Programmable Nano Biochip  Structure and Function (Based on PhD in Nano Microelectronics)

Researcher   and author  dr. Afshin Rashid      

Note: Programmable  nanoparticles (Nano bio chip  programmable ) can be programmed and  bioparticles with the ability to connect to important scientific, technological and clinical gaps by creating a diagnostic platform for measuring biological nanomolecules.

Programmable nano-chips (Nano bio chip  programmable ) have the ability to measure different classes of analysis such as cells, proteins, DNA and small molecules in the same compact nanomaterials. Nano chips programmable (Nano bio chip  Programmable ),  the combination of nanotechnology, the change of atoms and molecules up to 100 nm in size and clinical applications such as medical devices, diagnostic or tissue engineering. Nano chips programmable (Nano bio chip  Programmable ), can be used as monitoring, repair, construction and control of biological systems of humans at the molecular level, using nano-devices and engineering nanostructures to be defined. "  Nano-chip programmable (Nano bio chip Programmable )   containing thousands of nanowires, able to detect proteins and other biomarkers left over from biological cells.

Nano programmable chips (biochip Nano  Programmable ) 

Using  Nano biochip  programmable, it is possible to   detect very small amounts of chemical or viral contamination in agricultural, food and medical systems. Also among these  programmable nanoparticles (Nano biochip  programmable )   is a sensor based on nanowires that detects radiation damage in the medical and laboratory industries. These nanosensors are inserted into blood cells. Programmable Nano Biochip  Programmable is a   device that consists of one or more laboratory operators  on a chip measuring several millimeters or square centimeters and deals with very small volumes of liquids and information. It can give us a lot of interest from one example.

Conclusion : 

Programmable  nanoparticles (Nano bio chip  Programmable ) can be programmed and  bioparticles with the ability to connect to important scientific, technological and clinical gaps by creating a diagnostic platform for the measurement of biological nanomolecules.

Author: Dr.  ( Afshin Rashid)

PhD student in nano-microelectronics at Islamic Azad University, Science and Research Branch, Tehran