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Singleā€particle fluorescence tracking combined with TrackMate assay reveals highly heterogeneous and discontinuous lysosomal transport in freely orientated axons

Authors :
Yongyang Liu
Yaxin Lu
Zhiyong Tang
Yuheng Cao
Dehua Huang
Feng Wu
Yejun Zhang
Chunyan Li
Guangcun Chen
Qiangbin Wang
Source :
Biotechnology Journal. 17:2200006
Publication Year :
2022
Publisher :
Wiley, 2022.

Abstract

Axonal transport plays a significant role in the establishment of neuronal polarity, axon growth, and synapse formation during neuronal development. The axon of a naturally growing neuron is a highly complex and multifurcated structure with a large number of bends and branches. Nowadays, the study of dynamic axonal transport in morphologically complex neurons is greatly limited by the technological barrier. Here, a sparse gene transfection strategy was developed to locate fluorescent mCherry in the lysosome of primary neurons, thus enabling us to track the lysosome-based axonal transport with a single-particle resolution. Thereby, several axonal transport models were observed, including forward or backward transport model, stop-and-go model, repeated back-and-forth transport model, and cross-branch transport model. Then, the accurate single-particle velocity quantification by TrackMate revealed a highly heterogeneous and discontinuous transportation process of lysosome-based axonal transport in freely orientated axons. And, multiple physical factors, such as the axonal structure and the size of particles, were disclosed to affect the velocity of particle transporting in freely orientated axons. The combined single-particle fluorescence tracking and TrackMate assay can be served as a facile tool for evaluating axonal transport in neuronal development and axonal transport-related diseases.

Details

ISSN :
18607314 and 18606768
Volume :
17
Database :
OpenAIRE
Journal :
Biotechnology Journal
Accession number :
edsair.doi.dedup.....4d20774e7d673f0afb34dc19decbde50