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

Recorded Future
Recorded Future
小众软件
小众软件
C
Check Point Blog
MyScale Blog
MyScale Blog
V
Visual Studio Blog
博客园_首页
J
Java Code Geeks
人人都是产品经理
人人都是产品经理
腾讯CDC
云风的 BLOG
云风的 BLOG
爱范儿
爱范儿
量子位
N
Netflix TechBlog - Medium
宝玉的分享
宝玉的分享
博客园 - 叶小钗
H
Help Net Security
T
The Blog of Author Tim Ferriss
月光博客
月光博客
博客园 - 三生石上(FineUI控件)
P
Proofpoint News Feed
freeCodeCamp Programming Tutorials: Python, JavaScript, Git & More
WordPress大学
WordPress大学
美团技术团队
有赞技术团队
有赞技术团队
Microsoft Azure Blog
Microsoft Azure Blog
IT之家
IT之家
M
MIT News - Artificial intelligence
S
Secure Thoughts
U
Unit 42
Google Online Security Blog
Google Online Security Blog
L
LINUX DO - 最新话题
OSCHINA 社区最新新闻
OSCHINA 社区最新新闻
Recent Announcements
Recent Announcements
F
Full Disclosure
The GitHub Blog
The GitHub Blog
V2EX - 技术
V2EX - 技术
D
DataBreaches.Net
Webroot Blog
Webroot Blog
Y
Y Combinator Blog
The Last Watchdog
The Last Watchdog
aimingoo的专栏
aimingoo的专栏
W
WeLiveSecurity
Blog — PlanetScale
Blog — PlanetScale
博客园 - 聂微东
Martin Fowler
Martin Fowler
阮一峰的网络日志
阮一峰的网络日志
cs.AI updates on arXiv.org
cs.AI updates on arXiv.org
V
V2EX
T
Tailwind CSS Blog
Application and Cybersecurity Blog
Application and Cybersecurity Blog

