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Rapid detection of cancer DNA in human blood using cysteamine-capped AuNPs and a machine learning-enabled smartphone

DNA methylation occurs when a methyl group is added to a cytosine (C) residue's fifth carbon atom, forming 5-methylcytosine (5-mC). Cancer genomes have a distinct methylation landscape (Methylscape), which could be used as a universal cancer biomarker. This study developed a simple, low-cost, a...

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Autores principales: Koowattanasuchat, Sireemas, Ngernpimai, Sawinee, Matulakul, Piyaporn, Thonghlueng, Janpen, Phanchai, Witthawat, Chompoosor, Apiwat, Panitanarak, Uthumporn, Wanna, Yupaporn, Intharah, Thanapong, Chootawiriyasakul, Kanokon, Anata, Pimjai, Chaimnee, Prajuab, Thanan, Raynoo, Sakonsinsiri, Chadamas, Puangmali, Theerapong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9814906/
https://www.ncbi.nlm.nih.gov/pubmed/36686949
http://dx.doi.org/10.1039/d2ra05725e
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author Koowattanasuchat, Sireemas
Ngernpimai, Sawinee
Matulakul, Piyaporn
Thonghlueng, Janpen
Phanchai, Witthawat
Chompoosor, Apiwat
Panitanarak, Uthumporn
Wanna, Yupaporn
Intharah, Thanapong
Chootawiriyasakul, Kanokon
Anata, Pimjai
Chaimnee, Prajuab
Thanan, Raynoo
Sakonsinsiri, Chadamas
Puangmali, Theerapong
author_facet Koowattanasuchat, Sireemas
Ngernpimai, Sawinee
Matulakul, Piyaporn
Thonghlueng, Janpen
Phanchai, Witthawat
Chompoosor, Apiwat
Panitanarak, Uthumporn
Wanna, Yupaporn
Intharah, Thanapong
Chootawiriyasakul, Kanokon
Anata, Pimjai
Chaimnee, Prajuab
Thanan, Raynoo
Sakonsinsiri, Chadamas
Puangmali, Theerapong
author_sort Koowattanasuchat, Sireemas
collection PubMed
description DNA methylation occurs when a methyl group is added to a cytosine (C) residue's fifth carbon atom, forming 5-methylcytosine (5-mC). Cancer genomes have a distinct methylation landscape (Methylscape), which could be used as a universal cancer biomarker. This study developed a simple, low-cost, and straightforward Methylscape sensing platform using cysteamine-decorated gold nanoparticles (Cyst/AuNPs), in which the sensing principle is based on methylation-dependent DNA solvation. Normal and cancer DNAs have distinct methylation profiles; thus, they can be distinguished by observing the dispersion of Cyst/AuNPs adsorbed on these DNA aggregates in MgCl(2) solution. After optimising the MgCl(2), Cyst/AuNPs, DNA concentration, and incubation time, the optimised conditions were used for leukemia screening, by comparing the relative absorbance (ΔA(650/525)). Following the DNA extraction from actual blood samples, this sensor demonstrated effective leukemia screening in 15 minutes with high sensitivity, achieving 95.3% accuracy based on the measurement by an optical spectrophotometer. To further develop for practical realisation, a smartphone assisted by machine learning was used to screen cancer patients, achieving 90.0% accuracy in leukemia screening. This sensing platform can be applied not only for leukemia screening but also for other cancers associated with epigenetic modification.
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spelling pubmed-98149062023-01-20 Rapid detection of cancer DNA in human blood using cysteamine-capped AuNPs and a machine learning-enabled smartphone Koowattanasuchat, Sireemas Ngernpimai, Sawinee Matulakul, Piyaporn Thonghlueng, Janpen Phanchai, Witthawat Chompoosor, Apiwat Panitanarak, Uthumporn Wanna, Yupaporn Intharah, Thanapong Chootawiriyasakul, Kanokon Anata, Pimjai Chaimnee, Prajuab Thanan, Raynoo Sakonsinsiri, Chadamas Puangmali, Theerapong RSC Adv Chemistry DNA methylation occurs when a methyl group is added to a cytosine (C) residue's fifth carbon atom, forming 5-methylcytosine (5-mC). Cancer genomes have a distinct methylation landscape (Methylscape), which could be used as a universal cancer biomarker. This study developed a simple, low-cost, and straightforward Methylscape sensing platform using cysteamine-decorated gold nanoparticles (Cyst/AuNPs), in which the sensing principle is based on methylation-dependent DNA solvation. Normal and cancer DNAs have distinct methylation profiles; thus, they can be distinguished by observing the dispersion of Cyst/AuNPs adsorbed on these DNA aggregates in MgCl(2) solution. After optimising the MgCl(2), Cyst/AuNPs, DNA concentration, and incubation time, the optimised conditions were used for leukemia screening, by comparing the relative absorbance (ΔA(650/525)). Following the DNA extraction from actual blood samples, this sensor demonstrated effective leukemia screening in 15 minutes with high sensitivity, achieving 95.3% accuracy based on the measurement by an optical spectrophotometer. To further develop for practical realisation, a smartphone assisted by machine learning was used to screen cancer patients, achieving 90.0% accuracy in leukemia screening. This sensing platform can be applied not only for leukemia screening but also for other cancers associated with epigenetic modification. The Royal Society of Chemistry 2023-01-05 /pmc/articles/PMC9814906/ /pubmed/36686949 http://dx.doi.org/10.1039/d2ra05725e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Koowattanasuchat, Sireemas
Ngernpimai, Sawinee
Matulakul, Piyaporn
Thonghlueng, Janpen
Phanchai, Witthawat
Chompoosor, Apiwat
Panitanarak, Uthumporn
Wanna, Yupaporn
Intharah, Thanapong
Chootawiriyasakul, Kanokon
Anata, Pimjai
Chaimnee, Prajuab
Thanan, Raynoo
Sakonsinsiri, Chadamas
Puangmali, Theerapong
Rapid detection of cancer DNA in human blood using cysteamine-capped AuNPs and a machine learning-enabled smartphone
title Rapid detection of cancer DNA in human blood using cysteamine-capped AuNPs and a machine learning-enabled smartphone
title_full Rapid detection of cancer DNA in human blood using cysteamine-capped AuNPs and a machine learning-enabled smartphone
title_fullStr Rapid detection of cancer DNA in human blood using cysteamine-capped AuNPs and a machine learning-enabled smartphone
title_full_unstemmed Rapid detection of cancer DNA in human blood using cysteamine-capped AuNPs and a machine learning-enabled smartphone
title_short Rapid detection of cancer DNA in human blood using cysteamine-capped AuNPs and a machine learning-enabled smartphone
title_sort rapid detection of cancer dna in human blood using cysteamine-capped aunps and a machine learning-enabled smartphone
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9814906/
https://www.ncbi.nlm.nih.gov/pubmed/36686949
http://dx.doi.org/10.1039/d2ra05725e
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