360. Chemical Analysis of Single Cells and Organelles, K. Hu, T.D.K. Nguyen, S. Rabasco, P.E. Oomen, A.G. Ewing, Analytical Chemistry, 93(2021), 41-71. DOI:10.1021/acs.analchem.0c04361.
361. Electrochemistry at and in Single Cells (Chapter 7), A.S. Lima, C. Gu, K. Hu, A.G. Ewing, In Electrochemistry for Bioanalysis, Patel, B., Ed., Elsevier, (2020) pp. 125-160.
362. Electrochemical Quantification of Neurotransmitters in Single Live Cell Vesicles Shows Exocytosis is Predominantly Partial, Y. Wang, A. Ewing, ChemBioChem, 22(2021), 807-813. DOI: 10.1002/cbic.202000622.
363. Striatal Dopamine Transporter Function is Facilitated by Converging Biology of α-Synuclein and Cholesterol, S. Threlfell, A. Saeid Mohammadi, B. Ryan, N. Connor-Robson, N.J. Platt, R. Anand, F. Serres, T. Sharp, N. Bengoa-Vergniory, R. Wade-Martins, A. Ewing, S.J. Cragg, K.R. Brimblecombe, Frontiers in Cellular Neuroscience, 15(2021). DOI.org/10.3389/fncel.2021.658244.
364. Nanoscale Amperometry Reveals that Only a Fraction of Vesicular Serotonin Content is Released During Exocytosis from Beta Cells, A. Hatamie, L. Ren, H. Dou, N.R. Gandasi, P. Rorsman, A. Ewing, Angew. Chem. Int. Ed., 60 (2021), 7593-7596. DOI: 10.1002/anie.202015902.
365. Vesicular Release Dynamics are Altered by Interaction between Chemical Cargo and Vesicle Membrane Lipids, F. Asadpour, X. Zhang, M. Mazloum-Ardakani, M. Mirzaei, S. Majdi, A.G. Ewing, Chemical Science, 12 (2021) 10273-10278. DOI:10.1039/D1SC02247D.
366. Electrochemical Measurements Reveal Reactive Oxygen Species in Stress Granules, K. Hu., E. Relton, N. Locker, N.T.N. Phan, and A.G. Ewing, Angewandte Chemie-International Edition, 133 (2021), 15430-15434, DOI:10.1002/anie.202104308.
367. Mass Spectrometry Imaging Shows Modafinil, A Student Study Drug, Changes the Lipid Composition of the Fly Brain, M.H. Philipsen, E. Ranjbari, C. Gu, and A.G. Ewing, Angewandte Chemie-International Edition, 60 (2021), 17378-17382, DOI: 10.1002/anie.202105004.
368. Nano‐analysis Reveals High Fraction of Serotonin Release during Exocytosis from a Gut Epithelium Model Cell, Y. Wang, C.Gu, B.A. Patel, and A.G. Ewing, Angewandte Chemie-International Edition, 60 (2021), 23552-23556, DOI: 10.1002/anie.202108193.
369. Dynamic Visualization and Quantification of Single Vesicle Opening and Content by Coupling Vesicle Impact Electrochemical Cytometry with Confocal Microscopy, Y.N. Zheng, T.D.K. Nguyen, J. Dunevall, N.T.N. Phan, and A.G. Ewing, ACS Measurement Science Au, 1 (2021), 131–138, DOI: 10.1021/acsmeasuresciau.1c00021.
370. Vesicle Impact Electrochemical Cytometry to Determine Carbon Nanotube-Induced Fusion of Intracellular Vesicles, A. Hatamie, L. Ren, X. Zhang, and A.G. Ewing, Analytical Chemistry, 93 (2021), 13161–13168, DOI: 10.1021/acs.analchem.1c01462.
371. Simultaneous detection of vesicular content and exocytotic release with two electrodes in and at a single cell, C.Gu and A.G.Ewing, Chemical Science,12(2021) 7393-7400.
372. Combined electrochemistry and mass spectrometry imaging to interrogate the mechanism of action of modafinil, a cognition-enhancing drug, at the cellular and sub-cellular level, E. Ranjbari, M.H. Philipsen, Z. Wang, and A.G. Ewing, QRB Discovery, 2 (2021) e6, 1–9. https://doi.org/10.1017/qrd.2021.4
373. Potentiometric pH Nanosensor for Intracellular Measurements: Real-Time and Continuous Assessment of Local Gradients, M. Aref, E. Ranjbari, J.J. García-Guzmán, K. Hu, A. Lork, G.A. Crespo, A.G. Ewing, and M. Cuartero, Anal. Chem. 93 (2021) 15744–15751. https://doi.org/10.1021/acs.analchem.1c03874.
374. A multimodal electrochemical approach to measure the effect of zinc on vesicular content and exocytosis in a single cell model of ischemia. Y. Wang, C. Gu and A.G. Ewing, QRB Discovery, 2 (2021) e12, 1–8. https://doi.org/10.1017/qrd.2021.10.
375. Electrochemical and Mass Spectrometric Measurement of Enhanced Intravesicular Catecholamine Content and Exocytotic Frequency at Subanaesthetic Ketamine Doses, Z. Wang, X. He, K.L.V. Long, and A.G. Ewing, Analysis & Sensing, 1 (2021) 166–170. doi.org/10.1002/anse.202100026.
376. Quantifying Intracellular Single Vesicular Catecholamine Concentration with Open Carbon Nanopipettes to Unveil the Effect of L-DOPA on Vesicular Structure, K. Hu, K.L.L. Vo, A. Hatamie, and A.G. Ewing, Angewandte Chemie-International Edition, 61 (2022), e202113406, DOI: 10.1002/anie.202113406.