---
title: "Bioresonance Therapy for Cancer"
url: https://alsuprun.com/blog/bioresonance/bioresonance-therapy-for-cancer-4/
author: "Editorial"
date: 2026-09-30T08:02:35+00:00
categories: ["bioresonance"]
tags: []
---

# Bioresonance Therapy for Cancer

Syracuse University chemists are developing a way to use ultrasound waves to activate chemotherapy drugs precisely where they’re needed while sparing healthy cells. The method uses prodrugs that remain inactive until triggered by sound waves.

 Studies have shown that [bioresonance](https://alsuprun.com/) therapy is effective in treating several illnesses such as allergies, rheumatoid arthritis and fibromyalgia. In fibromyalgia, it expedites recovery from the condition that causes pain in the muscles and joints.

 

## Background

 Sound waves at frequencies above the threshold of human hearing are routinely used in medical care to help diagnose and monitor disease. They are also a promising tool for targeting therapy precisely to the diseased cells that cause symptoms, potentially sparing healthy ones.

 [![Rejuvenate your whole body & balance your health without medications - now remotely!](https://alsuprun.com/blog/wp-content/uploads/BioresonanceTopAd.png)](https://www.bioresonance.rent) Syracuse University chemists are developing a way to use ultrasound to trigger the release of chemotherapy drugs inside cancer cells and avoid harming them. The key lies in prodrugs—compounds that remain inactive until triggered by external stimuli. Hu’s team has found a way to activate these drugs by using ultrasound to target them to the tumor site. The ultrasonic signals create hydroxyl radicals, short-lived reactive species that transform the prodrug into its active form. The drug is released only in the ultrasound-irradiated area, limiting side effects to healthy tissues.

 When cancer cells spread from a primary tumour to distant sites, they lose some of their original characteristics and gain others. The new traits can enable the cell to adapt to the microenvironment at a distant organ and grow into overt metastasis. However, the mechanisms mediating this phenomenon are not entirely understood. The clonal selection model and the seed-and-soil hypothesis have both been proposed, but neither of them is fully consistent with the observation that some primary tumors hardly ever metastasize to contralateral organs like the lung or liver.

 [Bioresonance](https://alsuprun.com/) therapy is an alternative medicine approach based on the belief that diseases generate altered electromagnetic vibrations in the body. Practitioners claim that measuring these vibrations with a special device can detect the disease and restore the body’s regular frequency, thereby treating the illness.

 [![](https://alsuprun.com/blog/wp-content/uploads/ForeverYoungYouWannaBe.png)](https://alsuprun.com/services.html#Contact) Some research suggests that [bioresonance](https://alsuprun.com/) therapy can treat conditions such as fibromyalgia, chronic fatigue syndrome and rheumatoid arthritis. Other research, however, has been inconclusive. Moreover, there is no scientific evidence that BICOM [bioresonance](https://alsuprun.com/) treatment can cure cancer or other illnesses.

 

## Methods

 The practice of [bioresonance](https://alsuprun.com/) is based on the theory that DNA damage and diseased organs create electromagnetic waves different from healthy ones. Using devices that read the resulting frequencies, [bioresonance](https://alsuprun.com/) practitioners claim to diagnose and treat diseases such as cancer, allergies, and rheumatoid arthritis by “resetting” the body’s energy to its normal frequency. Some practitioners also claim that certain metals, such as dental amalgams, convey currents that can alter the body’s electromagnetic energy, but there is no scientific proof of this.

 [Bioresonance](https://alsuprun.com/) therapy uses electrodes attached to the skin, which send signals to a machine that can identify what part of the body needs treatment. The machine then sends energy to that area, supposedly helping the body heal itself and preventing recurrence of the illness. The therapy has been shown to reduce pain, fatigue and nausea from cancer treatments, but it is not a replacement for chemotherapy, radiation or surgery.

 Several studies have demonstrated the effectiveness of [bioresonance](https://alsuprun.com/) therapy in treating conditions such as fibromyalgia and chronic fatigue syndrome. In one study, patients undergoing [bioresonance](https://alsuprun.com/) therapy reported a 72 percent reduction in their level of muscle soreness compared to those not receiving the therapy. It has also been found to be effective in lowering stomach pain that is not related to a specific disease.

 More than 20 years ago, pioneering research showed that sending low-intensity pulses of focused ultrasound causes blood vessels to vibrate. These vibrations, in turn, open tiny pores in the blood-brain barrier allowing drugs in the bloodstream to pass through. The approach has since been used to treat a rare brain disorder called essential tremor, and has shown promise in a range of other neurological conditions including traumatic brain injury, multiple sclerosis and vascular dementia.

