ArticleIEEE transactions on molecular, biological, and multi-scale communications2026
Investigating Cellular Magnetic Bioeffects Using Two-Channel, Two-Photon Autofluorescence Lifetime Microscopy.
Article in IEEE transactions on molecular, biological, and multi-scale communications, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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10 authors.
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Abstract
Magnetic fields may modulate the cellular reduction-oxidation (redox) state and subsequent redox signaling pathways through quantum spin chemistry in biochemical radical pair reactions. This study applied two-channel, two-photon autofluorescence lifetime microscopy for non-invasive label-free measurements of the metabolic cofactors FAD and NAD(P)H and the redox state in live human non-small lung adenocarcinoma A549 cells. This custom microscope and technique were used to investigate the cellular effects induced by 30-minute exposure to redox modulating chemicals as well as 72-hour exposure to a range of static magnetic fields between 50 μT and 10 mT. The label-free methods showed little sensitivity to the acute chemical exposure in A549 cells, while longer-term magnetic field exposure showed a potential yet non-significant increase in an oxidative stress-linked long lifetime species. A standard H
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