A novel ternary heterostructure with dramatic SERS activity for evaluation of PD-L1 expression at the single-cell level
Feng, E., Zheng, T., He, X., Chen, J., Tian, Y.
American Association for the Advancement of Science (AAAS)
Published 2018
American Association for the Advancement of Science (AAAS)
Published 2018
Publication Date: |
2018-11-03
|
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Publisher: |
American Association for the Advancement of Science (AAAS)
|
Electronic ISSN: |
2375-2548
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Topics: |
Natural Sciences in General
|
Published by: |
_version_ | 1836399079430553600 |
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autor | Feng, E., Zheng, T., He, X., Chen, J., Tian, Y. |
beschreibung | Surface-enhanced Raman scattering (SERS) probes based on a charge transfer (CT) process with high stability and reproducibility are powerful tools under open-air conditions. However, the key problem ahead of practical usage of CT-based SERS technology is how to effectively improve sensitivity. Here, a novel ternary heterostructure SERS substrate, Fe 3 O 4 @GO@TiO 2 , with a significant enhancement factor of 8.08 x 10 6 was first synthesized. We found the remarkable enhanced effect of SERS signal to be attributed to the resonance effect of CuPc, CT between GO and TiO 2 , and enrichment from a porous TiO 2 shell. In addition, we developed a robust SERS probe with good recyclability under visible light illumination on Fe 3 O 4 @GO@TiO 2 nanocomposites toward ultrasensitive detection of cancer cells down to three cells. We have now successfully applied this probe for in situ quantification and imaging of programmed cell death receptor ligand 1 (PD-L1) on triple-negative breast cancer cell surface at the single-cell level and for monitoring the expression variation of PD-L1 during drug treatment. |
citation_standardnr | 6352609 |
datenlieferant | ipn_articles |
feed_id | 228416 |
feed_publisher | American Association for the Advancement of Science (AAAS) |
feed_publisher_url | http://www.aaas.org/ |
insertion_date | 2018-11-03 |
journaleissn | 2375-2548 |
publikationsjahr_anzeige | 2018 |
publikationsjahr_facette | 2018 |
publikationsjahr_intervall | 7984:2015-2019 |
publikationsjahr_sort | 2018 |
publisher | American Association for the Advancement of Science (AAAS) |
quelle | Science Advances |
relation | http://advances.sciencemag.org/cgi/content/short/4/11/eaau3494?rss=1 |
search_space | articles |
shingle_author_1 | Feng, E., Zheng, T., He, X., Chen, J., Tian, Y. |
shingle_author_2 | Feng, E., Zheng, T., He, X., Chen, J., Tian, Y. |
shingle_author_3 | Feng, E., Zheng, T., He, X., Chen, J., Tian, Y. |
shingle_author_4 | Feng, E., Zheng, T., He, X., Chen, J., Tian, Y. |
shingle_catch_all_1 | A novel ternary heterostructure with dramatic SERS activity for evaluation of PD-L1 expression at the single-cell level Surface-enhanced Raman scattering (SERS) probes based on a charge transfer (CT) process with high stability and reproducibility are powerful tools under open-air conditions. However, the key problem ahead of practical usage of CT-based SERS technology is how to effectively improve sensitivity. Here, a novel ternary heterostructure SERS substrate, Fe 3 O 4 @GO@TiO 2 , with a significant enhancement factor of 8.08 x 10 6 was first synthesized. We found the remarkable enhanced effect of SERS signal to be attributed to the resonance effect of CuPc, CT between GO and TiO 2 , and enrichment from a porous TiO 2 shell. In addition, we developed a robust SERS probe with good recyclability under visible light illumination on Fe 3 O 4 @GO@TiO 2 nanocomposites toward ultrasensitive detection of cancer cells down to three cells. We have now successfully applied this probe for in situ quantification and imaging of programmed cell death receptor ligand 1 (PD-L1) on triple-negative breast cancer cell surface at the single-cell level and for monitoring the expression variation of PD-L1 during drug treatment. Feng, E., Zheng, T., He, X., Chen, J., Tian, Y. American Association for the Advancement of Science (AAAS) 2375-2548 23752548 |
