Tag: researcher

  • Apple's latest iPhone security feature just made life more difficult for spyware makers

    Apple's latest iPhone security feature just made life more difficult for spyware makers

    Buried in an ocean of flashy novelties announced by Apple this week, the tech giant also revealed new security technology for its latest iPhone 17 and iPhone Air devices. This new security technology was made specifically to fight against surveillance vendors and the types of vulnerabilities they rely on the most, according to Apple.

    The feature is called Memory Integrity Enforcement (MIE) and is designed to help stop memory corruption bugs, which are some of the most common vulnerabilities exploited by spyware developers and makers of phone forensic devices used by law enforcement. 

    “Known mercenary spyware chains used against iOS share a common denominator with those targeting Windows and Android: they exploit memory safety vulnerabilities, which are interchangeable, powerful, and exist throughout the industry,” Apple wrote in its blog post. 

    Cybersecurity experts, including people who make hacking tools and exploits for iPhones, tell TechCrunch that this new security technology could make Apple’s newest iPhones some of the most secure devices on the planet. The result is likely to make life harder for the companies that make spyware and zero-day exploits for planting spyware on a target’s phone or extracting data from them. 

    “The iPhone 17 is probably now the most secure computing environment on the planet that is still connected to the internet,” a security researcher, who has worked on developing and selling zero-days and other cyber capabilities to the U.S. government for years, told TechCrunch.

    The researcher told TechCrunch that MIE will raise the cost and time to develop their exploits for the latest iPhones, and consequently up their prices for paying customers.

    “This is a huge deal,” said the researcher, who asked to remain anonymous to discuss sensitive matters. “It’s not hack proof. But it’s the closest thing we have to hack proof. None of this will ever be 100% perfect. But it raises the stakes the most.”

    Contact Us

    Do you develop spyware or zero-day exploits and are studying studying the potential effects of Apple’s MIE? We would love to learn how this affects you. From a non-work device, you can contact Lorenzo Franceschi-Bicchierai securely on Signal at +1 917 257 1382, or via Telegram and Keybase @lorenzofb, or email. You also can contact TechCrunch via SecureDrop.

    Jiska Classen, a professor and researcher who studies iOS at the Hasso Plattner Institute in Germany, agreed that MIE will raise the cost of developing surveillance technologies.

    Classen said this is because some of the bugs and exploits that spyware companies and researchers have that currently work will stop working once the new iPhones are out and MIE is implemented. 

    “I could also imagine that for a certain time window some mercenary spyware vendors don’t have working exploits for the iPhone 17,” said Classen. 

    “This will make their life arguably infinitely more difficult,” said Patrick Wardle, a researcher who runs a startup that makes cybersecurity products specifically for Apple devices. “Of course that is said with the caveat that it’s always a cat-and-mouse game.”

    Wardle said people who are worried about getting hacked with spyware should upgrade to the new iPhones. 

    The experts TechCrunch spoke to said MIE will reduce the efficacy of both remote hacks, such as those launched with spyware like NSO Group’s Pegasus and Paragon’s Graphite. It will also help to protect against physical device hacks, such as those performed with phone unlocking hardware like Cellebrite or Graykey. 

    Taking on the “majority of exploits”

    Most modern devices, including the majority of iPhones today, run software written in programming languages that are prone to memory-related bugs, often called memory overflow or corruption bugs. When triggered, a memory bug can cause the contents of memory from one app to spill into other areas of a user’s device where it shouldn’t go.

    Memory-related bugs can allow malicious hackers to access and control parts of a device’s memory that they shouldn’t be permitted to. The access can be used to plant malicious code that’s capable of gaining broader access to a person’s data stored in the phone’s memory, and exfiltrating it over the phone’s internet connection.

    MIE aims to defend against these kinds of broad memory attacks by vastly reducing the attack surface in which memory vulnerabilities can be exploited.

