Magnetofection and SPIONs

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Are you an injected person?
Are you able to stick metallic objects to your body, even if they contain very little iron? Have you tried your forehead?

I have only heard of this happening with Pfizer and Moderna.
Please share any experience you have with this.

You could say an injected person is easy to control. At least, someone convinced them to receive this injection.
These most recent injections may take that to the next level.

'Superparamagnetic iron oxide nanoparticles (SPION) are being widely used for various biomedical applications, for example, magnetic resonance imaging, TARGETED DELIVERY of drugs or genes, and in hyperthermia.'
https://www.tandfonline.com/doi/full/10.3402/nano.v1i0.5358

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'The efficiency of delivery of DNA vaccines is often relatively low compared to protein vaccines. The use of superparamagnetic iron oxide nanoparticles (SPIONs) to deliver genes via magnetofection shows promise in improving the efficiency of gene delivery both in vitro and in vivo. In particular, the duration for gene transfection especially for in vitro application can be significantly reduced by magnetofection compared to the time required to achieve high gene transfection with standard protocols. SPIONs that have been rendered stable in physiological conditions can be used as both therapeutic and diagnostic agents due to their unique magnetic characteristics. Valuable features of iron oxide nanoparticles in bioapplications include a tight control over their size distribution, magnetic properties of these particles, and the ability to carry particular biomolecules to SPECIFIC TARGETS. The internalization and half-life of the particles within the body depend upon the method of synthesis. Numerous synthesis methods have been used to produce magnetic nanoparticles for bioapplications with different sizes and surface charges. The most common method for synthesizing nanometer-sized magnetite Fe3O4 particles in solution is by chemical coprecipitation of iron salts. The coprecipitation method is an effective technique for preparing a stable aqueous dispersions of iron oxide nanoparticles. We describe the production of Fe3O4-based SPIONs with high magnetization values (70 emu/g) under 15 kOe of the applied magnetic field at room temperature, with 0.01 emu/g remanence via a coprecipitation method in the presence of trisodium citrate as a stabilizer. Naked SPIONs often lack sufficient stability, hydrophilicity, and the capacity to be functionalized. In order to overcome these limitations, polycationic polymer was anchored on the surface of freshly prepared SPIONs by a direct electrostatic attraction between the negatively charged SPIONs (due to the presence of carboxylic groups) and the positively charged polymer. Polyethylenimine was chosen to modify the surface of SPIONs to assist the delivery of plasmid DNA into mammalian cells due to the polymer’s extensive buffering capacity through the “proton sponge” effect.'
https://experiments.springernature.com/articles/10.1007/978-1-4939-0410-5_12

'Due to the physiological barrier of the skeletal-muscle tissue, and dense, thick layers of connective tissues, i.m. injection of magnetic nanoparticles often accumulates in the perimysium space at the injection site, limiting the dispersion of DNA vaccine within muscle [44]. However, upon applying an external magnet at the injection site, magnetic particles/DNA complexes are seen to be more dispersed after i.m. injection with exposure to a magnetic field, comparing it to the nonmagnetic-field exposure [45]. The magnetic field might induce extravasation into surrounding tissue, pulling the particles across the muscle tissues, and resulting in more efficient distribution of DNA within the tissue and rapid sedimentation of the full vector dose on the target cells'
https://www.researchgate.net/publication/5988085_Using_Magnetic_Force_to_Enhance_Immune_Response_to_DNA_Vaccine

'In new work, scientists in Australia have now successfully demonstrated the use of magnetofection for the delivery of malaria DNA vaccine.'
'The procedure resulted in stable particles with a narrow size range in aqueous media, rendering them suitable for gene delivery systems.'
https://www.nanowerk.com/spotlight/spotid=21315.php

'In one final experiment, the researchers injected Magneto into the striatum of freely behaving mice, a deep brain structure containing dopamine-producing neurons that are involved in reward and motivation, and then placed the animals into an apparatus split into magnetised a non-magnetised sections. Mice expressing Magneto spent far more time in the magnetised areas than mice that did not, because activation of the protein caused the striatal neurons expressing it to release dopamine, so that the mice found being in those areas rewarding. This shows that Magneto CAN REMOTELY CONTROL THE FIRING OF NEURONS DEEP WITHIN THE BRAIN, and also CONTROL COMPLEX BEHAVIOURS.'
https://www.theguardian.com/science/neurophilosophy/2016/mar/24/magneto-remotely-controls-brain-and-behaviour

'First, they injected a virus carrying the TRPV1 gene into the ventral tegmentum of mice, so that neurons would take up the virus and express the gene, making them sensitive to heat. A month later, they injected the nanoparticles into in the same part of the brain, and then applied magnetic fields to it. This made the nanoparticles give off heat enough to activate the TRPV1 channels, causing the neurons to fire long trains of nervous impulses.

Neurons engulf iron oxide nanoparticles, and the researchers found that the particles they injected persisted in the animals’ brains, so that they could continue to activate cells in the ventral tegmentum for up to a month later, while causing less tissue damage than implantable stainless steel electrodes.'
https://www.theguardian.com/science/neurophilosophy/2015/mar/24/remote-control-brain-activity-nanoparticles
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Check the dates, this is not new.

If it is free, you are the product.

How will this affect you? How long does it last? Why do they want you to receive more injections?
If the effects are short-lived, how long do we have before the military is taken out?

When I see a post about someone planning to receive an injection, I advise against it. I do not see others doing this. Reach out, maybe they will listen.

https://m.youtube.com/watch?v=IoxFckpUq44
My understanding is that nano silver could potentially protect you from this.

-RESIST



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