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Development of a High-Accuracy, Low-Cost, and Portable Fluorometer with Smartphone Application for the Detection of Urinary Albumin towards the Early Screening of Chronic Kidney and Renal Diseases

This study presents the development of a portable fluorometer with a smartphone application designed to facilitate the early screening of chronic kidney and renal diseases by enabling the sensitive detection of urinary albumin. Utilizing a fluorescence-based aptasensor, the device achieved a linear...

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Autores principales: Pinrod, Visarute, Chawjiraphan, Wireeya, Segkhoonthod, Khoonsake, Hanchaisri, Kriangkai, Tantiwathanapong, Phornpol, Pinpradup, Preedee, Putnin, Thitirat, Pimalai, Dechnarong, Treerattrakoon, Kiatnida, Cha’on, Ubon, Anutrakulchai, Sirirat, Japrung, Deanpen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10526137/
https://www.ncbi.nlm.nih.gov/pubmed/37754110
http://dx.doi.org/10.3390/bios13090876
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author Pinrod, Visarute
Chawjiraphan, Wireeya
Segkhoonthod, Khoonsake
Hanchaisri, Kriangkai
Tantiwathanapong, Phornpol
Pinpradup, Preedee
Putnin, Thitirat
Pimalai, Dechnarong
Treerattrakoon, Kiatnida
Cha’on, Ubon
Anutrakulchai, Sirirat
Japrung, Deanpen
author_facet Pinrod, Visarute
Chawjiraphan, Wireeya
Segkhoonthod, Khoonsake
Hanchaisri, Kriangkai
Tantiwathanapong, Phornpol
Pinpradup, Preedee
Putnin, Thitirat
Pimalai, Dechnarong
Treerattrakoon, Kiatnida
Cha’on, Ubon
Anutrakulchai, Sirirat
Japrung, Deanpen
author_sort Pinrod, Visarute
collection PubMed
description This study presents the development of a portable fluorometer with a smartphone application designed to facilitate the early screening of chronic kidney and renal diseases by enabling the sensitive detection of urinary albumin. Utilizing a fluorescence-based aptasensor, the device achieved a linear calibration curve (0.001–1.5 mg/mL) with a linearity of up to 0.98022 and a detection limit of 0.203 µg/mL for human serum albumin (HSA). The analysis of 130 urine samples demonstrated comparable performance between this study’s fluorometer, a commercial fluorometer, and the standard automated method. These findings validate the feasibility of the portable fluorometer and aptasensor combination as a reliable instrument for the sensitive and specific measurement of HSA in urine samples. Moreover, the fluorometer’s portability offers potential applications in portable point-of-care testing, enhancing its utility in clinical settings for early disease screening.
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spelling pubmed-105261372023-09-28 Development of a High-Accuracy, Low-Cost, and Portable Fluorometer with Smartphone Application for the Detection of Urinary Albumin towards the Early Screening of Chronic Kidney and Renal Diseases Pinrod, Visarute Chawjiraphan, Wireeya Segkhoonthod, Khoonsake Hanchaisri, Kriangkai Tantiwathanapong, Phornpol Pinpradup, Preedee Putnin, Thitirat Pimalai, Dechnarong Treerattrakoon, Kiatnida Cha’on, Ubon Anutrakulchai, Sirirat Japrung, Deanpen Biosensors (Basel) Article This study presents the development of a portable fluorometer with a smartphone application designed to facilitate the early screening of chronic kidney and renal diseases by enabling the sensitive detection of urinary albumin. Utilizing a fluorescence-based aptasensor, the device achieved a linear calibration curve (0.001–1.5 mg/mL) with a linearity of up to 0.98022 and a detection limit of 0.203 µg/mL for human serum albumin (HSA). The analysis of 130 urine samples demonstrated comparable performance between this study’s fluorometer, a commercial fluorometer, and the standard automated method. These findings validate the feasibility of the portable fluorometer and aptasensor combination as a reliable instrument for the sensitive and specific measurement of HSA in urine samples. Moreover, the fluorometer’s portability offers potential applications in portable point-of-care testing, enhancing its utility in clinical settings for early disease screening. MDPI 2023-09-08 /pmc/articles/PMC10526137/ /pubmed/37754110 http://dx.doi.org/10.3390/bios13090876 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Pinrod, Visarute
Chawjiraphan, Wireeya
Segkhoonthod, Khoonsake
Hanchaisri, Kriangkai
Tantiwathanapong, Phornpol
Pinpradup, Preedee
Putnin, Thitirat
Pimalai, Dechnarong
Treerattrakoon, Kiatnida
Cha’on, Ubon
Anutrakulchai, Sirirat
Japrung, Deanpen
Development of a High-Accuracy, Low-Cost, and Portable Fluorometer with Smartphone Application for the Detection of Urinary Albumin towards the Early Screening of Chronic Kidney and Renal Diseases
title Development of a High-Accuracy, Low-Cost, and Portable Fluorometer with Smartphone Application for the Detection of Urinary Albumin towards the Early Screening of Chronic Kidney and Renal Diseases
title_full Development of a High-Accuracy, Low-Cost, and Portable Fluorometer with Smartphone Application for the Detection of Urinary Albumin towards the Early Screening of Chronic Kidney and Renal Diseases
title_fullStr Development of a High-Accuracy, Low-Cost, and Portable Fluorometer with Smartphone Application for the Detection of Urinary Albumin towards the Early Screening of Chronic Kidney and Renal Diseases
title_full_unstemmed Development of a High-Accuracy, Low-Cost, and Portable Fluorometer with Smartphone Application for the Detection of Urinary Albumin towards the Early Screening of Chronic Kidney and Renal Diseases
title_short Development of a High-Accuracy, Low-Cost, and Portable Fluorometer with Smartphone Application for the Detection of Urinary Albumin towards the Early Screening of Chronic Kidney and Renal Diseases
title_sort development of a high-accuracy, low-cost, and portable fluorometer with smartphone application for the detection of urinary albumin towards the early screening of chronic kidney and renal diseases
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10526137/
https://www.ncbi.nlm.nih.gov/pubmed/37754110
http://dx.doi.org/10.3390/bios13090876
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