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
Publication Date:
2018-11-03
Publisher:
American Association for the Advancement of Science (AAAS)
Electronic ISSN:
2375-2548
Topics:
Natural Sciences in General
Published by:
_version_ 1836399079430553600
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