rotatably mounted above the protective cover 20 via a connecting shaft 21. The protective plates 22 are positioned above the storage slot 12. When closed, they prevent foreign objects or dust from entering the storage slot 12, thereby protecting the vaccines from contamination and damage. Furthermore, an elastic presser 23 is provided at the bottom of the protective plates 22. When the protective plates 22 are closed, the elastic presser 23 is effectively driven to press against the top of the retainer 34, preventing the retainer 34 from moving during storage, which could cause the vaccines to move out of their storage position. This effectively ensures the safety of vaccine storage.

[0036] The working principle of this utility model is as follows: by placing the ice pack in the cooling groove opened in the refrigeration box 14, by driving the refrigeration box 14 and the refrigeration groove 13 to close, the magnetic attraction can effectively ensure that the refrigeration box 14 will not move during use. Then, the vaccines are placed in the holders 34 in the storage groove 12 respectively, and the lifting cylinder 31 is driven down by pressing the holders 34, so that the limiting rod 33 and the lifting cylinder 31 have a limiting effect, ensuring that the vaccine is stably located in the effective storage position. At the same time, by closing the protective plate 22, the elastic presser 23 under the protective plate 22 can fix the top of the holder 34 to prevent the holder 34 from moving during the storage process, thereby causing the vaccine to leave the effective storage area.

[0037] The above description is only a preferred embodiment of the present invention. It should be noted that those skilled in the art can make various improvements and modifications without departing from the principles of the present invention, and such improvements and modifications should also be considered within the scope of protection of the present invention. Structures, devices, and operating methods not specifically described or explained in this application shall be implemented in accordance with conventional means in the art unless otherwise specified or limited.

Claims

1. A tumor vaccine storage device, characterized in that: include: A storage box (10) and a protective cover (20) provided on and adapted to the storage box (10), wherein a storage container (11) is placed in the storage box (10), and a plurality of storage slots (12) are provided in the storage container (11); A lifting assembly (30), the lifting assembly (30) is arranged in the storage slot (12), the lifting assembly (30) includes a lifting cylinder (31) slidably arranged in the storage slot (12), the bottom of the lifting cylinder (31) is connected to a lifting spring (32) through a fixed pin (311), the lifting spring (32) is fixedly connected to the bottom of the storage slot (12), the outer side of the lifting cylinder (31) is slidably connected to a limit rod (33), and the limit rod (33) is arranged in the storage slot (12) through a limit spring (331); Among them, by placing the vaccine in the storage groove (12), pressing the lifting component (30) so that the pressing force acts on the top of the lifting cylinder (31), it can then slide downward in the storage groove (12), driving the vaccine to the storage position for cooling and storage. At this time, the limiting rod (33) is acted on by the limiting spring (331) in the sliding groove (312) on the lifting cylinder (31), fixing the lifting cylinder (31) to ensure that the vaccine is stably located in the storage position and ensuring safety during storage.

2. The tumor vaccine storage device according to claim 1, characterized in that: A sliding groove (312) is provided on the outside of the lifting cylinder (31), a guide groove (313) is provided below the sliding groove (312), and a sliding block (314) is provided in the sliding groove (312) for sliding. The top of the sliding block (314) is fixedly connected to the sliding groove (312) via a return spring.

3. The tumor vaccine storage device according to claim 2, characterized in that: A fixer (34) is provided above the lifting cylinder (31), the fixer (34) is slidably connected to the storage slot (12), and a fixing hole is provided in the fixer (34).

4. The tumor vaccine storage device according to claim 1, characterized in that: A plurality of cooling grooves (13) are provided at the bottom of the storage container (11) corresponding to the plurality of storage grooves (12). A cooling box (14) is provided in the cooling groove (13) via a guide rail for sliding. The cooling box (14) is provided with a plurality of cooling grooves.

5. The tumor vaccine storage device according to claim 4, characterized in that: A display panel (101) is provided on one side of the storage box (10), and the display panel (101) is electrically connected to the temperature sensors in the refrigeration tank (13).

6. The tumor vaccine storage device according to claim 1, characterized in that: A plurality of protective plates (22) are rotatably provided above the protective cover (20) via a connecting shaft (21), and the plurality of protective plates (22) respectively correspond to the positions of the storage slots (12), and a plurality of elastic pressers (23) are provided below the protective plates (22), and the plurality of elastic pressers (23) correspond to the positions of the storage slots (12).