Anna-Karin Gustavsson

@gustavssonlab.bsky.social

Develops single-molecule imaging tools to gain detailed information about cellular nanoscale structures, dynamics, and molecular mechanisms. https://gustavssonlab.rice.edu

Excited that our work on versatile and scalable micromirror inserts that enable high-contrast and high-resolution single-objective light sheet microscopy in conventional sample chambers is now published in Nano Letters! doi.org/10.1021/acs.... @pubs.acs.org #soTILT3D #soLLS #microscopy #nanoscale

Versatile and Scalable Reflective Micromirrors for Single-Objective Light Sheet Microscopy

We present a tunable microfabrication pipeline for creating robust, reflective inserts that adapt conventional commercial imaging chambers for single-objective light sheet (LS) illumination. This system reduces the complexity associated with dual-objective LS setups and specialized LS chambers while retaining the native functionality and biocompatibility of the original chambers. The fabricated insert features a metalized, 3D nanoprinted micromirror with an angled reflective surface, enabling alignment of a thin LS for sectioning and imaging throughout mammalian cells. Using this pipeline, we demonstrate that single-objective LS illumination achieves an over 4X improvement in the signal-to-background ratio compared with conventional widefield epi-illumination in both fixed and live cell samples. Furthermore, we show substantial resolution enhancement for single-molecule localization microscopy compared to epi-illumination for improved imaging at the nanoscale. The versatile and scalable design offers an easily implemented approach to bring the benefits of single-objective LS microscopy to a wide array of biological studies.

doi.org

Work lead by our collaborators in the Hilton Lab on how biomolecular condensation of human IDRs initiates endogenous transcription via intrachromosomal looping or high-density promoter localization is now published in @narjournal.bsky.social as a Breakthrough Article! doi.org/10.1093/nar/...

Biomolecular condensation of human IDRs initiates endogenous transcription via intrachromosomal looping or high-density promoter localization

Abstract. Protein intrinsically disordered regions (IDRs) are critical gene-regulatory components and aberrant fusions between IDRs and DNA-binding/chromat

doi.org

Nucleic Acids Research@narjournal.bsky.social · last yr.

New NAR #Breakthrough Article from the Hilton lab "Biomolecular condensation of human IDRs initiates endogenous transcription via intrachromosomal looping or high-density promoter localization" 👉 Read the full article here: https://doi.org/10.1093/nar/gkaf056