A toolbox, kit and nucleic acid extraction method for rapid nucleic acid extraction
A nucleic acid extraction device and tool box technology, applied in biochemical equipment and methods, specific-purpose bioreactors/fermenters, biochemical instruments, etc., can solve problems such as affecting detection, incomplete equipment, and inapplicability, and achieve safe operation. and, the effect of short operation time and easy portability
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Embodiment 1
[0080] Embodiment 1: the rapid extraction of DNA in DNA extraction kit, test kit and sample
[0081] In the present embodiment, in the tool box product, the structure of the pipe frame 9 is the same as that described above, and the feature is that the first zone is a square, such as figure 1 As shown, there are five partitions A-E distributed on it. In order to ensure good operation stability, the five partitions are centered on one of the five partitions (E area) and the other four partitions are arranged symmetrically and dispersedly. Each partition is provided with a holding hole for placement Corresponding numbered test tube.
[0082] The second area is also used to place the syringe 1, the adsorption film tube 2, the adapter 3 and the sample needle 4 in the nucleic acid extraction device, where:
[0083] The syringe 1 is an ordinary cylindrical disposable syringe or a similar device that can perform the function of a syringe. It has a cylindrical body 11, a tubular conn...
Embodiment 2
[0096] The DNA solution collected in tube E is a DNA solution free of other impurities, which can be used for subsequent nucleic acid amplification and detection. Embodiment 2: the rapid extraction of RNA in RNA extraction kit, test kit and sample
[0097] In the present embodiment, in the tool box product, the structure of the pipe frame 9 is the same as the foregoing, and the feature is that the first zone of the pipe frame 9 is rectangular (such as figure 2 ), on which nine partitions A-I are distributed, and the other eight partitions are symmetrically distributed around one of the partitions (I district) as the center. holes (A and B) and a pair of holes (A + and B + ).
[0098] The nucleic acid extraction device placed in the second area is basically the same as that in Example 1, with a slight difference that the adsorption membrane 23 installed in the adsorption membrane tube 2 is a silica membrane capable of adsorbing RNA. The same parts will not be repeated.
[...
Embodiment 3
[0112] Example 3: Rapid extraction of RNA and DNA in RNA and DNA co-extraction toolbox, test kit and sample
[0113] This embodiment is used to implement the joint extraction and detection of RNA and DNA from the sample. The tool box product is basically the same as that of Example 2, with a slight difference that the adsorption membrane 23 installed in the adsorption membrane tube 2 is capable of simultaneously adsorbing RNA and DNA. DNA's silica gel membrane Silica membrane.
[0114] The reagents used in this example are exactly the same as those in Example 2, and the RNA and DNA Rapid Extraction Kit has been changed into the RNA and DNA Rapid Extraction Kit, which makes it more convenient to simultaneously extract RNA and DNA from samples.
[0115] The process of quickly co-extracting RNA and DNA from the sample by using the above toolbox and kit is exactly the same as that in Example 2, and the co-extraction of RNA and DNA in the sample is finally completed. The parts of ...
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