Sitater (vår oversettelse)
"Biokjemien ved eksponering for hypomagnetiske felt (HMF; <5 μT) har vært studert i friske modellorganismer, slik at det terapeutiske potensialet har stått uutforsket."
[original: "The biochemistry of hypomagnetic field (HMFs; <5 μT) exposure has focused on healthy model organisms, leaving their therapeutic potential unexplored."]
"Eksponering for hypomagnetisk felt økte levetiden hos Pink1⁻ D. melanogaster med 20 %, med en paradoksal reduksjon i klatreevne. Villtype D. melanogaster fikk redusert levetid og forbedret bevegelsesevne under hypomagnetisk felt."
[original: "HMF exposure increased lifespan in Pink1⁻ D. melanogaster by 20%, with a paradoxical reduction in climbing ability. WT D. melanogaster had decreased lifespan and improved locomotor performance under HMF."]
"Høyoppløselig respirometri viste økt aktivitet i mitokondrienes kompleks II under hypomagnetiske forhold."
[original: "High-resolution respirometry showed increased mitochondrial complex II activity under HMF conditions."]
"Vi viser at hypomagnetiske felt endrer mitokondriell fysiologi og produksjon av reaktive oksygenforbindelser i D. melanogaster."
[original: "We demonstrate that hypomagnetic fields modulate mitochondrial physiology and reactive oxygen species production in D. melanogaster."]
Sted
📍 Nottingham, United Kingdom
Hypomagnetic fields modulate lifespan, physical ability and mitochondrial metabolism in a Pink1 model of neurodegeneration.
Reed J, Fromhold M, Moisoi N, Mather M, Chakrabarti L (2026) Aging Journal Level 0ⓘ