    According to Halvar Flake, an expert in offensive cybersecurity, memory corruptions “are the vast majority of exploits.” 

    MIE is built on a technology called Memory Tagging Extension (MTE), originally developed by chipmaker Arm. In its blog post, Apple said over the past five years it worked with Arm to expand and improve the memory safety features into a product called Enhanced Memory Tagging Extension (EMTE).  

    MIE is Apple’s implementation of this new security technology, which takes advantage of Apple having complete control of its technology stack, from software to hardware, unlike many of its phone-making competitors.

    Google offers MTE for some Android devices; the security-focused GrapheneOS, a custom version of Android, also offers MTE. 

    But other experts say Apple’s MIE goes a step further. Flake said the Pixel 8 and GrapheneOS are “almost comparable,” but the new iPhones will be “the most secure mainstream” devices.

    MIE works by allocating each piece of a newer iPhone’s memory with a secret tag, effectively its own unique password. This means only apps with that secret tag can access the physical memory in the future. If the secret doesn’t match, the security protections kick in and block the request, the app will crash, and the event is logged.

    That crash and log is particularly significant since it’s more likely for spyware and zero-days to trigger a crash, making it easier for Apple and security researchers investigating attacks to spot them. 

    “A wrong step would lead to a crash and a potentially recoverable artifact for a defender,” said Matthias Frielingsdorf, the vice president of research at iVerify, a company that makes an app to protect smartphones from spyware. “Attackers already had an incentive to avoid memory corruption.”

    Apple did not respond to a request for comment.

    MIE will be on by default system wide, which means it will protect apps like Safari and iMessage, which can be entry points for spyware. But third-party apps will have to implement MIE on their own to improve protections for their users. Apple released a version of EMTE for developers to do that. 

    In other words, MIE is a huge step in the right direction, but it will take some time to see its impact, depending on how many developers implement it and how many people buy new iPhones. 

    Some attackers will inevitably still find a way.

    “MIE is a good thing and it might even be a big deal. It could significantly raise the cost for attackers and even force some of them out of the market,” said Frielingsdorf. “But there are going to be plenty of bad actors that can still find success and sustain their business.”

    “As long as there are buyers there will be sellers,” said Frielingsdorf.

  • Unlocking Power: 5 Benefits of Thymosin Beta 4 & 9-Me-BC – Health Cages

    Unlocking Power: 5 Benefits of Thymosin Beta 4 & 9-Me-BC – Health Cages

    Unveiling Benefits of Thymosin Beta 4 & 9-Me-BC in Research

    As a researcher, identifying high-quality biochemical products is crucial. Among these, Thymosin Beta 4 and 9-Me-BC have emerged prominently, thanks to their compelling properties. Modern Aminos provides both peptides, meticulously crafted for laboratories and scientific professionals. Let’s delve deeper into how these compounds can significantly enhance your research endeavors, offering unmatched reliability and purity for controlled experiments.

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    Understanding Thymosin Beta 4

    Thymosin Beta 4 is a naturally occurring peptide that plays an essential role in tissue repair and regeneration. Found abundantly in various tissues, this compound supports multiple cellular activities, making it highly valuable in laboratory environments studying recovery and immune modulation PubChem entry for Thymosin Beta‑4.

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    Key Benefits of Thymosin Beta 4

    1. Accelerated Wound Healing

    In various in vitro models, Thymosin Beta 4 has shown the ability to expedite tissue regeneration. It supports cell migration, proliferation, and differentiation — all necessary processes in wound healing studies.

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    2. Anti-inflammatory Effects

    Scientific studies suggest this peptide downregulates inflammatory cytokines, offering a potent anti-inflammatory mechanism. This makes it ideal for research into inflammatory and autoimmune conditions.

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    3. Cell Regeneration Enhancement

    By promoting actin sequestration and cell survival, Thymosin Beta 4 helps regenerate tissues at a cellular level. It is especially valuable in cardiovascular and ophthalmologic research fields.

