Longitudinal transformation of mitochondrial metabolism during neurogenesis
Abstract
Neural stem cells (NSCs) are valuable in the quest to conquer neurodegenerative diseases due to their capability to reconstruct the damaged neuronal networks. However, deep understanding of the intercellular signaling mechanism controlling the lineage and fate of the stem cells is required before potential clinical applications. Here, we applied nondestructive and label-free electrochemical methods for the longitudinal tracking of NSC respiratory metabolism. Sharp change in the oxygen utilization pattern was observed concomitant to stemness loss and onset of differentiation, suggesting metabolic reprogramming in the transition. Intra- and extracellular profiling of mitochondrial metabolites revealed molecular preference in the extracellular transport rates. Electrochemical emulation of the metabolite release pattern induced acceleration of neurite growth in nearby cells, suggesting paracrine signaling system mediated by mitochondrial metabolites.
Article Details
Journal Info
Proceedings of the National Academy of Sciences
National Academy of Sciences
Authors (13)
Donghoon Lim
Department of Chemistry, Yonsei University
Sewon Park
Department of Biotechnology, Yonsei University
Jong Seung Lee
Department of Biotechnology, Yonsei University
Hyo Jin Gwon
Department of Chemistry, Yonsei University
Yunwoo Nam
Department of Chemistry, Yonsei University
Suhyuk Choi
Department of Chemistry, Yonsei University
Jongwon Kim
Department of Chemistry, Yonsei University
Yeonsu Kim
Department of Chemistry, Yonsei University, 50 Yonsei-ro, Seodaemun-gu, Seoul 03722, Republic of Korea
Geonwoo Park
Department of Chemistry, Yonsei University
Woo Yang Pyun
Department of Biochemistry, Yonsei University
Hyun Woo Park
Department of Biochemistry, Yonsei University
Seung-Woo Cho
Department of Biotechnology, Yonsei University
Hyun S. Ahn
Department of Chemistry