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Feb 1 2024 Brigham and Women's Hospital

Brigham and MIT researchers uncovered never-before-seen details in human brain tissue with new, inexpensive microscopy technology.

Key takeaways: Researchers have developed a new microscopy technology called decrowding expansion pathology (dExPath) to analyze brain tissue. By pulling proteins apart with dExPath, researchers can stain proteins in tissue that could not be accessed before, highlighting nanometer sized structures or even cell populations that were previously hidden. This "super-resolution imaging" technology has the potential to provide insights that could improve diagnostic strategies and patient outcomes.

Researchers from Brigham and Women's Hospital, a founding member of Mass General Brigham, and the Massachusetts Institute of Technology (MIT) have unveiled unprecedentedly detailed images of brain cancer tissue through the use of a new microscopy technology called decrowding expansion pathology (dExPath).Their findings, published in Science Translational Medicine, provide novel insights into brain cancer development, with potential implications for advancing the diagnosis and treatment of aggressive neurological diseases.

"In the past, we have relied on expensive, super-resolution microscopes that only very well-funded labs could afford, required specialized training to use, and are often impractical for high-throughput analyses of brain tissues at the molecular level," said Pablo Valdes, MD, PhD, a neurosurgery resident alumnus at the Brigham and lead author of the study. "This technology brings reliable, super-resolution imaging to the clinic, enabling scientists to study neurological diseases at a never-before-achieved nanoscale level on conventional clinical samples with conventional microscopes."

Researchers previously relied on costly, super-high-resolution microscopes to image nanoscale structures in cells and brain tissue, and, even with the most advanced technology, they often struggled to effectively capture these structures at the nanoscale level.

Ed Boyden, PhD, the Y. Eva Tan Professor in Neurotechnology at MIT and co-senior author on this study, began addressing this problem by labeling tissues, and then chemically modifying them to enable uniform physical expansion of tissues. However, this expansion technology was far from perfect. Relying on enzymes known as proteases to break up tissue, scientists found that this chemical treatment with enzymes destroyed proteins before they could analyze them, leaving behind only a skeleton of the original structure, retaining only the labels.

Working together, Boyden and E. Antonio Chiocca, MD, PhD, Neurosurgery Chair at Brigham and Women's Hospital and co-senior author on this study, mentored Valdes during his training as a neurosurgeon-scientist, to develop novel chemistries with dExPath to address the limitations of the original expansion technology.

Their new technology chemically modifies tissues by embedding them in a gel and 'softening' the tissues with a special chemical treatment that separates protein structures without destroying them and which allows tissues to expand. This provided exciting findings to the MIT and Brigham researchers, who routinely use commercially available antibodies to bind to and illuminate biomarkers in a sample. Antibodies, however, are large and many times cannot easily penetrate cell structures to reach their target. Now, by pulling proteins apart with dExPath, these same antibodies used for staining can penetrate spaces to bind proteins in tissue that could not be accessed before expansion, highlighting nanometer sized structures or even cell populations that were previously hidden. The human brain has several stop guards in place to protect itself from pathogens and environmental toxins. But these elements make studying brain activity challenging. It can be a bit like driving a car through mud and ditches. We cannot access certain cell structures in the brain because of barriers that stand in the way. That is just is one of the reasons that this new technology could be so practice changing. If we can take more detailed and accurate images of brain tissue, we can identify more biomarkers and be better equipped to diagnose and treat aggressive brain diseases."

E. Antonio Chiocca, MD, PhD, Chair of the Department of Neurosurgery, Brigham and Women's Hospital Related StoriesScientists reveal direct link between mitochondrial DNA mutations and cancer treatment responseSignificant link found between recent weight loss and increased cancer riskNHS health checks linked to reduced risk of heart, brain, kidney, and liver diseases

To validate the effectiveness of dExPath, Boyden and Chiocca's team applied the technology to healthy human brain tissue, high and low-grade brain cancer tissues, and brain tissues affected by neurodegenerative diseases including Alzheimer's and Parkinson's diseases. Investigators stained tissue for brain and disease specific biomarkers and captured images before and after expanding samples with dExPath.

The results revealed uniform and consistent expansion of the tissue without distortion, enabling accurate analysis of protein structures. Additionally, dExPath effectively eliminated fluorescent signals in brain tissue called lipofuscin, which makes imaging of subcellular structures in brain tissues very difficult, further enhancing image quality. Further, dExPath provided stronger fluorescent signals for improved labeling as well as simultaneous labeling of up to 16 biomarkers in the same tissue specimen. Notably, dExPath imaging revealed that tumors previously classified as "low-grade" contained more aggressive features and cell populations, suggesting the tumor could become far more dangerous than anticipated.

