Immune cell transportation device
By designing an insulated support, limiting components, and a convenient sealing cap structure in the immune cell transport device, the problems of cumbersome sampling and contamination risk of existing devices are solved, achieving convenient sampling and protection of immune cells.
Patent Information
- Application Number
- CN202422812373.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-19
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2034-11-19
AI Technical Summary
Existing immune cell transport devices are cumbersome to use during sampling and pose risks of spillage and contamination, affecting the effectiveness of sample use.
An immune cell transport device was designed, comprising a transport box, an insulated support, a limiting component, and a sealing cap. A cooling tube is installed via a support block between the insulated support and the transport box. The insulated support has an installation groove and a limiting component. Test tubes can be detachably installed inside the limiting component. A pull ring and a magnet are used to facilitate the removal and fixation of the test tubes. A shoulder strap facilitates the movement of the transport box.
It enables a convenient sampling and placement process, avoids reagent leakage and contamination, protects the integrity of immune cells, and reduces damage during transportation.
Smart Images

Figure CN223673194U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to immune cell transportation related technical field, especially to a kind of immune cell transportation device. BACKGROUND
[0002] As an important part of human immune system, immune cells have the effect of eliminating and killing pathogenic agents, cancer cells and other harmful substances. Immune cells mainly include T cells, B cells, natural killer cells (NK cells), macrophages, dendritic cells, etc. They can recognize antigens, participate in immune response, and are an important force for the human body to resist external pathogens and eliminate harmful substances in the body. Immune cells play an important role in immune surveillance, immune defense and immune self-stabilizing function in the human body. Immune cells need to maintain an appropriate temperature range during transportation. Immune cells must maintain their integrity and safety during transportation. Immune cells should avoid shaking and inverting during transportation to prevent damage to the cells. The existing immune cell transportation device is packaged and transported using buffer cotton. It is troublesome to take samples and there is a risk of spilling. The sample is easily contaminated.
[0003] Chinese patent authorized announcement number: CN215852604U, authorized announcement date: February 18, 2022, discloses a kind of stem cell transportation device, including device shell, the top outer surface of the device shell is provided with sealing cover, the bottom of the sealing cover and located the top outer surface of device shell is provided with positioning plate, the inside of the positioning plate is provided with multiple groups of placing cylinder, the inside of the top of the placing cylinder is provided with limit ring, the bottom of the limit ring and located the inside of placing cylinder is provided with multiple groups of clamping plate, the outside of the clamping plate and located the inside of placing cylinder is provided with multiple groups of spring, the bottom of the placing cylinder and located the inside of device shell is provided with support frame, the bottom outer surface of the support frame is provided with motor, the both sides of the motor and located the inside of device shell is provided with cooling machine. The utility model has the shortcomings that the transportation device is for the transportation of stem cells, and the stem cell samples are placed in a concentric arrangement. Although it can play a good heat preservation role, it lacks a convenient sampling and sample placing structure. It is still troublesome to sample. It is easy to cause sample leakage or sample contamination due to incorrect operation of the operator, which affects the use effect of the sample. UTILITY MODEL CONTENT
[0004] The utility model is to overcome the deficiency of the prior art that sampling is troublesome and has a risk of spilling, and provides an immune cell transportation device that facilitates sampling and sample placement.
[0005] To achieve the above-mentioned purpose, the utility model adopts the following technical solutions:
[0006] The utility model provides an immune cell transportation device, including transportation box, the detachable installation of sealing cover is installed to the upper end of transportation box, be equipped with heat preservation support in transportation box, be equipped with support block between heat preservation support and transportation box, heat preservation support is connected with transportation box through support block, even a plurality of cooling pipes are installed between transportation box and heat preservation support, even a plurality of installation grooves are equipped on heat preservation support, the opening direction of installation groove is consistent with the opening direction of transportation box, the detachable installation of limit component is installed in installation groove, the top end of limit component is installed with pull ring, the detachable installation of test tube is installed in limit component, the opening of transportation box is installed with heat insulation board, heat insulation board is connected with the upper end of heat preservation support, the thermometer is installed on sealing box.
