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Single-domain magnetic particles with motion behavior under electromagnetic AC and DC fields are a fatal cargo in Metropolitan Mexico City pediatric and young adult early Alzheimer, Parkinson, frontotemporal lobar degeneration and amyotrophic lateral sclerosis and in ALS patients
by
Cejudo-Ruiz, Fredy Rubén
, Calderón-Garcidueñas, Lilian
, Reynoso-Robles, Rafael
, González-Maciel, Angélica
, Pérez-Guille, Beatriz E.
, Tehuacanero-Cuapa, Samuel
, Mukherjee, Partha S.
, Goguitchaichvili, Avto
, Stommel, Elijah W.
, Koseoglu, Emel
, Rodríguez-Gómez, Arturo
, Bautista, Francisco
, Soriano-Rosales, Rosa Eugenia
, Torres-Jardón, Ricardo
in
Alzheimer
/ brain magnetic nanoparticles
/ Motion nanoparticle behavior
/ pediatric Alzheimer
/ saturation isothermal remanent magnetization SIRM
/ single domain FeNPs
2024
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Single-domain magnetic particles with motion behavior under electromagnetic AC and DC fields are a fatal cargo in Metropolitan Mexico City pediatric and young adult early Alzheimer, Parkinson, frontotemporal lobar degeneration and amyotrophic lateral sclerosis and in ALS patients
by
Cejudo-Ruiz, Fredy Rubén
, Calderón-Garcidueñas, Lilian
, Reynoso-Robles, Rafael
, González-Maciel, Angélica
, Pérez-Guille, Beatriz E.
, Tehuacanero-Cuapa, Samuel
, Mukherjee, Partha S.
, Goguitchaichvili, Avto
, Stommel, Elijah W.
, Koseoglu, Emel
, Rodríguez-Gómez, Arturo
, Bautista, Francisco
, Soriano-Rosales, Rosa Eugenia
, Torres-Jardón, Ricardo
in
Alzheimer
/ brain magnetic nanoparticles
/ Motion nanoparticle behavior
/ pediatric Alzheimer
/ saturation isothermal remanent magnetization SIRM
/ single domain FeNPs
2024
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Single-domain magnetic particles with motion behavior under electromagnetic AC and DC fields are a fatal cargo in Metropolitan Mexico City pediatric and young adult early Alzheimer, Parkinson, frontotemporal lobar degeneration and amyotrophic lateral sclerosis and in ALS patients
by
Cejudo-Ruiz, Fredy Rubén
, Calderón-Garcidueñas, Lilian
, Reynoso-Robles, Rafael
, González-Maciel, Angélica
, Pérez-Guille, Beatriz E.
, Tehuacanero-Cuapa, Samuel
, Mukherjee, Partha S.
, Goguitchaichvili, Avto
, Stommel, Elijah W.
, Koseoglu, Emel
, Rodríguez-Gómez, Arturo
, Bautista, Francisco
, Soriano-Rosales, Rosa Eugenia
, Torres-Jardón, Ricardo
in
Alzheimer
/ brain magnetic nanoparticles
/ Motion nanoparticle behavior
/ pediatric Alzheimer
/ saturation isothermal remanent magnetization SIRM
/ single domain FeNPs
2024
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Single-domain magnetic particles with motion behavior under electromagnetic AC and DC fields are a fatal cargo in Metropolitan Mexico City pediatric and young adult early Alzheimer, Parkinson, frontotemporal lobar degeneration and amyotrophic lateral sclerosis and in ALS patients
Journal Article
Single-domain magnetic particles with motion behavior under electromagnetic AC and DC fields are a fatal cargo in Metropolitan Mexico City pediatric and young adult early Alzheimer, Parkinson, frontotemporal lobar degeneration and amyotrophic lateral sclerosis and in ALS patients
2024
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Overview
Metropolitan Mexico City (MMC) children and young adults exhibit overlapping Alzheimer and Parkinsons’ diseases (AD, PD) and TAR DNA-binding protein 43 pathology with magnetic ultrafine particulate matter (UFPM) and industrial nanoparticles (NPs). We studied magnetophoresis, electron microscopy and energy-dispersive X-ray spectrometry in 203 brain samples from 14 children, 27 adults, and 27 ALS cases/controls. Saturation isothermal remanent magnetization (SIRM), capturing magnetically unstable FeNPs ̴ 20nm, was higher in caudate, thalamus, hippocampus, putamen, and motor regions with subcortical vs. cortical higher SIRM in MMC ≤ 40y. Motion behavior was associated with magnetic exposures 25–100 mT and children exhibited IRM saturated curves at 50–300 mT associated to change in NPs position and/or orientation in situ . Targeted magnetic profiles moving under AC/AD magnetic fields could distinguish ALS vs. controls. Motor neuron magnetic NPs accumulation potentially interferes with action potentials, ion channels, nuclear pores and enhances the membrane insertion process when coated with lipopolysaccharides. TEM and EDX showed 7–20 nm NP Fe, Ti, Co, Ni, V, Hg, W, Al, Zn, Ag, Si, S, Br, Ce, La, and Pr in abnormal neural and vascular organelles. Brain accumulation of magnetic unstable particles start in childhood and cytotoxic, hyperthermia, free radical formation, and NPs motion associated to 30–50 μT (DC magnetic fields) are critical given ubiquitous electric and magnetic fields exposures could induce motion behavior and neural damage. Magnetic UFPM/NPs are a fatal brain cargo in children’s brains, and a preventable AD, PD, FTLD, ALS environmental threat. Billions of people are at risk. We are clearly poisoning ourselves.
Publisher
Frontiers Media S.A
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