Degree Department

Nanocrown electrodes for parallel and robust intracellular recording of cardiomyocytes (open access)

Nanocrown electrodes for parallel and robust intracellular recording of cardiomyocytes

Article develops vertically-aligned nanocrown electrodes that are mechanically robust and achieve > 99% success rates in obtaining intracellular access through electroporation. This technology development provides an advancement towards establishing an iAP screening assay for preclinical evaluation of drug-induced arrhythmogenicity.
Date: April 26, 2022
Creator: Jahed, Zeinab; Yang, Yang; Tsai, Ching-Ting; Foster, Ethan P.; McGuire, Allister F.; Yang, Huaxiao et al.
System: The UNT Digital Library
Potential Toxicity and Underlying Mechanisms Associated with Pulmonary Exposure to Iron Oxide Nanoparticles: Conflicting Literature and Unclear Risk (open access)

Potential Toxicity and Underlying Mechanisms Associated with Pulmonary Exposure to Iron Oxide Nanoparticles: Conflicting Literature and Unclear Risk

This review article will focus on known risks following iron oxide nanoparticles (IONPs) exposure supported by human, animal, and cell culture-based studies, the potential challenges intrinsic to IONPs toxicity assessment, and how these may contribute to the poorly characterized IONPs toxicity profile.
Date: September 7, 2017
Creator: Kornberg, Tiffany G.; Stueckle, Todd A.; Antonini, James M.; Rojanasakul, Liying W.; Castranova, Vincent; Yang, Yong et al.
System: The UNT Digital Library
Pathological Targets for Treating Temporal Lobe Epilepsy: Discoveries From Microscale to Macroscale (open access)

Pathological Targets for Treating Temporal Lobe Epilepsy: Discoveries From Microscale to Macroscale

This review article summarizes the latest neuropathological discoveries at the molecular, cellular, and tissue levels involving both animal and patient studies, aiming to explore epileptogenesis and highlight new potential targets in the diagnosis and treatment of temporal lobe epilepsy (TLE).
Date: January 7, 2022
Creator: You, Jing; Huang, Haiyan; Chan, Clement T. Y. & Li, Lin
System: The UNT Digital Library