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Hybrid construction of tissue-engineered nerve graft using skin derived precursors induced neurons and Schwann cells to enhance peripheral neuroregeneration.
Guo, Qi; Zhu, Hui; Xu, Xi; Huang, Tianyi; Pan, Yulin; Gu, Xiaosong; Cui, Shusen; Xue, Chengbin.
Affiliation
  • Guo Q; Department of Hand and Foot Surgery, China-Japan Union Hospital of Jilin University, Key Laboratory of Peripheral Nerve Injury and Regeneration of Jilin Province, The Third Bethune Hospital of Jilin University, Changchun, JL, 130033, PR China.
  • Zhu H; Research Center of Clinical Medicine, Affiliated Hospital of Nantong University, Key Laboratory of Neuroregeneration of Jiangsu and Ministry of Education, Co-Innovation Center of Neuroregeneration, NMPA Key Laboratory for Research and Evaluation of Tissue Engineering Technology Products, Nantong Uni
  • Xu X; Department of Rehabilitation Medicine, Affiliated Hospital of Nantong University, Nantong, JS, 226001, PR China.
  • Huang T; Medical School of Nantong University, Nantong, JS, 226001, PR China.
  • Pan Y; Medical School of Nantong University, Nantong, JS, 226001, PR China.
  • Gu X; Medical School of Nantong University, Nantong, JS, 226001, PR China.
  • Cui S; Research Center of Clinical Medicine, Affiliated Hospital of Nantong University, Key Laboratory of Neuroregeneration of Jiangsu and Ministry of Education, Co-Innovation Center of Neuroregeneration, NMPA Key Laboratory for Research and Evaluation of Tissue Engineering Technology Products, Nantong Uni
  • Xue C; Department of Hand and Foot Surgery, China-Japan Union Hospital of Jilin University, Key Laboratory of Peripheral Nerve Injury and Regeneration of Jilin Province, The Third Bethune Hospital of Jilin University, Changchun, JL, 130033, PR China.
Mater Today Bio ; 28: 101196, 2024 Oct.
Article in En | MEDLINE | ID: mdl-39221212
ABSTRACT
Peripheral nerve injury is a major challenge in clinical treatment due to the limited intrinsic capacity for nerve regeneration. Tissue engineering approaches offer promising solutions by providing biomimetic scaffolds and cell sources to promote nerve regeneration. In the present work, we investigated the potential role of skin-derived progenitors (SKPs), which are induced into neurons and Schwann cells (SCs), and their extracellular matrix in tissue-engineered nerve grafts (TENGs) to enhance peripheral neuroregeneration. SKPs were induced to differentiate into neurons and SCs in vitro and incorporated into nerve grafts composed of a biocompatible scaffold including chitosan neural conduit and silk fibroin filaments. In vivo experiments using a rat model of peripheral nerve injury showed that TENGs significantly enhanced nerve regeneration compared to the scaffold control group, catching up with the autograft group. Histological analysis showed improved axonal regrowth, myelination and functional recovery in animals treated with these TENGs. In addition, immunohistochemical staining confirmed the presence of induced neurons and SCs within the regenerated nerve tissue. Our results suggest that SKP-induced neurons and SCs in tissue-engineered nerve grafts have great potential for promoting peripheral nerve regeneration and represent a promising approach for clinical translation in the treatment of peripheral nerve injury. Further optimization and characterization of these engineered constructs is warranted to improve their clinical applicability and efficacy.
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Mater Today Bio Year: 2024 Document type: Article Country of publication: United kingdom

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Mater Today Bio Year: 2024 Document type: Article Country of publication: United kingdom