New Scientist - Home

2026 will be the hottest year on record, leading scientist predicts NHS England rushes to hide software over AI hacking fears The 4 biggest myths about hydration, according to an expert Oak trees use delaying tactics to thwart hungry caterpillars Will Colombia summit kick-start the end of the fossil fuel era? Why I explore our inevitable love for robots in my novel Luminous Read an extract from Luminous by Silvia Park The rings of Uranus are even stranger than we thought An unorthodox version of quantum theory could reveal what reality is 'Green' cryptocurrency uses 18 times more energy than makers claim Your oral microbiome could affect your weight, liver and diabetes risk Human heads have changed shape a lot in the past 100 years Doubts cast over 'wild' claim that magnetic control can turn on genes The best new science fiction books of May 2026 The rich but complicated legacy of genome pioneer Craig Venter We have figured out a new way to send messages into the past Our verdict on Red Mars: Mostly great, with a few quibbles New Scientist recommends New York's Bone Museum and Gecko Gallery Thought-provoking photographs capture what it feels like to have ADHD Is an AI version of Mark Zuckerberg – or any boss – a good plan? Ann Leckie continues to shine with new sci-fi novel Radiant Star Simple treatment tweak drastically reduces blood loss from severe cuts Weird 'transdimensional' state of matter is neither 2D nor 3D Why dinosaurs lived much more complex lives than we thought The chips in your phone are probably broken – and that's a good thing Scorpions reinforce their claws and stingers with metals Extreme weather in 2025 drove record wildfire emissions in Europe Cancer is increasing in young people and we still don't know why People are betting on measles outbreaks – and that might be useful Gamblers are betting millions of dollars on measles outbreaks Is consciousness more fundamental to reality than quantum physics? Humanoid robots may be about to break the 100-metre sprint record How I pay almost nothing to power my house and electric car We may finally have a cure for many different autoimmune conditions Coral reefs on a remote archipelago shrugged off a massive heatwave Why the keto diet could be a revolutionary way to treat mental illness Giant Arctic continent launched dinosaurs to world domination 10,000 new planets found hidden in NASA telescope data How your heart rate variability can offer an insight into your mind 100-year-old assumption about the universe may soon be overturned Gravity's strength measured more reliably than ever before Symptoms of early dementia reversed by bespoke treatment plans QBox theory may offer glimpse of reality deeper than quantum realm Is stem cell therapy about to transform medicine and reverse ageing? Largest-ever octopus was great white shark of invertebrate predators Do you need to worry about Mythos, Anthropic's computer-hacking AI? Catching a cold can delay cancer from spreading to the lungs Huge study reveals how Epstein-Barr virus may cause multiple sclerosis Striking photo essay examines deadly spread of dengue fever in Nepal 98 per cent of meat and dairy sustainability pledges are greenwashing New Scientist recommends Jeff Beal’s New York Études, Vol. II How many dachshunds would it take to get to the moon? Can you slow ageing with your diet? A new book gives it a go Why your opinion of used electric vehicles is probably wrong This mesmerising Cornish time-travel film is not to be missed We need more radioactive drugs. Can we make them from nuclear waste? Table tennis-playing robot on track to becoming world champion Exercise advice for long covid may be doing more harm than good Fermat's Last Theorem: still a must-read about a 350-year maths secret If a bird flu pandemic starts, we may have an mRNA vaccine ready Titan’s strange plains may be explained by unusual weather How we discovered the speed limit of arithmetic – and broke it The monstrous number sequences that break the rules of mathematics Game theory explains why the US's goals in Iran keep changing Diamonds are surprisingly elastic when you make them tiny A whole new way to prevent death from sepsis shows promise Parrot uses his broken beak to become a dominant male Can we ‘vaccinate’ ourselves against stress? Why the right kind of stress is crucial for your health and happiness Can you determine your personalised stress score? We might finally know how to use quantum computers to boost AI Hospital-acquired pneumonia reduced by daily toothbrushing Brushing your teeth in hospital could prevent catching a bad infection Electric vehicle owners could earn thousands by supporting power grid Requests for blood from unvaccinated donors is harming patients Werner Herzog searches for ghost elephants in stunning new documentary The biggest threat to Chernobyl is no longer radiation Modern living may be causing big changes to our oestrogen levels Temperature gets a new definition using a quantum device Meta and YouTube fined $3 million for harming mental health How big is a 'shedload'? Let's ask the nuclear physicists What to read this week: the persuasive How Flowers Made Our World The brain's cleaning system can be boosted to rid Alzheimer's proteins Oldest known dog extends the genetic history of our canine companions Landmark experiment reveals a big unexpected problem with cloning Ancient bones reveal vivid details of a Neanderthal elephant hunt Want to live forever? There are major questions to confront, first Cancer-causing chemical found to be leaking from gas cookers Earth may have formed from two separate rings around the sun Cystitis or tooth decay could trigger dementia just a few years later Antimatter has been transported by road for the first time How AI shook the world's largest meeting of physicists Adrian Tchaikovsky: 'I try and do interesting aliens' Are humans degenerating genetically and getting dumber as a result? Genetic clues tell the story of Neanderthals' decline Warmer ocean is driving the Antarctic sea ice 'regime shift' Mysterious comet disintegration caught by telescope after lucky break 'Zombie' cells created by transplanting genomes into dead bacteria Security credentials inadvertently leaked on thousands of websites Inside the world’s first antimatter delivery service
The future of robot armies is here – and it’s not what you think
Annalee Newitz · 2026-05-19 · via New Scientist - Home

Columnist and Technology

Robots are becoming more a part of our lives every year, and worries about a robot army rising up have long plagued the technology. But columnist Annalee Newitz talks to nanobot researchers and finds out the real robot army could be a welcome solution to medical or environmental problems

Illustration of nanobots in the human bloodstream

RUSLANAS BARANAUSKAS/SPL/Getty Images

The robot army that saves the world won’t be anything like what you imagine. Nope, they aren’t little humanoids who can do synchronised martial arts like the ones who dazzled audiences during New Year’s festivities in China. And they won’t help you find a can of Coke with embarrassing slowness like the man-shaped beast known as Optimus from Elon Musk’s Tesla Inc. Instead, they will be microscopic, and mostly made of algae, bacteria and other single-celled organisms. Engineers call them biohybrid microrobots.

