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Phytotherapy Research : PTR|December 12, 2019
Plant-derived glucose transport inhibitors with potential antitumor activityPratik Shriwas, Xiaozhuo Chen, A Douglas Kinghorn, et al.Frontiers in Oncology|July 18, 2022
From Transcriptomics, Metabolomics to Functional Studies: Extracellular ATP Induces TGF-β-Like Epithelial Mesenchymal Transition in Lung Cancer CellsMaria Evers, Jingwen Song, Pratik Shriwas, et al.Oncotarget|November 21, 2017
Extracellular ATP, as an energy and phosphorylating molecule, induces different types of drug resistances in cancer cells through ATP internalization and intracellular ATP level increaseXuan Wang, Yunsheng Li, Yanrong Qian, et al.Journal of Visualized Experiments : Jove|July 19, 2021
Fluorescence Microscopy for ATP Internalization Mediated by Macropinocytosis in Human Tumor Cells and Tumor-xenografted MiceCorinne M Nielsen, Yanrong Qian, Subhodip Adhicary, et al.Chemical Research in Toxicology|August 31, 2023
Human CYP2C19 Substrate and Inhibitor Characterization of Organophosphate PesticidesPatricia A Vignaux, Pratik Shriwas, Andre Revnew, et al.Journal of Xenobiotics|January 21, 2026
Human CYP2C9 Metabolism of Organophosphorus Pesticides and Nerve Agent SurrogatesPratik Shriwas, Abigail M Noonchester, Andre Revnew, et al.Bioorganic & Medicinal Chemistry Letters|August 1, 2020
Isosteres of ester derived glucose uptake inhibitorsDennis A Roberts, Liyi Wang, Weihe Zhang, et al.Cancer & Metabolism|March 27, 2021
A small-molecule pan-class I glucose transporter inhibitor reduces cancer cell proliferation in vitro and tumor growth in vivo by targeting glucose-based metabolismPratik Shriwas, Dennis Roberts, Yunsheng Li, et al.Molecules (Basel, Switzerland)|May 14, 2025
Development and Characterization of pFluor50, a Fluorogenic-Based Kinetic Assay System for High-Throughput Inhibition Screening and Characterization of Time-Dependent Inhibition and Inhibition Type for Six Human CYPsPratik Shriwas, Andre Revnew, Sarah Roo, et al.Frontiers in Oncology|February 21, 2024
Diverse temporal and spatial mechanisms work, partially through Stanniocalcin-1, V-ATPase and senescence, to activate the extracellular ATP-mediated drug resistance in human cancer cellsHaiyun Zhang, Jingwen Song, Ryan Ward, et al.Pageof 2