    4. Angiogenesis Support

    Researchers studying vascular regeneration are particularly interested in this peptide due to its demonstrated ability to promote new blood vessel formation.

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    5. Potential for Scar Reduction

    Laboratory trials suggest Thymosin Beta 4 may influence extracellular matrix remodeling, contributing to studies on minimizing fibrotic tissue formation.

    The Scientific Significance of 9-Me-BC

    9 Me BC (9-Methyl-β-carboline) is a synthetic nootropic under intensive investigation for its neuroregenerative and cognitive enhancement effects. Its unique chemical profile allows it to stimulate various brain functions without overstimulation or toxicity PubChem entry for 9‑Methyl‑β‑carboline.

    Outstanding Benefits of 9-Me-BC

    1. Cognitive Enhancement

    Studies show 9-Me-BC improves working memory, focus, and learning speed in experimental animal models. It modulates pathways associated with long-term potentiation.

    2. Neuroprotective Potential

    This compound is being tested for its potential to shield neurons from oxidative stress and mitochondrial dysfunction, making it relevant in research targeting Alzheimer’s and Parkinson’s disease.

    3. Enhanced Dopamine Regulation

    One of the unique attributes of 9-Me-BC is its effect on dopamine metabolism. It appears to support dopamine synthesis while reducing reuptake, offering promising implications in mood and motor disorder studies.

    4. Mitochondrial Function Support

    Preclinical studies suggest 9-Me-BC enhances mitochondrial biogenesis and energy metabolism, a key factor in preventing neural degeneration.

    5. Long-Term Neuroplasticity

    Due to its influence on neurogenesis and synaptic density, 9-Me-BC is of interest for long-term cognitive enhancement studies.

    Why Choose Modern Aminos?

    When sourcing biochemical research materials, the supplier’s reputation is crucial. Here’s why Modern Aminos is the preferred choice:

    • Exceptional Purity: High-grade compounds meet and often exceed 99% purity, verified through third-party lab testing.
    • Reliable Supply Chain: Products are consistently available and shipped securely with full documentation.
    • Regulatory Compliance: Clearly labeled “Not for Human Consumption” to comply with industry standards and uphold ethical use.
    • Dedicated Support: Scientific teams receive technical assistance for optimal application of compounds.

    Strategic Tips to Elevate Your Research

    To maximize the effectiveness of Thymosin Beta 4 and 9-Me-BC in your research, consider these comprehensive strategies to elevate outcomes and uphold scientific integrity:

    • Use digital tools for data tracking to identify trends, anomalies, and correlations across multiple experiments and timeframes.
    • Employ control groups and replicates to strengthen data reliability, eliminate bias, and ensure reproducibility.
    • Stay current with peer-reviewed publications to align your work with the latest experimental models and methodologies.
    • Calibrate instruments regularly to ensure precision and consistency in data collection and reduce experimental error.
    • Incorporate statistical modeling to improve data interpretation, allowing more insightful analysis of peptide behavior under varying conditions.
    • Engage in collaborative studies to enhance peer validation, increase access to specialized equipment, and diversify study perspectives.
    • Develop clear standard operating procedures (SOPs) for peptide handling and application to minimize variability across researchers and facilities.
    • Document environmental variables—temperature, humidity, and light exposure—that may affect peptide stability or experimental output.

    Additional Use Cases in Experimental Research

    Modern Aminos peptides are being incorporated into a growing number of experimental models and cross-disciplinary investigations:

    • Tissue Engineering: Assessing structural recovery, angiogenesis, and cellular migration, particularly in scaffolds and 3D-printed biological matrices.
    • Neuroscience: Studying synaptic plasticity, neurodegeneration, and potential repair mechanisms in response to oxidative and excitotoxic stress.
    • Immunology: Analyzing cytokine activity, macrophage modulation, and immune cell migration, with emphasis on chronic inflammation models.
    • Aging Research: Exploring compounds that could influence longevity, telomere activity, and resistance to cellular senescence.
    • Dermatology: Testing peptides for skin regeneration, anti-aging formulations, and improving barrier functions in damaged dermal layers.
    • Ophthalmology: Investigating Thymosin Beta 4 for corneal repair, tear production, and optic nerve regeneration in degenerative eye conditions.
    • Pharmacokinetics: Evaluating compound absorption, distribution, metabolism, and excretion profiles in early-stage peptide delivery systems.

