Novel plant RNA extraction kit
By introducing structures such as side pouches, rectangular support frames, and rotating support plates into the plant RNA extraction kit, the problem of insufficient operating space in existing kits has been solved, resulting in clearer regional division and prevention of cross-contamination, thus improving ease of operation.
Patent Information
- Application Number
- CN202520561072.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2035-03-28
AI Technical Summary
Existing plant RNA extraction kits lack sufficient space for extraction operations, increasing the risk of cross-contamination.
A novel reagent kit with side pockets, a rectangular support frame, sliding buckles, and a rotating support plate was designed. Through the partitioned area and rotatable operating table structure, tools can be classified and stored and cross-contamination can be prevented.
The reagent kit's usage area is clearly defined, preventing cross-contamination and enhancing operational convenience and practicality.
Smart Images

Figure CN223836084U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of plant RNA extraction, and in particular to a novel plant RNA extraction kit. Background Technology
[0002] An existing patent (publication number: CN212922664U) discloses a plant RNA extraction kit, which includes a kit body. The kit body is a hollow cuboid structure with an open top. A protective block is provided inside the kit body. The protective block is inserted into the kit body. The protective block has an extraction material placement slot inside. A connecting slot is provided on the side of the top of the protective block. A cover plate is provided on the top of the protective block. However, this kit can only isolate the reagents for cross-reaction during use and does not reserve space for the operation and extraction of plants. Summary of the Invention
[0003] This invention addresses the aforementioned shortcomings of existing technologies by providing a novel plant RNA extraction kit whose lid can be used as a small workbench, making it highly practical.
[0004] The objective of this utility model is achieved through the following technical solution:
[0005] A novel plant RNA extraction kit includes a kit body, a side pocket, a first partition, a rectangular support frame, a sliding buckle, a U-shaped positioning plate, a guide rod, a spring, an upper storage basket, a second partition, a kit cover, and a rotating support plate. The kit body has a side pocket on its side. The first partition is adapted to the kit body and inserted into it. The rectangular support frame is adapted to the kit body and inserted into it, with the outer side of the frame connected to the kit body. The upper storage basket is adapted to the kit body and inserted into it, with its lower surface fitting against the rectangular support frame. The second partition is adapted to the upper storage basket and inserted into it, with its upper surface lower than the upper surface of the kit body.
[0006] The reagent kit body is connected to the reagent kit cap via a hinge on its side, with a set of hinges distributed between the two. The side of the reagent kit cap is connected to a locking block, and the side of the sliding buckle is in contact with the reagent kit body. A U-shaped positioning plate is fastened to the sliding buckle, and the sliding buckle slides within the U-shaped positioning plate. The U-shaped positioning plate is connected to the reagent kit body.
[0007] The sliding buckle has a buckle side plate on its side, a guide rod connected to a U-shaped positioning plate, a spring sleeved on the guide rod, the guide rod inserted into the sliding buckle, the guide rod sliding inside the sliding buckle, one end of the spring abutting against the U-shaped positioning plate, and the other end of the spring abutting against the sliding buckle. The sliding buckles are symmetrically arranged on the side of the reagent kit, and the buckle block has a buckle block inner groove. The symmetrical buckle side plates are inserted into the buckle block inner groove. Beneficial effects
[0008] 1. The reagent kit of this utility model has a side bag connected to the side of the kit body. The inside of the side bag is used to store tools and other supplies. A first partition is placed inside the kit body, dividing the inside of the kit body into multiple small areas for separate storage of reagent tubes placed inside the kit body. A rectangular support frame is installed and fixed inside the kit body. A second partition is placed inside the upper storage basket, dividing the upper storage basket into multiple smaller areas for classified storage. When in use, the upper storage basket is inserted into the kit body, and the rectangular support frame supports the upper storage basket. An extraction tool or other materials are placed inside the upper storage basket at the top of the kit body. The internal structure of this kit is divided into upper and lower layers, making the division of use areas clearer and preventing cross-contamination in plant RNA extraction.
[0009] 2. The sliding buckle of this utility model is installed on the reagent kit body through a U-shaped positioning plate. The sliding buckle can slide horizontally. The guide rod is fixed on the U-shaped positioning plate, and the spring is sleeved on the guide rod. The spring pushes the sliding buckle with the U-shaped positioning plate as support, so that the symmetrical sliding buckles move in opposite directions. When it is necessary to close the reagent kit cover, the symmetrical sliding buckles are pressed at the same time, so that the symmetrical buckle side plates are inserted into the inner groove of the buckle block, ensuring the tight closure of the upper storage basket. The rotating support plate is connected to the reagent kit cover through the positioning shaft. The rotating support plate is a rotatable structure. When the reagent kit cover is closed, the rotating support plate is rotated so that the side of the rotating support plate is in contact with the magnetic strip. At this time, the rotating support plate does not occupy a lot of space. In the process of plant RNA extraction, when it is necessary to open the reagent kit cover, the rotating support plate is rotated so that the lower surface of the support plate is aligned with the bottom surface of the reagent kit body. At this time, the symmetrical rotating support plate supports the reagent kit cover, so that the reagent kit cover is horizontal. At this time, the plant can be extracted and other operations can be performed inside the reagent kit cover. At this time, the reagent kit cover can be used as a small operating table, which is highly practical. Attached Figure Description
[0010] Figure 1 Open the main view for the novel plant RNA extraction kit described in this utility model.