[0007] Firstly, the sealing cover is detachably installed on the transportation box, the heat preservation support in the transportation box is installed in the transportation box through the support block between the heat preservation support and the transportation box, a plurality of cooling pipes are evenly installed in the gap between the transportation box and the heat preservation support, which is used for keeping the temperature in the transportation box at a low temperature state to maintain the activity of immune cells, the material of the heat preservation support can be foamed cotton, which is beneficial to heat preservation and also provides a certain protection function, the limit component is installed in the installation groove on the heat preservation support, the test tube is detachably installed in the limit component, and the test tube can be easily taken out through the pull ring at the top end of the limit component. Meanwhile, the installation grooves are relatively staggered, which effectively avoids mutual pollution between test samples, and achieves the purpose of convenient sampling and sample placing.
[0008] As preferred, the rear end surface side of the transportation box is provided with a connecting piece one, the rear end surface of the sealing cover is provided with a connecting piece two, the connecting piece one is provided with a through hole one, the connecting piece two is provided with a rotating shaft one, the sealing cover is rotatably connected with the connecting piece one through the connecting piece two, the through hole one and the rotating shaft one, the front end surface of the transportation box is provided with a connecting piece three, the connecting piece three is provided with a through hole two, the connecting piece three is provided with a buckle, one end of the buckle is provided with a rotating shaft two, the buckle is rotatably connected with the transportation box through the cooperation of the rotating shaft two and the through hole two, the upper end surface of the sealing cover is provided with a clamping groove at a position corresponding to the buckle, the other end of the buckle is provided with a flange, and the flange is detachably connected with the clamping groove. By rotating the buckle along the rotating shaft two, the flange is separated from the clamping groove, the sealing cover is rotatably connected with the connecting piece one through the connecting piece two, the through hole one and the rotating shaft one, and the sealing cover is flipped and separated from the transportation box along the rotating shaft one, so that the transportation box is easily opened and closed.
[0009] As preferred, the limiting assembly comprises a limiting frame and a limiting tube, the pull ring is arranged on the top end surface of the limiting frame, the limiting frame is provided with a limiting slot, the limiting tube is arranged in the limiting slot, a magnet one is installed on the inner wall of the limiting slot, a magnet two is installed on the outer wall of the limiting tube, the limiting tube is detachably connected with the limiting frame through the cooperation of the magnet one and the magnet two, a sliding channel is arranged in the limiting tube, the sliding channel penetrates one end of the limiting tube, the opening of the sliding channel is consistent with the opening direction of the mounting slot, and the test tube is detachably mounted in the sliding channel. The pull ring facilitates the removal of the limiting frame from the mounting slot, and the limiting tube can be removed from the limiting frame by pulling it outward. When it is needed to be put in, the cooperation of the magnet one and the magnet two can fix the limiting tube in the limiting frame, so that the test tube is convenient to take out and the limiting tube is fixed.
[0010] As preferred, a spherical base is installed on the inner side of the bottom end of the limiting slot, and a spherical connecting piece is installed on the bottom end of the limiting tube. The spherical connecting piece is rotatably installed in the spherical base. When the limiting tube is removed from the limiting slot, the cooperation of the spherical connecting piece and the spherical base makes the limiting tube not completely separated from the limiting slot, thereby avoiding the leakage and falling of the reagent due to hand error.
[0011] As preferred, a limiting piece is installed on the inner side of the upper end of the limiting frame, a movable rod is slidably installed in the limiting piece, one end of the movable rod is arranged in the limiting tube and is sleeved with a spring, the two ends of the spring are respectively connected with the inner wall of the limiting piece and the movable rod, a baffle is arranged below the limiting piece, and the other end of the movable rod is connected with the baffle. After the limiting tube is installed into the limiting frame, the spring pushes the baffle downward to further fix the position of the limiting tube, so that the test tube is convenient to fix.
