November 15, 2010 — A new exclusive worldwide license has been executed for patented technology for a proprietary brachytherapy seed with a fast-dissolving matrix for optimized delivery of radionuclides to cancer tissue.

The resorbable seed, from Advanced Medical Isotope Corp., provides controlled delivery of insoluble yttrium-90 microspheres. The new seed is a joint invention by radiochemists and medical physicists at Battelle in Richland, Wash., and pharmaceutical chemists at the University of Utah in Salt Lake City. AMIC is testing and conducting research to develop the new brachytherapy seed. It planned to file premarket notification (510k) with the U.S. Food and Drug Administration (FDA) in October.

Yttrium-90 is a high-energy beta-emitting medical isotope with good potential for treating highly localized cancer, AMIC says. The company anticipates the use of these seeds for prostate cancer as well as for many of the more radiation-resistant cancers, such as brain tumors, head and neck tumors and liver cancer. The resorbable seeds resemble conventional metal brachytherapy seeds and may be placed by direct injection using standard needles, grids and imaging systems. However, AMIC expects that the technology should enable seed manufacturing at lower cost relative to conventional welded-metal seeds.

Unlike current seeds, yttrium-90 decays with a shorter physical half-life (2.7 days) with negligible radiation outside the patient. The shorter half-life also suggests a potentially higher biological effective dose (BED) value for cancer cell destruction.

The insoluble form of the yttrium-90 microspheres effectively confines the radioactivity to the injection site and limits potential dissolution into blood.

For more information: www.isotopeworld.com


Related Content

News | PET Imaging

Sept. 22, 2026 — Researchers from the Keck School of Medicine of USC are developing a new “plug-and-play” platform that ...

Time September 23, 2026
arrow
News | ASTRO

Sept.16, 2026 — For appropriately selected patients with muscle-invasive bladder cancer, preserving the bladder can be a ...

Time September 17, 2026
arrow
News | Radiology Education

Sept. 16, 2026 — As urgent care centers and outpatient healthcare facilities expand their use of diagnostic imaging, the ...

Time September 17, 2026
arrow
News | PET Imaging

Sept. 10, 2026 — Siemens Healthineers Molecular Imaging has completed a $43.6 million construction and renovation ...

Time September 14, 2026
arrow
News | Radiology Imaging

Sept. 1, 2026 — Leo Cancer Care and GE HealthCare have announced that the two companies intend to work together on GE ...

Time September 11, 2026
arrow
News | ASTRO

Sept. 9, 2026 — The 2026 American Society for Radiation Oncology (ASTRO) Annual Meeting, will take place Sept. 26 to 30 ...

Time September 11, 2026
arrow
Feature | Artificial Intelligence | Kyle Hardner

A radiologist pulls up a chest CT scan flagged for a pulmonary nodule. One artificial intelligence (AI) tool writes its ...

Time September 09, 2026
arrow
News | Nuclear Imaging

Sept. 08, 2026 — GE HealthCare has announced that StarGuide GX1, its digital 4D CZT SPECT/CT technology, is 510(k) ...

Time September 09, 2026
arrow
News | Women's Health

Sept. 1, 2026 — On Sept. 24, 2026 at 1 p.m. EDT, Siemens Healthineers will present a webinar on "Advancing Women's ...

Time September 03, 2026
arrow
News | Radiation Oncology

Sept. 2, 2026 — Children with one of the deadliest forms of brain cancer may benefit from an additional course of ...

Time September 03, 2026
arrow
Subscribe Now