Biology is governed by the interactions of electric charges. Every cell is defined by a unique combination of charged molecules, forming its own electrophysical fingerprint. This electrical blueprint, crucial for maintaining health, is increasingly recognized as the “electrome.”
Just as genome research revolutionized medicine, the study of the electrome promises a new frontier in understanding cells at their most fundamental level. At Cellectric, we believe that decoding and modulating the electrome will power the next wave of breakthroughs in healthcare—enabling more precise diagnoses, more effective therapies, and a deeper comprehension of how life works.
What is the Electrome, and Why Does It Matter?
The Electrome Defined
The “electrome” encompasses the complex electrical networks that exist within and around cells, tissues, and organelles. These networks help regulate biological processes in ways we’re only just beginning to understand.
A Transformational Shift
From the genome to the proteome and the microbiome, every new “-ome” has reshaped our understanding of human health. By harnessing the electrome, we open entirely new ways to diagnose diseases, enhance health, and accelerate research.
Seeing Cellectrically: Electrodynamic Cell Manipulation
Our core innovation, electrodynamic cell manipulation, targets a cell’s electrophysical fingerprint using purely physical interactions. Over a decade of academic research has revealed unprecedented cellular responses when cells are exposed to carefully calibrated electrodynamic fields.
Unlike conventional chemical or other physical methods, this approach:
Allows for continuous processing and delivers an immediate mode of action.
Maintains high selectivity, as only the cells you choose to manipulate are affected.
Integrates seamlessly with other life science technologies, enhancing their capabilities.
For more technical details, you can visit our Technology page
Technology
Overcoming the Barriers: Speaking the Language of Cells
One of the biggest challenges in using electricity on living cells is that electric current can introduce unwanted side effects: electrochemical reactions, heat, and mixed signals.
How We Solve It
Insulated Electrodes
We use patented, dielectric materials to insulate metal electrodes, filtering out electric and ionic currents.
Proprietary Pulse Application
Our custom electronics harmonize with these special electrodes to directly target cell populations within the liquid.
Precision Signal Algorithms
By focusing on displacement currents, we ensure cells are exposed to pure electrodynamic field effects—eliminating the noise and “mixed messages” that can occur with typical electric fields.
Applications and Beyond
Electrodynamic cell manipulation holds vast potential for life sciences. A few key opportunities include:
Disrupting unwanted cells (host depletion, tumor cells)
Transferring molecules in or out of cells with high efficiency
Influencing cell division and differentiation
Current Spotlight: Cell Isolation
Our solution for infection diagnosis isolates viable pathogens from complex samples—enabling rapid growth detection.
We’re also exploring pathogen isolation from synovial fluid, sputum, swabs and other biological samples, with the goal of improving purity for downstream analysis (e.g., PCR or DNA sequencing).
Want to see how electrodynamic cell manipulation could fit into your workflows? Explore our current applications to learn more about the technology.
Technology
Ready to Explore the Electrome?
If you’re curious about the untapped potential of the electrome, our technology can show you what’s possible. Get in touch to discover how you can incorporate electrodynamic cell manipulation into your research or clinical practice—and help shape the next revolution in life sciences.
https://www.cellectric.com/the-electrome/