AI News
  • Home
  • AI & Tech
  • Machine Learning
  • Startups
  • Tools & Apps
  • Robotics
  • Future Tech
  • AI in Industry
    • AI in Sport ⚽
    • AI in Health
    • AI in Education
    • AI in Finance
    • AI in Business
    • AI in Law
    • AI in Climate
No Result
View All Result
SAVED POSTS
AI News
  • Home
  • AI & Tech
  • Machine Learning
  • Startups
  • Tools & Apps
  • Robotics
  • Future Tech
  • AI in Industry
    • AI in Sport ⚽
    • AI in Health
    • AI in Education
    • AI in Finance
    • AI in Business
    • AI in Law
    • AI in Climate
No Result
View All Result
AI News
No Result
View All Result

Harvard’s Silicon Chip Writes DNA With Electricity

Ramo by Ramo
20 July 2026
in Future Tech
419 4
0
Laboratory equipment used for DNA synthesis research
585
SHARES
3.3k
VIEWS
Summarize with ChatGPTShare to Facebook

Sixty-four strands of DNA, written at the same time on a single silicon chip, using nothing more caustic than water and a trickle of electric current. A Harvard-led team published that result in Nature Electronics this month, and it undercuts the way synthetic biology has manufactured its raw material for decades.

The demonstration is modest by industrial standards. Sixty-four sequences will not supply a biotech manufacturing line. The method underneath is what matters, because it swaps a chemistry that has always demanded hazardous solvents and purpose-built facilities for one that runs in water, steered entirely by electricity.

How the chip writes

The chip’s surface carries 64 separate synthesis sites. At each one, a DNA strand is anchored at the centre and ringed by two concentric electrodes. When a given site needs to accept the next nucleotide in its sequence, the chip sends current into the inner ring. That current produces protons, the pH drops in a tiny pocket of liquid immediately around the strand, and the enzymatic reaction that adds the next building block goes ahead.

🔮
RECOMMENDED READ
The Singularity Is Nearer: When We Merge with AI
Ray Kurzweil
An updated roadmap for the technologies reshaping human civilisation this decade.
View on Amazon →affiliate link

The clever part is the addressing. Every site sits in the same shared pool of liquid, yet each can be switched on or off independently because the acidity change stays confined to a region only microns across. Electricity does the job that plumbing used to do. No separate wells, no reagent lines feeding individual chambers, no mechanical valves deciding which strand gets what.

The work was a multi-institution effort, bringing together Harvard, the Broad Institute, the enzymatic synthesis company DNA Script, and researchers at POSTECH.

The solvent problem

Commercial DNA synthesis today leans on a chemical process built around hazardous organic solvents. The consequences run past environmental accounting. Solvent-based synthesis has to happen inside specialised centralised facilities kitted out to handle and dispose of those chemicals safely, which is a large part of why ordering custom DNA still means sending a request to a vendor and waiting for a vial to arrive in the post.

Enzymes do not need any of that. They evolved to work in water at moderate temperatures, which is the whole appeal of enzymatic synthesis and why several companies have been chasing it. The persistent difficulty has been control: if the reaction happens in water, and all your strands sit in the same water, how do you tell strand 17 to accept an adenine while strand 18 waits? The Harvard group’s answer is that you do it with a wire and a voltage rather than with fluid handling.

What portable synthesis would change

The researchers frame the payoff in two directions. One is portability. Strip out the solvents and the reason for centralisation disappears with them, which opens the door to DNA writing hardware that could sit in an ordinary lab rather than a specialised plant. The other is data storage, a field that has spent years treating DNA as the densest archival medium available in principle and the most impractical one in practice, largely because writing it is slow and expensive.

Neither follows automatically from a 64-site chip. The team is candid that new chemistry will be needed before the approach scales to the sequence counts that either application would require. Commercial arrays already write DNA at far higher densities using the solvent-based method, and matching that throughput is a different engineering problem from proving the mechanism works.

A semiconductor answer to a biology question

What makes the result worth watching is where it came from. This is a silicon chip doing biology, fabricated with the same electrode-patterning techniques the semiconductor industry has refined over half a century. That matters for scaling in a way that bespoke lab apparatus does not. If the path to writing more DNA per chip runs through adding more electrode sites, then it runs through an industry that has been very good at exactly that for a long time.

The immediate question is throughput. Watch for the next paper to report a site count in the thousands rather than the dozens, and watch whether the enzymatic chemistry holds up when the sites get packed closer together and the pH pockets start crowding one another. That is where the approach either becomes a manufacturing technology or stays an elegant demonstration.

