A DNA Transistor Sensor for
Proactive Healthcare
EVERY DAY. EVERYWHERE.

Multiplexed Single-Molecule Detection
A self-aligning DNA wired nanojunction transistor — one universal receptor structure recognizes multiple molecular targets, decoded in real time by machine learning.

Core Features
Signal Flow
Hardware — Gen-1 Chip & Device Prototype

Gen-1 Chip (penny scale reference) · Nanobiotronix Measurement Platform · Device Prototype
The Next Era of Molecular Sensing
Early detection of silent health anomalies and emerging environmental contaminants. One Platform. Limitless Potential.
Personal Monitoring
Track metabolic health and physiological stress any time. Deployable in wearable patches and portable sensors for proactive wellness management.
Environmental Testing
Deliver lab-grade precision from the kitchen counter to the field. Detect PFAS, heavy metals, and pathogens in real time without hardware changes.
Point of Care
Deliver central-lab precision directly to the bedside. Our ML-driven arrays decode multiplexed biomarker panels for cancer and neurodegenerative diseases in minutes.
Nearest-neighbor interactions governing charge transport in DNA
Providing actionable guidelines for the design of DNA transistors.
J. Hihath, et al.
Self-aligning nanojunction for integrating circuits
Demonstrates highly scalable manufacturing process.
J. Hihath, et al.
Quantitation of glycosaminoglycans using nanopore / ML
Employs Machine Learning to determine concentrations of complex polysaccharides.
P. Zhang, et al.
Tunneling identification of RNA nucleotides via a universal reader / ML
Demonstrates the versatility of the universal reader / ML system for a different category of molecules.
P. Zhang, et al.
Tunneling identification of carbohydrates via a universal reader / ML
Validation of a nanojunction sensing / chemical recognition / machine learning (ML) system for the detection of complex molecules.
P. Zhang, et al.
Study of single-nucleotide polymorphisms in DNA nanojunctions
Demonstrates that a single base pair mismatch in DNA can be identified by conductance measurements.
J. Hihath, P. Zhang, et al.
Partner With Us
DNA Biotronix is actively partnering with leading universities, innovation hubs, and technology centers to accelerate the commercialization of our DNA transistor sensor platform.

Deep academic collaboration on DNA nanotechnology, transistor fabrication, and biosensor research. Ranked #1 in innovation in the United States.
IP management, licensing, and startup commercialization through ASU's innovation hub at SkySong.
Collaboration on miniaturized wearable biosensor integration for continuous personal health monitoring.
Partnership Opportunities
Ready to partner with DNA Biotronix?
Get in TouchFounding Members
Decades of Deep-Tech Innovations.

Executive leadership in R&D projects; 30+ experience in DNA biotechnology and single-molecule detection.

Director of the Biodesign Center for Bioelectronics & Biosensors at ASU; pioneering expertise in nanoelectronics.

Founder and MD of financial advisory firm; 30+ experience in finance, M&A, and fundraising.
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Company announcements, research milestones, and partnership news.
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Let's Build the Future Together
Whether you're a scientist, investor, clinician, or industry partner — we'd love to explore how DNA Biotronix fits into your mission.