We invite you to watch an enlightening video that sheds light on this significant discovery. The video demonstrates how our immune cells, such as NK-Cells and T-Cells, respond to thermal shock by triggering the secretion of heat shock proteins (HSP). These proteins, in turn, greatly enhance the cancer-killing capabilities of T-Cells.
Other afflictions caused by an improper number of Ions in the body include anemia, allergies, infirmity, shoulder pain, lumbago, rheumatism, neuralgia, headaches, habitual constipation, gastroenteritis, hepatits, kidney trouble, unbalanced autonomic nervous system, and insomnia. Too few negative Ions in our body can cause many diseases, and have a dangerous effect on our overall health. Many studies of the relationship of the Ion (especially the Negative Ion) to our health have been made by professional researchers who agree that our health is dependent on the amount and quality of Ions in the air.
58 sec - Heat Shock Proteins
This video illustrates how immune cells not only attack but also engulf cancer cells, providing a unique perspective on the cancer-fighting mechanisms within our bodies.
What's even more fascinating is the visible difference in the cancer-killing abilities of T-Cells with and without heat shock proteins. When heat is applied to our bodies, the production of these proteins causes T-Cells to become highly aggressive in their pursuit of cancer cells. Heat shock proteins are a group of proteins produced by cells in response to various stressors, including elevated temperatures (heat shock), toxins, infection, inflammation, and other cellular stresses. These proteins provide a wide range of essential functions in our body's defense system:
Protein Folding: HSPs help prevent the accumulation of damaged proteins, safeguarding cellular function and health.
Cellular Repair: HSPs aid in repairing damaged proteins and preventing the aggregation of misfolded proteins, allowing cells to recover from stress-induced damage.
Protection Against Stress: HSPs shield cells from damage caused by stressors such as heat, oxidative stress, and toxins, ensuring stability and preventing cell death under challenging conditions.
Immune Response: Acting as chaperones for antigens, HSPs assis in presenting them to the immune system, influencing the body's response to infections and cancer.
Cell Signaling: HSPs also play a role in cellular signaling pathways, impacting various cellular processes and responses to stress.
Dr. Yoshimizu, a prominent oncologist with extensive experience in cancer treatment, including at the renowned Mayo Clinic in the United States, assumed the role of Chief Doctor at the Cyber Knife Cancer Center at Osaka General Hospital where he treated numerous cancer patients. Dr. Yoshimizu introduced Biomats into the treatment of over 2000 cancer patients. With a focus on far-infrared thermal therapy he discovered the pivitol role played by Heat Shock Proteins. According to his findings, the secretion of heat shock proteins requires a specific condition known as heat stress. To induce this stress, one must experience external heat discomfort for approximately 30 minutes. During this time, our bodies naturally release heat shock proteins as a survival response.
The key takeaway is that achieving the benefits of heat shock proteins through thermal therapy does not necessitate prolonged exposure. Roughly 30 minutes is sufficient, but the most significant secretion of heat shock proteins occurs during the last 5 minutes or so, when the heat becomes challenging to endure.
We believe that this video, showcasing immune cells actively destroying and engulfing cancer cells, will provide valuable insights to many patients and their loved ones. It serves as a powerful reminder of the remarkable anticancer abilities innate within our bodies. HSPs are integral for cell survival and maintaining cellular balance under adverse conditions. They hold immense promise in research related to cell biology, protein folding, and various diseases, including cancer and neurodegenerative disorders.
Below is a medical journal of the Biomat, we encourage you to take a moment to read through and explore the incredible potential of this breakthrough discovery.
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