Among the most famous demonstrations of genetic mutations driving infection outcome is severe combined immunodeficiency (SCID ...
Scientists at Mount Sinai have created an artificial intelligence system that can predict how likely rare genetic mutations are to actually cause disease. By combining machine learning with millions ...
There are hundreds of cell types in the human body, each with a specific role spelled out in their DNA. In theory, all it ...
Guardant co-CEO Helmy Eltoukhy says the shift to personalized treatment and earlier diagnosis is here at the WIRED Health ...
Harmony Biosciences Holdings, Inc. today announced strong preliminary, unaudited net product revenue for Q4 and full year ...
Morning Overview on MSN
New research links cancer therapy and synthetic biology in a major leap
Cancer therapy and synthetic biology are converging around a shared problem that has long frustrated oncologists and ...
How AI, robotics, and modular design are transforming single-cell and spatial biology into scalable, precision-driven engines of discovery.
ELF3 axis enables luminal progenitor transformation in BRCA1-deficient breast cancer by reducing genomic instability and promoting progenitor identity.
Although the year brought a steady stream of new treatments, tests, and cutting-edge science, experts worry about how ...
In a new study, terrestrial bacteria-infecting viruses were still able to infect their E. coli hosts in near-weightless ...
Interesting Engineering on MSN
AI meets DNA: US scientists design massive genetic circuit libraries faster than ever
New CLASSIC technique uses AI and massive DNA libraries to predict genetic circuit performance faster and more accurately.
This important study introduces a new biology-informed strategy for deep learning models aiming to predict mutational effects in antibody sequences. It provides solid evidence that separating ...
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