Cargando…

Development of a Novel ssDNA Sequence for a Glycated Human Serum Albumin and Construction of a Simple Aptasensor System Based on Reduced Graphene Oxide (rGO)

Diabetes is one of the top 10 global causes of death. About one in 11 global adults have diabetes. As the disease progresses, the mortality rate increases, and complications can develop. Thus, early detection and effective management of diabetes are especially important. Herein, we present a novel g...

Descripción completa

Detalles Bibliográficos
Autores principales: Kim, A-Ru, Choi, Yeongmi, Kim, Sang-Heon, Moon, Hyun-Seok, Ko, Jae-Ho, Yoon, Moon-Young
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7602221/
https://www.ncbi.nlm.nih.gov/pubmed/33066521
http://dx.doi.org/10.3390/bios10100141
_version_ 1783603627724636160
author Kim, A-Ru
Choi, Yeongmi
Kim, Sang-Heon
Moon, Hyun-Seok
Ko, Jae-Ho
Yoon, Moon-Young
author_facet Kim, A-Ru
Choi, Yeongmi
Kim, Sang-Heon
Moon, Hyun-Seok
Ko, Jae-Ho
Yoon, Moon-Young
author_sort Kim, A-Ru
collection PubMed
description Diabetes is one of the top 10 global causes of death. About one in 11 global adults have diabetes. As the disease progresses, the mortality rate increases, and complications can develop. Thus, early detection and effective management of diabetes are especially important. Herein, we present a novel glycated human serum albumin (GHSA) aptamer, i.e., GABAS-01, which has high affinity and specificity. The aptamer was selected by reduced graphene oxide-based systematic evolution of ligands by exponential enrichement (rGO-based SELEX) against GHSA. After five rounds of selection through gradually harsher conditions, GABAS-01 with high affinity and specificity for the target was obtained. GABAS-01 was labeled by FAM at the 5′-end and characterized by measuring the recovery of a fluorescence signal that is the result of fluorescence quenching effect of rGO. As a result, GABAS-01 had low-nanomolar Kd values of 1.748 ± 0.227 nM and showed a low limit of detection of 16.40 μg/mL against GHSA. This result shows the potential application of GABAS-01 as an effective on-site detection probe of GHSA. In addition, these properties of GABAS-01 are expected to contribute to detection of GHSA in diagnostic fields.
format Online
Article
Text
id pubmed-7602221
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-76022212020-11-01 Development of a Novel ssDNA Sequence for a Glycated Human Serum Albumin and Construction of a Simple Aptasensor System Based on Reduced Graphene Oxide (rGO) Kim, A-Ru Choi, Yeongmi Kim, Sang-Heon Moon, Hyun-Seok Ko, Jae-Ho Yoon, Moon-Young Biosensors (Basel) Article Diabetes is one of the top 10 global causes of death. About one in 11 global adults have diabetes. As the disease progresses, the mortality rate increases, and complications can develop. Thus, early detection and effective management of diabetes are especially important. Herein, we present a novel glycated human serum albumin (GHSA) aptamer, i.e., GABAS-01, which has high affinity and specificity. The aptamer was selected by reduced graphene oxide-based systematic evolution of ligands by exponential enrichement (rGO-based SELEX) against GHSA. After five rounds of selection through gradually harsher conditions, GABAS-01 with high affinity and specificity for the target was obtained. GABAS-01 was labeled by FAM at the 5′-end and characterized by measuring the recovery of a fluorescence signal that is the result of fluorescence quenching effect of rGO. As a result, GABAS-01 had low-nanomolar Kd values of 1.748 ± 0.227 nM and showed a low limit of detection of 16.40 μg/mL against GHSA. This result shows the potential application of GABAS-01 as an effective on-site detection probe of GHSA. In addition, these properties of GABAS-01 are expected to contribute to detection of GHSA in diagnostic fields. MDPI 2020-10-14 /pmc/articles/PMC7602221/ /pubmed/33066521 http://dx.doi.org/10.3390/bios10100141 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kim, A-Ru
Choi, Yeongmi
Kim, Sang-Heon
Moon, Hyun-Seok
Ko, Jae-Ho
Yoon, Moon-Young
Development of a Novel ssDNA Sequence for a Glycated Human Serum Albumin and Construction of a Simple Aptasensor System Based on Reduced Graphene Oxide (rGO)
title Development of a Novel ssDNA Sequence for a Glycated Human Serum Albumin and Construction of a Simple Aptasensor System Based on Reduced Graphene Oxide (rGO)
title_full Development of a Novel ssDNA Sequence for a Glycated Human Serum Albumin and Construction of a Simple Aptasensor System Based on Reduced Graphene Oxide (rGO)
title_fullStr Development of a Novel ssDNA Sequence for a Glycated Human Serum Albumin and Construction of a Simple Aptasensor System Based on Reduced Graphene Oxide (rGO)
title_full_unstemmed Development of a Novel ssDNA Sequence for a Glycated Human Serum Albumin and Construction of a Simple Aptasensor System Based on Reduced Graphene Oxide (rGO)
title_short Development of a Novel ssDNA Sequence for a Glycated Human Serum Albumin and Construction of a Simple Aptasensor System Based on Reduced Graphene Oxide (rGO)
title_sort development of a novel ssdna sequence for a glycated human serum albumin and construction of a simple aptasensor system based on reduced graphene oxide (rgo)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7602221/
https://www.ncbi.nlm.nih.gov/pubmed/33066521
http://dx.doi.org/10.3390/bios10100141
work_keys_str_mv AT kimaru developmentofanovelssdnasequenceforaglycatedhumanserumalbuminandconstructionofasimpleaptasensorsystembasedonreducedgrapheneoxidergo
AT choiyeongmi developmentofanovelssdnasequenceforaglycatedhumanserumalbuminandconstructionofasimpleaptasensorsystembasedonreducedgrapheneoxidergo
AT kimsangheon developmentofanovelssdnasequenceforaglycatedhumanserumalbuminandconstructionofasimpleaptasensorsystembasedonreducedgrapheneoxidergo
AT moonhyunseok developmentofanovelssdnasequenceforaglycatedhumanserumalbuminandconstructionofasimpleaptasensorsystembasedonreducedgrapheneoxidergo
AT kojaeho developmentofanovelssdnasequenceforaglycatedhumanserumalbuminandconstructionofasimpleaptasensorsystembasedonreducedgrapheneoxidergo
AT yoonmoonyoung developmentofanovelssdnasequenceforaglycatedhumanserumalbuminandconstructionofasimpleaptasensorsystembasedonreducedgrapheneoxidergo