Andy Moore

@aaandmoore.bsky.social

User of microscopes. Interested in organelles and how they move. Husband, dad, intermediate filament apologist, and postdoc in the JLS lab at HHMI Janelia Research Campus.

Accidentally made this abomination in ImageJ this evening. I ran a max projection instead of a sum projection on a bunch of heat maps. It's not useful... but I can't stop staring at it.

Image processing monstrosity wordlessly beckoning you into its yawning maw

This mesmerizing timelapse captures the nonstop motion inside an animal cell. Red/orange streaks are the growing ends of microtubules, tiny “highways” that can rapidly assemble and disassemble to move proteins & other molecules within the cell. 📸: Andy Moore, HHMI’s Janelia Research Campus

Created using fluorescence microscopy, this stunning image of an animal cell showcases thin, web-like fibers called vimentin — a protein that provides mechanical stability to cells and tissues, despite a single vimentin being ~7000x smaller than the width of a human hair. 📸 @aaandmoore.bsky.social

Image of an animal cell showcases web-like fibers called vimentin — a protein that provides mechanical stability to cells and tissues

🚨The Neurocyto lab is branching out in our latest preprint! We used tubulin microinjection to directly visualize microtubule turnover in developing hippocampal neurons, demonstrating the presence of in-lattice repair and a selective stabilization in the nascent axon. Check below, or read on 🧵 1/9

Direct labeling of microtubule turnover reveals in-lattice repair and stabilization patterns in developing neurons

The microtubule cytoskeleton is the backbone of neuronal morphogenesis, driving the development of the dendrites and axon, and supporting trafficking to distant compartments. How neuronal microtubules...

biorxiv.org

I like this movie, but a friend of mine likes to complain about the obvious stitching artifacts. I'll try harder next time, Michael. Vimentin (orange) and ER (blue) in an overnight acquisition.

Still posting cytoskeleton videos, it seems. Actin this time. Sample: Lifeact-eGFP in HeLa cells. Modality: Airyscan confocal Timestamp is mm:ss and the scale bar is 5 µm.

iPS cell-derived cardiac myocytes (heart muscle cells) typically beat about once per second, so I usually speed up the movies I post; otherwise, scrollers might miss the action. But every now and then, a cell looks like this in real time. #CellBiology