5G Shield – Quench EMF-Generated Free Radicals

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Given the number of EMFs that bombard us all day long, getting educated about the negative effects of EMFs is imperative to our well-being. Particularly if you are dealing with a serious illness, it is well worth your time to reduce your EMF exposure as much as possible. We may not be able to block the EMF coming from outside lamposts, but we can mop up the free radicals it creates before it does lasting damage, this is the idea behind 5GSHIELD™.

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Description

We are being bathed in electro magnetic radiation and there’s no place to hide, except we can mitigate it’s effects by improving our body’s cellular defences.

While it’s nearly impossible to avoid Electro Magnetic Frequencies (EMF) exposure completely, there are practical ways to limit it by providing the body with essential nutrients which upregulate pathways which reduce oxidative stress and DNA damage caused by EMF’s such as from low energy wireless networks .

Given the number of EMFs that bombard us all day long, getting educated about the negative effects of EMFs is imperative to our well-being. Particularly if you are dealing with a serious illness, it is well worth your time to reduce your EMF exposure as much as possible. We may not be able to block the EMF coming from outside lamposts, but we can mop up the free radicals it creates before it does lasting damage, this is the idea behind 5GSHIELD™.

Dr. Martin Pall made a key discovery that helps us to understand how EMF’s such as 5G cause damage to our cells.  EMF radiation activates voltage-gated calcium channels (VGCCs), which are located in the outer membrane of your cells. Once activated, they allow a tremendous influx of calcium into the cell — about 1 million calcium ions per second per VGCC. [5] [source] Def: Voltage-dependent calcium channels (VDCCs), are a group of voltage-gated ion channels found in the membrane of excitable cells (e.g., muscle, glial cells, neurons, etc.) with a permeability to the calcium ion Ca2+.

 

 

When there’s excess calcium (Ca++) in the cell, it increases levels of both Nitric oxide (NO) and the free radical Superoxide. Massively excessive amounts of NO reacts with superoxide, forming peroxynitrite, which is an extremely potent free radical. This can trigger a chain reaction of devastating events in the nervous system and in particular the heart, brain & reproductive system .

Peroxynitrites, in turn, break down to form reactive free radicals, both reactive nitrogen species and reactive oxygen species, including hydroxyl radicals, carbonate radicals and NO2 radicals — all three of which do damage. Peroxynitrites also do their own damage. All this to say EMFs are not having a thermal influence; they are not “cooking” your cells as some suggest. Rather, EMF radiation activates the VGCCs in the outer cell membrane, triggering a chain reaction of devastating events that, ultimately:

 

  • + Decimates mitochondrial function, cell membranes and proteins.
  • + Causes severe cellular damage & DNA Breaks.
  • + Dramatically accelerates the aging process.
  • + Puts us at higher risk for chronic diseases.

 

Many studies indicate your intracellular calcium increases with exposure to EMFs. [12]

How EMFs Damage Your Health

When your VGCCs are exposed to EMFs, they open up, allowing abnormally large volumes of calcium ions into the cells — about 1 million ions per second per channel. Each VGCC has a voltage sensor, a structure that detects electrical changes across the plasma membrane and opens the channel. EMFs work through the voltage sensor to activate the channel and radically increase intracellular levels into dangerous ranges.

“Because of the structure of the voltage sensor and its location in the plasma membrane, one can predict from basic physics that it’s extraordinarily sensitive to the electrical forces from EMFs,” Pall notes. On average, these forces are approximately 7.2 million times stronger on the voltage sensor than they are on singly charged electrical groups in the aqueous (watery) part of the cell. What this means is that current safety standards are off by a factor of about 7 million.

That’s how these very weak EMFs, which industry claims can’t possibly cause you any harm, are actually taking you out prematurely. They work by activating VGCCs. This turns out to be absolutely critical, because when there’s excess calcium in the cell, a number of things happen. Not only do you get excess calcium signaling, you also get increased nitric oxide (NO). While NO has many beneficial health effects, massively excessive NO reacts with superoxide.