While promising, dExPath requires validation on larger sample sizes before it can contribute to the diagnosis of neurological conditions such as brain cancer. Valdes underscores that, although still in its early stages, his team aspires for this technology to eventually serve as a diagnostic tool, ultimately enhancing patient outcomes.

"We hope that with this technology, we can better understand at the nanoscale levels the intricate workings of brain tumors and their interactions with the nervous system without depending on exorbitantly expensive lab equipment," said Valdes who is now an assistant professor of neurosurgery and Jennie Sealy Distinguished Chair in Neuroscience at the University of Texas Medical Branch. "The accessibility of dExPath will bring enable super-resolution imaging to understand biological processing at the nanometer level in human tissue in neuro-oncology and in neurological disease such as Alzheimer's and Parkinson's, and one day, could even improve diagnostic strategies and patient outcomes." Source:

Brigham and Women's HospitalJournal reference:

Valdes, P. A., et al. (2024) Improved immunostaining of nanostructures and cells in human brain specimens through expansion-mediated protein decrowding. Science Translational Medicine. doi.org/10.1126/scitranslmed.abo0049.

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Technology

Samsung launches thin S25 Edge as Apple reportedly prepares the iPhone ‘Air’

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Samsung launches thin S25 Edge as Apple reportedly prepares the iPhone 'Air'

Samsung launched the Galaxy S25 Edge, a thinner version of its flagship smartphone.

Arjun Kharpal | CNBC

Samsung on Tuesday unveiled a thin version of its flagship smartphone in an unusually timed launch as it looks to maintain momentum in its mobile divison against an uncertain consumer backdrop and U.S. tariff policy.

The Samsung Galaxy S25 Edge is just 5.8 millimeters thin and weighs 163 grams, making it one of the thinnest smartphones on the market.

Samsung said the device starts at $1,099 and goes on sale on May 30.

The launch comes just under four months after Samsung staged its annual flagship phone launch for the S25 series. It is unusual for Samsung to launch a new high-end device this soon after the January event with the normal timeline generally being the middle of the year for the unveiling of its latest foldable phones.

The move highlights the South Korean tech giant’s desire to capitalize on the success of the S25 range as it faces rising competition from Chinese players and an uncertain macroeconomic environment.

Samsung reported last month that it saw a jump in revenue and profit in the first quarter of the year at its mobile division thanks to strong sales of its S25 series.

However, Daniel Araujo, vice president at Samsung’s mobile division, warned on an earnings call last month that smartphone demand is expected to decrease in the second quarter due to “seasonality trends” and forecasts could be “adjusted” further due to global tariff policy.

U.S. President Donald Trump’s “reciprocal” tariffs took effect in April though they were paused shortly after. The White House exempted certain tech products such as smartphones and chips, providing some reprieve for companies like Samsung and Apple. The U.S. and China meanwhile agreed on Monday to pause most of their tariffs on each party.

Araujo said that the S25 Edge could help “sustain flagship-centric sales,” underscoring why Samsung has decided to launch the phone now.

Apple reportedly working on thin iPhone

Thinner phones have become an obsession with smartphone makers who are hoping these devices will appeal to people who want the flagship experience without the size of a traditional device. Samsung’s S25 Edge has a 6.7-inch display, the same as the Galaxy S25+, but it is thinner and lighter.

The Samsung Galaxy S25 Edge on display during a briefing at the Samsung KX store in London, U.K.

Arjun Kharpal | CNBC

The phone also packs a dual camera system and Samsung’s latest AI features.

“For the second half of 2025 ‘thin is most definitely in’,” Ben Wood, chief analyst at CCS Insight, told CNBC.

“Samsung is first out the gate with a slim design, but Apple is expected to follow in September, and the burgeoning Chinese brands such as Honor and Xiaomi probably won’t be far behind.”

Samsung may be trying to get ahead of its closest rival Apple, which is gearing up to launch a thin version of its flagship device dubbed the iPhone 17 Air, according to a Bloomberg report this year.

“It is hard to believe this is not a pre-emptive strike following the widespread speculation that Apple will have a thin iPhone in its next line-up,” Wood added.

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Sports

Journalism opens as 8-5 favorite for Preakness

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Journalism opens as 8-5 favorite for Preakness

HALETHORPE, Md. — Journalism is the morning line favorite for the 150th running of the Preakness Stakes.

