In this study, we fabricated three different ZnO tetrapodal nanostructures (ZnO-Ts) by a combustion process and studied their physicochemical properties by different techniques to evaluate their potentiality for label-free biosensing purposes. Then, we explored the chemical reactivity of ZnO-Ts by quantifying the available functional hydroxyl groups (-OH) on the transducer surface necessary for biosensor development. The best ZnO-T sample was chemically modified and bioconjugated with biotin as a model bioprobe by a multi-step procedure based on silanization and carbodiimide chemistry. The results demonstrated that the ZnO-Ts could be easily and efficiently biomodified, and sensing experiments based on the streptavidin target detection confirmed these structures' suitability for biosensing applications.
ZnO Tetrapods for Label-Free Optical Biosensing: Physicochemical Characterization and Functionalization Strategies.
用于无标记光学生物传感的 ZnO 四脚体:物理化学表征和功能化策略
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作者:Terracciano Monica, RaÄkauskas Simas, Falanga Andrea Patrizia, Martino Sara, Chianese Giovanna, Greco Francesca, Piccialli Gennaro, Viscardi Guido, De Stefano Luca, Oliviero Giorgia, Borbone Nicola, Rea Ilaria
| 期刊: | International Journal of Molecular Sciences | 影响因子: | 4.900 |
| 时间: | 2023 | 起止号: | 2023 Feb 23; 24(5):4449 |
| doi: | 10.3390/ijms24054449 | ||
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