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Archive for the ‘biotech/medical’ category: Page 287

Dec 21, 2023

MIT AI cracks code to defeat bacteria that kills 10,000 in US yearly

Posted by in categories: biotech/medical, robotics/AI

Scientists have now leveraged deep learning to discover a new class of compounds that can kill a drug-resistant bacterium.


Using deep learning models, scientists have identified a new class of antibiotic compounds that can work against resistant strains like MRSA.

Dec 21, 2023

New ultra-high speed processor to advance AI, driverless vehicles and more

Posted by in categories: biotech/medical, internet, robotics/AI

A team of international scientists have developed an ultra-high speed signal processor that can analyze 400,000 real time video images concurrently, according to a paper published in Communications Engineering.

The team, led by Swinburne University of Technology’s Professor David Moss, have developed a processor that operates more than 10,000 times faster than typical electronic processors that operate in Gigabyte/s, at a record 17 Terabits/s (trillion bits per second).

The technology has for the safety and efficiency of driverless cars, and could help find beyond our solar system.

Dec 21, 2023

This GPT-powered robot chemist designs reactions and makes drugs — on its own

Posted by in categories: biotech/medical, internet, robotics/AI

A system called Coscientist scours the Internet for instructions, then designs and executes experiments to synthesize molecules.

Dec 21, 2023

New treatment reverses Alzheimer’s disease signs, improves memory function in preclinical study

Posted by in categories: biotech/medical, chemistry, life extension, neuroscience

A “chaperone” molecule that slows the formation of certain proteins reversed disease signs, including memory impairment, in a mouse model of Alzheimer’s disease, according to a study from researchers at the Perelman School of Medicine at the University of Pennsylvania.

In the study, published in Aging Biology, researchers examined the effects of a compound called 4-phenylbutyrate (PBA), a fatty-acid molecule known to work as a “chemical chaperone” that inhibits . In mice that model Alzheimer’s disease, injections of PBA helped to restore signs of normal proteostasis (the protein regulation process) in the animals’ brains while also dramatically improving their performance on a standard memory test, even when administered late in the disease course.

“By generally improving neuronal and cellular health, we can mitigate or delay ,” said study senior author Nirinjini Naidoo, Ph.D., a research associate professor of Sleep Medicine. “In addition, reducing proteotoxicity— to the cell that is caused by an accumulation of impaired and misfolded proteins—can help improve some previously lost brain functions.”

Dec 21, 2023

Cancer-fighting CAR-T cells could be made inside body with viral injection

Posted by in category: biotech/medical

Impressive! It’ll take time but it shows promise. And it’s simpler than the more expensive alternative.


Scientists are devising ways to edit the genomes of immune cells without having to extract them from those being treated.

Dec 20, 2023

Answering a 40-Year-Old Question — Scientists Reveal Structures of Neurotransmitter Transporter

Posted by in categories: biotech/medical, chemistry, neuroscience

Neurons communicate through chemical signals known as neurotransmitters. Researchers at St. Jude Children’s Research Hospital, leveraging their expertise in structural biology, have successfully elucidated the structures of the vesicular monoamine transporter 2 (VMAT2), a key component of neuronal communication.

By visualizing VMAT2 in different states, scientists now better understand how it functions and how the different shapes the protein takes influence drug binding — critical information for drug development to treat hyperkinetic (excess movement) disorders such as Tourette syndrome. The work was recently published in the journal Nature.

Dec 20, 2023

Revolutionizing Antibiotic Discovery: The Power of Explainable Deep Learning

Posted by in categories: biotech/medical, robotics/AI

Researchers at MIT, the Broad Institute of MIT and Harvard, Integrated Biosciences, the Wyss Institute for Biologically Inspired Engineering, and the Leibniz Institute of Polymer Research have identified a new structural class of antibiotics.

Scientists have discovered one of the first new classes of antibiotics identified in the past 60 years, and the first discovered leveraging an AI-powered platform built around explainable deep learning.

Published in Nature today, December 20, the peer-reviewed paper, entitled “Discovery of a structural class of antibiotics with explainable deep learning,” was co-authored by a team of 21 researchers, led by Felix Wong, Ph.D., co-founder of Integrated Biosciences, and James J. Collins, Ph.D., Termeer Professor of Medical Engineering and Science at MIT and founding chair of the Integrated Biosciences Scientific Advisory Board.

Dec 20, 2023

Depression Linked to 20% Lower Taurine Levels in Hippocampus

Posted by in categories: biotech/medical, neuroscience

Precise observation using ultra-high magnetic field 7T MRI.

For the first time, a research team in Korea has discovered there is a significant relationship between depression and the taurine concentration in the hippocampus, an area of the brain responsible for memory and learning functions. This discovery provides the opportunity to publicize the role and importance of taurine in future prevention, diagnosis, and treatment of depression.

Advanced imaging techniques reveal key insights.

Dec 20, 2023

Revolutionizing Biology: USC’s Breakthrough in “CReATiNG” Synthetic Chromosomes

Posted by in categories: bioengineering, biotech/medical, genetics, space travel

USC Dornsife’s CReATiNG technique revolutionizes synthetic biology by facilitating the cost-effective construction of synthetic chromosomes, promising significant advancements in various scientific and medical fields.

A groundbreaking new technique invented by researchers at the USC Dornsife College of Letters, Arts and Science may revolutionize the field of synthetic biology. Known as CReATiNG (Cloning Reprogramming and Assembling Tiled Natural Genomic DNA), the method offers a simpler and more cost-effective approach to constructing synthetic chromosomes. It could significantly advance genetic engineering and enable a wide range of advances in medicine, biotechnology, biofuel production, and even space exploration.

Simplifying Chromosome Construction

Dec 20, 2023

Inhaled COVID vaccines stop infection in its tracks in monkey trials

Posted by in category: biotech/medical

Saw this early this morning…better than getting stuck AND might work better in humans…Let’s hope! I mean, monkeys are even closer to humans than rats.


New results hint at how to perfect ‘mucosal’ vaccines, which are delivered up the nose or down the throat.

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