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Nerve Injury-on-a-Chip Uncovers Extracellular Matrix and Mitochondrial Roles in Axonal Regeneration

delete2026-08-11
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PRE
AI
D
Dong-Hee Lee
I
Imran I.G. Rather
A
Andrew T. Dudley
K
Kai Yang
J
Jingwei Xie *
DOI:10.1016/j.actbio.2026.08.018delete
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Abstract

Abstract

En 中文
Peripheral nerve regeneration depends on interactions among extracellular matrix cues, neuronal bioenergetics, and therapeutic signal presentation, yet progress is limited by the lack of physiologically relevant quantitative in vitro models to evaluate biomaterials and mitochondria-targeted therapies. Here, we present a nerve injury-on-a-chip (NI-Chip) that integrates dorsal root ganglion explants, aligned nanofibers, compartmentalized microfluidics, and precisely controlled axotomy to enable real-time, quantitative analysis of axonal regeneration dynamics. Extracellular matrix composition significantly influences axonal regeneration velocity, with laminin-coated nanofibers supporting faster growth than fibronectin-coated ones. Pharmacological promotion of mitochondrial transport using the small-molecule compound M1 enhances axonal regeneration in a dose-dependent manner, revealing that M1 increases mitochondrial motility within regenerating axons, with a selective enhancement of retrograde transport. Furthermore, M1 treatment remains effective in older sensory neurons, highlighting mitochondrial dynamics as an age-independent target for regeneration. Leveraging the compartmentalized design of the NI-Chip, we demonstrate that localized axonal delivery of M1 enhances regeneration, and sustained delivery via M1-loaded nanofibers further promotes axonal regrowth. This work establishes the NI-Chip as a versatile platform for dissecting the interplay between biomaterials, mitochondrial dynamics, and axonal regeneration, and provides a foundation for accelerating the development of clinically translatable therapies for peripheral nerve repair.
Keywords:
Peripheral nerve injury
microfluidics
electrospun nanofibers
organ-on-a-chip
axotomy
nerve regeneration

Journal

Acta Biomaterialia cover
Acta Biomaterialia
IF:
9.6
Papers:
1.0W
Citations:
6.5W

Organization

U
university of nebraska medical center
Scholars:
911
Papers: 420
Citations: 0
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