Glioblastoma (GBM) is an aggressive type of brain cancer that is known to be very difficult to treat. One reason why this ...
Cancer tumorigenesis is fundamentally driven by the profound dysregulation of gene regulatory networks (GRNs) and complex epigenetic alterations. With the ...
Scientists have produced the first comprehensive map of olfactory receptors in the mouse nose, overturning the belief that they were randomly arranged. Using advanced single-cell sequencing and ...
Spatial transcriptomics is transforming how scientists see biology—literally—by mapping gene activity in its original location inside tissues. From decoding tumor architecture to charting entire ...
VIB-VUB researchers have developed a patient-relevant lung adenocarcinoma model combined with SEPARATE-Seq technology to ...
Temporomandibular joint disorders (TMDs) affect a large portion of the global population and are a common source of chronic ...
Enables Whole-Transcriptome In Situ Spatial Biology with Single-Cell Sensitivity at Scale. Debuts at AACR Annual Meeting 2026 ...
Steatotic liver disease, formerly known as fatty liver disease, is common, and it can lead to cirrhosis, liver cancer and the need for a liver transplant. The challenge is that different causes of ...
As the “Method of the Year 2024”, spatial proteomics (SP) enables in situ characterization of protein localization, abundance, and interactions ...
Spatial biology is a rapidly advancing discipline that examines biological molecules (such as DNA, RNA, and proteins) within their native locations in tissues. This approach offers critical insight ...
Prostate cancer affects one in five Australian men, making it the most common cancer in the country. Now, researchers at the Garvan Institute of Medical Research have produced the world's most ...
The global initiative aims to profile up to 100,000 patient specimens to scale M-Optimus, the world model of biology, representing a ~20x increase in scale over existing data available in the world ...
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