Triglia discusses her research at the intersection of genetics, epigenetics, single-cell genomics and computational biology.
A recent study marks the first reported instance of generative AI designing synthetic molecules that can successfully control gene expression in healthy mammalian cells. As a proof-of-concept, the ...
Thanks to increasingly efficient and affordable gene sequencing technologies, we can now chart our genetic blueprint in unprecedented detail. But what does each gene do? Of the roughly 20,000 genes ...
When cells divide and chromosomes are replicated for the daughter cells in a select type of cell called the germline, which is happening constantly in living things, sometimes things don’t go ...
What keeps our cells the right size? Scientists have long puzzled over this fundamental question, since cells that are too large or too small are linked to many diseases. Until now, the genetic basis ...
Using laboratory-evolved versions of CRISPR-associated transposases (CASTs) from bacteria, scientists at the Broad Institute and Columbia University were able to insert healthy genes into human cells ...
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Scientists identify a non-coding gene that directly controls how big cells grow
The study shows that a long non-coding RNA called CISTR-ACT acts as a master regulator of cell size, influencing how large or small cells grow across multiple tissues.
Uppsala University Hospital-led investigators report that gene-edited donor islet cells survived 12 weeks inside a man with long-standing type 1 diabetes without any immunosuppressive medication.
Human gene maps contain major blind spots because they were built largely from the DNA sequences of people with European ancestry, according to a study published in Nature Communications. Researchers ...
Researchers used evolutionary genetics and CRISPR gene editing tech to develop an innovative treatment for gout. The approach has yet to be tested in humans. When you purchase through links on our ...
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