
Location
Headquarters: Valencia, California, United States, North America
Region: California
Country: US
Continent: North America
About
Nusano is a US-headquartered producer and supplier of medical radioisotopes, operating a proprietary ion source and production platform to generate a wide range of radioisotopes for healthcare, energy, and industrial applications. The company emphasizes supporting cancer care, nuclear medicine, and other high-tech industries with scalable, efficient isotope production. Its facilities and activities are centered in Utah, with a mission to supply critical isotopes for medical and industrial use worldwide.
Nusano is a medical technology company that produces medical radioisotopes using proprietary particle acceleration technology. The company supplies isotopes for cancer diagnosis and treatment to healthcare providers and research institutions. It operates facilities in California and Utah to address global supply shortages.
Nusano inc
2013
for_profit
active
Industries
Primary Industry: Business Services
Categories
Funding & Financials
Series C
115000000
private
Investors
Founders
Glenn Rosenthal
Howard Lewin
Leadership
Technology Stack
Products
Radioisotope Production Platform: A proprietary platform producing over 40 varieties of radioisotopes for medical, industrial, energy, and battery applications.
Medical Radioisotopes for Cancer Diagnosis and Therapy: Production of 25+ radioisotopes used in next-generation cancer diagnostics and targeted alpha therapies.
Industrial Radioisotopes: Production of rare and hard-to-produce radioisotopes for industrial applications such as gauging, aerospace radiology, fertilizer tracking, and environmental monitoring.
Nuclear Battery Radioisotopes: Production of long-lived alpha-decay radioisotopes used as power sources for nuclear batteries in IoT devices, aerospace, and defense.
Nuclear Waste Decay Acceleration Technology: Technology using ion sources to accelerate decay of long-lived nuclear waste, generating heat for clean energy production and reducing waste half-life.