Spatial proteomics is the study of the spatial distribution of the proteins within cells and tissues. The subcellular localization of proteins is intrinsic to cellular function, making spatial ...
Researchers at the John Innes Center and the Earlham Institute are pioneering powerful single-cell visualization techniques ...
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Shining a spotlight on polyploid cells: New tool uncovers spatial patterns of DNA content across tissues
A collaborative effort by the Formosa-Jordan lab from the Max Planck Institute for Plant Breeding Research in Cologne, Germany, the Fox lab from Duke University, U.S., and the Roeder lab from Cornell ...
Single-cell RNA transcriptomics allows researchers to broadly profile the gene expression of individual cells in a particular tissue. This technique has allowed researchers to identify new subsets of ...
Biological tissues are made up of different cell types arranged in specific patterns, which are essential to their proper ...
Single-cell RNA sequencing has transformed biology by showing which genes are active in individual cells. However, this approach requires cells to be removed from their natural environment, erasing ...
Researchers at Helmholtz Munich and the Technical University of Munich (TUM) have developed Nicheformer, the first large-scale foundation model that integrates single-cell analysis with spatial ...
Launching a company in today’s competitive (and litigious) spatial biology market may seem risky. But the new company, Moleculent, located in Stockholm, Sweden, has a different focus than the spatial ...
Tumors are notoriously difficult to study in their natural habitat - body tissues - but a new synthetic tissue environment may give cancer researchers the next-best look at tumor growth and behavior.
Spatial maps of various tissues and organs in aging mice have revealed new insights into the aging process. Aging is a process common to many animals; however, the complexity of aging means that there ...
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