One of the most detailed 3D maps of how the human chromosomes are organized and folded within a cell's nucleus is published ...
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The first 3D mapping of the human genome
The genetic heritage is not a simple, static list inside the cell nucleus. It unfolds into a dynamic architecture whose ...
A new study shows, for the first time, how the human genome folds and moves in 3D over time to control when genes turn on and ...
Scientists map the true nature of the genome with its loops and folds in four dimensions across time and space.
We’ve come a long way from the Vacanti mouse. Back in the mid-90s, Charles Vacanti and other researchers experimented with cartilage regeneration and, with the help of a biodegradable mold and bovine ...
A new 3D human brain tissue platform developed by MIT researchers is the first to integrate all major brain cell types, including neurons, glial cells and the vasculature into a single culture. Grown ...
A new organelle has been discovered in human cells — and scientists call it a "hemifusome." Like the full-size organs in our bodies, the organelles within cells are specialized structures that carry ...
Advanced 3D cell models recreate the complexity of human tissues, enabling researchers to examine tumor progression, probe neurological disorders, and assess therapeutic candidates. By capturing the ...
A team of researchers has generated one of the most detailed 3D maps of human chromosomes, cataloging over 140,000 DNA looping interactions.
Advancing neurological disorder research requires model systems that more accurately reflect the human brain. 3D cell cultures, such as organoids and spheroids, have emerged as game-changers by better ...
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