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ARTIDIS enters clinical collaboration to investigate nanomechanical profiling as a novel diagnostic and treatment optimization approach in patients with lung cancer
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Next generation of swimming biobots can self-train, showing striking speed and strength
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Scientists at IRB Barcelona discover the cause of neurodegeneration in Lafora disease
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Researchers find the cause of degeneration in Lafora disease
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VIDEO: ICREA Research Professor Samuel Sánchez (IBEC) explains how they have observed in vivo the collective movement of nanorobots view more
Credit: IBEC - CIC biomaGUNE
Nanobots are machines whose components are at the nano-scale (one millionth of a millimetre), and can be designed in such a way that they have the ability to move autonomously in fluids. Although they are still in the research and development phase, very significant advances are being made to make nanorobots a reality in the field of biomedicine. Their applications are very varied: from the identification of tumour cells, to the release of drugs in specific locations of the body. Nanorobots powered by catalytic enzymes are among the most promising systems because they are fully biocompatible and can make use of fuels already available in the body for their propulsion. However, understanding the collective behaviour of these nanorobots is essential to advance towards their use in clinica