[0012] As preferred, recesses are arranged on the inner walls of the left and right sides of the mounting slot, movable rods are arranged in the recesses, springs are sleeved on the outer sides of the movable rods, one end of each spring is connected with the recess, the other end of each spring is connected with the movable rod, a push plate is installed on one end of each movable rod, the outer side surface of each push plate is in contact with the limiting frame, anti-skid lines are arranged on the outer side surfaces of the push plates, clamping blocks are arranged at the openings of the recesses, and annular flanges are arranged on one end of each movable rod. The springs push the push plates on both sides to clamp the limiting frame, so that the limiting frame is more stable in the mounting slot, and the immune cells are prevented from being damaged during transportation.
[0013] As preferred, a fixing slot is arranged on the top end surface of the sealing cover, a rotating shaft is arranged in the fixing slot, a handle is arranged in the fixing slot, the cross-sectional shape of the handle is U-shaped, through holes are arranged at both ends of the handle, and the handle is rotatably installed in the fixing slot through the cooperation of the rotating shaft and the through holes. The handle rotatably installed in the fixing slot reduces the occupied space of the transportation box, and the transportation box is convenient to lift through the handle.
[0014] As preferred, the left and right ends of the transport box are provided with sockets, the outer side of the transport box is provided with a shoulder strap, both ends of the shoulder strap are provided with an insertion block, the socket is provided with an insertion slot, the insertion block is detachably installed in the insertion slot, the insertion slot is provided with a through hole on the front and back sides, the insertion block is composed of a main body and three supporting blocks, the supporting blocks are installed on one side of the main body, the supporting blocks on both sides are provided with a flange, the flange is detachably installed in the through hole, and the shoulder strap is connected with the socket through the insertion block. When it is necessary to transport for a certain period of time, the shoulder strap is installed on the transport box, and the transport box is more convenient to move by being carried on the body.
[0015] The utility model discloses the beneficial effect is: sampling is convenient for putting sample; it is convenient for opening and closing transport box; it is convenient for taking out test tube and fixed limit position pipe; limit position pipe will not completely separate from limit position groove, and the reagent leakage fall caused by hand mistake is avoided; test tube is convenient for fixing; the damage of immune cell in the transportation process is avoided; reduce the space occupied, and handle convenient for lifting transport box; the transport box is more convenient to move by being carried on the body; the mutual pollution between test sample is avoided. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is the structure schematic diagram of the utility model;
[0017] Figure 2 It is the top view of the utility model;
[0018] Figure 3 It is the structure schematic diagram after sealing cover closes;
[0019] Figure 4 It is the structure schematic diagram of limit position subassembly;
[0020] Figure 5 It is the longitudinal section view of limit position piece and movable rod one connection place;
[0021] Figure 6 It is the longitudinal section view of transport box;
[0022] Figure 7 It is the structure schematic diagram of movable rod, spring two and push plate;
[0023] Figure 8 It is the explosion drawing of socket, insertion block and shoulder strap.
[0024] In the figure: 1. Transport box, 2. Sealing cover, 3. Heat preservation support, 4. Support block, 5. Cooling pipe, 6. Installation groove, 7. Limiting assembly, 8. Pull ring, 9. Test tube, 10. Heat insulation plate, 11. Thermometer, 12. Connecting piece one, 13. Connecting piece two, 14. Pivot one, 15. Connecting piece three, 16. Buckle, 17. Pivot two, 18. Card slot, 19. Flange one, 20. Limiting frame, 21. Limiting pipe, 22. Limiting groove, 23. Magnet one, 24. Magnet two, 25. Sliding channel, 26. Spherical base, 27. Spherical connecting piece, 28. Limiting piece, 29. Movable rod one, 30. Spring one, 31. Baffle, 32. Groove, 33. Movable rod two, 34. Spring two, 35. Push plate, 36. Pivot three, 37. Handle, 38. Socket, 39. Back strap, 40. Insert block, 41. Insert slot, 42. Through hole four, 43. Flange two, 44. Fixed slot. DETAILED DESCRIPTION
[0025] The utility model will be further described below in combination with the drawings and specific embodiments.
