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Updated October 2024

 

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Much research has emerged over the last two decades on the functions of redox processes in maintaining cellular health. ASEA products delivers redox molecules that may assist in the process!

800% Increase in Glutathione Efficacy

> Discover Redox: Redox Science

Researchers at the Pacific Northwest National Laboratory (PNNL) performed in vitro tests to determine the antioxidant efficiency of the body’s most powerful natural antioxidant enzymes glutathione peroxidase (GPx) and superoxide dismutase (SOD).

The results showed significant, well-defined effects. The cell extracts exposed to ASEA Redox Supplement exhibited 8 times the antioxidant efficiency for GPx, and 5 times antioxidant efficacy for SOD. This efficiency was evident especially at low-level concentrations of ASEA Redox Supplement, tested down to 2.5% of full strength.

If you are interested in learning more, do have a look at these three (amongst many hundreds) YouTube and website videos.


What is the ASEA supplement and what are redox signalling molecules?

ASEA is a one of a kind supplement in the whole world. It contains stabilised redox signalling molecules, which are essential for cellular communication and overall body function. These molecules are vital for all bodily processes, and life would not be possible without them. When the body produces enough of these molecules, they enable proper cell functioning, maintain balance, and support overall health.

What are redox signalling molecules?

Redox signalling molecules are naturally occurring in the body and are responsible for communication between cells. They play a crucial role in self-healing, detoxifying the body, and slowing down aging processes. Over the past two decades, research in this area has significantly advanced, making it one of the fastest-growing scientific fields. The PubMed features over 30,000 scientific articles on redox signalling, underscoring its importance.

How are redox molecules produced?

These molecules are naturally produced in our cells in mitochondria. However, their levels begin to decline after puberty. When the body no longer produces enough redox molecules, cellular communication slows down, leading to the natural aging process. This is why children heal quickly from wounds without scarring, while these processes slow down as we age.

In addition to aging, external factors like stress, pollution, diseases, poor diet, smoking, alcohol consumption, medications, radiation, and excessive physical exercise also reduce redox molecules in our cells. When the body experiences a redox imbalance, cells cannot communicate effectively, leading to diseases and accelerated aging.

The role of ASEA in regulating redox balance

By regularly consuming ASEA supplement, redox molecules are replenished in the body, leading to a restored redox balance and improved cellular communication. This helps protect the cells, identify and repair damage at the cellular level, activates self-healing and detoxification, and promotes the formation of healthy cells. It also enhances the activation of signalling pathways at the genetic level, positively affecting five key areas of health: the immune system, cardiovascular system, digestive system, hormonal balance, and inflammation reduction. This has a beneficial impact on the entire body's health.

Additionally, consuming redox molecules increases the production of glutathione, one of the most important antioxidants in the body. Glutathione protects cells from free radicals, heavy metals, and oxidative stress while playing a key role in detoxification and maintaining cellular health. A deficiency in glutathione is increasingly linked to various diseases.

Redox molecules are naturally recognised by the body and used wherever they are most needed. They are available as the ASEA supplement, which works systemically, and as the Renu28 gel to be used topically (for example on wrinkles, scars, wounds, burns, acne, rashes, pain, inflammation, and injuries). Both ASEA and Renu28 gel are 100% safe to use, have no side effects, and are compatible with medications and other forms of therapy.

 

If you are interested in learning more, do have a look at these three (amongst many hundreds) YouTube and website videos.

 


Summary of RECENT FINDINGS (independent research by University of Bath and University of Western Sydney):

● The research conducted independently by both universities found that the Nrf2 pathway was significantly impacted by redox signaling molecules.

● Nrf2 is a genetic pathway that plays a vital role in regulating genes that support response and resilience to a range of stressors. These stressors may include fatigue, emotional stress, inflammation, environmental pollution, and even lifestyle factors such as poor diet or sedentary behavior.

● One key finding in the research was that supplementation with redox signaling molecules increased Nrf2 activity by up to 60%. This is significant given the Nrf2 pathway enhances the antioxidant protective system inside our bodies’ cells. (See fig. 7B.)

● Another key finding is that supplementation with redox signaling molecules increased cells’ production of protective proteins like glutathione, which play important roles in promoting overall balance. The research revealed that supplementation with redox signaling molecules increased glutathione production by 40% in healthy cells and that it restored glutathione production in compromised cells even more—by 55%. (See figs. 12A and 12B.)

The White Paper (linked above) includes the following explanation:

Signal transduction by electron transfer, or redox signaling requires an electrophile (a molecule that attracts electrons) reacting with a nucleophile (a molecule that will give up electrons). Redox signaling involves reactions where an electrophile takes electrons away leaving the nucleophile in a more oxidized state (oxidation reaction). In this situation the electrophile is called an oxidant. On the other hand, reductive stress is characterized by an excess of cellular electron donors. When conditions result in ratios where antioxidants exceed pro-oxidants, reductive stress occurs with a consequent excess accumulation of reducing equivalents like reduced nicotinamide adenine dinucleotide (NADH), for example, surpassing the compensatory activities of regulatory oxidoreductases. In summary, oxidation and reduction by loss or gain of an electron induce changes in structural and functional characteristics of molecules, thus modifying signaling processes.

Redox signaling is part of the normal physiology of all cells, including flow stimulated growth of endothelial cells, and plays a significant role in pathophysiological responses such as occur in ischemia/reperfusion injury, as well.


Discover Redox site (various content)

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Danielle Matthews, Carolyn Hoffman & others (56 mins)


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