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Updated: Oct 10, 2026

Live Cell Imaging of Early Autophagy Events: Omegasomes and Beyond
Published on: July 27, 2013
Live visualization of dynamic autophagy processes in LC3 reporter mice using enhanced two-photon microscopy
Saeed Bohlooli Darian1, Jeongmin Oh2, Chan-Gi Pack1,2
1Department of Convergence Medicine, Brain Korea 21 Project, University of Ulsan College of Medicine, Seoul, Republic of Korea.
Abstract:
We developed a computationally enhanced intravital imaging framework for high-resolution analysis of macroautophagy/autophagy dynamics in vivo. By integrating two-photon microscopy with an optimized tissue stabilization method, motion artifacts were minimized, enabling real-time imaging of LC3-positive structures in the liver and skeletal muscle under physiological stress conditions, including starvation, ischemia, and ethanol exposure. Image quality was further improved using a trained denoising model and enhanced Super-Resolution Radial Fluctuations (eSRRF), enabling nanoscale visualization of autophagy-related compartments. To differentiate increased autophagosome formation from impaired degradation, autophagic flux was assessed via chloroquine-mediated lysosomal inhibition, enabling functional interpretation beyond static structural measurements. Together, this pipeline overcomes major technical limitations of intravital imaging and provides a robust framework for integrated structural and functional investigation of autophagy and related intracellular processes in vivo.

