In this GEN Learning Lab, our expert panelists Linda Orzolek, MS, MB, Xuhuai Ji, MD, PhD, and Christina Chang, PhD, will discuss the current landscape of imaging- and next-generation sequencing-based ...
Breast cancer remains one of the most prevalent and life-threatening forms of cancer, impacting millions worldwide. This malignancy's heterogeneity and complexity have long posed significant ...
Proteomics technologies are expanding rapidly due to advances in mass spectrometry, AI-driven analysis, and single-cell approaches. Growing investment and new applications in drug discovery and ...
Single-cell omics is a transformative area within life sciences, enabling researchers to untangle cellular heterogeneity, uncover developmental lineages, ...
AGBT is also, increasingly, a showcase for instruments for spatial biology, a fast-growing field that involves pinpointing the location of RNA and protein molecules en masse. Tarbox calls the meeting ...
Using single-cell sequencing, researchers found distinct immune profiles in different CNS tumors, highlighting its potential as a prognostic tool.
Proteoforms, the diverse molecular variants of proteins, are key to understanding cellular functions, disease mechanisms, and ...
As climate pressure mounts, new platforms tackle delivery, regulation, trait stacking, and data bottlenecks limiting agricultural genome editing.
Greetings from Day 2 of the CHDI HD Therapeutics Conference! HDBuzz continues to provide summaries of the exciting talks from HD scientists gathered in Palm Springs from around the world. This day’s ...
The origin of many diseases begins at the cellular level and involves multiple molecular interactions. However, previous methods have struggled to accurately observe changes in individual cells.
A team led by Professor Inkyung Jung from the Department of Biological Sciences at KAIST, working with Professor Yarui Diao’s ...
By simulating the life cycle of a minimal bacterial cell—from DNA replication to protein translation to metabolism and cell ...