The Mac
@TheMac
16 March, 08:08
No more bullshitting.
The vaccine is harmful as it will induce oxidative stress caused by the fools using superparamagnetic photosynthesis ROS producing magnetic dipole field antenna nanoparticles that transport optogenetic micro RNA; that will mutate and bond, with the DNA, getting passed the BBB, into the cells of the neurons, expressing opsin/Channelrhodopsin 2-proteins, opening up the brain's ion channel to be activated by an external electromagnetic field, radiating a single source photonic piezoelectric nanocrytal light switch, signalling an action potential to control your thoughts.
The vaccine is harmful as it will induce oxidative stress caused by the fools using superparamagnetic photosynthesis ROS producing magnetic dipole field antenna nanoparticles that transport optogenetic micro RNA; that will mutate and bond, with the DNA, getting passed the BBB, into the cells of the neurons, expressing opsin/Channelrhodopsin 2-proteins, opening up the brain's ion channel to be activated by an external electromagnetic field, radiating a single source photonic piezoelectric nanocrytal light switch, signalling an action potential to control your thoughts.
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Carole Davis-Z
@Tallyho
18 March, 01:50
In response The Mac to his Publication
Those vaccinated, will stand around, slack jawed. filming their neighbors being rounded up for youtube and tick tock - because the chip in their heads will tell them to.
The vaccinated will never be free to chose anything again.
The vaccinated will never be free to chose anything again.
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The Mac
@TheMac
18 March, 01:59
In response Carole Davis-Z to her Publication
action potential
PHYSIOLOGY
the change in electrical potential associated with the passage of an impulse along the membrane of a muscle cell or nerve cell.
PHYSIOLOGY
the change in electrical potential associated with the passage of an impulse along the membrane of a muscle cell or nerve cell.
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The Mac
@TheMac
18 March, 02:11
In response The Mac to his Publication
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The Mac
@TheMac
18 March, 02:13
In response The Mac to his Publication
Our research explores optical control of cellular and neural activity using optically excited quantum dots (QDs).3 This approach combines the advantage of semiconductors, namely, high sensitivity, fast response, and high design flexibility, with the advantage of photosensitive proteins, namely, small size and cell-specific targeting. Due to their 3D confined structure, QDs offer unique optoelectronic properties that outperform conventional semiconductor materials. These include spectrally sharper emission peaks under excitation, and higher quantum efficiency.
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The Mac
@TheMac
18 March, 02:23
In response The Mac to his Publication
20 Apr 2020 — Pairs of quantum dots can serve as a single basic element in a quantum logic device, called a quantum bit or qubit.
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The Mac
@TheMac
18 March, 02:27
In response The Mac to his Publication
Here, we report quantum dot-incorporating solid lipid nanoparticles (SLNs) for anticancer theranostics with synergistic therapeutic effects of paclitaxel-siRNA combination. The natural components of a low-density lipoprotein (LDL) are reconstituted to produce LDL-mimetic SLNs having a stable core/shell nanostructure incorporating quantum dots and paclitaxel within the lipid shell while anionic siRNA molecules are electrostatically complexed with the outer surface of SLNs.
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The Mac
@TheMac
18 March, 02:29
In response The Mac to his Publication
"quantum dot-incorporating solid lipid nanoparticles (SLNs)"
"LNPs became more widely known in late 2020, as some COVID-19 vaccines that use RNA vaccine technology coat the fragile mRNA strands with PEGylated lipid nanoparticles as their delivery vehicle (including both the Moderna and the Pfizer–BioNTech COVID-19 vaccines)."
"LNPs became more widely known in late 2020, as some COVID-19 vaccines that use RNA vaccine technology coat the fragile mRNA strands with PEGylated lipid nanoparticles as their delivery vehicle (including both the Moderna and the Pfizer–BioNTech COVID-19 vaccines)."
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The Mac
@TheMac
18 March, 02:32
In response The Mac to his Publication
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The Mac
@TheMac
18 March, 02:36
In response The Mac to his Publication
DNA-functionalization of quantum dots is the attachment of strands of DNA to the surface of a quantum dot. Although quantum dots with Cd have some cytotoxic release, researchers have functionalized quantum dots for biocompatibility and bound them to DNA in order to combine the advantages of both materials.
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The Mac
@TheMac
18 March, 02:39
In response The Mac to his Publication
Using quantum dots (QDs), we succeeded in observing the movement of individual mRNAs for more than 60 s, with a temporal resolution of 30 ms. Intronless and truncated ftz mRNA, synthesized in vitro and labeled with QDs, was microinjected into the nuclei of Cos7 cells.
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The Mac
@TheMac
18 March, 02:42
In response The Mac to his Publication
Labelling of cells with quantum dots - PubMed
Colloidal quantum dots are semiconductor nanocrystals well dispersed in a solvent. The optical properties of quantum dots, in particular the wavelength of their fluorescence, depend strongly on their size. Because of their reduced tendency to photobleach, colloidal quantum dots are interesting fluor..
https://pubmed.ncbi.nlm.nih.gov/21727419/Notice: Undefined index: tg1tga_access in /home/admin/www/anonup.com/themes/default/apps/timeline/post.phtml on line 396
Inorganic nanoparticles are ideal precursors for engineering barcodes for rapidly detecting diseases. Despite advances in the chemical design of these barcodes, they have not advanced to clinical use because they lack sensitivity and are not cost-effective due to requirement of a large read-out system. Here we combined recent advances in quantum dot barcode technology with smartphones and isothermal amplification to engineer a simple and low-cost chip-based wireless multiplex diagnostic device.
02:47 PM - Mar 18, 2021
In response The Mac to his Publication
Only people mentioned by TheMac in this post can reply
The Mac
@TheMac
18 March, 02:47
In response The Mac to his Publication
We characterized the analytical performance of this device and demonstrated that the device is capable of detecting down to 1000 viral genetic copies per milliliter, and this enabled the diagnosis of patients infected with HIV or hepatitis B. More importantly, the barcoding enabled us to detect multiple infectious pathogens simultaneously, in a single test, in less than 1 h.
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The Mac
@TheMac
18 March, 02:48
In response The Mac to his Publication
This multiplexing capability of the device enables the diagnosis of infections that are difficult to differentiate clinically due to common symptoms such as a fever or rash. The integration of quantum dot barcoding technology with a smartphone reader provides a capacity for global surveillance of infectious diseases and the potential to accelerate knowledge exchange transfer of emerging or exigent disease threats with healthcare and military organizations in real time.
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