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Updated: Jun 4, 2026

Surface-enhanced Resonance Raman Scattering Nanoprobe Ratiometry for Detecting Microscopic Ovarian Cancer via Folate Receptor Targeting
Published on: March 25, 2019
ZnO nanorods-enhanced fluorescence for sensitive microarray detection of cancers in serum without additional
Weihua Hu1, Yingshuai Liu, Hongbin Yang
1School of Chemical and Biomedical Engineering, Nanyang Technological University, 70 Nanyang Drive, Singapore 637457, Singapore.
Abstract:
Current high-throughput antibody microarrays greatly rely on enzymatic reactions- or nanostructured tags-based reporter-amplifications for required sensitivity, but they need tedious operation, additional expensive reagents and microwells or microchannels to eliminate crossover interferences, thus resulting in low array density and high expense. A unique ZnO nanorods-grown substrate is developed here to not only immobilize a large amount of probe molecules, but also directly amplify the microarray fluorescent signals in detection of two important cancer biomarkers, carcinoembryonic antigen (CEA) and α-fetoprotein (AFP), achieving a detection limit of 1 pg mL(-1) in human serum, which is comparative to or lower than that of ELISA. This advanced ZnO nanorods-based substrate can be mass-manufactured, which offers great potential to fabricate economical and sensitive protein arrays for broad applications in clinic diagnosis, therapeutic monitoring and drug discovery.

