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A kind of detection system of nucleoside triphosphate compound and its application

A nucleoside triphosphate compound technology, applied in the detection system of nucleoside triphosphate compounds and its application fields, can solve the problems of high sensitivity and expensive instruments, and achieve the effect of simple equipment and easy popularization and application

Active Publication Date: 2020-09-18
TECHNICAL INST OF PHYSICS & CHEMISTRY - CHINESE ACAD OF SCI +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

These methods have their own advantages and limitations, such as ion exchange chromatography and high performance liquid chromatography in chromatography, these methods are sensitive, but the equipment used is expensive

Method used

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  • A kind of detection system of nucleoside triphosphate compound and its application
  • A kind of detection system of nucleoside triphosphate compound and its application
  • A kind of detection system of nucleoside triphosphate compound and its application

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0061] Embodiment 1 has 1 o 2 The ability to generate positively charged carbon dot solutions with 1 o 2 Response of the mixed system of capture agent 9,10-diphenylanthracene-2-boronic acid (DABA) mother liquor to ATP

[0062] (1) In the experimental group, add 45 μL of 1 mg / mL DABA mother solution and 67 μL of 1 mg / mL ATP mother solution to 2 mL of 0.02 mg / mL carbon dot aqueous solution. the absorption spectrum. A xenon lamp was selected as the excitation light source with a power of 0.8mV / cm 2 , light for 5min, and detect the absorption change of DABA in the range of 350-430nm every 30s, get figure 1 .

[0063] (2) In the control group, 45 μL of 1 mg / mL DABA mother solution was added to 2 mL of 0.02 mg / mL carbon dot aqueous solution, and after mixing evenly, the background absorption of the carbon dot mother solution was deducted to detect the absorption spectrum of DABA at this time. A xenon lamp was selected as the excitation light source with a power of 0.8mV / cm 2...

Embodiment 2

[0066] Embodiment 2 has 1 o 2 The ability to generate carbon dot solutions with 1 o 2 The Response of the Mixed System of Capture Agent 2-Anthracene Borate (ABA) Mother Liquor to GTP

[0067] (1) In the experimental group, add 20 μL of 0.5 mg / mL ABA mother solution and 44 μL of 1 mg / mL GTP mother solution to 2 mL of 0.01 mg / mL carbon dot aqueous solution. Absorption spectrum of ABA. A xenon lamp was selected as the excitation light source with a power of 0.8mV / cm 2, illuminated for 10min, and detect the absorption change of ABA in the range of 350-430nm every 20s.

[0068] (2) In the control group, add 20 μL of 0.5 mg / mL DABA mother solution to 2 mL of 0.01 mg / mL carbon dot aqueous solution, mix well, subtract the background absorption of the carbon dot mother solution, and detect the absorption spectrum of ABA at this time. A xenon lamp was selected as the excitation light source with a power of 0.8mV / cm 2 , illuminated for 10min, and detect the absorption change of AB...

Embodiment 3

[0071] Embodiment 3, has 1 o 2 The ability to generate carbon dot solutions with 1 o 2 Response of Mixed System of Capture Agent 9,10-Dinaphthyl-2-Anthracene Borate (NABA) Mother Liquor to UTP

[0072] (1) In the experimental group, add 36 μL of 4 mg / mL NABA mother solution and 88 μL of 1 mg / mL UTP mother solution to 2 mL of 0.04 mg / mL carbon dot aqueous solution. the absorption spectrum. A xenon lamp was selected as the excitation light source with a power of 0.8mV / cm 2 , illuminated for 5min, and detect the absorption change of NABA in the range of 350-430nm every 30s.

[0073] (2) In the control group, 36 μL of 4 mg / mL NABA mother solution was added to 2 mL of 0.04 mg / mL carbon dot aqueous solution, and after mixing evenly, the background absorption of the carbon dot mother solution was deducted to detect the absorption spectrum of NABA at this time. A xenon lamp was selected as the excitation light source with a power of 0.8mV / cm 2 , illuminated for 5min, and detect...

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Abstract

The invention discloses a detection system of a nucleoside triphosphate (NTPs) compound and application of the detection system. The detection system comprises a positive charge carbon pot for generating 1O2 and a 1O2 trapping agent of an anthracene derivative with a boric acid group. The invention further discloses the application of the detection system of the nucleoside triphosphate compound todetection of NTPs; selective detection and accurate quantification on the NTPs in a biological sample and an environment sample can be realized through the method disclosed by the invention.

Description

technical field [0001] The invention relates to the field of biological detection. More specifically, it relates to a detection system of nucleoside triphosphate compounds and its application. Background technique [0002] Nucleoside triphosphates (NTPs) are an important part of life and play an irreplaceable role in various activities of life. The chemical structure of these compounds contains one molecule of glucose, one molecule of nitrogenous base and three negatively charged phosphate groups. According to different bases, NTPs are divided into adenosine triphosphate (ATP), thymidine triphosphate (TTP), cytidine triphosphate (CTP), uridine triphosphate (UTP) and Guanosine triphosphate (GTP). This type of compound participates in many life processes in the body. For example, ATP is recognized as the "energy currency" of the body, and is the power pump for various activities in the body. It is also a cell signal transmission medium in many biological processes and parti...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01N21/33
CPCG01N21/33
Inventor 刘卫敏丁颖汪鹏飞葛介超贾庆岩文咏梅
Owner TECHNICAL INST OF PHYSICS & CHEMISTRY - CHINESE ACAD OF SCI