1. Wang T#, Chen X#, Yao Y, Chen W, Li H, Xu Y, Guan T, Gong J, Qiu X, Zhu T*. Pro-Thrombotic Changes in Response to Ambient Ozone Exposure Exacerbated by Temperatures. Environ Sci Technol. 2025;59:8391–8401. (IF=11.4)
2. Mi J#, Niu H#, Li W, Li J, Han X, Wu S, Wang T*, Huang K*, Guan T*, Yang T, Wang C. Ambient ozone exposure and acute blood oxygen desaturation: Role of airflow limitation. Journal of Hazardous Materials. 2025;497:139515. (IF=11.3)
3. Li J#, Niu H#, Li W, Mi J, Wu S, Wang T*, Huang K*, Guan T*, Yang T, Wang C. Linking short-term ozone exposure to mental health in Chinese adults: Lung function as a mediator beyond respiratory impairment. Journal of Hazardous Materials. 2025;497:139629. (IF=11.3)
4. Wang T#, Han Y#, Chen X, Chen W, Li H, Wang Y, Qiu X, Gong J, Li W, Zhu T*. Particulate air pollution and blood pressure: signaling by the arachidonate metabolism. Hypertension. 2023; 80(12):2687-96. (IF=8.3)
5. Wang T#, Chen X#, Li H, Chen W, Xu Y, Yao Y, Zhang H, Han Y, Zhang L, Que C, Gong J, Qiu X, Zhu T*. Prothrombotic changes associated with exposure to ambient ultrafine particles in patients with chronic obstructive pulmonary disease: roles of lipid peroxidation and systemic inflammation. Part Fibre Toxicol. 2022;19:65. (IF=10.0)
6. Wang T#, Han Y#, Li H, Fang Y, Liang P, Wang Y, Chen X, Qiu X, Gong J, Li W, Zhu T*. Fine particulate matter and vasoactive 20-hydroxyeicosatetraenoic acid: Insights into the mechanisms of the prohypertensive effects of particulate air pollution. Science of The Total Environment. 2022;806:151298. (IF=10.7)
7. Wang T#, Han Y#, Li H, Wang Y, Chen X, Chen W, Qiu X, Gong J, Li W, Zhu T*. Proinflammatory lipid signals trigger the health effects of air pollution in individuals with prediabetes. Environmental Pollution. 2021;290:118008. (IF=9.9)
8. Wang T#, Han Y#, Li H, Wang Y, Xue T, Chen X, Chen W, Fan Y, Qiu X, Gong J, Xu Y, Wang J, Li W, Zhu T*. Changes in bioactive lipid mediators in response to short-term exposure to ambient air particulate matter: A targeted lipidomic analysis of oxylipin signaling pathways. Environment International. 2021;147:106314. (IF=13.3)
9. Wang T, Li H, Han Y, Wang Y, Gong J, Gao K, Li W, Zhang H, Wang J, Qiu X, Zhu T*. A rapid and high-throughput approach to quantify non-esterified oxylipins for epidemiological studies using online SPE-LCMS/MS. Anal Bioanal Chem. 2020;412:7989–8001. (IF=4.4)
10. Chen X#, Wang T#, Qiu X, Que C, Zhang H, Zhang L, Zhu T. Susceptibility of individuals with chronic obstructive pulmonary disease to air pollution exposure in Beijing, China: A case-control panel study (COPDB). Science of The Total Environment. 2020;717:137285. (IF=9.8)