[0011] Figure 2 This is a rear view of the novel plant RNA extraction kit described in this utility model.
[0012] Figure 3 This is a closed front view of a novel plant RNA extraction kit according to the present invention.
[0013] Figure 4 This is a schematic diagram of the reagent kit structure of the present invention.
[0014] Figure 5 This is a schematic diagram of the upper storage basket structure described in this utility model.
[0015] Figure 6 This is a schematic diagram of the reagent kit cap structure of the present invention. Detailed Implementation
[0016] The present invention will be further described in detail below with reference to the accompanying drawings and embodiments:
[0017] Example 1:
[0018] A novel plant RNA extraction kit includes a kit body 01, a side pocket 02, a first partition 03, a rectangular support frame 04, a sliding buckle 05, a U-shaped positioning plate 07, a guide rod 08, a spring 09, an upper storage basket 10, a second partition 11, a kit cover 12, and a rotating support plate 20. The kit body 01 has a side pocket 02 on its side, which is used to store tools and other supplies. The first partition 03 is adapted to the kit body 01 and is inserted into the kit body 01, dividing the interior of the kit body 01 into multiple small areas for separate storage of reagent tubes. The rectangular support frame 04 is adapted to the kit body 01 and is inserted into the kit body 01. The outer side of the rectangular support frame 04 is connected to the reagent tubes. The kit body 01 and the rectangular support frame 04 are installed and fixed inside the kit body 01. The upper storage basket 10 is adapted to the kit body 01 and is inserted into the kit body 01. The lower surface of the upper storage basket 10 is in contact with the rectangular support frame 04. The second partition 11 is adapted to the upper storage basket 10 and is inserted into the upper storage basket 10. The upper surface of the upper storage basket 10 is lower than the upper surface of the kit body 01. The second partition 11 divides the upper storage basket 10 into several smaller areas for classified storage. When in use, the upper storage basket 10 is inserted into the kit body 01, and the rectangular support frame 04 supports the upper storage basket 10. An extraction tool or other materials are placed inside the upper storage basket 10 on the upper part of the kit body 01. The internal structure of this kit is divided into upper and lower layers, making the division of the use areas clearer and preventing cross-contamination in plant RNA extraction.
[0019] Example 2:
[0020] The reagent kit body 01 of this invention is connected to the reagent kit cover 12 by a hinge 19 on its side. A set of hinges 19 are distributed between the two. The side of the reagent kit cover 12 is connected to a locking block 16. The side of the sliding buckle 05 is attached to the reagent kit body 01. The U-shaped positioning plate 07 is fastened to the sliding buckle 05. The sliding buckle 05 slides in the U-shaped positioning plate 07. The U-shaped positioning plate 07 is connected to the reagent kit body 01.
[0021] Example 3:
[0022] The sliding buckle 05 of this utility model has a buckle side plate 06 on its side. A guide rod 08 is connected to a U-shaped positioning plate 07. The sliding buckle 05 is installed on the reagent kit 01 through the U-shaped positioning plate 07. The sliding buckle 05 can slide horizontally. A spring 09 is sleeved on the guide rod 08. The guide rod 08 is inserted into the sliding buckle 05 and slides within the sliding buckle 05. One end of the spring 09 abuts against the U-shaped positioning plate 07, and the other end of the spring 09 abuts against the sliding buckle 05. The guide rod 08 is fixed on the U-shaped positioning plate 07. Spring 09 is fitted onto guide rod 08. Spring 09 pushes sliding buckle 05 with U-shaped positioning plate 07 as support, causing symmetrical sliding buckles 05 to move in opposite directions. Sliding buckles 05 are symmetrically arranged on the side of reagent kit 01. The locking block 16 has a locking block inner groove 17. Symmetrical buckle side plates 06 are inserted into the locking block inner groove 17. When it is necessary to close the reagent kit cover 12, the symmetrical sliding buckles 05 are pressed at the same time, so that the symmetrical buckle side plates 06 are locked into the locking block inner groove 17, ensuring the tight closure of the upper storage basket 10.
