• Acta Photonica Sinica
  • Vol. 49, Issue 8, 0817002 (2020)
Le PENG1, Lu ZHOU2, Yan-ping QING3, Li-ying TONG1, Zhao-heng LIANG1, Hao FU1, and Jun ZHOU1、*
Author Affiliations
  • 1Department of Microelectronics Engineering, School of Physical & Science, Ningbo University, Ningbo, Zhejiang 315211, China
  • 2Center for Terahertz Waves, College of Precision Instrument and Optoelectronics Engineering, Tianjin University, Tianjin 300072, China
  • 3Affiliated Hospital, School of Medicine, Ningbo University, Ningbo, Zhejiang 315020, China
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    DOI: 10.3788/gzxb20204908.0817002 Cite this Article
    Le PENG, Lu ZHOU, Yan-ping QING, Li-ying TONG, Zhao-heng LIANG, Hao FU, Jun ZHOU. High Sensitivity Detection of Gene-like Tumor Markers Based on SERS Characteristics of Hollow Sea-urchin Gold Nanoparticles and Noble Metal/semiconductor Substrate[J]. Acta Photonica Sinica, 2020, 49(8): 0817002 Copy Citation Text show less
    References

    [1] F BRAY, J FERLAY, I SOERJOMARARAM. Global cancer statistics 2018: GLOBOCAN estimates of incidence and mortality worldwide for 36 cancers in 185 countries. CA-A Cancer Journal for Clinicians, 68, 394-424(2018).

    [2] J FERLAY, M COLOMBET, I SOERJOMATARAM. Estimating the global cancer incidence and mortality in 2018: GLOBOCAN sources and methods. International Journal of Cancer, 144, 1941-1953(2019).

    [3] L L ROBISON, M M HUDSON. Survivors of childhood and adolescent cancer: life-long risks and responsibilities. Nature Reviews Cancer, 14, 61-70(2013).

    [4] B W STEWART, C P WILD. World cancer report 2014(2014).

    [5] D P BARTEL. MicroRNAs: genomics, biogenesis, mechanism, and function. Cell, 116, 281-297(2004).

    [6] G A CALIN, C D DUMITRU, M SHIMIZU. Frequent deletions and down-regulation of micro-RNA genes miR15 and miR16 at 13q14 in chronic lymphocytic leukemia. Proceedings of the National Academy of Sciences of the United States of America, 99, 15524-15529(2002).

    [7] M Z MICHAEL, S M OCONNOR, N G van HOLST PELLEKAAN. Reduced accumulation of specific microRNAs in colorectal neoplasia. Molecular Cancer Research, 1, 882-891(2003).

    [8] M TSUJIURA, D ICHIKAWA, S KOMATSU. Circulating microRNAs in plasma of patients with gastric cancers. British Journal of Cancer, 102, 1174-1179(2010).

    [9] A RAHIMI, R SEDIGHI, M EMADI‐BAYGI. Bioinformatics prediction and experimental validation of a novel microRNA: hsa‐miR‐B43 within human CDH4 gene with a potential metastasis‐related function in breast cancer. Journal of Cellular Biochemistry, 121, 1307-1316(2020).

    [10] S P JONSTRUP, J KOCH, J KJEMS. A microRNA detection system based on padlock probes and rolling circle amplification. RNA, 12, 1747-1752(2006).

    [11] T BABAK, W ZHANG, Q MORRIS. Probing microRNAs with microarrays: Tissue specificity and functional inference. RNA, 10, 1813-1819(2004).

    [12] M LAGOS-QUINTANA, R RAUHUT, W LENDECKL. Identification of novel genes coding for small expressed RNAs. Science, 294, 853-858(2001).

    [13] L CHENG, R A SHARPLES, B J SCICLUNA. Exosomes provide a protective and enriched source of miRNA for biomarker profiling compared to intracellular and cell-free blood. Journal of Extracellular Vesicles, 3, 23743(2014).

    [15] J LI, Z ZHU, B ZHU. Surface-enhanced Raman scattering active plasmonic nanoparticles with ultrasmall interior nanogap for multiplex quantitative detection and cancer cell imaging. Analytical Chemistry, 88, 7828-7836(2016).

    [17] H IM, K C BANTZ, C NATHAN. Vertically oriented sub-10-nm plasmonic nanogap arrays. Nano Letters, 10, 2231-2236(2010).

    [19] K L WUSTHOLZ, A I HENRY, J M MCMAHON. Structure-activity relationships in gold nanoparticle dimers and trimers for surface-enhanced raman spectroscopy. Journal of the American Chemical Society, 132, 10903-10910(2010).

    [20] A B ZRIMSRK, A I HENRY, R P V DUYNE. Single molecule surface-enhanced raman spectroscopy without nanogaps. Journal of Physical Chemistry Letters, 4, 3206-3210(2013).

    [21] X T WANG, W S SHI, G W SHE. Surface-Enhanced Raman Scattering (SERS) on transition metal and semiconductor nanostructures. Physical Chemistry Chemical Physics, 14, 5891-5901(2012).

    [22] P JOSHIA, V SANTHANAM. Paper-based SERS active substrates on demand. RSC Advances, 6, 68545-68552(2016).

    [23] K KATRIN. Chemical contribution to SERS enhancement: an experimental study on a series of polymethine dyes on silver nanoaggregates. Journal of Physical Chemistry C, 120, 21076-21081(2016).

    [24] Hao MA, He WANG, Peng LI. Interfacial charge transfer in TiO2/PTCA/Ag revealed by surface-enhanced raman spectroscopy. Journal of Physical Chemistry C, 122, 15208-15213(2018).

    [25] Jun-peng LI, Jun ZHOU, Tao JIANG. Controllable synthesis and SERS characteristics of hollow sea-urchin gold nanoparticles. Physical Chemistry Chemical Physics, 16, 25601-25608(2014).

    [26] Q SIMON, D BARRECA, A GASPAROTTO. Ag/ZnO nanomaterials as high performance sensors for flammable and toxic gases. Nanotechnology, 23, 025502(2011).

    [27] Xiao-lei ZHANG, Zhi YU, Wei JI. Charge-transfer effect on Surface-Enhanced Raman Scattering (SERS) in an ordered Ag NPs/4-Mercaptobenzoic Acid/TiO2 system. Journal of Physical Chemistry C, 119, 22439-22444(2015).

    [28] Zao YI, Xi-bin XU, Xiao-li KANG. Fabrication of well-aligned ZnO@Ag nanorod arrays with effective charge transfer for surface-enhanced Raman scattering. Surface & Coatings Technology, 324, 257-263(2017).

    [29] Shuai LI, Da-wei LI, Qing-yu ZHANG. Surface enhanced Raman scattering substrate with high-density hotspots fabricated by depositing Ag film on TiO2-catalyzed Ag nanoparticles. Journal of Alloys and Compounds, 689, 439-445(2016).

    [30] A SHRIVASTAVA, V GUPTA. Methods for the determination of limit of detection and limit of quantitation of the analytical methods. Chronicles of Young Scientists, 2, 21-25(2011).

    Le PENG, Lu ZHOU, Yan-ping QING, Li-ying TONG, Zhao-heng LIANG, Hao FU, Jun ZHOU. High Sensitivity Detection of Gene-like Tumor Markers Based on SERS Characteristics of Hollow Sea-urchin Gold Nanoparticles and Noble Metal/semiconductor Substrate[J]. Acta Photonica Sinica, 2020, 49(8): 0817002
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