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Journal of Hazardous Materials|August 25, 2019
Mobilization and transformation of arsenic from ternary complex OM-Fe(III)-As(V) in the presence of As(V)-reducing bacteriaXiaolin Cai, Pengfei Wang, Zejiao Li, et al.The Science of the Total Environment|June 21, 2016
Variability of arsenic bioaccessibility and metabolism in soils by human gut microbiota using different in vitro methods combined with SHIMENaiyi Yin, Huili Du, Zhennan Zhang, et al.Chemosphere|June 16, 2017
Interindividual variability of soil arsenic metabolism by human gut microbiota using SHIME modelNaiyi Yin, Huili Du, Pengfei Wang, et al.Food Chemistry|December 4, 2018
Variability of chromium bioaccessibility and speciation in vegetables: The influence of in vitro methods, gut microbiota and vegetable speciesPengfei Wang, Naiyi Yin, Xiaolin Cai, et al.Journal of Chromatography. A|June 12, 2026
A deep eutectic solvent-assisted green synthesis of advanced three-dimensional covalent organic framework based stationary phase for dual-mode liquid chromatographyNi Fang, Haoyu Long, Huili Du, et al.Environmental Science & Technology|March 17, 2020
In Vitro Assessment of Arsenic Release and Transformation from As(V)-Sorbed Goethite and Jarosite: The Influence of Human Gut MicrobiotaNaiyi Yin, Xiaolin Cai, Lirong Zheng, et al.Chemosphere|June 27, 2020
Comparison of bioaccessibility and relative bioavailability of arsenic in rice bran: The in vitro with PBET/SHIME and in vivo with mice modelPengfei Wang, Naiyi Yin, Xiaolin Cai, et al.Scientific Reports|December 16, 2017
Investigation of bioaccessibility of Cu, Fe, Mn, and Zn in market vegetables in the colon using PBET combined with SHIMENaiyi Yin, Xiaolin Cai, Xiaochen Chen, et al.Journal of Hazardous Materials|July 14, 2020
The role of soil arsenic fractionation in the bioaccessibility, transformation, and fate of arsenic in the presence of human gut microbiotaNaiyi Yin, Yunpeng Li, Xiaolin Cai, et al.The Science of the Total Environment|November 22, 2021
Predictive capabilities of in vitro colon bioaccessibility for estimating in vivo relative bioavailability of arsenic from contaminated soils: Arsenic speciation and gut microbiota considerationsNaiyi Yin, Xiaolin Cai, Pengfei Wang, et al.Pageof 4