    Best Practices for Handling Peptides

    To maintain consistency, potency, and experimental integrity when working with peptides like Thymosin Beta 4 and 9-Me-BC, researchers must adhere to strict handling protocols:

    • Storage Conditions: Store all peptides in ultra-low temperature freezers at -20°C or lower to maintain molecular stability. For long-term storage, -80°C is preferable to prevent degradation.
    • Avoid Freeze-Thaw Cycles: Repeated freeze-thaw cycles degrade peptide integrity. Divide peptides into small aliquots upon arrival to minimize repeated thawing.
    • Sterile Reconstitution: Always reconstitute peptides using sterile, filtered water or a compatible buffer. The choice of solvent should match the peptide’s chemical properties and intended experimental use.
    • Protect from Light: Use amber vials or wrap clear vials in aluminum foil to shield peptides from UV and ambient light, which can cause structural breakdown.
    • Labeling and Documentation: Clearly label each vial with the peptide name, concentration, date of reconstitution, and storage conditions to avoid confusion and experimental error.
    • Handling Environment: Work in a clean, low-humidity lab environment or laminar flow hood to prevent contamination and moisture exposure.
    • Monitoring Stability: Track the appearance, clarity, and pH of peptide solutions regularly. Discard solutions that show precipitation, cloudiness, or significant pH drift.
    • Transport Precautions: When shipping or transporting peptides, use dry ice and insulated containers to maintain consistent low temperatures during transit.

    Adhering to these best practices will ensure that the peptides retain their functional efficacy and deliver reliable outcomes across multiple research applications.

    Emerging Research Trends

    Scientists worldwide are exploring innovative applications:

    • Thymosin Beta 4 in corneal injury models and cardiovascular restoration protocols.
    • 9-Me-BC in early-stage intervention for neurodegenerative disorders.
    • Combination protocols examining synergistic effects of peptides and nootropics.
    • Exploration of peptide delivery systems including nanoparticles and hydrogels.

    Final Thoughts

    Incorporating Thymosin Beta 4 and 9-Me-BC into your laboratory workflows can accelerate discovery, deepen scientific insight, and expand experimental potential. Modern Aminos guarantees research-grade quality, ensuring every batch supports your scientific rigor.For broader protocol guidance and peptide‑handling tips, check out HealthCages.

    By carefully leveraging the scientifically proven capabilities of Thymosin Beta 4 and 9-Me-BC, you not only elevate the credibility of your research but also pave the way for pioneering breakthroughs. Trust Modern Aminos to deliver the consistency, transparency, and excellence your projects demand.

  • Truth Social AI Search Harnesses Perplexity, Platform Imposes Source Limits

    Truth Social Gets a Fresh AI Search Boost with Perplexity

    In a move that feels like a space‑jammed update, the AI start‑up Perplexity has teamed up with President Donald Trump’s own social media platform to roll out a new search engine called Truth Search AI.

    Where It’s Live Now

    • Currently available on the web version of Truth Social.
    • Public beta on iOS and Android apps is slated for the next few months.

    What’s the Buzz?

    Trump Media bragged that the Perplexity tech will deliver “direct, contextually accurate answers with transparent citations.” The idea is simple: give users a blast of info that’s both sound and readable, while keeping the platform in charge of what goes into the answers.

