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Scientific Reports|August 27, 2017
Neglected role of hydrogen sulfide in sulfur mustard poisoning: Keap1 S-sulfhydration and subsequent Nrf2 pathway activationWenqi Meng, Zhipeng Pei, Yongwei Feng, et al.The Analyst|September 8, 2025
Dual-responsive fluorescent sensors for the detection and discrimination of sulphur and nitrogen mustardsZimeng Luo, Mo Li, Xin Ling, et al.Nature Communications|May 19, 2026
Three in one fluorescent sensing and imaging of chemical warfare agentsJunhong Liu, Yin Gong, Linwen Tan, et al.Zhongguo Xiu Fu Chong Jian Wai Ke Za Zhi = Zhongguo Xiufu Chongjian Waike Zazhi = Chinese Journal of Reparative and Reconstructive Surgery|April 10, 2008
[Fabrication of a novel cartilage acellular matrix scaffold for cartilage tissue engineering]Qiang Yang, Jiang Peng, Shibi Lu, et al.Microorganisms|December 31, 2025
Microbial Ecology of Sulfur Mustard Toxicity: From Dysbiosis to RestorationXinkang Zhang, Guanchao Mao, Zhipeng Pei, et al.Molecules (Basel, Switzerland)|October 14, 2023
In Vitro Affinity Maturation of Nanobodies against Mpox Virus A29 Protein Based on Computer-Aided DesignHaiyang Yu, Guanchao Mao, Zhipeng Pei, et al.Chemical Society Reviews|September 23, 2022
Fluorescent probes for the detection of chemical warfare agentsWen-Qi Meng, Adam C Sedgwick, Nahyun Kwon, et al.International Immunopharmacology|February 16, 2025
Extracellular vesicles derived from mesenchymal stem cells ameliorate sulfur mustard-induced lung injury by regulating apoptosis via miR-146a-5pZhipeng Pei, Yunrui Sun, Shanshan Zhang, et al.Stem Cell Research & Therapy|March 15, 2019
The therapeutic effects of bone marrow-derived mesenchymal stromal cells in the acute lung injury induced by sulfur mustardYongwei Feng, Qingqiang Xu, Yuyan Yang, et al.Acta Biomaterialia|April 26, 2025
Shape-adaptive, deformable and adhesive hydrogels enable stable closure of long incision woundsXiaojun Zeng, Wenguang Dou, Shuzhuang Zhu, et al.Pageof 5