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Frontiers in Pharmacology|January 23, 2026
DDI-AttendNet: cross attention with structured graph learning for inter-drug connectivity analysisJing Wang, Huili Du, Yuanlei LiFrontiers in Pharmacology|June 29, 2026
Analysis of the interaction network relationship between drugs using a graph neural networkZhongyi Chai, Jing Wang, Huili DuChemosphere|March 3, 2016
The fate of arsenic adsorbed on iron oxides in the presence of arsenite-oxidizing bacteriaZhennan Zhang, Naiyi Yin, Huili Du, et al.Chemosphere|July 19, 2016
Comparison of arsenate reduction and release by three As(V)-reducing bacteria isolated from arsenic-contaminated soil of Inner Mongolia, ChinaXiaolin Cai, Zhennan Zhang, Naiyi Yin, et al.Journal of Hazardous Materials|June 9, 2020
Arsenate-reducing bacteria-mediated arsenic speciation changes and redistribution during mineral transformations in arsenate-associated goethiteXiaolin Cai, Naiyi Yin, Pengfei Wang, et al.Environmental Science & Technology|August 7, 2015
In Vitro Method To Assess Soil Arsenic Metabolism by Human Gut Microbiota: Arsenic Speciation and DistributionNaiyi Yin, Zhennan Zhang, Xiaolin Cai, et al.Journal of Nanoscience and Nanotechnology|November 20, 2020
Stabilization of Soil Arsenic with Iron and Nano-Iron Materials: A ReviewChangsheng Yue, Huili Du, Yan Li, et al.Environment International|May 31, 2022
Role of human gut bacteria in arsenic biosorption and biotransformationPengfei Wang, Huili Du, Yaqi Fu, et al.The Science of the Total Environment|July 11, 2018
Nutritional status affects the bioaccessibility and speciation of arsenic from soils in a simulator of the human intestinal microbial ecosystemPengfei Wang, Naiyi Yin, Xiaolin Cai, et al.Journal of Agricultural and Food Chemistry|April 18, 2019
Arsenic in Rice Bran Products: In Vitro Oral Bioaccessibility, Arsenic Transformation by Human Gut Microbiota, and Human Health Risk AssessmentNaiyi Yin, Pengfei Wang, Yan Li, et al.Pageof 4