Completed Engineering Digestion, Kidneys & Other Organs

Enhancement and Mapping of Oncological Drug Delivery by Ultrasound

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A low-cost ultrasound device called SonoTran will blast cancer drugs deep into solid tumours, overcoming a key barrier that has limited the effectiveness of even the most advanced therapies. The core problem is that solid tumours are dense, poorly organised masses with high internal pressure. Drugs injected into the bloodstream struggle to penetrate beyond the tumour’s outer edge, leaving the interior untouched. SonoTran uses targeted ultrasound waves to create temporary, reversible gaps in tumour tissue, allowing drugs to reach deeper regions that would otherwise remain untreated. The device also maps and monitors treatment in real time, in 3D—a feature that could let clinicians see exactly where drugs are going during a procedure, rather than guessing afterwards. If successful, the prototype will create 4 new UK jobs initially, rising to 24 by 2019. Beyond cancer, the same platform technology could be adapted for surgical repairs, such as treating damaged intervertebral discs that cause chronic low back pain. The project is a commercial development effort, not fundamental science, but it directly addresses a practical bottleneck in oncology that has frustrated drug developers for decades.

View original technical description
The TSB Biomedical Catalyst Fund will be instrumental in enabling OxSonics Limited to develop a prototype of its first product, “SonoTran”, a low-cost therapeutic ultrasound device and associated consumables for the non-invasive targeted and enhanced delivery of cancer drugs to solid tumours. SonoTran has the capability to overcome the greatest challenge facing solid tumour drug delivery: poor penetration of even the smartest drugs deep into solid tumours. A key feature of OxSonics core technology is the ability to map and intra-operatively monitor treatment in real-time and in 3D – a feature that has the potential to transform healthcare practice. The platform technology can also be applied to a range of surgical applications including the repair of intervertebral discs for the treatment of chronic low back pain. TSB funding will initially enable the creation of 4 new UK jobs, rising to 24 new UK jobs by 2019.

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“CEeDD: “A First-in-Human Clinical Investigation of Cavitation-Enhanced Drug Delivery to Solid Tumours by co-Administration of Sonosensitive Particles and Application of Extracorporeal Ultrasound in Patients with Colorectal Metastases to the Liver”

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