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

Microsoft Azure Blog
Microsoft Azure Blog
WordPress大学
WordPress大学
Google DeepMind News
Google DeepMind News
美团技术团队
大猫的无限游戏
大猫的无限游戏
H
Help Net Security
小众软件
小众软件
aimingoo的专栏
aimingoo的专栏
博客园 - 聂微东
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
M
MIT News - Artificial intelligence
酷 壳 – CoolShell
酷 壳 – CoolShell
博客园 - Franky
钛媒体:引领未来商业与生活新知
钛媒体:引领未来商业与生活新知
Microsoft Security Blog
Microsoft Security Blog
F
Fortinet All Blogs
A
About on SuperTechFans
Recent Announcements
Recent Announcements
D
Docker
Vercel News
Vercel News
Engineering at Meta
Engineering at Meta
腾讯CDC
Martin Fowler
Martin Fowler
阮一峰的网络日志
阮一峰的网络日志

Interesting Engineering

US firm to scale laser-based nuclear fusion ‘breakthrough’ with new partnership Military Archives - Interesting Engineering World’s first non-nuclear lead-cooled reactor to generate electricity begins installation US scientists devise new process to turn sewage sludge into 99% pure natural gas US firm unveils submarine-hunting drone with 9,200-mile-range, 35 mph top speed Military Archives - Interesting Engineering Supercomputer finds lithium-titanium tweak to boost sodium-ion batteries for grids Lockheed Martin demonstrates vertical launch missile system for mobile drone defense China’s 1116 MWe Taipingling Unit 1 reactor goes online, set to generate 9bn kWh yearly ChatGPT Images 2.0 update combines reasoning, research, and design with 2K output US Navy tests plug-and-play laser system on USS Bush carrier, downs drones at sea China’s CATL reveals 621-mile EV battery, under-7-minute charging to challenge BYD US uses world’s first exascale supercomputer to model supernovae, fusion reactors AI and Robotics Archives - Interesting Engineering First-in-human study confirms safety of graphene-based brain interface Tesla’s Optimus humanoid robot greets runners, poses for photos at Boston Marathon Interlocking materials offer high strength and flexibility for robotics, infrastructure US redeploys 100,000-ton nuclear-powered aircraft carrier in Red Sea after repairs US scientists unveil concept for ‘world’s first neutrino laser’ to unlock breakthroughs New military tech can maintain communication in contested electronic warfare environments Got a dark personality? Psychologists can help you choose your career wisely Humidity boosts performance of 3D-printed nanogenerator instead of degrading it China demonstrates microwave beam that recharges drones in flight, continues power delivery Scientists run compact free-electron laser for eight hours, cracks FEL stability problem China’s PLA considers to use minelaying underwater drones to enforce Taiwan blockade: Report 1-ton sharks may struggle for survival in waters exceeding 62.6°F, study suggests US firm’s thorium nuclear fuel bundles move to manufacturing for commercial reactors Tesla hits 0% charge in remote Chilean desert as YouTuber uses hood-mounted solar Humanoid robot surpasses human world record in Beijing half-marathon, clocking 50:26 mins New method extracts maximum work from unknown quantum states using symmetry tricks
Human heart regrows muscle cells after attack, world-firs...
Neetika Walt · 2026-05-05 · via Interesting Engineering

Scientists have found that the human heart can regenerate muscle cells after a heart attack, a process previously confirmed only in mice. The finding challenges long-held assumptions that heart damage is permanent and opens a path toward regenerative treatments.

The study, led by researchers from the University of Sydney, the Baird Institute and the Royal Prince Alfred Hospital, shows that the heart produces new muscle cells even after being scarred by a heart attack.

A heart attack can destroy up to one-third of heart muscle cells. While survival rates have improved, many patients develop heart failure, which often requires a transplant. The new finding suggests the heart has some natural ability to repair itself.

Researchers say this regeneration is not enough to fully restore heart function but could be enhanced in the future to improve recovery.

Heart shows self-repair

Dr Robert Hume said, “Until now we’ve thought that, because heart cells die after a heart attack, those areas of the heart were irreparably damaged, leaving the heart less able to pump blood to the body’s organs.

“Our research shows that while the heart is left scarred after a heart attack, it produces new muscle cells, which opens up new possibilities.”

The study confirms that cardiomyocyte mitosis, or cell division in heart muscle, occurs in humans after a heart attack. This had previously been observed only in animal models.

Researchers analyzed tissue samples collected from living patients undergoing bypass surgery. These samples, taken from both healthy and damaged areas of the heart, provided direct evidence of cell regeneration.

Living tissue unlocks insights

The ability to study living human heart tissue was key to the breakthrough. Scientists used a technique developed to collect samples during surgery, allowing them to examine cellular activity in real time.

Professor Sean Lal said, “Ultimately, the goal is to use this discovery to make new heart cells that can reverse heart failure. “Using living human heart tissue models in our work means that we will have more accurate and reliable data to develop new therapies for heart disease.”

\The team says this approach creates a reliable model to test new regenerative treatments. Early findings have already identified proteins linked to heart regeneration in animal studies, offering clues for future therapies in humans.

Cardiovascular disease remains the leading cause of death worldwide and accounts for about 24 percent of deaths in Australia. With around 144,000 people living with heart failure in the country and only about 115 transplants performed each year, the need for alternative treatments is urgent.

Researchers say the finding could reshape how heart damage is understood, shifting focus from permanent loss to limited biological repair. While the regenerative response is modest, it suggests the human heart retains a previously underestimated capacity for recovery.

The future work will focus on amplifying the heart’s natural ability to regenerate cells. If successful, this could reduce the need for transplants and improve long-term outcomes for heart attack patients, they added.

The study was published in Circulation Research.

The Blueprint

Get the latest in engineering, tech, space & science - delivered daily to your inbox.

With over a decade-long career in journalism, Neetika Walter has worked with The Economic Times, ANI, and Hindustan Times, covering politics, business, technology, and the clean energy sector. Passionate about contemporary culture, books, poetry, and storytelling, she brings depth and insight to her writing. When she isn’t chasing stories, she’s likely lost in a book or enjoying the company of her dogs.