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同济大学环境科学与工程学院特聘研究员/助理教授,博士生导师,上海市海外领军人才(青年)项目入选者。复旦大学与美国田纳西大学联合培养博士,先后在同济大学及瑞典卡罗琳斯卡医学院从事博士后研究。主要从事纳米毒理与环境健康研究,已发表包括Nat. Nanotechnol., Nat. Commun., ACS Nano, Environ. Sci. Technol.等领域权威期刊学术论文30余篇;作为骨干参与欧盟石墨烯旗舰项目;主持上海市领军人才(海外)青年人才项目、国家自然科学基金(青年)、同济大学学科交叉联合攻关项目等;获得美国毒理学年会最佳论文、中国毒理学年会优秀论文等奖励。
Peng, G., Sinkko H.M., Alenius H., Lozano N., Kostarelos K., Bräutigam L., and Fadeel B. Graphene oxide elicits microbiome-dependent type 2 immune responses via the aryl hydrocarbon receptor. Nature Nanotechnology 2023,18, 42-48.
Peng, G., He, Y., Wang, X., Cheng, Y., Zhang, H., Savolainen, K., Madler, L., Pokhrel, S. and Lin, S. Redox Activity and Nano-Bio Interactions Determine the Skin Injury Potential of Co3O4-Based Nanoparticles towards Zebrafish. ACS Nano 2020,14, 4, 4166-4177.
Peng, G., Keshavan, S., Delogu, L., Shin, Y., Casiraghi, C., Fadeel, B. Two‐Dimensional Transition Metal Dichalcogenides Trigger Trained Immunity in Human Macrophages through Epigenetic and Metabolic Pathways. Small 2022, 18, 2107816.
Peng, G. and Fadeel B. Understanding the bidirectional interactions between two-dimensional materials, microorganisms, and the immune system. Adv Drug Deliv Rev 2022,188, 114422.
Peng, G., Duan, T., Guo, M., Xue, Y., Chen, C., Li, Y., Lifer, K. and Fadeel, B. Biodegradation of graphdiyne oxide in classically activated (M1) macrophages modulates cytokine production. Nanoscale 2021,13, 13072-13084.
Peng, G., Montenegro, M.F., Ntola, C.N.M., Vranic, S., Kostarelos, K., Vogt, C., Toprak, M.S., Duan, T., Leifer, K., Bräutigam, L., Lundberg, J.O. and Fadeel, B. Nitric Oxide-Dependent Biodegradation of Graphene Oxide Reduces Inflammation in the Gastrointestinal Tract. Nanoscale 2020,12,16730-16737.
Peng, G., He, Y., Zhao, M., Yu, T., Qin, Y. and Lin, S. Differential Effects of Metal Oxide Nanoparticles on Zebrafish Embryos and Developing Larvae. Environ. Sci. Nano 2018, 5, 1200-1207.
Peng, G.,Martin, R., Dearth, S., Sun, X., Boyer, G., Campagna, S., Lin, S. and Wilhelm, S. Seasonally-Relevant Cool Temperatures Interact with N Chemistry to Increase Microcystins Produced in Lab Cultures of Microcystis aeruginosa NIES-843. Environ. Sci. Technol. 2018, 52, 4127-4136.
Javed, I., Peng, G., Xing, Y., Yu, T., Zhao, M., Kakinen, A., Faridi, A., Parish, C.L., Ding, F., Davis, T.P., Ke, P. and Lin, S. Inhibition of Amyloid Beta Toxicity in Zebrafish with A Chaperone-Gold Nanoparticle Dual Strategy. Nat. Commun. 2019, 10, 3780.
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