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DARPA-ABC program supports Wyss Institute-led collaboration toward deeper understanding of anesthesia and safe drugs enabling anesthesia without the need for extensive monitoring

A multidisciplinary team led by the Wyss Institute aims to create novel anesthesia-inducing drugs that can safely induce an anesthesia-like state without compromising vital functions. The project leverages expertise from Harvard's MCB, MIT, and Tufts University to develop safe battlefield-ready anesthetics.

Chinese Medical Journal review provides insights into respiratory syncytial virus

Researchers provide comprehensive review of RSV's virology, clinical impact, and prevention strategies, emphasizing the need for effective vaccines to mitigate this critical health need. The review highlights RSV's severe impact on infants, children, and older adults, as well as its potential effects on multiple organs and systems.

SourceChinese Medical Journals Publishing House Co., Ltd.·JournalChinese Medical Journal·TypeSystematic review·DateDec 20, 2024

SABCS: Improved survival for advanced breast cancer, using genomics to identify patients with high risk of recurrence, how race/ethnicity influence the risk of heart failure in early-stage breast cancer and more

Researchers at UCLA Health presented several breakthroughs at the San Antonio Breast Cancer Symposium, including improved survival rates for advanced breast cancer patients who receive trastuzumab deruxtecan (T-DXd), a novel ADC. Additionally, new genomic testing and circulating tumor DNA analysis may help identify high-risk patients a...

Genetic data from ‘biobanks’ may help improve prediction of effectiveness, side effects of common medications, study finds

A new framework developed by UCLA researchers suggests that genetic data from large libraries of sequenced human genomes can improve the predictive power of genetics in determining how well a patient will respond to commonly prescribed medications and the severity of any side effects. The study, which analyzed data from over 342,000 pe...

Genetic variation enhances cancer drug sensitivity

A recent study from Uppsala University found that genetic variation in cancer cells can enhance the effects of an already approved cancer drug, talazoparib, against liver cancer cells lacking a functional CYP2D6 enzyme. This suggests a potential for more individually tailored and effective cancer therapies.

SourceUppsala University·JournalEBioMedicine·TypeExperimental study·DateNov 14, 2024

‘Moonlighting’ enzymes can lead to new cancer therapies

Researchers have discovered that metabolic enzymes play a crucial role in maintaining the integrity of the human genome by orchestrating critical functions like cell division and DNA repair. This discovery could lead to new cancer therapies, particularly for triple-negative breast cancer, by exploiting its metabolic vulnerabilities.

SourceCenter for Genomic Regulation·JournalNature Communications·TypeExperimental study·DateNov 12, 2024

High-tech tracking technology streamlines drug discovery

Researchers have developed a large-scale drug screening technique that tracks drug targets inside cells, allowing for the identification of potential new drugs. The technology screens candidate drugs 100 times faster than standard manual techniques, enabling the discovery of previously unknown drugs.

SourceOsaka University·JournalNature Communications·DateOct 31, 2024

The roots of fear: Understanding the amygdala

Scientists at UC Davis have identified new clusters of cells with differing gene expression patterns in the human and non-human primate amygdala. These findings suggest that alterations in specific cell types may contribute to disorders such as anxiety, and could lead to more targeted treatments.

SourceUniversity of California - Davis·JournalAmerican Journal of Psychiatry·TypeExperimental study·DateOct 30, 2024

How blood cancer cells rewire to evade drug treatment

Researchers found that blood cancer cells rewired their gene regulatory networks to evade drug treatment in Acute Myeloid Leukemia (AML), disrupting normal differentiation and growth. The study identified key findings, including changes in open chromatin regions and the loss of binding of RUNX1 and AP-1 transcription factors.

SourceImpact Journals LLC·JournalOncotarget·TypeCommentary/editorial·DateOct 23, 2024

Tiny tumor model recreates cancer metastasis

Researchers created a 3D-printed model to mimic the conditions that spur cancer cells' spread, allowing them to visualize this process in real-time. The model revealed a mechanism where low oxygen levels promote metastasis through lowering pH levels.

SourceNew York University·JournalLife Science Alliance·TypeMeta-analysis·DateOct 23, 2024