ROCKVILLE, MD – Viruses, like those that cause COVID-19 or HIV, are formidable opponents once they invade our bodies.
was using advanced imaging tools to study how antibodies evolve after multiple HIV vaccine doses. A technique the lab invented, known as Electron Microscopy-Based Polyclonal Epitope Mapping, or EMPEM, ...
ROCKVILLE, MD – Viruses, like those that cause COVID-19 or HIV, are formidable opponents once they invade our bodies. Antiviral treatments strive to block a virus or halt its replication. However, ...
Human immunodeficiency virus, or HIV — the ... how antibodies evolve after multiple HIV vaccine doses. A technique the lab invented, known as Electron Microscopy-Based Polyclonal Epitope Mapping ...
tells us that electron micrographs (pictures taken with a very powerful microscope) reveal voids (holes) in the condom that are up to 50 times bigger than the HIV particle. The analogy would be ...
Transmission electron micrograph of HIV-1 virus particles (teal) exiting an infected immune cell after replicating inside the cell. Inset: Interior view a HIV-1 virus showing the capsid (yellow) that ...
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After the treatment, organoids were harvested for immunostaining with 4% paraformaldehyde (Electron Microscopy Sciences ... Immunofluorescence images were obtained using C1 confocal (Nikon) or ...
New research at MSU uses light to reveal viruses’ unique vibrations, opening new doors for biological imaging and antiviral ...
Supercomputer simulations have revealed how changes in the shape of the HIV-1 capsid protein may help the virus squeeze its ...
Transmission electron microscopy generates an image of the internal structure of a thin sample. Scanning electron microscopy generates a topological image of a sample. PRC2-dependent H3K27 ...