[0026] As Figure 1 and Figure 3 The embodiment described in the application relates to an immune cell transport device, which comprises a transport box 1, a sealing cover 2 detachably installed at the upper end of the transport box 1, a heat preservation support 3 arranged in the transport box 1, a support block 4 arranged between the heat preservation support 3 and the transport box 1, the heat preservation support 3 being connected to the transport box 1 through the support block 4, a plurality of cooling pipes 5 evenly installed between the transport box 1 and the heat preservation support 3, a plurality of installation grooves 6 evenly arranged on the heat preservation support 3, the opening direction of the installation grooves 6 being consistent with the opening direction of the transport box 1, a limiting assembly 7 detachably installed in each installation groove 6, a pull ring 8 installed at the top end of the limiting assembly 7, a test tube 9 detachably installed in the limiting assembly 7, a heat insulation plate 10 installed at the opening of the transport box 1, the heat insulation plate 10 being connected to the upper end of the heat preservation support 3, and a thermometer 11 installed on the transport box 1.
[0027] As Figure 1 and Figure 2As shown, the rear end surface side of the transport box 1 is provided with a connecting piece one 12, the rear end surface of the sealing cover 2 is provided with a connecting piece two 13, the connecting piece one 12 is provided with a through hole one, the connecting piece two 13 is provided with a rotating shaft one 14, the sealing cover 2 is rotatably connected with the connecting piece one 12 through the connecting piece two 13, the through hole one and the rotating shaft one 14, the front end surface of the transport box 1 is provided with a connecting piece three 15, the connecting piece three 15 is provided with a through hole two, the connecting piece three 15 is provided with a buckle 16, one end of the buckle 16 is provided with a rotating shaft two 17, the buckle 16 is rotatably connected with the transport box 1 through the rotating shaft two 17 and the through hole two, the upper end surface of the sealing cover 2 is provided with a clamping groove 18 at a position corresponding to the buckle 16, the other end of the buckle 16 is provided with a flange one 19, and the flange one 19 is detachably connected with the clamping groove 18.
[0028] As shown in Figure 4 , the limiting assembly 7 includes a limiting frame 20 and a limiting tube 21, the pull ring 8 is arranged on the top end surface of the limiting frame 20, the limiting frame 20 is provided with a limiting groove 22, the limiting tube 21 is arranged in the limiting groove 22, a magnet one 23 is arranged on the inner wall of the limiting groove 22, a magnet two 24 is arranged on the outer wall of the limiting tube 21, the limiting tube 21 is detachably connected with the limiting frame 20 through the cooperation of the magnet one 23 and the magnet two 24, a sliding channel 25 is arranged in the limiting tube 21, the sliding channel 25 penetrates one end of the limiting tube 21, the opening of the sliding channel 25 faces the same direction as the opening of the mounting groove 6, and the test tube 9 is detachably arranged in the sliding channel 25.
[0029] A spherical base 26 is arranged on the bottom end inner side of the limiting groove 22, and a spherical connecting piece 27 is arranged on the bottom end of the limiting tube 21.
[0030] As shown in Figure 4 and Figure 5 , a limiting piece 28 is arranged on the upper end inner side of the limiting frame 20, a movable rod one 29 is slidably arranged in the limiting piece 28, one end of the movable rod one 29 is arranged in the limiting piece 28 and is sleeved with a spring one 30, the two ends of the spring one 30 are respectively connected with the inner wall of the limiting piece 28 and the movable rod one 29, a baffle 31 is arranged below the limiting piece 28, and the other end of the movable rod one 29 is connected with the baffle 31.
[0031] As shown in Figure 6 and Figure 7 , recesses 32 are arranged on the inner walls of the left and right sides of the mounting groove 6, movable rods two 33 are arranged in the recesses 32, springs two 34 are sleeved on the outer sides of the movable rods two 33, one end of each spring two 34 is connected with the recess 32, the other end of each spring two 34 is connected with the movable rod two 33, and push plates 35 are arranged on one end of each movable rod two 33, the outer side surfaces of the push plates 35 are in contact with the limiting frame 20, and anti-skid lines are arranged on the outer side surfaces of the push plates 35.