Superoxide levels also rise in response to increased intercellular calcium. Together, they form peroxynitrite, which is an extremely potent oxidant stressor. While not a free radical, peroxynitrites break down to form reactive free radicals, both reactive nitrogen species and reactive oxygen species (ROS) including hydroxyl free radicals.

You get both, because you get hydroxyl radicals and carbonate radicals and NO2 radicals,” Pall explains. All three do damage. According to Pall, most of the damage is likely done by excessive free radicals, but some damage is caused directly by the peroxynitrites. The end result is rather massive harm, as excessive oxidative stress and nitrosative stress are involved in nearly all chronic disease. Much of the pathophysiology also has to do with the excessive calcium signaling, independently of peroxynitrite.

 

In this next video Dr Martin Pall speaks about the papers describing the molecular mechanisms of how EMFs from cellphones and wireless technologies damage humans, animals and plants.

 

Oxidative stress represents an imbalance between the ROS generation and the cellular antioxidant defensive system, which includes scavenging and repairing molecules. The first include a number of AOEs, such as superoxide dismutase (SOD) (three isoforms of SOD have been identified in mammals: the cytoplasmic Cu/ZnSOD or SOD1, the mitochondrial MnSOD or SOD2, and the extracellular SOD3), catalase and glutathione peroxidase (GPx).   The body can quench free radicals using H2S, Superoxide dismutase (SOD), Catalase, Glutathione & other beneficial intercellular antioxidants. These can be upregulated by consuming nutrients known as NrF2 & SIRT3 activators.

“Now, I always tell people I’m a Ph.D. and not an M.D. None of my suggestions should be viewed as medical advice. But I think one approach to dealing with these things is to raise the level of nuclear factor erythroid-2-related factor 2 (Nrf2), which I published a paper on [11].” ~ Prof Martin Pall

 

These powerful nutrients are contained within 5GSHIELD™ capsules.

Using H2S & NrF2 activators and to reduce ROS and Oxidative Stress

H2S has been shown to be able to scavenge ROS and reactive nitrogen species (RNS) [source], including hydrogen peroxide, lipid hydroperoxides, superoxide and peroxynitrite . (source) .  (reviewed in [18,19]). Molecules containing an SH group such as H2S, HS–, HS–SH, and HSS– can reverse the damage due to ROS/RNS by donating a hydrogen atom to carbon-centered radicals; however, the very low concentrations of H2S and related molecules in blood and tissues limit their efficacy of repairing free radical cellular damage.
Increasing Nrf2, which is a biological hormetic that upregulates superoxide dismutase, catalase and all the other beneficial intercellular antioxidants, is also helpful mainly because it lowers inflammation, improves your mitochondrial function and stimulates mitochondrial biogenesis, among other benefits.
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Ingredients:

5GShield™ Ingredients per capsule
Broccoli Sprout 20:1 Ext.(Sulforaphane 0.4%)(†) prop *
Olive Leaf Extract 20:1 (†)( ↻NrF2) prop *
Japanese Knotweed (†) ( ↑Sirt1) prop *
NAC (v) ( ↻GSH / ↻H2S) prop *
Taurine (Phase II)(v)( ↻GSH / ↻H2S) prop *
Tangerine Peel (Citrus reticulata) (†)( ↓NO, ↑NrF2) prop *
Allium Sativum(organo-sulfur)( ↻GSH / ↻H2S)(†) prop *
Astaxanthin (†)(↑NrF2) prop *
Choline Bitartrate (↻DNA) prop *
Green Tea Extract (†)( ↑NrF2) prop *
Magnesium Citrate prop *
B-Vitamins (B1,B2,B3,B5,B6,B7,5MTHF,B12)(↻DNA) prop *
Other ingredients: Bioperine(Black pepper extract), Biotin, HPMC Hypromellose (vegetable capsule), zero fillers, (†) Organic, * Daily value not established, v=vegan, prop=proprietary formula, ↻ =protector, ↑=upregulates, ↓=downregulates

 

Suggested Usage

Take 2 capsules 3x/day  with water or green tea, take for 5 days on and 5 days off (pulsing). Taking electrolytes and minerals in a drink such as Electrobal+ provides other important cellular nutrients.

