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Scientists at Scripps Research have developed a novel method that uses artificial intelligence (AI) and advanced imaging techniques to more accurately and efficiently identify therapeutic antibodies ...
HIV globally, and that number continues to rise. While therapies exist to reduce the amount of HIV in a patient's body and, ...
Cryo-electron microscopy (cryo-EM) has emerged as a powerful tool in structural biology, allowing researchers to visualize biological macromolecules at near-atomic resolution. This technique is ...
Antibodies are a major component of adaptive immunity against invading pathogens. In this presentation, we will describe an analytical approach to characterize the antigen-specific antibody repertoire ...
Researchers explore how merging X-ray imaging and cryo-EM could enable real-time, high-resolution views of biology, advancing molecular films and drug design. By combining ideas and approaches ...
High-resolution cryo-electron microscopy makes it possible to study complex enzymatic processes in detail. With this method, a research team of the University of Potsdam and Humboldt-Universität ...
Every minute, all around us, battles are fought on a microscopic level. Bacteriophages (also known as phages) are viruses ...
A postdoctoral position is immediately available in the Zhu Lab in the Department of Physiology and Biophysics at Case Western Reserve University School of Medicine. Our lab focuses on understanding ...
Cryo-correlative light and electron microscopy (cryo-CLEM) is a powerful technique that combines fluorescence imaging for specific localization with electron microscopy for detailed structural ...
FIB, researchers can analyze reactive materials at cryogenic temperatures, preserving sample integrity and enabling accurate nanoscale observations.
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Cryo-electron microscopy (cryo-EM) has profoundly reshaped our understanding of biomolecular structures by allowing the direct imaging of macromolecules in near-native states. This technique, which ...