TY - JOUR
T1 - Off-resonance SERS nanoprobe-targeted screen of biomarkers for antigens recognition of bladder normal and aggressive cancer cells
AU - Yang, Yao Tzu
AU - Hsu, I. Ling
AU - Cheng, Ting Yu
AU - Wu, Wen Jeng
AU - Lee, Chien Wei
AU - Li, Tsung Ju
AU - Cheung, Chun In
AU - Chin, Yu Cheng
AU - Chen, Hsiao Chien
AU - Chiu, Yi Chun
AU - Huang, Chih Chia
AU - Liao, Mei Yi
N1 - Funding Information:
This work was supported in part by grants from the Ministry of Science and Technology,, Taiwan (MOST 107-2113-M-153-002 -, MOST 105-2221-E-006-139 -, and MOST 105-2113-M-006-015-MY3), and by a grant from the Taipei City Hospital (TCH) and the Department of Health, Taipei City Government (TCH No. 10601-62-015 and 10701-62-019). This work was financially supported by the Center of Applied Nanomedicine, National Cheng Kung University from The Featured Areas Research Center Program within the framework of the Higher Education Sprout Project by the Ministry of Education (MOE) in Taiwan.
Funding Information:
This work was supported in part by grants from the Ministry of Science and Technology, , Taiwan (MOST 107-2113-M-153-002 -, MOST 105-2221-E-006-139 -, and MOST 105-2113-M-006-015-MY3), and by a grant from the Taipei City Hospital (TCH) and the Department of Health, Taipei City Government (TCH No. 10601-62-015 and 10701-62-019). This work was financially supported by the Center of Applied Nano-medicine, National Cheng Kung University from The Featured Areas Research Center Program within the framework of the Higher Education Sprout Project by the Ministry of Education (MOE) in Taiwan.
Publisher Copyright:
© 2019 American Chemical Society.
PY - 2019/7/2
Y1 - 2019/7/2
N2 - The discovery of different binding receptors to allow rapid and high-sensitivity detection via a noninvasive urine test has become the goal for urothelial carcinoma (UC) diagnosis and surveillance. In this study, we developed a new screening membrane receptor platform for bladder cancer cells by integrating surface-enhanced Raman spectroscopy (SERS) with 4-aminothiophenol (4-ATP)-modified AuAg nanohollows upon NIR laser excitation. AuAg nanohollows have an absorption band at ∼630 nm, and slightly off-resonance 785 nm laser excitation is used for minimal photothermal effect. Using the same carbodiimide cross-linker chemistry to conjugate anti-EGFR, transferrin (TF), 4-carboxyphenylboronic acid (CPBA), folic acid (FA), and hyaluronic acid (HA) molecules, by screening the 4-ATP SERS signals intensity, we demonstrated that the targeting efficiency with the cost-effective CPBA molecule is comparable with the conjugation of anti-EGFR antibody to aggressive T24 cancer cells (high-grade), while weak intensity 4-ATP SERS responses to targets were obtained by grade-I RT4 bladder cancer cells, NIH/3T3 fibroblast cells, and SV-HUC1 bladder normal cells. This SERS nanoprobe platform makes primary bladder carcinoma screening from in vitro to ex vivo more straightforward. Our demonstration offers exciting potential for SERS screening of specific receptors on cancer cells of different grades and facilitates new opportunities ranging from surface engineering of SERS material tags to SERS imaging-guided and targeted phototherapy of cancer cells by controlling the laser powers.
AB - The discovery of different binding receptors to allow rapid and high-sensitivity detection via a noninvasive urine test has become the goal for urothelial carcinoma (UC) diagnosis and surveillance. In this study, we developed a new screening membrane receptor platform for bladder cancer cells by integrating surface-enhanced Raman spectroscopy (SERS) with 4-aminothiophenol (4-ATP)-modified AuAg nanohollows upon NIR laser excitation. AuAg nanohollows have an absorption band at ∼630 nm, and slightly off-resonance 785 nm laser excitation is used for minimal photothermal effect. Using the same carbodiimide cross-linker chemistry to conjugate anti-EGFR, transferrin (TF), 4-carboxyphenylboronic acid (CPBA), folic acid (FA), and hyaluronic acid (HA) molecules, by screening the 4-ATP SERS signals intensity, we demonstrated that the targeting efficiency with the cost-effective CPBA molecule is comparable with the conjugation of anti-EGFR antibody to aggressive T24 cancer cells (high-grade), while weak intensity 4-ATP SERS responses to targets were obtained by grade-I RT4 bladder cancer cells, NIH/3T3 fibroblast cells, and SV-HUC1 bladder normal cells. This SERS nanoprobe platform makes primary bladder carcinoma screening from in vitro to ex vivo more straightforward. Our demonstration offers exciting potential for SERS screening of specific receptors on cancer cells of different grades and facilitates new opportunities ranging from surface engineering of SERS material tags to SERS imaging-guided and targeted phototherapy of cancer cells by controlling the laser powers.
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U2 - 10.1021/acs.analchem.9b00775
DO - 10.1021/acs.analchem.9b00775
M3 - Article
C2 - 31141343
AN - SCOPUS:85069265391
SN - 0003-2700
VL - 91
SP - 8213
EP - 8220
JO - Analytical Chemistry
JF - Analytical Chemistry
IS - 13
ER -