| Literature DB >> 29935084 |
Yun Qian1, Qixin Han2,3, Xiaotian Zhao4, Jialin Song1, Yuan Cheng4, Zhiwei Fang4, Yuanming Ouyang1,5, Wei-En Yuan4, Cunyi Fan1,5.
Abstract
Peripheral nerve defect is a common and severe kind of injury in traumatic accidents. Melatonin can improve peripheral nerve recovery by inhibiting oxidative stress and inflammation after traumatic insults. In addition, it triggers autophagy pathways to increase regenerated nerve proliferation and to reduce apoptosis. In this study, we fabricated a melatonin-controlled-release scaffold to cure long-range nerve defects for the first time. 3D manufacture of melatonin/polycaprolactone nerve guide conduit increased Schwann cell proliferation and neural expression in vitro and promoted functional, electrophysiological and morphological nerve regeneration in vivo. Melatonin nerve guide conduit ameliorated immune milieu by reducing oxidative stress, inflammation and mitochondrial dysfunction. In addition, it activated autophagy to restore ideal microenvironment, to provide energy for nerves and to reduce nerve cell apoptosis, thus facilitating nerve debris clearance and neural proliferation. This innovative scaffold will have huge significance in the nerve engineering.Entities:
Keywords: 3D fabrication; autophagy; melatonin; nerve scaffold; oxidative stress
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Year: 2018 PMID: 29935084 DOI: 10.1111/jpi.12516
Source DB: PubMed Journal: J Pineal Res ISSN: 0742-3098 Impact factor: 13.007