[0032] AsFigure 3 As shown, the top end surface of the sealing cover 2 is provided with a fixing groove 44, a rotating shaft three 36 is arranged in the fixing groove 44, a handle 37 is arranged in the fixing groove 44, the cross-sectional shape of the handle 37 is U-shaped, through holes three are arranged at both ends of the handle 37, and the handle 37 is rotatably arranged in the fixing groove 44 through cooperation of the rotating shaft three 36 and the through holes three.
[0033] As shown, Figure 8 As shown, the left and right ends of the transport box 1 are provided with sockets 38, the outer side of the transport box 1 is provided with a carrying strap 39, both ends of the carrying strap 39 are provided with plug blocks 40, the sockets 38 are provided with plug grooves 41, the plug blocks 40 are detachably arranged in the plug grooves 41, the plug grooves 41 are provided with through holes four 42 at the front and back sides, the plug blocks 40 are composed of a main body and three supporting blocks 4, the supporting blocks 4 are arranged at one side of the main body, the supporting blocks 4 at both sides are provided with flanges two 43, the flanges two 43 are detachably arranged in the through holes four 42, and the carrying strap 39 is connected with the sockets 38 through the plug blocks 40.
[0034] In use, first, the flange one 19 on the buckle 16 is taken out of the clamping groove 18, the sealing cover 2 is rotated along the rotating shaft one 14 to an open state, the limiting assembly 7 is integrally taken out through the pull ring 8 on the limiting frame 21, the baffle 31 is pushed upward, then the limiting tube 21 is taken out of the limiting groove 22 on the limiting frame 21, at this time, the magnet one 23 and the magnet two 24 are separated, the limiting tube 21 is rotated outward by a certain angle under cooperation of the spherical base 26 and the spherical connecting piece 27, then the test tube 9 is taken out of the sliding channel 25 on the limiting tube 21, the test sample is loaded, then the test tube 9 is loaded into the limiting tube 21, the limiting tube 21 is rotated into the limiting groove 22, the magnet one 23 and the magnet two 24 are attracted, the spring one 30 drives the movable rod one 29 to move downward, the movable rod one 29 drives the baffle 31 to press the test tube 9 to further fix the limiting tube 21, then the limiting frame 21 is loaded into the mounting groove 6, after loading, the movable rod two 33 in the mounting groove 6 is driven by the spring two 34 to push the push plate 35 to further fix the limiting frame 21 in the mounting groove 6, then the sealing cover 2 is rotated along the rotating shaft one 14 to cover the sealing cover 2 on the transport box 1, the buckle 16 is rotated along the rotating shaft two 17, the flange one 19 on the buckle 16 is loaded into the clamping groove 18, the handle 37 is taken out of the fixing groove 44 along the rotating shaft three 36, and the transport box 1 can be carried by hand, and the plug block 40 is inserted into the plug groove 41 of the socket 38, so that the transport box 1 can be carried to transport the test sample through the carrying strap 39.
Claims
1. An immune cell transport device, characterized in that, The utility model provides a transport box, the upper end of the transport box (1) detachably installs the sealing cover (2), the inside of transport box (1) is equipped with heat preservation support (3), is equipped with support block (4) between heat preservation support (3) with transport box (1), heat preservation support (3) is connected with transport box (1) through support block (4), even install a plurality of cooling pipe (5) between transport box (1) with heat preservation support (3), even be equipped with a plurality of installation groove (6) on heat preservation support (3), the opening direction of installation groove (6) is consistent with the opening direction of transport box (1), the installation groove (6) is detachably installed with limit component (7) in, the top of limit component (7) is installed with pull ring (8), is detachably installed with test tube (9) in limit component (7), the opening of transport box (1) is installed with heat insulation board (10), heat insulation board (10) is connected with the upper end of heat preservation support (3), thermometer (11) is installed on transport box (1).