    Behind the Scenes

    • Truth Social is mixing in Perplexity’s Sonar API—the engine that scours the web for up‑to‑date, verified facts.
    • Even if a website blocks Perplexity’s crawlers, the API promises to pull the needed data.
    • Users can light‑up the format of the results, thanks to the API’s structured output.

    Perplexity’s Spin on it

    Jesse Dwyer, a spokesperson for Perplexity, told TechCrunch that the “Sonar API will be as accurate as whatever sources Truth Social lets it use.” He added, “We have no visibility or control over that. It’s just like giving anyone the same API to search their own data—or big academic projects.”

    The Big Questions

    • Will Truth Search AI be able to scour the entire web or will it be shackled to a select few sources?
    • Is there a plan to bias answers toward the president and administration while painting Democrats in an unfavorable light?

    TechCrunch has hit up Trump Media for more details. Stay tuned for the answers—because the next reality check might just arrive in a headline.

    Tech and VC heavyweights join the Disrupt 2025 agenda

    Netflix, ElevenLabs, Wayve, Sequoia Capital, Elad Gil — just a few of the heavy hitters joining the Disrupt 2025 agenda. They’re here to deliver the insights that fuel startup growth and sharpen your edge. Don’t miss the 20th anniversary of TechCrunch Disrupt, and a chance to learn from the top voices in tech — grab your ticket now and save up to $600+ before prices rise.

    Tech and VC heavyweights join the Disrupt 2025 agenda

    Netflix, ElevenLabs, Wayve, Sequoia Capital — just a few of the heavy hitters joining the Disrupt 2025 agenda. They’re here to deliver the insights that fuel startup growth and sharpen your edge. Don’t miss the 20th anniversary of TechCrunch Disrupt, and a chance to learn from the top voices in tech — grab your ticket now and save up to $675 before prices rise.

    Truth Search Steals the Spotlight in a Whirlwind of AI Wars

    Picture this: a handful of journalists freelancing through a New York newsroom, tracking how a search bot decides to cite its sources. Axios puts the bot to the test with a slew of hard‑knock questions—“What happened on January 6, 2021?” and “Why was Donald Trump impeached?” The bot’s answers? FoxNews.com keeps popping up as the main, or even lone, source. | FoxBusiness.com, Washington Times, and Epoch Times also make cameo appearances, according to Axios.

    Meanwhile, Perplexity’s public search engine rolls out a broader buffet: Wikipedia, Reddit, YouTube, NPR, and Politico. A truly balanced spread for anyone looking to cross‑verify facts.

    Truth Social’s Bold Move

    Truth Social’s CEO, Devin Nunes—former California congressman and Trump Media’s current mastermind—banks on “ongoing user feedback” to turbo‑charge the search function. In a statement, he promised:

    • New features and wide‑ranging enhancements coming soon.
    • A user‑driven roadmap that keeps the platform fresh.

    Perplexity’s Transparency Claim

    Dmitry Shevelenko, chief business officer at Perplexity, threw another spoiler into the mix: “Our AI delivers answers with transparent citations so anyone can dig deeper.” Guess that’s where the credibility comes from.

    Government’s Pay‑Check on Bias

    The late July executive order from Trump—an AI Action Plan—targets “biased AI” (yes, that pesky model that’s anything but neutral). The order rips through words like “race,” “sex,” and the whole “unconscious bias, systemic racism” deck out in the DEI bucket. It alleges that these themes can distort the quality and accuracy of output—the landmine we’re all trying to avoid.

    Authors of the AI Battlefield

    Truth Search AI was launched in the same week when heavyweights—OpenAI, Anthropic, and Google—got a green light to sell services to federal agencies. OpenAI, fresh off a deal, offers ChatGPT Enterprise for a stingy $1 a year to the U.S. government’s central purchasing arm.

    In short: the battle over AI sources, transparency, and bias is heating up. Will Truth Search, Perplexity, or the always‑cuddles‑frester OpenAI win the credibility race? Time—and user feedback—will tell.