Columbia Engineers Build Biologically Powered Chip
December 7, 2015 | Columbia University School of Engineering and Applied ScienceEstimated reading time: 3 minutes
Columbia Engineering researchers have, for the first time, harnessed the molecular machinery of living systems to power an integrated circuit from adenosine triphosphate (ATP), the energy currency of life. They achieved this by integrating a conventional solid-state complementary metal-oxide-semiconductor (CMOS) integrated circuit with an artificial lipid bilayer membrane containing ATP-powered ion pumps, opening the door to creating entirely new artificial systems that contain both biological and solid-state components. The study, led by Ken Shepard, Lau Family Professor of Electrical Engineering and professor of biomedical engineering at Columbia Engineering, is published online Dec. 7 in Nature Communications.
"In combining a biological electronic device with CMOS, we will be able to create new systems not possible with either technology alone," says Shepard. "We are excited at the prospect of expanding the palette of active devices that will have new functions, such as harvesting energy from ATP, as was done here, or recognizing specific molecules, giving chips the potential to taste and smell. This was quite a unique new direction for us and it has great potential to give solid-state systems new capabilities with biological components."
Shepard, whose lab is a leader in the development of engineered solid-state systems interfaced to biological systems, notes that despite its overwhelming success, CMOS solid-state electronics is incapable of replicating certain functions natural to living systems, such as the senses of taste and smell and the use of biochemical energy sources. Living systems achieve this functionality with their own version of electronics based on lipid membranes and ion channels and pumps, which act as a kind of 'biological transistor.' They use charge in the form of ions to carry energy and information -- ion channels control the flow of ions across cell membranes. Solid-state systems, such as those in computers and communication devices, use electrons; their electronic signaling and power are controlled by field-effect transistors.
In living systems, energy is stored in potentials across lipid membranes, in this case created through the action of ion pumps. ATP is used to transport energy from where it is generated to where it is consumed in the cell. To build a prototype of their hybrid system, Shepard's team, led by PhD student Jared Roseman, packaged a CMOS integrated circuit (IC) with an ATP-harvesting 'biocell.' In the presence of ATP, the system pumped ions across the membrane, producing an electrical potential harvested by the IC.
Page 1 of 2
Suggested Items
Northrop Grumman’s IVEWS Completes F-16 Electronic Warfare Operational Assessment
05/05/2025 | Northrop GrummanNorthrop Grumman Corporation’s IVEWS (Integrated Viper Electronic Warfare Suite) has successfully completed Operational Assessment flight testing on U.S. Air Force F-16 aircraft, demonstrating its effectiveness against advanced radar-guided threats.
INVISIO Further Expands Capability of Market-Leading Wireless Intercom System
05/05/2025 | INVISIOTactical communications expert INVISIO is expanding the capability of its market-leading intercom system made for tailored user and radio communication. The expansion will deliver enhanced mobility, flexibility, interoperability and functionality for mission-critical users.
L3Harris, Thales Develop Next-Generation SHORAD Capability
05/05/2025 | L3Harris TechnologiesL3Harris Technologies has signed a memorandum of understanding with Thales UK to develop an integrated short-range air defence (SHORAD) command and control capability.
Lockheed Martin Completes Orion Development for Artemis II Moon Mission
05/05/2025 | Lockheed MartinLockheed Martin has completed assembly and testing of NASA's Orion Artemis II spacecraft, transferring possession to NASA's Exploration Ground Systems (EGS) team.
MICROOLED Announces Partnership with Vortex Optics and Brand New US Headquarters
05/02/2025 | BUSINESS WIREMICROOLED Inc., the leading global supplier of AMOLED displays, is proud to announce their partnership with Vortex Optics to advance the development of high-performance weapon sights for optical sighting systems.