Biophotonic therapy, commonly referred to as UVBI, exposes blood to ultraviolet light rays which destroy viruses, bacteria and other pathogens in your system. When combined with Ozone therapy it enhances immunity while increasing oxygen utilization for optimal health outcomes.
Studies of biophotonic treatments on both humans and db/db diabetic animal models of skeletal muscle demonstrated normalization of fasting glucose and insulin responses, recovery of glycogen synthesis from glycocemic state, as well as improved insulin sensitivity.
Cost
Biophotonic therapy, also known as Ultraviolet Blood Irradiation (UVBI) or Photoluminescence Therapy, is an oxygen therapy method which involves exposing one’s blood to ultraviolet light to stimulate healthy cells while killing viruses and bacteria, strengthening immunity and improving overall health. Biophotonic therapy can be an effective solution to infections like Lyme disease as well as diseases which afflict immunity; combined with Ozone Therapy it provides optimal oxygen usage to enhance health benefits further.
Biophotonic treatment of type 2 diabetic patient cells and animal models produced improved insulin sensitivity, ROS generation and recovery of impaired glucose uptake and glycogen storage. This suggests that the biophotonic decontamination technique developed at IFSC-USP Laboratory could aid clinical management of T2DM by augmenting events related to carb metabolism.
Benefits
Biophotonic therapy utilizes UV light rays to stimulate and strengthen the body’s immune system and eliminate pathogens, whether viruses, bacteria or even fungus. Ozone therapy increases oxygen utilization in the blood to further defend against infections.
Transplant recipients who require organ transplants often face the risk of disease transmission during organ transplantation, and chronic viral infections like Hepatitis C can benefit from it as it helps them avoid antiviral medication’s long-term side effects.
Researchers collaborated with Marcelo Cypel and his team at the University of Toronto, one of the world’s largest lung transplantation programs and performing 197 procedures in 2018. Cypel’s surgeons perform transplants using donor lungs contaminated with Hepatitis C virus – one of the primary roadblocks to successful transplants – which requires using biophotonic decontamination techniques like photodynamic oxidation to eradicate it from tissue during perfusion. Cypel and his team developed an innovative biophotonic decontamination method using photodynamic oxidation technology – something Cypel’s team developed using biophotonic decontamination techniques using photodynamic oxidation to remove HCV from donor lung tissue during perfusion perfusion perfusion.
Researchers introduced a photosensitizing drug into the perfusion liquid that circulated through lung to be transplanted, then when exposed to red light with wavelength 660 nanometers it activates and damages DNA of viruses present in real time as the lung was being perfused.
Research team found that after biophotonic decontamination procedures, the load of hepatitis C in lung tissue decreased dramatically following decontamination procedures, as evidenced by tests conducted with a small group of patients. Hemoglobin A1c levels before treatment (6.5 percent) dropped dramatically to 6.25 % 120 minutes post treatment – representing an impressive reduction of blood hepatitis C levels and likely to help prevent complications related to diabetic retinopathy and other related conditions.
Side Effects
Biophotonic therapy generally results in mild and short-lived side effects due to being non-invasive and gentle treatments. Still, precautions must be taken prior to and during a session such as wearing loose clothing for comfort and avoiding certain foods and medications that could potentially worsen effects of treatment.
First step to determining whether biophotonic therapy is right for you is scheduling an initial consultation. At this appointment, one of our experts will review your medical history as well as any symptoms that arise; then they’ll provide advice and develop a personalized treatment plan tailored just to you.
Biophotonics therapy has been demonstrated to assist with an array of ailments, from cancer and inflammation, autoimmune disorders and neurological issues to chronic pain relief and cardiovascular improvement. A qualified acupuncturist will utilize their tool to create circular movements on your skin in order to release tension in muscles and joints during each session of Biophotonics therapy therapy.
Biophotonic therapy also has the added advantage of helping to combat viral and microbial resistance to conventional medicines, which is of critical importance as infectious diseases remain among the primary causes of morbidity and mortality worldwide. As antimicrobials and antivirals become resistant, clinicians find themselves struggling to effectively treat disease without additional treatments being added into patients’ regimens.
Vanderlei Bagnato, a full professor at the University of Sao Paulo and director of its Institute of Physics (IFSC-USP), is exploring one such approach. Working alongside Marcelo Cypel – head of Toronto General Hospital’s lung transplantation program which performed 197 surgeries last year alone – Cypel and his team are devising a novel biophotonic technique to decontaminate organs including lungs prior to transplantation.
Cypel and his colleagues are conducting a pilot study with four cancer patients using Tesla BioHealing devices at home to test the prototype device designed by Bagnato. Each participant will keep a diary detailing their quality of life as they answer standard questionnaires throughout the period of the pilot. It will be compared with another device of similar size and shape but without emitting biophotons.




