A Copper Ion Cutting General-purpose Partition Ultrafast Amplification Visual Sensor
A technology of copper ion detection and substrate chain, applied in the field of biosensors, can solve the problems of cumbersome sample processing, expensive, and not universally applicable
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Embodiment 1
[0099] Example 1 Establishment of a Copper Ion Cutting Type Universal Interval Ultrafast Amplification Visual Sensor
[0100] 1. Experimental materials
[0101] SYBR Gold nucleic acid dye, nucleic acid molecular weight standard ultra-low range DNA ladder, dNTP, ExTaq DNA polymerase, 10×Taq buffer, hemin, copper chloride, ascorbic acid, 2,2-azino-bis(3-ethane) Base-benzothiazole-6-sulfonic acid) diamine salt (ABTS), H 2 o 2 , 4-Hydroxyethylpiperazineethanesulfonic acid (HEPES), MES, LiCl, Tris, potassium chloride, sodium chloride, magnesium chloride, disodium edetate, sulfuric acid, tetramethylbenzidine, urea, all Purchased from Thermo Scientific Life Technologies. All experimental water was from Milli-Q pure water system.
[0102] The sequence design is as follows (SEQ ID NO:1-7):
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[0105] Note: The ribozyme cuts the target product and is complementary to the 3' end sequence of the amplified template; the underline is to distinguish the size of the...
Embodiment 2
[0127] The specificity investigation of embodiment 2 sensor
[0128] According to the biosensor constructed in Example 1, 10nM Cu 2+ , 10 μM Mg 2+ 、Cd 2+ , Ca 2+ , Zn 2+ 、Cr 3 + , Pb 2+ , Fe 2+ Added to the system for detection, the results show that the established Cu 2+ The biosensor has good specificity ( Figure 5 ).
Embodiment 3
[0129] Embodiment 3 standard addition experiment
[0130] Get high-purity water and detect with the biosensor constructed in embodiment 1, Cu 2+ No detection was carried out, and the standard addition experiment was carried out on it, and the results obtained by continuous measurement are shown in Table 1.
[0131] Table 1 Cu 2+ Spike recovery test results
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