Tianjin University applies MEMS technology to "surgery for cells"

Release date: 2017-03-13

The reporter learned from Tianjin University on the 8th that the micro-technical team of the School of Fine Arts has made an important breakthrough in the direction of cell-targeted drug introduction. It is the first time in the world to propose the application of micro-electromechanical systems (MEMS) thin-film resonators to excite ultra-high ultrasonic waves. Megahertz's new technology for "targeted cell drug introduction", "surgery for cells."

The technology realizes the precise introduction of a variety of molecules to cells, and provides a new method for the traditional targeted drug introduction technology, expanding the application of MEMS technology in life sciences.

It is reported that the relevant research results of Tianjin University have recently been published online in the internationally authoritative academic journal "Small" in the field of micro-nano technology.

The accurate and efficient introduction of exogenous molecules such as target drug molecules, therapeutic genes and proteins into the interior of cells is an important technology in modern precision medicine and cell molecular biology research. Traditional cell introduction relies on chemical drugs or electrical stimulation, such as "chemotherapy", which not only fails to introduce selective drugs, but also causes "cell immune response", destroying healthy cells and causing large side effects. The micro-nano device has the advantages of small volume and low power consumption, and can be implanted into the body to realize selective cell drug introduction. The use of micro-nano technology to realize single-cell drug introduction has become a hot spot in modern molecular biology research.

Microelectromechanical systems (MEMS) are microelectromechanical systems consisting of movable elements ranging in size from 0.5 to 500 microns. The micro-technical team of Tianjin University, under the leadership of Prof. Pang Wei, a national expert of thousands of people, and the team members of the National Youth Thousand Experts, Professor Duan Xuexin and Associate Professor Wang Yanyan, carried out a large number of microelectromechanical resonators, sensors and actuators research and life. The extension of science and other fields has achieved a number of high-level scientific research results with independent intellectual property rights.

"Application of microelectromechanical systems (MEMS) thin film resonators to stimulate 'extra high-frequency (gigahertz)' for targeted cell drug introduction" technology is the research team to generate "extra high-frequency ultrasound" through resonator excitation, using "extra high-frequency ultrasound" The vibration efficiently and stably forms small holes in the cell membrane, and induces foreign substances such as targeted drugs or gene molecules to enter the cells. The ultra-high ultrasonic wave pressure on the cell membrane is about 60 times that of the general ultrasonic wave, and the cell membrane can be more uniformly stressed, thereby realizing the controllable and precise introduction of the foreign substance into the cell and the nucleus, and has no toxic side effect on the cell itself.

Source: China News Network

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