For more coverage of breakthroughs reshaping biotechnology and computing, visit Mylistingo.

SummarizeShare234
Ramo

Ramo

Ramo is the editorial voice of Mylistingo — an AI and technology news platform based in The Hague, Netherlands. Covering artificial intelligence, machine learning, robotics, and the future of technology, Ramo delivers accurate, accessible reporting for both general audiences and industry professionals. Every article is fact-checked and written to meet Mylistingo's strict no-fabrication editorial standards.

Related Stories

Spacex stock dips to $135 ipo price before starship test

Spacex stock dips to $135 ipo price before starship test

by Ramo
17 July 2026
0

SpaceX shares fell to $135 on Wednesday, trading below the IPO price for the first time since June. The decline comes ahead of another Starship test flight.

Intel semiconductor fabrication plants showing advanced chip manufacturing facilities

Beyond 2nm: The Race for Next-Generation Semiconductor Manufacturing in 2026

by Ramo
18 July 2026
0

Beyond 2nm: the semiconductor industry pushes toward atomic-scale manufacturing in 2026. From CFETs to 2D materials, discover the future of chip

Quantum Computing Breakthroughs in 2026: Major Milestones Reshape Computing Frontiers

Quantum Computing Breakthroughs in 2026: Major Milestones Reshape Computing Frontiers

by Ramo
16 July 2026
0

Quantum computing reaches a turning point in 2026 as Google achieves error correction breakeven, IBM's Condor enters commercial trials, and quantum

The Rise of Neuromorphic Computing: How Brain-Inspired Chips Are Transforming AI in 2026

The Rise of Neuromorphic Computing: How Brain-Inspired Chips Are Transforming AI in 2026

by Ramo
16 July 2026
0

Explore how neuromorphic computing is revolutionizing AI hardware in 2026 with brain-inspired chips that consume less power and process information faster than traditional GPUs.

Recommended

AI and data analytics transforming professional soccer and sports

AI and Data Analytics Are Transforming Professional Soccer in 2026

11 July 2026
ml_feat_64210040

Europe’s Record Heatwave of 2026: Social Fallout and Public Health Emergency

6 July 2026

Popular Story

  • ml_feat_56193023

    ASML’s Next-Gen High-NA EUV Machines Drive Eindhoven Expansion, Creating 20,000 New Jobs

    590 shares
    Share 236 Tweet 148
  • Best Cafes and Coffee Shops in The Hague 2026: A Digital Nomad’s Guide

    589 shares
    Share 236 Tweet 147
  • The Rise of Neuromorphic Computing: How Brain-Inspired Chips Are Transforming AI in 2026

    588 shares
    Share 235 Tweet 147
  • The New Space Arms Race in 2026: Satellite Warfare and the Geopolitics of Orbital Dominance

    588 shares
    Share 235 Tweet 147
  • Inside The Hague’s AI-Powered International Criminal Court: How Machine Learning Is Accelerating Justice

    588 shares
    Share 235 Tweet 147
Advertise Here
Your Ad Could Be Here

This premium 300×250 spot is available. Reach our AI & tech audience with your product or service.

Book This Space →
logo ainews

We bring you the best Premium WordPress Themes that perfect for news, magazine, personal blog, etc. Check our landing page for details.

Recent Posts

  • Trump’s AI Czar Role Becomes a Revolving Door
  • X Relaunches Rebuilt Android App After Year-Long Effort
  • 83% of Clinicians Use AI Without Employer Rules

Categories

  • AI & Tech
  • AI in Business
  • AI in Climate
  • AI in Education
  • AI in Finance
  • AI in Health
  • AI in Law
  • AI in Sport
  • Economy & Finance
  • Future Tech
  • Machine Learning
  • Politics & Geopolitics
  • Robotics
  • Social Topics
  • Sport
  • Startups
  • The Hague
  • Tools & Apps

Weekly Newsletter

  • Home
  • Advertise
  • Latest News
  • Contact Us
  • Data Deletion Instructions
  • Editorial Policy

Welcome Back!

Login to your account below

Forgotten Password?

Retrieve your password

Please enter your username or email address to reset your password.

Log In
No Result
View All Result
  • Home
  • AI & Tech
  • Machine Learning
  • Startups
  • Tools & Apps
  • Robotics
  • Future Tech
  • AI in Industry
    • AI in Sport ⚽
    • AI in Health
    • AI in Education
    • AI in Finance
    • AI in Business
    • AI in Law
    • AI in Climate