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Label-Free Direct Detection of miRNAs with Poly-Silicon Nanowire Biosensors

BACKGROUND: The diagnostic and prognostic value of microRNAs (miRNAs) in a variety of diseases is promising. The novel silicon nanowire (SiNW) biosensors have advantages in molecular detection because of their high sensitivity and fast response. In this study, poly-crystalline silicon nanowire field...

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Autores principales: He, Jing, Zhu, Jianjun, Gong, Changguo, Qi, Jiming, Xiao, Han, Jiang, Bin, Zhao, Yulan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4692481/
https://www.ncbi.nlm.nih.gov/pubmed/26709827
http://dx.doi.org/10.1371/journal.pone.0145160
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author He, Jing
Zhu, Jianjun
Gong, Changguo
Qi, Jiming
Xiao, Han
Jiang, Bin
Zhao, Yulan
author_facet He, Jing
Zhu, Jianjun
Gong, Changguo
Qi, Jiming
Xiao, Han
Jiang, Bin
Zhao, Yulan
author_sort He, Jing
collection PubMed
description BACKGROUND: The diagnostic and prognostic value of microRNAs (miRNAs) in a variety of diseases is promising. The novel silicon nanowire (SiNW) biosensors have advantages in molecular detection because of their high sensitivity and fast response. In this study, poly-crystalline silicon nanowire field-effect transistor (poly-SiNW FET) device was developed to achieve specific and ultrasensitive detection of miRNAs without labeling and amplification. METHODS: The poly-SiNW FET was fabricated by a top–down Complementary Metal Oxide Semiconductor (CMOS) wafer fabrication based technique. Single strand DNA (ssDNA) probe was bind to the surface of the poly-SiNW device which was silanated and aldehyde-modified. By comparing the difference of resistance value before and after ssDNA and miRNA hybridization, poly-SiNW device can be used to detect standard and real miRNA samples. RESULTS: Poly-SiNW device with different structures (different line width and different pitch) was applied to detect standard Let-7b sample with a detection limitation of 1 fM. One-base mismatched sequence could be distinguished meanwhile. Furthermore, these poly-SiNW arrays can detect snRNA U6 in total RNA samples extracted from HepG2 cells with a detection limitation of 0.2 μg/mL. In general, structures with pitch showed better results than those without pitch in detection of both Let-7b and snRNA U6. Moreover, structures with smaller pitch showed better detection efficacy. CONCLUSION: Our findings suggest that poly-SiNW arrays could detect standard and real miRNA sample without labeling or amplification. Poly-SiNW biosensor device is promising for miRNA detection.
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spelling pubmed-46924812016-01-12 Label-Free Direct Detection of miRNAs with Poly-Silicon Nanowire Biosensors He, Jing Zhu, Jianjun Gong, Changguo Qi, Jiming Xiao, Han Jiang, Bin Zhao, Yulan PLoS One Research Article BACKGROUND: The diagnostic and prognostic value of microRNAs (miRNAs) in a variety of diseases is promising. The novel silicon nanowire (SiNW) biosensors have advantages in molecular detection because of their high sensitivity and fast response. In this study, poly-crystalline silicon nanowire field-effect transistor (poly-SiNW FET) device was developed to achieve specific and ultrasensitive detection of miRNAs without labeling and amplification. METHODS: The poly-SiNW FET was fabricated by a top–down Complementary Metal Oxide Semiconductor (CMOS) wafer fabrication based technique. Single strand DNA (ssDNA) probe was bind to the surface of the poly-SiNW device which was silanated and aldehyde-modified. By comparing the difference of resistance value before and after ssDNA and miRNA hybridization, poly-SiNW device can be used to detect standard and real miRNA samples. RESULTS: Poly-SiNW device with different structures (different line width and different pitch) was applied to detect standard Let-7b sample with a detection limitation of 1 fM. One-base mismatched sequence could be distinguished meanwhile. Furthermore, these poly-SiNW arrays can detect snRNA U6 in total RNA samples extracted from HepG2 cells with a detection limitation of 0.2 μg/mL. In general, structures with pitch showed better results than those without pitch in detection of both Let-7b and snRNA U6. Moreover, structures with smaller pitch showed better detection efficacy. CONCLUSION: Our findings suggest that poly-SiNW arrays could detect standard and real miRNA sample without labeling or amplification. Poly-SiNW biosensor device is promising for miRNA detection. Public Library of Science 2015-12-28 /pmc/articles/PMC4692481/ /pubmed/26709827 http://dx.doi.org/10.1371/journal.pone.0145160 Text en © 2015 He et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
He, Jing
Zhu, Jianjun
Gong, Changguo
Qi, Jiming
Xiao, Han
Jiang, Bin
Zhao, Yulan
Label-Free Direct Detection of miRNAs with Poly-Silicon Nanowire Biosensors
title Label-Free Direct Detection of miRNAs with Poly-Silicon Nanowire Biosensors
title_full Label-Free Direct Detection of miRNAs with Poly-Silicon Nanowire Biosensors
title_fullStr Label-Free Direct Detection of miRNAs with Poly-Silicon Nanowire Biosensors
title_full_unstemmed Label-Free Direct Detection of miRNAs with Poly-Silicon Nanowire Biosensors
title_short Label-Free Direct Detection of miRNAs with Poly-Silicon Nanowire Biosensors
title_sort label-free direct detection of mirnas with poly-silicon nanowire biosensors
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4692481/
https://www.ncbi.nlm.nih.gov/pubmed/26709827
http://dx.doi.org/10.1371/journal.pone.0145160
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