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Updated: Aug 13, 2026

Membrane Transport Processes Analyzed by a Highly Parallel Nanopore Chip System at Single Protein Resolution
Published on: August 16, 2016
Fusion pore or porosome: structure and dynamics
1Department of Physiology, Wayne State University School of Medicine, 5239 Scott Hall, 540 E. Canfield Avenue, Detroit, Michigan 48201-4177, USA. bjena@med.wayne.edu
Live cell imaging reveals plasma membrane fusion pores, essential for secretory vesicle release. Atomic force microscopy visualizes these pores
Area of Science:
- Cell biology
- Biophysics
- Membrane dynamics
Background:
- Electrophysiology suggested fusion pores in secretory cells for vesicle release.
- Secretory vesicles were hypothesized to dock and fuse at plasma membrane sites.
Purpose of the Study:
- To demonstrate the presence of plasma membrane fusion pores.
- To reveal the morphology and dynamics of these pores in real time.
Main Methods:
- Atomic force microscopy (AFM) was employed.
- Studies were conducted on live exocrine and neuroendocrine cells.
Main Results:
- The presence of plasma membrane pores was demonstrated.
- Pore morphology and dynamics were visualized at near-nanometer resolution.
- Real-time observation of pore activity was achieved.
Conclusions:
- Direct visualization confirms the existence of fusion pores.
- AFM provides high-resolution, real-time insights into exocytosis mechanisms.
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