Exploring mitochondrial targeting: an innovative fluorescent probe reveals Nernstian potential and partitioning combination.
Ordóñez-Hernández, J., Ceballos-Ávila, D., Real, F. H., Tovar-Y-Romo, L. B., & Jiménez-Sánchez, A. (2024). Exploring mitochondrial targeting: an innovative fluorescent probe reveals Nernstian potential and partitioning combination. Chemical Communications. https://doi.org/10.1039/d4cc01144a
This study introduces a paradigm-shifting approach to optimize mitochondrial targeting. Employing a new fluorescent probe strategy, we unravel a combined influence of both Nernst potential (Ψ) and partitioning (P) contributions. Through the synthesis of new benz[e]indolinium-derived probes, our findings redefine the landscape of mitochondrial localization by optimizing the efficacy of mitochondrial probe retention in primary cortical neurons undergoing normoxia and oxygen-glucose deprivation. This methodology not only advances our understanding of subcellular dynamics, but also holds promise for transformative applications in biomedical research and therapeutic development.