吴婷婷 副教授

作者:

来源:健康科学与工程学院

发布日期:2023年01月02日 10:13

阅读:

一、基本信息

吴婷婷,副教授

研究领域:生物传感器,疾病的体外快速诊断

电子邮件:wutingting@hubu.edu.cn


二、教育背景及工作经历

2023-09至今,湖北大学,健康科学与工程学院,副教授

2022-102023-09,湖北大学,健康科学与工程学院,讲师

2019-07至2022-09,湖北大学,化学化工学院,博士后

2014-09至2019-06,北京科技大学,化学与生物工程学院,博士

2010-09至2014-06,北京科技大学,材料科学与工程学院,学士


三、研究方向

生物传感器, 疾病的体外快速诊断


四、科研项目

1.  国家自然科学基金青年项目,基于固着微液滴的外泌体microRNA即时检测,2022/01-2024/1230万,主持,在研。

五、代表性论文

1.  Wu, T.; Liu, Y.; Cao, Y.*; Liu, Z.* Engineering macrophage exosome disguised biodegradable nanoplatform for enhanced sonodynamic therapy of glioblastoma. Adv. Mater. 2022, 34, 2110364.

2.  Chen, H.; Liu, Y.; Feng, S.; Cao, Y.; Wu, T.*; Liu, Z.* Cotton thread-based multi-channel photothermal biosensor for simultaneous detection of multiple microRNAs. Biosens. Bioelectron. 2022, 200, 113913.

3. Wu, T.#; Liu, X.#; Chen, H.; Liu, Y.; Cao, Y.* ; An in situ exosomal miRNA sensing biochip based on multi-branched localized catalytic hairpin assembly and photonic crystals, Biosens. Bioelectron. 2023, 222, 115013.

4. Feng, S; Chen, H; Hu, Z.; Wu, T.*; Liu, Z.*; Ultrasensitive Detection of miRNA via CRISPR/Cas12a Coupled with Strand Displacement Amplifiation Reaction, ACS Appl. Mater. Interfaces 2023, 15(24), 28933-28940.

5. Wu, T.; Xu, T.; Xu, L. P.*; Huang, Y.; Shi, W.; Wen, Y.; Zhang, X.* Superhydrophilic cotton thread with temperature-dependent pattern for sensitive nucleic acid detection. Biosens. Bioelectron. 2016, 86, 951-957.

6. Wu, T.; Yang, Y.; Cao, Y.; Huang, Y.; Xu, L.-P.*; Zhang, X.*; Wang, S.* Enhanced lateral flow assay with double conjugates for the detection of exosomes. Sci. China Chem. 2018, 61, 1423-1429.

7. Wu, T.; Yang, Y.; Cao, Y.; Song, Y.; Xu, L.-P.*; Zhang, X.*; Wang, S. Bioinspired DNAinorganic hybrid nanoflowers combined with a personal glucose meter for onsite detection of miRNA. ACS Appl. Mater. Interfaces 2018, 10, 42050-42057.

8. Wu, T.; Cao, Y.; Yang, Y.; Zhang, X.; Wang, S.; Xu, L.-P.*; Zhang, X.* A three-dimensional DNA walking machine for the ultrasensitive dual-modal detection of miRNA using a fluorometer and personal glucose meter. Nanoscale. 2019, 11, 11279-11284.

9. Wu, T.; Xu, T.; Chen, Y.; Yang, Y.; Xu, L.-P.*; Zhang, X.*; Wang, S. Renewable superwettable biochip for miRNA detection. Sens. Actuator B Chem. 2018, 258, 715-721.

10. Wu, T.; Cao, Y.*; Chen, H.; Liu, Z.* In situ formation of Ag2S nanoparticles on a paper supported wettable microchip for high-throughput photothermal sensing of microRNA. Analysis & Sensing, 2021, 1, 111-116.