1 |
Copper Transporters? Glutathione Reactivity of Products of Cu-A beta Digestion by Neprilysin Stefaniak E, Plonka D, Szczerba P, Wezynfeld NE, Bal W Inorganic Chemistry, 59(7), 4186, 2020 |
2 |
Exploration of the Potential Role for A beta in Delivery of Extracellular Copper to Ctr1 Stefaniak E, Pushie MJ, Vaerewyck C, Corcelli D, Griggs C, Lewis W, Kelley E, Maloney N, Sendzik M, Bal W, Haas KL Inorganic Chemistry, 59(23), 16952, 2020 |
3 |
A beta(5-x) Peptides: N-Terminal Truncation Yields Tunable Cu(II) Complexes Wezynfeld NE, Tobolska A, Mital M, Wawrzyniak UE, Wiloch MZ, Plonka D, Bossak-Ahmad K, Wroblewski W, Bal W Inorganic Chemistry, 59(19), 14000, 2020 |
4 |
Stochastic or Not? Method To Predict and Quantify the Stochastic Effects on the Association Reaction Equilibria in Nanoscopic Systems Goch W, Bal W Journal of Physical Chemistry A, 124(7), 1421, 2020 |
5 |
Oligopeptides Generated by Neprilysin Degradation of beta-Amyloid Have the Highest Cu(II) Affinity in the Whole A beta Family Bossak-Ahmad K, Mital M, Plonka D, Drew SC, Bal W Inorganic Chemistry, 58(1), 932, 2019 |
6 |
Ternary Zn(II) Complexes of Fluorescent Zinc Probes Zinpyr-1 and Zinbo-5 with the Low Molecular Weight Component of Exchangeable Cellular Zinc Pool Marszalek I, Goch W, Bal W Inorganic Chemistry, 58(21), 14741, 2019 |
7 |
Cu-II Binding Properties of N-Truncated A beta Peptides: In Search of Biological Function Stefaniak E, Bal W Inorganic Chemistry, 58(20), 13561, 2019 |
8 |
Interplay between Copper, Neprilysin, and N-Truncation of beta-Amyloid Mital M, Bal W, Fraczyk T, Drew SC Inorganic Chemistry, 57(11), 6193, 2018 |
9 |
Ternary Zn(II) Complexes of FluoZin-3 and the Low Molecular Weight Component of the Exchangeable Cellular Zinc Pool Marszalek I, Goch W, Bal W Inorganic Chemistry, 57(16), 9826, 2018 |
10 |
Gly-His-Thr-Asp-Amide, an Insulin-Activating Peptide from the Human Pancreas Is a Strong Cu(II) but a Weak Zn(II) Chelator Kotuniak R, Fraczyk T, Skrobecki P, Plonka D, Bal W Inorganic Chemistry, 57(24), 15507, 2018 |