2023
DOI: 10.1016/j.aca.2023.340823
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A portable and low-cost centrifugal microfluidic platform for multiplexed colorimetric detection of protein biomarkers

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Cited by 11 publications
(10 citation statements)
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“…This high-throughput assay can effectively reduce detection costs and upgrade the efficiency of resource utilization. 64,65 ■ SIGNAL TRANSDUCTION MECHANISMS FOR MULTIPLEXED PEC SENSORS Enzyme-Catalyzed Regulation Strategy. The primary challenge in applying traditional PEC sensors to multiplex detection is the high likelihood of cross-interference of multiplex detection signals at a single recognition interface.…”
Section: General Detection Principlesmentioning
confidence: 99%
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“…This high-throughput assay can effectively reduce detection costs and upgrade the efficiency of resource utilization. 64,65 ■ SIGNAL TRANSDUCTION MECHANISMS FOR MULTIPLEXED PEC SENSORS Enzyme-Catalyzed Regulation Strategy. The primary challenge in applying traditional PEC sensors to multiplex detection is the high likelihood of cross-interference of multiplex detection signals at a single recognition interface.…”
Section: General Detection Principlesmentioning
confidence: 99%
“…However, the portability of the sensor is considered a requirement for practical applications. 65,89 Despite the existence of studies on the construction of miniature PEC sensors using microfluidic chips, achieving practical miniaturization remains challenging owing to the presence of electrochemical workstations and excitation light sources. In terms of the miniaturization and integration design of PEC sensor devices, the miniaturization of the identification and sensing unit and the integration of hand-held instruments and miniaturized signaling devices, such as smartphones, 15,90,91 multimeters, 92−94 pH meters, 95 and thermometers, 7,96,97 with PEC sensing technology should be considered.…”
Section: General Detection Principlesmentioning
confidence: 99%
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“…Conventional manufacturing techniques used for microfluidic devices require a clean room and generate high costs, which hinder their widespread adoption ( Walsh et al, 2017 ; Shakeri et al, 2021 ). Consequently, there has been a growing interest in developing low-cost techniques to fabricate microfluidic devices, facilitating broader access and expediting integration into various applications ( Li et al, 2022 ; Akhtar et al, 2023 ; Li et al, 2023 ).…”
Section: Manufacturing Techniquesmentioning
confidence: 99%
“…The last few decades have shown broader access of these microdevices thereby expediting their integration across diverse areas including biomedical, point of care, pharmaceutical, chemical, and health care [2][3][4][5]. Consequently, the growing demand for microfluidic devices especially in bio-analytical applications [6] facilitates the development of a low-cost technique with high throughput production potential [7][8][9]. Microdevices can be manufactured either through direct fabrication or a replication approach [10].…”
Section: Introductionmentioning
confidence: 99%