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Yale University


Study finds social networks are key to city violence

A Yale University study reveals that a person's social network is a key predictor of becoming a victim of gun homicide, even more so than race, age, gender, or poverty. The research found that individuals within the same social network are more likely to engage in similar risky behaviors.

SourceYale University·JournalAmerican Journal of Public Health·DateNov 14, 2013

Alzheimer's missing link found

Researchers at Yale University have identified a protein that serves as the missing link in the chain of events leading to Alzheimer's disease. Blocking this protein with an existing drug has been shown to restore memory and synaptic density in mouse models of the disease. The findings offer strong hope for developing new treatments.

SourceYale University·JournalNeuron·DateSep 4, 2013

For women with hysterectomies, estrogen may be a lifesaver after all

A Yale University study reveals that nearly 50,000 unnecessary deaths among women aged 50-69 with hysterectomies could have been avoided if they used estrogen-only therapy instead of combined hormone therapy. The decline in estrogen usage was linked to the 2002 WHI study's findings on women with a uterus, but not those without one.

SourceYale University·JournalAmerican Journal of Public Health·DateJul 18, 2013

Typhoid's lethal secret revealed

The study reveals that Salmonella typhi's powerful typhoid toxin is responsible for the devastating symptoms of typhoid fever. The discovery could lead to the development of effective vaccines and therapeutics targeting this toxin, offering hope for saving millions of lives.

SourceYale University·JournalNature·DateJul 10, 2013

Evolution's toolkit seen in developing hands and arms

A comparative genomics study led by Yale School of Medicine researchers has identified thousands of sequences controlling genes in the developing human limb. These regulatory sequences are active in humans but not in other primates or mice, suggesting they evolved since the human-monkey divergence.

SourceYale University·JournalCell·DateJul 3, 2013

Growing new arteries, bypassing blocked ones

Researchers discovered that VEGF-driven artery formation requires the binding of VEGFR2 and NRP1. Mice lacking a part of NRP1 molecule had poorly constructed arteries and failed to repair blood vessel blockages. This study opens new therapeutic opportunities for cardiovascular and anti-cancer therapies.

SourceYale University·JournalDevelopmental Cell·DateApr 29, 2013

Salt identified as autoimmune trigger

Researchers at Yale School of Medicine found that dietary salt can induce and worsen pathogenic immune system responses in mice, leading to a more severe form of multiple sclerosis. They discovered the key molecular pathway involved in this response and proposed regulatory networks that govern autoimmune disease.

SourceYale University·JournalNature·DateMar 6, 2013

Life's tiniest architects pinpointed by Yale researchers

A recent study published in Developmental Cell identifies piRNAs as the primary guides for epigenetic factors, controlling gene expression patterns in Drosophila. This breakthrough discovery has significant implications for understanding cancer development and may lead to new therapeutic opportunities.

SourceYale University·JournalDevelopmental Cell·DateFeb 21, 2013

Researchers find genes behind aggressive endometrial cancer

Researchers at Yale University have defined the genetic landscape of uterine serous carcinoma (USC), a chemo-resistant form of endometrial cancer. The study identifies three previously unknown genes that play a role in tumor growth and development, offering new avenues for personalized therapy.

SourceYale University·JournalProceedings of the National Academy of Sciences·DateJan 28, 2013