‘Sperm-inspired’ nanobots could soon deliver medicine and target cancer in the body

The way medicine and surgery are delivered could be about to change forever, thanks to the invention of microscopic swimming robots.

These 3D-printed microswimmers, inspired by sperm and bacteria, can be powered by ultrasound waves and guided through the body.

The robots were designed by scientists from the College of Agriculture and Life Sciences. They will be capable of navigating the human body and delivering medicine and other treatments in a highly targeted manner.

Instead of medicine being distributed by the entire body, these little robots could ensure that treatment hits problem cells or organs in a specific area—and reduce problematic side effects.



Cornell University scientists have created cell-sized swimming robots that can be steered by ultrasound waves.See SWNS story SWNNswimmers. Tiny swimming micro-robots the size of a cell that can be moved through the body using ultrasound have been created by scientists. Using a design inspired by bacteria and sperm, they could help deliver drugs throughout the human body. The cell-sized ‘rocket ships’ are powered and steered by high frequency sound waves, according to the new study. Creating a remote controlled robot which can navigate the human body has proved challenging, partly because they cannot carry a battery.
Cornell University researchers have developed cell-sized swimming robots capable of being controlled by ultrasound waves.

“We can make airplanes that are better than birds nowadays. But at the smallest scale, there are many situations that nature is doing much better than us. Bacteria, for example, have had billions of years of evolution to perfect their way of doing things,” Professor Mingming Wu led the project.

He continued: “That led us to think that we can actually engineer something similar. If you can send medicine to a targeted area, like cancer cells, then you won’t have as many side effects.”



Cornell University scientists have created cell-sized swimming robots that can be steered by ultrasound waves.See SWNS story SWNNswimmers. Tiny swimming micro-robots the size of a cell that can be moved through the body using ultrasound have been created by scientists. Using a design inspired by bacteria and sperm, they could help deliver drugs throughout the human body. The cell-sized ‘rocket ships’ are powered and steered by high frequency sound waves, according to the new study. Creating a remote controlled robot which can navigate the human body has proved challenging, partly because they cannot carry a battery.
The swimming robots are 3D printed

Initially, the scientists struggled with constructing the device, until they decided to start using a 3D printer specially made for printing ‘nanotechnology’. They can now create tiny robots with tiny air bubbles that doctors can control through the bloodstream.

The team plans to make the swimmers out of biodegradable material in the future. This will allow for safe distribution of hundreds, if not thousands, throughout the body.



Cornell University scientists have created cell-sized swimming robots that can be steered by ultrasound waves.See SWNS story SWNNswimmers. Tiny swimming micro-robots the size of a cell that can be moved through the body using ultrasound have been created by scientists. Using a design inspired by bacteria and sperm, they could help deliver drugs throughout the human body. The cell-sized ‘rocket ships’ are powered and steered by high frequency sound waves, according to the new study. Creating a remote controlled robot which can navigate the human body has proved challenging, partly because they cannot carry a battery.
The swimming robots, up close

Advances in nanotechnology and ‘tiny robots’ are being made quickly this year. A team of researchers announced earlier this week that they had created the world’s smallest flying robots using ‘propeller seeds from maple trees.

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