Morning Overview on MSN
New spatial transcriptomics maps gene activity across whole bodies
A wave of spatial transcriptomics studies has produced gene-expression atlases that span entire organs and whole organisms, ...
Tumors contain many different types of cells organized in complex spatial patterns that can influence how the disease progresses. Because of this, it is hard to predict how a tumor will develop and ...
Scientists mapped the maternal–fetal interface revealing new cell types, genetic links, and mechanisms behind pregnancy complications.
Salk researchers used spatial transcriptomics to map where different cell types reside in the mouse brain. Shown are excitatory neurons (left, blue), inhibitory neurons (middle, red), and non-neuronal ...
Adelaide University is leading the international Wheat Spatial Omics Consortium (WSOC) of more than 30 institutions in nine ...
Scientists at James Cook University have uncovered new insights into how the body contains latent tuberculosis, using a ...
Andreas Pfenning discusses the techniques being developed and used to study neuronal heterogeneity and the therapeutic potential of his work.
Understanding gene expression within the body has been a boon for 21st century biology and therapeutics, but most discoveries ...
The global initiative aims to profile up to 100,000 patient specimens to scale M-Optimus, the world model of biology, ...
The intestinal immune system plays a pivotal role in maintaining mucosal homeostasis, acting as the interface between environmental stimuli, host epithelial ...
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