Carbon Nanotubes-Based Lateral Flow Biosensor for Sensitive and Rapid Detection of DNA Sequence

Sensitive detection for DNA has drawn great attention in plenty of different areas such as genetics therapy and basic discovery research. Recently, nucleic acid lateral flow biosensor (NALFB) has gained considerable attention for DNA analysis. Compared with the traditional immunoassays, NALFB has th...

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Main Author: Zhang, Xiaoguang
Format: Others
Published: North Dakota State University 2018
Online Access:https://hdl.handle.net/10365/28354
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spelling ndltd-ndsu.edu-oai-library.ndsu.edu-10365-283542021-10-02T17:09:20Z Carbon Nanotubes-Based Lateral Flow Biosensor for Sensitive and Rapid Detection of DNA Sequence Zhang, Xiaoguang Sensitive detection for DNA has drawn great attention in plenty of different areas such as genetics therapy and basic discovery research. Recently, nucleic acid lateral flow biosensor (NALFB) has gained considerable attention for DNA analysis. Compared with the traditional immunoassays, NALFB has these advantages: short assay time and a low cost. In this thesis, we report a carbon nanotubes (CNTs)-based NALFB for rapid and sensitive detection of DNA. Amine-modified DNA detection probe was covalently immobilized on the CNTs via diimide-activated amidation between the carboxyl groups on the CNTs surface and amine groups on the detection DNA probes. Sandwich-type DNA hybridization reactions were performed and the captured MWCNTs on test zone and control zone produced the characteristic black bands. Based on the catalytic property of CNTs to enhance the Chemiluminescence intensity of the reaction between hydrogen peroxide and Lumigen APS-5, a rapid detection of DNA sequence with high sensitivity is achieved. 2018-06-25T14:03:09Z 2018-06-25T14:03:09Z 2017 text/thesis https://hdl.handle.net/10365/28354 NDSU Policy 190.6.2 https://www.ndsu.edu/fileadmin/policy/190.pdf application/pdf North Dakota State University
collection NDLTD
format Others
sources NDLTD
description Sensitive detection for DNA has drawn great attention in plenty of different areas such as genetics therapy and basic discovery research. Recently, nucleic acid lateral flow biosensor (NALFB) has gained considerable attention for DNA analysis. Compared with the traditional immunoassays, NALFB has these advantages: short assay time and a low cost. In this thesis, we report a carbon nanotubes (CNTs)-based NALFB for rapid and sensitive detection of DNA. Amine-modified DNA detection probe was covalently immobilized on the CNTs via diimide-activated amidation between the carboxyl groups on the CNTs surface and amine groups on the detection DNA probes. Sandwich-type DNA hybridization reactions were performed and the captured MWCNTs on test zone and control zone produced the characteristic black bands. Based on the catalytic property of CNTs to enhance the Chemiluminescence intensity of the reaction between hydrogen peroxide and Lumigen APS-5, a rapid detection of DNA sequence with high sensitivity is achieved.
author Zhang, Xiaoguang
spellingShingle Zhang, Xiaoguang
Carbon Nanotubes-Based Lateral Flow Biosensor for Sensitive and Rapid Detection of DNA Sequence
author_facet Zhang, Xiaoguang
author_sort Zhang, Xiaoguang
title Carbon Nanotubes-Based Lateral Flow Biosensor for Sensitive and Rapid Detection of DNA Sequence
title_short Carbon Nanotubes-Based Lateral Flow Biosensor for Sensitive and Rapid Detection of DNA Sequence
title_full Carbon Nanotubes-Based Lateral Flow Biosensor for Sensitive and Rapid Detection of DNA Sequence
title_fullStr Carbon Nanotubes-Based Lateral Flow Biosensor for Sensitive and Rapid Detection of DNA Sequence
title_full_unstemmed Carbon Nanotubes-Based Lateral Flow Biosensor for Sensitive and Rapid Detection of DNA Sequence
title_sort carbon nanotubes-based lateral flow biosensor for sensitive and rapid detection of dna sequence
publisher North Dakota State University
publishDate 2018
url https://hdl.handle.net/10365/28354
work_keys_str_mv AT zhangxiaoguang carbonnanotubesbasedlateralflowbiosensorforsensitiveandrapiddetectionofdnasequence
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