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NUST MISIS believes that the real heart will be printed in about 10 years

It may take about 10 years for scientists to 3D print a functioning human heart. Such an assumption on the air of the TV channel "Russia 24" was made by the director of the Institute of Biomedical Engineering of NUST MISIS, doctor of physical and mathematical sciences Fedor Senates.

NUST MISIS believes that the real heart will be printed in about 10 years
28.02.2025
Lesezeit: 2 min
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📝 Summary

It may take about 10 years for scientists to 3D print a functioning human heart. Such an assumption on the air of the TV channel "Russia 24" was made by the director of the Institute of Biomedical Engineering of NUST MISIS, doctor of physical and mathematical sciences Fedor Senates.

According to him, bioengineers need to bring the circulatory system to the printed organ and make it work. This is difficult today because of the size of the human heart. “I honestly do not believe that a real heart will be printed this year or even on the horizon of one or two years. It can be printed, and to live later, that is a big question. You can print a heart, and that heart will not be for a man, it will be a heart for a little mouse. And this volume, perhaps, will be able to bring the circulatory system, make it function. <...> If we are talking about the heart [of a person], then these are still much more distant horizons, I think, more than ten years. He added that now the sphere of additive technologies is focused on printing flat organs, but there is already progress in the creation of larger implants. “On the horizon of the next five years, we will gradually print something flat to the clinic: flat skin organs, cartilage, gradually tubular organs. But already, for example, we can say that in the clinic for this month and a half, starting in January, 20 patients were operated on with a printed eardrum. This, in fact, is also the technology of bioprinting, which already exists in Russia, said the Senate. The scientist also said that Russia today is in the first place in the world in the development of bioprinting "in situ", that is, immediately on the patient.

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