Xin Tian

Author: Release Date:2025-11-07 View count:11

Name: Xin Tian

Academic Title: Associate Professor

Email: xtian@suda.edu.cn                                                                      

Address: ​​Medical Building​ 401-1329, North District of Dushu Lake Campus  


Ⅰ、​​Educational and Professional Experience

     1、Educational Background:

        2010.09-2013.07  University of Chinese Academy of Sciences, Ph.D. in nanotoxicology

        2007.9-2010.07  Shanxi University, Taiyuan, Shanxi, Biotechnology Research Institute, M.S.

        2003.9-2007.07  Shanxi University,Taiyuan, Shanxi, College of Life Sciences, B.S.


     2、​​Professional Experience​​:

        2017.7- Present  Soochow University, School of Radiation Medicine and Protection, Associate Professor  

        2013.08- 2017.6  Soochow University, School of Radiation Medicine and Protection, Lecturer


Ⅱ、​Research Focus​​​​

     1、Application of New Nanomaterials in Radiation Medicine


Ⅲ、Project/Honor/Award

   1、NSFC, In vitro prediction of gastrointestinal toxicity of nanomaterials based on electron spin resonance technology, 500,000, 2020.01-2023.12.


Ⅳ、Academic Part-time Roles & Student Guidance Outcomes

         None


Ⅴ、Recent Five-Year Representative Research Outcomes​

1、Xinyu Zhang, Ziheng An, Jie An, et al. Bioinspired chiral nanozymes: Synthesis strategies, classification, biological effects and biomedical applications. Coordination Chemistry Reviews, 2023, 502, 215601.

2、Zhenlin Fan, Shunjie Wu, Ziheng An, et al. Unraveling the stress-induced toxicity of black phosphorus nanosheets and the underlying mechanism. Colloid and Interface Science Communications, 2024, 100802.

3、Yue Lang, Xin Tian, Haiyue Dong, et al. Black Phosphorus Quantum Dots Enhance the Radiosensitivity of Human Renal Cell Carcinoma Cells through Inhibition of DNA-PKcs Kinase. Cells, 2022, 11, 1651.

4、Jin Wang, Xin Tian, Jie Zhang, et al. Postchronic Single-Walled Carbon Nanotube Exposure Causes Irreversible Malignant Transformation of Human Bronchial Epithelial Cells through DNA Methylation Changes. ACS Nano 2021, 15, 7094-7104.

5、Xinyu Zhang, Shitong Zhang, Zaixing Yang, et al. Self-cascade MoS2 nanozymes for efficient intracellular antioxidation and hepatic fibrosis therapy. Nanoscale, 2021, 13, 12613.



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