惯性聚合 高效追踪和阅读你感兴趣的博客、新闻、科技资讯
阅读原文 在惯性聚合中打开

推荐订阅源

让小产品的独立变现更简单 - ezindie.com
让小产品的独立变现更简单 - ezindie.com
T
The Blog of Author Tim Ferriss
博客园 - 司徒正美
freeCodeCamp Programming Tutorials: Python, JavaScript, Git & More
有赞技术团队
有赞技术团队
量子位
S
SegmentFault 最新的问题
博客园 - 聂微东
博客园 - 【当耐特】
J
Java Code Geeks
美团技术团队
Hugging Face - Blog
Hugging Face - Blog
H
Help Net Security
V
V2EX
人人都是产品经理
人人都是产品经理
博客园 - Franky
罗磊的独立博客
Engineering at Meta
Engineering at Meta
A
About on SuperTechFans
奇客Solidot–传递最新科技情报
奇客Solidot–传递最新科技情报
酷 壳 – CoolShell
酷 壳 – CoolShell
云风的 BLOG
云风的 BLOG
Y
Y Combinator Blog
Apple Machine Learning Research
Apple Machine Learning Research

Science News, Space News, ISRO, NASA News & Updates | The HinduBusinessLine

Think it's hot now? The next five years will smash records: UN Climate change fuelling growth of antibiotic-resistant Salmonella: Study Red Balloon launches India’s first stratospheric super-pressure balloon NASA unveils 3-phase $20-billion plan for permanent moon base Space start-up AnduraX to conduct ‘drop test’ for reusable spaceplanes India can boost Ebola vaccine and antibody development: Soumya Swaminathan ICMR launches major biomedical innovation and technology transfer platform China to send astronaut on year-long space mission as it targets 2030 moon landing China's new lunar mission to conduct environment and resource surveys of Moon’s south pole Gujarat, Tamil Nadu to get new technical facilities for space sector manufacturing SpaceX sets Mars vision with 1 million population target for Musk incentives SpaceX invests over $15 billion in Starship rocket development, SEC filing reveals SpaceX targets 10,000 rocket launches per year within five years, FAA says Strand Life Sciences marks a research milestone that aids drug discovery AI Meets Agriculture: Indian scientists creates gene editor for crops Pune scientists develop DME fuel to reduce India’s LPG import dependence With AI, science is borderless Global space-tech major ICEYE to launch satellite production in India Scientists find climate change is reducing oxygen in rivers worldwide WOG Tech sets up research centre IIT Bombay launches indigenous carbon capture and storage pilot facility David Attenborough turns 100 amid global tributes and BBC celebrations James Webb Telescope reveals barren rocky exoplanet beyond solar system Trump releases classified UFO files and Apollo mission records India seeks greater role in global international space norms Newer weight loss drugs may alter brain's reward circuit, impact how one experiences pleasure: Study Skyroot Aerospace becomes unicorn after $60 million funding ahead of Vikram-1 launch India and Japan sign quantum technology and healthcare cooperation agreements FICCI, PSA office join hands to drive deep tech and innovation in India Elon Musk, PM Modi hail GalaxEye’s landmark Mission Drishti space mission
Explained: World’s first AI-designed vaccine
By PTI · 2026-06-10 · via Science News, Space News, ISRO, NASA News & Updates | The HinduBusinessLine

Researchers at the University of Cambridge have developed what they describe as a fundamentally new type of vaccine using artificial intelligence (AI). The vaccine’s key component was designed entirely by AI and has now been tested in people for the first time.

The goal is ambitious: a single vaccine that works not just against all known human coronavirus variants, but against related bat viruses that could jump from animals to humans and cause future pandemics.

Traditional vaccines train our immune system to recognise one specific virus. The problem is that viruses mutate. When they change enough, the vaccine stops working, which is why we need a new flu shot every year and why COVID vaccines have been updated repeatedly since 2021.

AI offers a way around this. By analysing genetic data from thousands of related viruses, it can identify the parts that stay the same across different strains and that are unlikely to change over time. Target those stable features, and you have a vaccine that should work against the whole family, not just the strain you started with.

This is exactly what the Cambridge team did. They used AI to scan viruses from the sarbecovirus family, which includes the viruses that cause both SARS and COVID, as well as a range of animal coronaviruses – looking for shared features that evolution has left largely untouched. Those features became the basis of the vaccine.

DNA Vaccines

While many people are familiar with the mRNA shots used during the pandemic, this new vaccine uses DNA. DNA vaccines are generally more stable than mRNA vaccines, making them easier to store and transport. A significant advantage in lower-income countries where “cold-chain” infrastructure is limited.

They can also be administered without needles. A high-pressure stream of liquid delivers the vaccine through the skin, making administration less painful and easier to scale up during an outbreak.

Could it protect us from future pandemics?

These practical advantages matter most if the vaccine itself can do something no existing jab can: protect against viruses we haven’t encountered yet.

Broad-spectrum vaccines could change the way the world responds to emerging infectious diseases. By offering much wider protection than traditional vaccines, they could provide rapid immunity against new and emerging viral threats.

This would equip public health officials with tools to stop future outbreaks in their tracks before they have a chance to turn into global pandemics.

They could also transform our approach to more familiar diseases. Influenza is a prime target because it exists in many different strains and evolves so rapidly. Scientists have to predict which strains will dominate each flu season, and if they guess wrong, vaccine effectiveness can suffer.

A universal flu vaccine that targets features shared across multiple strains could eventually end the annual race to keep up with the virus.

And the Ebola virus shows why this matters right now. The recent outbreak in the Democratic Republic of the Congo and Uganda is driven by the Bundibugyo strain, which bypasses existing vaccines. While researchers rush to create a new vaccine specifically for this strain, local communities remain at high risk.

A broad-spectrum vaccine designed to cover an entire virus family could transform that picture.

What did the trail find?

This is the first human trial of an AI-designed vaccine. The results showed that this DNA vaccine was able to stimulate the immune system to produce antibodies that can recognise different types of sarbecoviruses. The technology was found to be safe and well-tolerated.

This is an exciting advance because it demonstrates how AI has the potential to design variant-proof vaccines against future pandemic threats. The needle-free delivery system could also make the vaccine easier to administer and distribute worldwide.

However, there is more work to do. Although the results in this study are encouraging, the immune responses following vaccination were modest. It was also uncertain how long the protection lasts and whether further boosters will be required. Larger trials are also needed to determine whether the vaccine can prevent or reduce virus infections in the real world.

A universal vaccine remains a few years away. And any new vaccine must still pass larger trials to prove it is safe, effective and provides lasting protection. But this study shows the goal is getting closer – and AI may help us get there faster.

Published on June 10, 2026