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副教授

史铠

日期:2021-09-10 浏览量: 作者: 来源:

 

               姓名:史铠                

            性别:男                        

             职称:副教授           

              Email:   shikai9901@163.com       

2010.09-2014.06  乐山师范学院化学学院应用化学专业,本科生;

2014.09-2017.06  西南大学化学化工学院分析化学专业,硕士研究生;

(导师:向云)

2017.09-2021.06  湖南大学化学化工学院化学专业,博士研究生;       

(导师:聂舟、雷春阳、黄燕)

2021.07-2023.11    乐山师范学院新能源与化学学院,讲师;

2023.12-至今      乐山师范学院新能源与化学学院,副教授;

Frontiers in Physiology》和《Environmental Science: Water Research & Technology》期刊审稿人

分子识别与化学生物传感器开发

1.        基于CRISPR-Cas12a与核酸电路的便携式定量检测新方法在食品检测中的应用研究,国家自然科学基金委员会, 青年科学基金项目

2.        基于DNA分子机器与CRISPR-Cas12a耦合用于肺癌相关miRNAs的精准诊断,四川省科学技术厅,苗子工程

3.        基于CRISPR/Cas12a作为信号扩增技术对癌症标志物的精准诊断,乐山市重点科技项目

一、以第一作者或通讯作者身份发表论文

1.        Phosphorothioate-modified G-quadruplex as a signal-on dual-mode reporter for CRISPR/Cas12a-based portable detection of environmental pollutants,   Analytica Chimica Acta, 2024, 1308, 342649.

2.        Hg2+-triggered cascade strand displacement assisted CRISPR-Cas12a for Hg2+ quantitative detection using a portable glucose meter, Analytica Chimica Acta, 2023, 1278, 341756.

3.        PAM-free cascaded strand displacement coupled with CRISPR-Cas12a for ampliffed electrochemical detection of SARS-CoV-2 RNA, Analytical Biochemistry, 2023, 664, 115046.

4.        A CRISPR-Cas autocatalysis-driven feedback amplification network for supersensitive DNA diagnostics, Science Advances, 2021, eabc7802.

5.        Amplified and label-free electrochemical detection of a protease biomarker by integrating proteolysis-triggered transcription, Biosensors and Bioelectronics, 2021, 190, 113372.

6.        Coupling of proteolysis-triggered transcription and CRISPR-Cas12a for ultrasensitive protease detection, Science China Chemistry, 2021, 64: 330-336.

7.        Target-triggered catalytic hairpin assembly and TdT-catalyzed DNA polymerization for amplified electronic detection of thrombin in human serums, Biosensors and Bioelectronics, 2017, 87: 495-500.

8.        Cascaded strand displacement for non-enzymatic target recycling amplification and label-free electronic detection of microRNA from tumor cells. Analytica Chimica Acta, 2016, 916: 1-7.

9.        DNA-fueled molecular machine enables enzyme-free target recycling amplification for electronic detection of microRNA from cancer cells with highly minimized background noise. Analytical chemistry, 2015, 87(16):8578-8583.

10.    Toehold链置换辅助智能手机比色法特异性检测废水中新冠病毒靶标RNA, 分析试验室,20244336-41

11.    CRISPR/Cas技术在核酸检测中的应用进展,分析测试学报,201837 (10):4

二、授权专利

聂舟,史铠,雷春阳,基于CRISPR-Cas自催化放大网络的核酸检测方法及其应用