shingle_catch_all_2 | A novel ternary heterostructure with dramatic SERS activity for evaluation of PD-L1 expression at the single-cell level Surface-enhanced Raman scattering (SERS) probes based on a charge transfer (CT) process with high stability and reproducibility are powerful tools under open-air conditions. However, the key problem ahead of practical usage of CT-based SERS technology is how to effectively improve sensitivity. Here, a novel ternary heterostructure SERS substrate, Fe 3 O 4 @GO@TiO 2 , with a significant enhancement factor of 8.08 x 10 6 was first synthesized. We found the remarkable enhanced effect of SERS signal to be attributed to the resonance effect of CuPc, CT between GO and TiO 2 , and enrichment from a porous TiO 2 shell. In addition, we developed a robust SERS probe with good recyclability under visible light illumination on Fe 3 O 4 @GO@TiO 2 nanocomposites toward ultrasensitive detection of cancer cells down to three cells. We have now successfully applied this probe for in situ quantification and imaging of programmed cell death receptor ligand 1 (PD-L1) on triple-negative breast cancer cell surface at the single-cell level and for monitoring the expression variation of PD-L1 during drug treatment. Feng, E., Zheng, T., He, X., Chen, J., Tian, Y. American Association for the Advancement of Science (AAAS) 2375-2548 23752548 |
shingle_catch_all_3 | A novel ternary heterostructure with dramatic SERS activity for evaluation of PD-L1 expression at the single-cell level Surface-enhanced Raman scattering (SERS) probes based on a charge transfer (CT) process with high stability and reproducibility are powerful tools under open-air conditions. However, the key problem ahead of practical usage of CT-based SERS technology is how to effectively improve sensitivity. Here, a novel ternary heterostructure SERS substrate, Fe 3 O 4 @GO@TiO 2 , with a significant enhancement factor of 8.08 x 10 6 was first synthesized. We found the remarkable enhanced effect of SERS signal to be attributed to the resonance effect of CuPc, CT between GO and TiO 2 , and enrichment from a porous TiO 2 shell. In addition, we developed a robust SERS probe with good recyclability under visible light illumination on Fe 3 O 4 @GO@TiO 2 nanocomposites toward ultrasensitive detection of cancer cells down to three cells. We have now successfully applied this probe for in situ quantification and imaging of programmed cell death receptor ligand 1 (PD-L1) on triple-negative breast cancer cell surface at the single-cell level and for monitoring the expression variation of PD-L1 during drug treatment. Feng, E., Zheng, T., He, X., Chen, J., Tian, Y. American Association for the Advancement of Science (AAAS) 2375-2548 23752548 |
shingle_catch_all_4 | A novel ternary heterostructure with dramatic SERS activity for evaluation of PD-L1 expression at the single-cell level Surface-enhanced Raman scattering (SERS) probes based on a charge transfer (CT) process with high stability and reproducibility are powerful tools under open-air conditions. However, the key problem ahead of practical usage of CT-based SERS technology is how to effectively improve sensitivity. Here, a novel ternary heterostructure SERS substrate, Fe 3 O 4 @GO@TiO 2 , with a significant enhancement factor of 8.08 x 10 6 was first synthesized. We found the remarkable enhanced effect of SERS signal to be attributed to the resonance effect of CuPc, CT between GO and TiO 2 , and enrichment from a porous TiO 2 shell. In addition, we developed a robust SERS probe with good recyclability under visible light illumination on Fe 3 O 4 @GO@TiO 2 nanocomposites toward ultrasensitive detection of cancer cells down to three cells. We have now successfully applied this probe for in situ quantification and imaging of programmed cell death receptor ligand 1 (PD-L1) on triple-negative breast cancer cell surface at the single-cell level and for monitoring the expression variation of PD-L1 during drug treatment. Feng, E., Zheng, T., He, X., Chen, J., Tian, Y. American Association for the Advancement of Science (AAAS) 2375-2548 23752548 |
shingle_title_1 | A novel ternary heterostructure with dramatic SERS activity for evaluation of PD-L1 expression at the single-cell level |
shingle_title_2 | A novel ternary heterostructure with dramatic SERS activity for evaluation of PD-L1 expression at the single-cell level |
shingle_title_3 | A novel ternary heterostructure with dramatic SERS activity for evaluation of PD-L1 expression at the single-cell level |
shingle_title_4 | A novel ternary heterostructure with dramatic SERS activity for evaluation of PD-L1 expression at the single-cell level |
timestamp | 2025-06-30T23:37:16.594Z |
titel | A novel ternary heterostructure with dramatic SERS activity for evaluation of PD-L1 expression at the single-cell level |
titel_suche | A novel ternary heterostructure with dramatic SERS activity for evaluation of PD-L1 expression at the single-cell level |
topic | TA-TD |
uid | ipn_articles_6352609 |