Nerve Guide Conduits Integrated with Fisetin‐Loaded Chitosan Hydrogels for Reducing Oxidative Stress, Inflammation, and Nerve Regeneration

Author:

Fang Jiaqi1,Xu Bo1,Jin Xuehan1,Chen Feng1,Liu Shuhao1,Liu Shengfu1,Wang Sen1,Zhang Fan1,Song Kaihang1,Wang Jianguang12,Nan Liping1,Liu Junjian1ORCID

Affiliation:

1. Department of Orthopaedics Shanghai Tenth People's Hospital School of Medicine Tongji University Shanghai 200000 China

2. Department of Clinical Laboratory The Second People's Hospital of Kashi Xinjiang 844000 China

Abstract

AbstractPeripheral nerve injuries (PNI) represent a prevalent and severe category of damage resulting from traumatic incidents. Predominantly, the deficiency in nerve regeneration can be ascribed to enduring inflammatory reactions, hence imposing substantial clinical implications for patients. Fisetin, a flavonoid derived from plants, is naturally present in an array of vegetables and fruits, including strawberries, apples, onions, and cucumbers. It exhibits immunomodulatory properties through the reduction of inflammation and oxidative stress. In the present research, a nerve defect is addressed for the first time utilizing a scaffold primed for controlled fisetin release. In this regard, fisetin‐loaded chitosan hydrogels are incorporated into the lumen of polycaprolactone (PCL) nerve guide conduits (NGCs). The hydrogel maintained a steady release of an appropriate fisetin dosage. The study outcomes indicated that the fisetin/chitosan/polycaprolactone (FIS/CS/PCL) NGCs amplified Schwann cell proliferation and neural expression, curtailed oxidative stress, alleviated inflammation, and improved functions, electrophysiological properties, and morphology. This pioneering scaffold has the potential to contribute significantly to the field of neuroengineering.

Funder

Science and Technology Commission of Shanghai Municipality

Fundamental Research Funds for Central Universities of the Central South University

Publisher

Wiley

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