[0023] Example 4:
[0024] The reagent kit cover 12 of this invention has a magnetic strip 14 connected to its side. A rotating support plate 20 is attached to the side of the reagent kit cover 12 and is connected to it via a positioning shaft 15. The rotating support plate 20 has a lower support plate 21, which is attached to the reagent kit cover 12. The lower surface of the lower support plate 21 is aligned with the lower surface of the side pocket 02 of the kit body. The rotating support plate 20 is a rotatable structure. In use, the rotating support plate 20 is rotated when the reagent kit cover 12 is closed. Make the side of the rotating support plate 20 fit against the magnetic strip 14. At this time, the rotating support plate 20 will not occupy a lot of space. In the process of plant RNA extraction, when it is necessary to open the reagent kit cover 12, rotate the rotating support plate 20 so that the lower surface of the support plate 21 is aligned with the bottom surface of the reagent kit body 01. At this time, the symmetrical rotating support plate 20 supports the reagent kit cover 12, making the reagent kit cover 12 horizontal. At this time, the plant can be extracted and other operations can be performed inside the reagent kit cover 12. At this time, the reagent kit cover 12 can be used as a small operating table, which is highly practical.
[0025] Example 5:
[0026] The installation steps of this utility model are as follows: First, connect the side bag 02 of the box to the reagent kit 01. Insert the first partition 03 into the reagent kit 01. Insert the rectangular support frame 04 into and connect it to the reagent kit 01. Insert the second partition 11 into the upper storage basket 10. When the upper storage basket 10 is inserted into the reagent kit 01, the lower surface of the upper storage basket 10 is in contact with the rectangular support frame 04. Snap the U-shaped positioning plate 07 onto the sliding buckle 05. Connect the U-shaped positioning plate 07 to the reagent kit 01. Pass the guide rod 08 through the sliding buckle 05 and the spring 09 to connect the U-shaped positioning plate 07. Connect the locking block 16 to the reagent kit cover 12. Connect the reagent kit cover 12 to the reagent kit 01 through a combination hinge 19. Connect the rotating support plate 20 to the reagent kit cover 12 through the positioning shaft 15. Connect the magnetic strip 14 to the reagent kit cover 12.
[0027] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.
Claims
1. A novel plant RNA extraction kit, characterized by: The kit includes a reagent body (01), a side pocket (02), a first partition (03), a rectangular support frame (04), a sliding buckle (05), a U-shaped positioning plate (07), a guide rod (08), a spring (09), an upper storage basket (10), a second partition (11), a reagent cover (12), and a rotating support plate (20). The side pocket (02) of the reagent body (01) is located on the side of the kit. The first partition (03) is adapted to the reagent body (01) and is inserted into the reagent body (01). The rectangular support frame (04) and the side pocket (02) are connected to the reagent body (01). The reagent kit (01) is adapted to the rectangular support frame (04) inserted into the reagent kit (01). The outer side of the rectangular support frame (04) is connected to the reagent kit (01). The upper storage basket (10) is adapted to the reagent kit (01). The upper storage basket (10) is inserted into the reagent kit (01). The lower surface of the upper storage basket (10) is in contact with the rectangular support frame (04). The second partition (11) is adapted to the upper storage basket (10). The second partition (11) is inserted into the upper storage basket (10). The upper surface of the upper storage basket (10) is lower than the upper surface of the reagent kit (01).
2. The novel plant RNA extraction kit according to claim 1, characterized in that... The reagent kit body (01) is connected to the reagent kit cover (12) by a hinge (19) on the side. A hinge (19) is distributed between the two. The reagent kit cover (12) is connected to a locking block (16) on the side. The sliding buckle (05) is attached to the side of the reagent kit body (01). The U-shaped positioning plate (07) is fastened on the sliding buckle (05). The sliding buckle (05) slides in the U-shaped positioning plate (07). The U-shaped positioning plate (07) is connected to the reagent kit body (01).
3. The novel plant RNA extraction kit according to claim 2, characterized in that... The sliding buckle (05) has a buckle side plate (06) on its side, a guide rod (08) is connected to a U-shaped positioning plate (07), a spring (09) is sleeved on the guide rod (08), the guide rod (08) is inserted into the sliding buckle (05), the guide rod (08) slides in the sliding buckle (05), one end of the spring (09) abuts against the U-shaped positioning plate (07), and the other end of the spring (09) abuts against the sliding buckle (05). The sliding buckle (05) is symmetrically arranged on the side of the reagent kit (01). The buckle block (16) has a buckle inner groove (17), and the symmetrical buckle side plate (06) is inserted into the buckle inner groove (17).
4. A novel plant RNA extraction kit according to claim 3, characterized in that... The reagent kit cover (12) is connected to a magnetic strip (14) on the side. The rotating support plate (20) is attached to the side of the reagent kit cover (12). The rotating support plate (20) is connected to the reagent kit cover (12) through a positioning shaft (15). The rotating support plate (20) is attached to the magnetic strip (14) on the side.
5. A novel plant RNA extraction kit according to claim 3, characterized in that... The rotating support plate (20) has a lower support plate (21), which is attached to the reagent kit cap (12). The lower surface of the lower support plate (21) is aligned with the lower surface of the side bag (02) of the box.
Citation Information
Patent Citations
Plant RNA extraction kit
CN212922664U