Circulating microRNA breast cancer biomarker detection in patient sera with surface plasmon resonance imaging biosensor

In this article, we report for the first time, the detection of circulating miRNA as a breast cancer biomarker in patient sera using surface plasmon resonance imaging biosensor. The advantage of this approach lies in the rapid, label-free and sensitive detection. The sensor excites plasmonic resonan...

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Main Authors: Wong, Chi Lok, Loke, Sau Yeen, Lim, Hann Qian, Balasundaram, Ghayathri, Chan, Patrick, Chong, Bee Kiang, Tan, Ern Yu, Lee, Ann Siew Gek, Olivo, Malini
Other Authors: Lee Kong Chian School of Medicine (LKCMedicine)
Format: Article
Language:English
Published: 2022
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Online Access:https://hdl.handle.net/10356/159651
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1596512022-06-29T05:36:10Z Circulating microRNA breast cancer biomarker detection in patient sera with surface plasmon resonance imaging biosensor Wong, Chi Lok Loke, Sau Yeen Lim, Hann Qian Balasundaram, Ghayathri Chan, Patrick Chong, Bee Kiang Tan, Ern Yu Lee, Ann Siew Gek Olivo, Malini Lee Kong Chian School of Medicine (LKCMedicine) Institute of Molecular and Cell Biology, A*STAR Tan Tock Seng Hospital Science::Medicine Breast Cancer Biomarker Circulating miRNA In this article, we report for the first time, the detection of circulating miRNA as a breast cancer biomarker in patient sera using surface plasmon resonance imaging biosensor. The advantage of this approach lies in the rapid, label-free and sensitive detection. The sensor excites plasmonic resonance on the gold sensor surface and specific DNA-miRNA molecular bindings elucidate responses in the plasmonic resonance image. Experiments of detecting synthetic miRNA molecules (miR-1249) were performed and the sensor resolution was found to be 63.5 nM. The sensor was further applied to screen 17 patient serum samples from National Cancer Centre Singapore and Tan Tock Seng Hospital. Sensor intensity response was found to differ by 20% between malignant and benign cases and thus forms, a potential and an important metric in distinguishing benignity and malignancy. Agency for Science, Technology and Research (A*STAR) This work was supported by Agency of Science, Technology and Research (A*STAR), under its Industry alignment fund prepositioning programme, Award H19H6a0025 , Agency for Science, Technology and Research’s (A*STAR) BMRC Central Research Fund (CRF, UIBR) Award and A*ccelerate under GAP funding (ETPL/14-R15GAP-0027). This project was partially funded by the NCC Research Fund. 2022-06-29T05:36:10Z 2022-06-29T05:36:10Z 2021 Journal Article Wong, C. L., Loke, S. Y., Lim, H. Q., Balasundaram, G., Chan, P., Chong, B. K., Tan, E. Y., Lee, A. S. G. & Olivo, M. (2021). Circulating microRNA breast cancer biomarker detection in patient sera with surface plasmon resonance imaging biosensor. Journal of Biophotonics, 14(11), e202100153-. https://dx.doi.org/10.1002/jbio.202100153 1864-063X https://hdl.handle.net/10356/159651 10.1002/jbio.202100153 34369655 2-s2.0-85113738306 11 14 e202100153 en ETPL/14-R15GAP-0027 H19H6a0025 Journal of Biophotonics © 2021 Wiley-VCH GmbH. All rights reserved.
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Science::Medicine
Breast Cancer Biomarker
Circulating miRNA
spellingShingle Science::Medicine
Breast Cancer Biomarker
Circulating miRNA
Wong, Chi Lok
Loke, Sau Yeen
Lim, Hann Qian
Balasundaram, Ghayathri
Chan, Patrick
Chong, Bee Kiang
Tan, Ern Yu
Lee, Ann Siew Gek
Olivo, Malini
Circulating microRNA breast cancer biomarker detection in patient sera with surface plasmon resonance imaging biosensor
description In this article, we report for the first time, the detection of circulating miRNA as a breast cancer biomarker in patient sera using surface plasmon resonance imaging biosensor. The advantage of this approach lies in the rapid, label-free and sensitive detection. The sensor excites plasmonic resonance on the gold sensor surface and specific DNA-miRNA molecular bindings elucidate responses in the plasmonic resonance image. Experiments of detecting synthetic miRNA molecules (miR-1249) were performed and the sensor resolution was found to be 63.5 nM. The sensor was further applied to screen 17 patient serum samples from National Cancer Centre Singapore and Tan Tock Seng Hospital. Sensor intensity response was found to differ by 20% between malignant and benign cases and thus forms, a potential and an important metric in distinguishing benignity and malignancy.
author2 Lee Kong Chian School of Medicine (LKCMedicine)
author_facet Lee Kong Chian School of Medicine (LKCMedicine)
Wong, Chi Lok
Loke, Sau Yeen
Lim, Hann Qian
Balasundaram, Ghayathri
Chan, Patrick
Chong, Bee Kiang
Tan, Ern Yu
Lee, Ann Siew Gek
Olivo, Malini
format Article
author Wong, Chi Lok
Loke, Sau Yeen
Lim, Hann Qian
Balasundaram, Ghayathri
Chan, Patrick
Chong, Bee Kiang
Tan, Ern Yu
Lee, Ann Siew Gek
Olivo, Malini
author_sort Wong, Chi Lok
title Circulating microRNA breast cancer biomarker detection in patient sera with surface plasmon resonance imaging biosensor
title_short Circulating microRNA breast cancer biomarker detection in patient sera with surface plasmon resonance imaging biosensor
title_full Circulating microRNA breast cancer biomarker detection in patient sera with surface plasmon resonance imaging biosensor
title_fullStr Circulating microRNA breast cancer biomarker detection in patient sera with surface plasmon resonance imaging biosensor
title_full_unstemmed Circulating microRNA breast cancer biomarker detection in patient sera with surface plasmon resonance imaging biosensor
title_sort circulating microrna breast cancer biomarker detection in patient sera with surface plasmon resonance imaging biosensor
publishDate 2022
url https://hdl.handle.net/10356/159651
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