TY - JOUR
T1 - Neural tissue engineering
T2 - From bioactive scaffolds and in situ monitoring to regeneration
AU - Gong, Bowen
AU - Zhang, Xindan
AU - Zahrani, Ahmed Al
AU - Gao, Wenwen
AU - Ma, Guolin
AU - Zhang, Liqun
AU - Xue, Jiajia
N1 - Publisher Copyright:
© 2022 The Authors. Exploration published by Henan University and John Wiley & Sons Australia, Ltd.
PY - 2022/6
Y1 - 2022/6
N2 - Peripheral nerve injury is a large-scale problem that annually affects more than several millions of people all over the world. It remains a great challenge to effectively repair nerve defects. Tissue engineered nerve guidance conduits (NGCs) provide a promising platform for peripheral nerve repair through the integration of bioactive scaffolds, biological effectors, and cellular components. Herein, we firstly describe the pathogenesis of peripheral nerve injuries at different orders of severity to clarify their microenvironments and discuss the clinical treatment methods and challenges. Then, we discuss the recent progress on the design and construction of NGCs in combination with biological effectors and cellular components for nerve repair. Afterward, we give perspectives on imaging the nerve and/or the conduit to allow for the in situ monitoring of the nerve regeneration process. We also cover the applications of different postoperative intervention treatments, such as electric field, magnetic field, light, and ultrasound, to the well-designed conduit and/or the nerve for improving the repair efficacy. Finally, we explore the prospects of multifunctional platforms to promote the repair of peripheral nerve injury.
AB - Peripheral nerve injury is a large-scale problem that annually affects more than several millions of people all over the world. It remains a great challenge to effectively repair nerve defects. Tissue engineered nerve guidance conduits (NGCs) provide a promising platform for peripheral nerve repair through the integration of bioactive scaffolds, biological effectors, and cellular components. Herein, we firstly describe the pathogenesis of peripheral nerve injuries at different orders of severity to clarify their microenvironments and discuss the clinical treatment methods and challenges. Then, we discuss the recent progress on the design and construction of NGCs in combination with biological effectors and cellular components for nerve repair. Afterward, we give perspectives on imaging the nerve and/or the conduit to allow for the in situ monitoring of the nerve regeneration process. We also cover the applications of different postoperative intervention treatments, such as electric field, magnetic field, light, and ultrasound, to the well-designed conduit and/or the nerve for improving the repair efficacy. Finally, we explore the prospects of multifunctional platforms to promote the repair of peripheral nerve injury.
KW - external stimulation
KW - nerve guidance conduit
KW - nerve imaging
KW - peripheral nerve injury
KW - tissue engineering
UR - https://www.scopus.com/pages/publications/85165668038
U2 - 10.1002/EXP.20210035
DO - 10.1002/EXP.20210035
M3 - 文章
AN - SCOPUS:85165668038
SN - 2766-8509
VL - 2
JO - Exploration
JF - Exploration
IS - 3
M1 - 20210035
ER -