2. The immune cell transport device of claim 1, wherein, The rear end surface side of the transport box (1) is provided with a connecting piece one (12), the rear end surface of the sealing cover (2) is provided with a connecting piece two (13), the connecting piece one (12) is provided with a through hole one, the connecting piece two (13) is provided with a rotating shaft one (14), the sealing cover (2) is rotatably connected with the connecting piece one (12) through the connecting piece two (13), the through hole one and the rotating shaft one (14), the front end surface of the transport box (1) is provided with a connecting piece three (15), the connecting piece three (15) is provided with a through hole two, the connecting piece three (15) is provided with a buckle (16), one end of the buckle (16) is provided with a rotating shaft two (17), the buckle (16) is rotatably connected with the transport box (1) through the rotating shaft two (17) and the through hole two, the upper end surface of the sealing cover (2) is provided with a clamping groove (18) at a position corresponding to the buckle (16), the other end of the buckle (16) is provided with a flange one (19), the flange one (19) is detachably connected with the clamping groove (18).
3. The immune cell transport device of claim 1, wherein, The limit component (7) comprises a limit frame (20) and a limit tube (21), the pull ring (8) is arranged on the top surface of the limit frame (20), the limit frame (20) is provided with a limit groove (22), the limit tube (21) is arranged in the limit groove (22), a magnet one (23) is arranged on the inner wall of the limit groove (22), a magnet two (24) is arranged on the outer wall of the limit tube (21), the limit tube (21) is detachably connected with the limit frame (20) through the cooperation of the magnet one (23) and the magnet two (24), the limit tube (21) is provided with a sliding channel (25), the sliding channel (25) penetrates one end of the limit tube (21), the opening direction of the sliding channel (25) is consistent with the opening direction of the installation groove (6), and the test tube (9) is detachably arranged in the sliding channel (25).
4. The immune cell transport device of claim 3, wherein the at least one magnet is a permanent magnet. The bottom end of the limiting groove (22) is provided with a spherical base (26), and the bottom end of the limiting pipe (21) is provided with a spherical connecting piece (27) which is rotatably installed in the spherical base (26).
5. The immune cell transport device of claim 3, wherein the at least one magnet is a permanent magnet. The upper end of the limiting frame (20) is provided with a limiting piece (28), and the limiting piece (28) is slidably provided with a movable rod (29), one end of the movable rod (29) is arranged in the limiting piece (28) and is sleeved with a spring (30), both ends of the spring (30) are connected with the inner wall of the limiting piece (28) and the movable rod (29), and the lower side of the limiting piece (28) is provided with a baffle (31), and the other end of the movable rod (29) is connected with the baffle (31).
6. The immune cell transport device of claim 1, wherein, The left and right inner walls of the mounting groove (6) are provided with grooves (32), the grooves (32) are provided with movable rods (33), the outer sides of the movable rods (33) are sleeved with springs (34), one end of the spring (34) is connected with the groove (32), the other end of the spring (34) is connected with the movable rod (33), one end of the movable rod (33) is provided with a push plate (35), the outer side of the push plate (35) is in contact with the limiting frame (20), and the outer side of the push plate (35) is provided with anti-skid lines.
7. The immune cell transport device of claim 1, wherein, The top end of the sealing cover (2) is provided with a fixed groove (44), the fixed groove (44) is provided with a rotating shaft (36), the fixed groove (44) is provided with a handle (37), the handle (37) is in U-shaped cross section, both ends of the handle (37) are provided with through holes (3), and the handle (37) is rotatably installed in the fixed groove (44) through cooperation of the rotating shaft (36) and the through holes (3).
8. The immune cell transport device of claim 1, wherein, Both ends of the transport box (1) are provided with sockets (38), the outer side of the transport box (1) is provided with a shoulder strap (39), both ends of the shoulder strap (39) are provided with plug blocks (40), the sockets (38) are provided with plug grooves (41), the plug blocks (40) are detachably installed in the plug grooves (41), the plug grooves (41) are provided with through holes (42) on the front and back sides, the plug blocks (40) are composed of a main body and three supporting blocks (4), the supporting blocks (4) are arranged on one side of the main body, the supporting blocks (4) on both sides are provided with flanges (43), the flanges (43) are detachably installed in the through holes (42), and the shoulder strap (39) is connected with the sockets (38) through the plug blocks (40).
Citation Information
Patent Citations
Stem cell transportation device
CN215852604U