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Technique proves especially useful when used with tissue-based applications.
September 1, 2016
By: Fraunhofer
Medical products, packaging, and food can be safely and efficiently sterilized with electron beams. In the future, Fraunhofer researchers also plan to use accelerated electrons to eliminate germs from tissue transplants and to change the properties of the organic material in the process. It is essential that medical cannulas, disposable syringes, dialysis tubes, and pharmaceutical packaging are germ-free. A proven procedure for killing bacteria, viruses, funguses, spores, and so on is to sterilize using electron beams. This involves penetrating the material with accelerated, high-energy electrons. Researchers at the Fraunhofer Institute for Organic Electronics, Electron Beam and Plasma Technology FEP in Dresden successfully apply this method, for instance to eliminate harmful organisms from seed; it takes a few milliseconds to destroy the pests’ DNA, thereby turning off their ability to reproduce (see link below). Now the scientists are turning their expertise toward new application areas: they are studying the feasibility of using non-thermal electron-beam technology to sterilize and modify organic tissue, which could open up entirely new medical treatment options. “Under atmospheric pressure and at temperatures below 40 degrees, we treat tissue samples using electrons accelerated to the point at which they can penetrate the material. This is known as low-energy electron-beam processing,” explained Dr. Jessy Schönfelder, head of the Working Group on Medical Applications at Fraunhofer FEP. This non-destructive method offers clear advantages. Since the working depth can be adjusted so that only the outer surface layer is sterilized, the tissue does not heat up and the cells remain intact. By using the REAMODE (reactive modification with electrons) laboratory unit, the scientists can tailor the low-energy electron-beam technology to all kinds of applications, adjusting such parameters as penetration depth and intensity. Connecting Tissue with Accelerated Electrons
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