The effect of a nanofiber-hydrogel composite on neural tissue repair and regeneration in the contused spinal cord

Author:

Li Xiaowei,Zhang Chi,Haggerty Agnes E.,Yan Jerry,Lan Michael,Seu Michelle,Yang Mingyu,Marlow Megan M.,Maldonado-Lasunción Inés,Cho Brian,Zhou Zhengbing,Chen Long,Martin Russell,Nitobe Yohshiro,Yamane Kentaro,You Hua,Reddy Sashank,Quan Da-Ping,Oudega Martin,Mao Hai-Quan

Funder

U.S. National Institute of Neurological Disorders and Stroke

Abell Foundation

National Institutes of Health

Neilsen Foundation

Department of Veterans Affairs

AHA

Publisher

Elsevier BV

Subject

Mechanics of Materials,Biomaterials,Biophysics,Ceramics and Composites,Bioengineering

Reference67 articles.

1. Spinal cord injury facts and figures at a glance, J. Spinal Cord Med. 35(1) 68-69..

2. Hierarchically aligned fibrin nanofiber hydrogel accelerated axonal regrowth and locomotor function recovery in rat spinal cord injury;Yao;Int. J. Nanomed.,2018

3. Combination therapies in the CNS: engineering the environment;McCreedy;Neurosci. Lett.,2012

4. Advanced biomaterials for repairing the nervous system: what can hydrogels do for the brain?;Khaing;Mater. Today,2014

5. Nerve regeneration following spinal cord injury using matrix metalloproteinase-sensitive, hyaluronic acid-based biomimetic hydrogel scaffold containing brain-derived neurotrophic factor;Park;J. Biomed. Mater. Res.,2010

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