 

Dietary tip:  Avoid high sugar and grain diets, this causes inflammation and poor skin health.  Avoid eating 3 hours before bedtime, MelMagic™ may also be beneficial for additional regeneration during sleep by providing melatonin, which is one of natures most powerful free radical scavengers.

 

 

Quality Assurance Declaration

Lab-Tested
Werone.co endeavors to use the most potent source materials within our formulas. Our herbal extracts are sourced and tested by the only Government-certified large scale producer of crude herb (powder-free) TCM concentrates in Asia who manufacture to GMP / ISO 9001/2000 pharmaceutical grade and also operate an ISO17025/TAF-certified laboratory where they subject all plant extracts to strict quality inspections free from heavy metals, pesticides or microbes before release to the clinics all over the world. The formulas and tinctures are assembled without fillers in small batches by a BHMA member herbal dispensary.

 

Nutraceutical Disclaimer

These statements have not been evaluated by the Food and Drug Administration or MHRA and the items are not intended to diagnose, treat, cure, or prevent any disease nor are they associated, endorsed, affiliated or sponsored by Anthony William, Medical Medium® Joe Tippens or Jim Gordon.

 

 

Clinical EMF Studies

Also see the References tab for many more studies.
1. Electromagnetic fields act via activation of voltage-gated calcium channels to produce beneficial or adverse effects, Martin L Pall*
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3780531/

2. Cell Phone Radiation Boosts Cancer Rates in Animals; $25 Million NTP Study Finds Brain Tumors (2016)
https://www.nih.gov/news-events/news-releases/high-exposure-radiofrequency-radiation-linked-tumor-activity-male-rats
https://microwavenews.com/news-center/ntp-cancer-results

3. Blood-brain barrier permeability and nerve cell damage in rat brain 14 and 28 days after exposure to microwaves from GSM mobile phones.
https://www.ncbi.nlm.nih.gov/pubmed/18821198

4. Nerve cell damage in mammalian brain after exposure to microwaves from GSM mobile phones.
https://www.ncbi.nlm.nih.gov/pubmed/12782486

5. Electromagnetic fields act via activation of voltage-gated calcium channels to produce beneficial or adverse effects
https://www.researchgate.net/publication/242331926_Electromagnetic_fields_act_via_activation_of_voltage-gated_calcium_channels_to_produce_beneficial_or_adverse_effects
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3780531/

6. Role of Hydrogen Sulfide in NRF2- and Sirtuin-Dependent Maintenance of Cellular Redox Balance
https://www.mdpi.com/2076-3921/7/10/129/htm

7. Antioxidant Defense Mechanisms Against Reactive Oxygen Species
https://www.sciencedirect.com/science/article/pii/B9780128035504000100

8. Free Radical Scavenging and Cellular Antioxidant Properties of AstaxanthinAstaxanthin induced the antioxidant enzyme paroxoanase-1, enhanced glutathione concentrations and prevented lipid peroxidation in cultured hepatocytes
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4730345/

9. Electromagnetic field effects on cells of the immune system: the role of calcium signaling.
FASEB J. 1992;6:3177–85. [PubMed[]

10. Nrf2, a master regulator of detoxification and also antioxidant, anti-inflammatory and other cytoprotective mechanisms, is raised by health promoting factors.
https://www.ncbi.nlm.nih.gov/pubmed/25672622

11. Nrf2, A master regulator of detoxification and also antioxidant, anti-inflammatory and other cytoprotective mechanisms, is raised by health promoting factors. https://www.ncbi.nlm.nih.gov/pubmed/25672622

12. Long-term exposure to 835 MHz RF-EMF induces hyperactivity, autophagy and demyelination in the cortical neurons of mice
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5247706/

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