If you’ve read about people swallowing pills full of tiny robots to deliver medicine – or you watched the classic 80s flick Innerspace – you’ve already experienced the dream of a future. For many years, medical researchers have imagined using little machines to get medicine into the hard-to-reach parts of our bodies such as the minuscule capillaries in our lungs. Even better, these machines could actually drive around in our organs, perhaps to seek and destroy cancer cells one by one. The problem is that we can’t actually build motorised devices small enough to do it.

That’s where biomedical engineer Joseph Wang’s work comes in. Like many in the growing field of microrobotics, Wang has dramatically expanded the definition of what most of us think of as “robots”. Any mechanism that can be controlled and move around semi-autonomously is a robot, much like the squishy, pneumatically powered turtle bot I described in a previous column. And some robots contain living tissues – or entire living creatures.

There are many things technology simply can’t do as well as biology – and one of them is motor around inside minuscule environments. Tiny synthetic engines tend to dissolve after a few minutes, Wang says, but “algae just swims and swims”. That’s why he and his colleagues power their robots with the green microalga Chlamydomonas reinhardtii.

At the University of California, San Diego, Wang’s lab worked closely with chemical engineer Liangfang Zhang’s research group to create what are basically swarms of algae cyborgs that deliver medicine. They began with C. reinhardtii, which can swim with its powerful flagellum, or tail. It also happens to love blue light, so it is relatively simple to guide this single-celled critter by shining a blue light on its target region. Wang and Zhang can even get massive swarms of the algae into formation: by shining the blue light through a screen with a shape cut out of it, they herded thousands of algae cells into forming a circle, square and even more complex designs.

To disperse the swarm, the researchers used a red light. In a video demonstration, they show a swarm under the microscope moulding itself into the shape of the African continent and then scattering again. Essentially, Wang and Zhang created a microrobot army, “programmed” to move in particular ways by blue and red lights.

To turn this swarm into a microscopic medical team, they expose the algae to nanoparticles that stick to their outer membranes via electrostatic force. The result is half-algae, half-synthetic, all bot. Researchers can guide the fully loaded microbot swarm towards a wound using blue light. One day, doctors might use the masking technique to create custom-shaped algae bandages with many kinds of therapeutic payloads.

Sci-fi depictions of healing pods often include blue light, like what is used to direct real nanobots

Shutterstock/Pavel Chagochkin

Other parts of the body call for a different kind of algae motor. For stomach exploration, Wang says, he and his team had to use algae that had grown in mining sites where it had become used to acidic environments. That’s right – toxic mining sites produced algae that might one day swim to the rescue with drugs to treat your stomach cancer.

Light is just one way to program the bots. Scientists can also load nanoparticles onto magnetotactic bacteria – organisms that navigate via Earth’s magnetic field – then guide them around inside an animal’s body using electromagnets. Regardless of whether the payload rides on algae or bacteria, it’s referred to as “active” medicine. Traditional drugs are called “passive” because they can’t be programmed to target specific regions or cell types. The hope with much of this research is that more medicine can become active, leading to more effective therapies, fewer side effects and less invasive treatments.

Medicine isn’t the only possible application for biohybrid microrobot swarms, either. Wang’s lab is also using cyborg algae for decontamination in rivers and oceans. Instead of loading the bots up with medicine, researchers cover them in chemicals that can neutralise or absorb toxins. The algae wriggle around in the water, often for days, collecting toxins opportunistically until everything is cleaned up. Meanwhile, some research groups are testing fully synthetic microrobots for cleaning up plastics in the ocean.

The fantasy of a robot army doesn’t have to mean humanoid soldiers conquering enemies. Another future is always possible. Tiny algae-cyborg swarms could one day live inside your body – briefly – or travel in packs through the environment, decontaminating the messes that humanity made.

Topics: