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JANSSEN
Shows an organic-inorganic aggregate (see below) identified in a Janssen βvaccineβ. The particles are composed of stainless steel and are glued together with a βCarbon-based glueβ.
This aggregate is magnetic and can trigger biological problems inside the blood circulation due to possible interactions with other dipoles.
ASTRAZENECA
An engineered aggregate of Iron-Chromium-Nickel (stainless steel) nanoparticles embedded identified in an Astrazeneca βvaccineβ
ANALYSIS: XRF Instrumentation
ASTRAZENECA
Histidine
Sucrose,
PEG (poly-ethylene glycol)
Ethylene alcohol.
Only the presence of PEG is declared in the data sheet of this βvaccineβ.
ANALYSIS: OPTICAL MICROSCOPE
PFIZER
These images were obtained using 100X and 600X optical microscopy (normal microscopes)
On the left we see the images obtained from the Pfizer vaccine
On the right we see a visual match from known sources.
ANALYSIS: ELECTRON MICROSCOPE
PFIZER
TEM microscope observation where particles of graphene in a Pfizerβ vaccineβ are present. The X-ray diffractometry reveals their nature of crystalline Carbon-based nanoparticles.
ANALYSIS: SPECTROPHOTOMETER
PFIZER
The spectrum was compatible with the peak of rGO at 270nm.
Most of this absorbance might be due to graphene-like sheets, abundant in suspension in the sample.
This thesis was further supported by high fluorescence from the sample with maximum at 340 nm, in accordance with peak values for Graphene Oxide.
SUMMARY
The analyzed βvaccinesβ present components that are not mentioned in the technical data sheet and whose presence does not seem to have to do with the concept of vaccine.
Since they are not included in the documentation presented to the Governmental organizations (FDA, EMA, etc.) for the legal approval aimed at the commercialization and the human use, they seem to be a contamination probably due to the industrial process of manufacturing.
It seems that nobody controlled the final product before its distribution - that means that consumers are not informed of the real content of the products.
Possible side effects may be due to the injection of those contaminants into the body.
It must be observed that the components that are not declared but we identified are not biocompatible and some have also a mechanical impact once they are inside the blood circulation, especially in contact with the vascular endothelium.
The entities present in Pfizer and Astrazeneca βvaccinesβ, identified by the ESEM images, can represent a risk for the human body. They can be responsible of the formation of thrombi, since they are thrombogenic.
A further risk is represented by the extravasation of the particles with an ensuing possible haemorrhage. Once in the blood circulation, the particles can be carried also to the brain. In this case the patient can suffer from a stroke, and/or a cerebral haemorrhage.
If the damage of the endothelium caused by the particles occurs in the heart, there is a high probability of contracting a myocarditis. In addition to all that, the toxicity of graphene is well-known.
The presence of non-biocompatible organic-inorganic foreign bodies in the blood circulation can be responsible of a nano-bio-interaction that can induce severe health problems.
References
Bano, I. et al , 2019. Exploring the fluorescence properties of reduced graphene oxide with tunable device performance,Diamond and Related Materials,Volume 94,59-64,ISSN 0925- 9635
https://doi.org/10.1016/j.diamond.2019.02.021
Biroju, Ravi & Narayanan, Tharangattu & Vineesh, Thazhe Veettil. (2018). New advances in 2D electrochemistryβCatalysis and Sensing. 10.1201/9781315152042-7.
Choucair, M., Thordarson, P. & Stride, J. Gram-scale production of graphene based on solvothermal synthesis and sonication. Nature Nanotech 4, 30β33 (2009). https://doi.org/10.1038/nnano.2008.365
Kim et al, Seeing graphene-based sheets, Materials Today,Volume 13, Issue 3,2010,Pages 28- 38,ISSN 1369-7021
https://doi.org/10.1016/S1369-7021(10)70031-6
Xu et al, (2019) Identification of graphene oxide and its structural features in solvents by optical microscopy, RSC Adv., 9, 18559-18564
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