The Kentucky Derby runner-up to Sovereignty opened at odds of 8-5 on Monday night when post positions were drawn for the middle leg of horse racing’s Triple Crown. Journalism is again set to be ridden by jockey Umberto Rispoli and leave the starting gate from the No. 2 post.

Post time is set for 7:01 p.m. EDT on Saturday.

No. 7 Sandman is the 4-1 second choice in the field of nine, which does not include Sovereignty after his owners and trainer decided not to run the Derby winner two weeks after his triumph at Churchill Downs. The Preakness goes on without a true shot at a Triple Crown winner for a fifth time in seven years since Justify swept all three races in 2018.

Bob Baffert, who trained Justify and 2015 Triple Crown champion American Pharoah, is entering Goal Oriented looking for a record-extending ninth victory in the race. Fellow Hall of Famer D. Wayne Lukas can tie Baffert if he wins the Preakness back-to-back, this time with American Promise a year after Seize the Grey ended Mystik Dan’s Triple Crown bid.

There are three Derby horses running in the $2 million Preakness at Pimlico Race Course in Baltimore: Journalism, American Promise and Sandman, the latter of whom will be ridden by John Velazquez for trainer Mark Casse. American Promise drew the No. 3 post and opened at odds of 15-1.

New to the Triple Crown trail, along with No. 1 Goal Oriented (6-1), are No. 4 Heart of Honor (12-1), No. 5 Pay Billy (20-1), No. 6 River Thames (9-2), No. 8 Clever Again (5-1) and No. 9 Gosger (20-1).

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Environment

Hackers turn Nissan LEAF into full-scale RC car, record drivers’ conversations [video]

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Hackers turn Nissan LEAF into full-scale RC car, record drivers' conversations [video]

A team of white hat European hackers using their brains, keyboards, and a couple of bits and baubles from eBay managed to take control of a 2020 Nissan LEAF and violate just about every privacy and safety regulation in the process.

The best part: they recorded the whole thing.

Budapest-based cybersecurity experts PCAutomotive were able to exploit a number of vulnerabilities in a 2020 Nissan LEAF that enabled the white hat team to geolocate and track the car, record the texts and conversations happening inside the car, playing media back through the car’s speakers, and even (this is the genuinely terrifying dangerous part) turning the steering wheel while the car was moving. (!?)

Maybe the scariest part of this hack, however, is how seemingly easy it was to pull off by starting with a “test bench simulator” built using parts from eBay and exploiting a vulnerability in the LEAF’s DNS C2 channel and Bluetooth protocol.

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The PCAutomotive team gave a hugely detailed 118-page presentation of their exploit at black hat Asia 2025, which we’ve included at the bottom of this post, in case the original link goes dead. If you’re into that sort of thing, the fun stuff starts around page 27. And, if you’re not, just know that all the vulnerabilities were disclosed to Nissan and its suppliers between 02AUG2023 and 12SEP2024 (p. 116/118), and the “attack” itself can be seen in the video below that. Enjoy!

Summary of vulnerabilities

  • CVE-2025-32056 – Anti-Theft bypass
  • CVE-2025-32057 – app_redbend: MiTM attack
  • CVE-2025-32058 – v850: Stack Overflow in CBR processing
  • CVE-2025-32059 – Stack buffer overflow leading to RCE [0]
  • CVE-2025-32060 – Absence of a kernel module signature verification
  • CVE-2025-32061 – Stack buffer overflow leading to RCE [1]
  • CVE-2025-32062 – Stack buffer overflow leading to RCE [2]
  • PCA_NISSAN_009 – Improper traffic filtration between CAN buses
  • CVE-2025-32063 – Persistence for Wi-Fi network
  • PCA_NISSAN_012 – Persistence through CVE-2017-7932 in HAB of i.MX 6

Remote exploitation of Nissan LEAF



Electrek’s Take


Nissan-Bolt-EV-LEAF
2024 Nissan LEAF; via Nissan.

This is one of those posts that, on the bright side, does a great job explaining how a remote operator can “log in” to a vehicle and steer it out of trouble when a weird or edge-case-type situation pops up.

Unfortunately, this is also one of those posts that some of the more clueless anti-EV hysterics will point to and say, “See!? EVs can get hacked!” But the reality is that virtually any car with electric power steering (EPS), electronic throttle controls, brake-by-wire, etc. can be hacked in a similar way. But, while steering a target’s car into an oncoming semi might be a great way to pull off a covert CIA assassination, the more worrying issue here is the breach of privacy and recording – unless you want to spend some time in El Salvadoran prison, I guess.

Remember, kids: Big Brother is watching you.

SOURCE | IMAGES: black hat.


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