 Hu and his colleagues are developing new technologies to use focused ultrasound to directly deliver cytotoxic drugs to tumors without triggering off-target side effects. They are combining their knowledge of acoustic wave physics with advances in imaging technology to develop a system that can use ultrasound to activate drugs in the brain while leaving surrounding tissue intact. The system will work by delivering the drug as a prodrug, a compound that remains inactive until targeted by ultrasound, to trigger its release and activity.

 [![](https://alsuprun.com/blog/wp-content/uploads/RadionicMerch.png)](https://alsuprun.com/merch.html) 

## Results

 The treatment is based on the idea that cancer cells and healthy cells produce different electromagnetic oscillations, and that removing or altering these oscillations can bring the body into balance. The technology is said to treat everything from eczema and asthma to fibromyalgia and chronic degenerative diseases such as arthritis and cancer by restoring the body’s energy flow.

 Researchers use sound waves at frequencies higher than the threshold of human hearing to monitor body tissues and help doctors diagnose disease and guide therapy. These sound waves are called focused ultrasound — sound energy that is concentrated into a specific volume of tissue to deliver targeted therapeutic effects. In a paper published in the journal Chemical Science, Syracuse University assistant professor of chemistry Xiaoran Hu and his team report on their work using focused ultrasound to trigger cancer-fighting drugs only where they are needed.

 Their method uses prodrugs, or compounds that remain inactive until they are triggered by external conditions. In this case, the prodrug is coated with a protein that binds to cancer-causing enzymes found in tumor cells, but not healthy ones. Then, when ultrasound waves reach the area of the tumor, the prodrug is activated, releasing the cancer-fighting drug into that area while sparing nearby cells.

 Once the drug is released, it kills cancer cells and alerts the patient’s immune system to the presence of these abnormal cells. Ideally, the body’s immune system would then eliminate the remaining cancer cells through a process called apoptosis. But cancer cells are extremely resilient and can survive apoptosis, so a combination of strategies is needed to prevent them from returning.

 In addition to killing cancer cells, the team’s approach could also rouse a patient’s immune system to kill any remaining cancer cells that remain after conventional treatments such as surgery, chemotherapy and radiation. “We’re able to trigger an immune response with focused ultrasound that is more effective than a patient receiving conventional chemotherapy alone,” says Hu.

 In experiments, the BICOM resonance treatment induced apoptosis in the cancer cells and reduced the size of tumors. It also caused enlargement of the spleen, an indication that the therapy was breaking down damaged blood cells, cell fragments and immune complexes.

 

## Conclusions

 A probe that converts electrical current into vibrations is attached to a patient’s body. These ultrasound waves then reflect off different types of tissues, which are detected by the probe and converted back into electrical signals that computers can process into images. Focused ultrasound can heat and destroy tissue without damaging surrounding structures, such as blood vessels. The technique was developed over 80 years ago, and researchers have used it to treat a variety of disorders, including neurological diseases and pain.

 Several studies have confirmed the effectiveness of [bioresonance](https://alsuprun.com/) therapy in patients with fibromyalgia, an illness that causes painful muscle soreness. In one study, researchers compared the efficacy of point massage, manual treatments and [bioresonance](https://alsuprun.com/) therapy on patients with fibromyalgia. The patients who received the [bioresonance](https://alsuprun.com/) treatment reported a 72 percent improvement in their symptoms.

 Other conditions that have been successfully treated with focused ultrasound include essential tremor, a disorder characterized by uncontrollable shaking of the hands. The noninvasive therapy has also been used to treat brain tumors, spinal cord injuries and pain associated with cancer chemotherapy.

 Biological resonance is a hypothesis that has important implications for the prediction, prevention and treatment of metastasis. This hypothesis suggests that when a primary tumor and matched metastatic cancer cells meet in a distant site, they will develop a metastatic tumor that resembles the primary tumor, because their ancestors share the same DNA and have similar microenvironments.

 For example, when two identical tuning forks are placed next to each other, resonance occurs. The same is true for the microenvironments of a primary cancer cell and its matched metastatic cancer cell.

 The bio-resonance model explains how and why metastatic disease develops, and it also explains the similarities between primary cancer cells and matched metastases. However, this hypothesis does not explain why a primary cancer cell can seldom metastasize to contralateral organs, such as the breast or kidney. This phenomenon may be explained by the existence of other stimuli. The exact nature of these stimuli remains to be determined.

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