“…Further examination revealed that an OGD-induced increase in neuronal [Zn 2+ ] i preceded mitochondrial depolarization, Ca 2+ deregulation and membrane failure, with Zn 2+ likely entering mitochondria and contributing to loss of mitochondrial membrane potential (Medvedeva et al, 2009). This meshed with earlier demonstration that elevated intracellular Zn 2+ , like Ca 2+ , can enter and damage mitochondria, leading to their swelling, loss of membrane potential and, at high levels of Zn 2+ , increased ROS generation (Sensi et al, 2003;Clausen et al, 2013), the last likely a consequence of disturbances in mitochondrial electron transport as well as Zn 2+ induction of p47 PHOX and increased NOX activity (Noh and Koh, 2000;Slepchenko et al, 2017). Downstream ROS/RNS-induced release of Zn 2+ from intracellular stores (Berendji et al, 1997;Cuajungco and Lees, 1998;Aizenman et al, 2000) thus drives further oxidative stress.…”