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External Magnetic Field Non-Invasively Stimulates Spinal Cord Regeneration in Rat Via a Magnetic-Responsive Aligned Fibrin Hydrogel

38 Pages Posted: 20 Oct 2022 Publication Status: Review Complete

See all articles by Chun-Yi Yang

Chun-Yi Yang

Tsinghua University

Zhe Meng

Tsinghua University

Kaiyuan Yang

Tsinghua University

Zhijun He

Tsinghua University

Zhaohui Hou

Tsinghua University

Jia Yang

Tsinghua University

Jinsong Lu

Tsinghua University

Zheng Cao

Tsinghua University

Shuhui Yang

Zhejiang Sci-tech University

Yi Chai

Tsinghua University

He Zhao

Tsinghua University

Lingyun Zhao

Tsinghua University

Xiaodan Sun

Tsinghua University

Guihuai Wang

Tsinghua University

Xiumei Wang

Tsinghua University - State Key Laboratory of New Ceramics and Fine Processing

Abstract

Magnetic stimulation is becoming an attractive approach to promote neuroprotection, neurogenesis, axonal regeneration, and functional recovery in both the central nervous system (CNS) and peripheral nervous system (PNS) disorders owing to its painless, non-invasive, and deep penetration characteristics. Here, a magnetic-responsive aligned fibrin hydrogel (MAFG) was developed to import and amplify the extrinsic magnetic field (MF) locally to stimulate spinal cord regeneration in combination with the beneficial topographical and biochemical cues of aligned fibrin hydrogel (AFG). Magnetic nanoparticles (MNPs) were embedded uniformly in AFG during electrospinning to endow it magnetic-responsive feature, with saturation magnetization of 21.79 emu/g. It’s found that the MNPs under the MF could enhance cell proliferation and neurotrophin secretion of PC12 cells in vitro. The MAFG that was implanted into a rat with 2-mm complete transected spinal cord injury (SCI) effectively enhanced neural regeneration and angiogenesis in the lesion area, thus leading to significant recovery of motor function under the MF (MAFG@MF). This study suggests a new multimodal tissue engineering strategy based on multifunctional biomaterials that deliver multimodal regulatory signals with the integration of aligned topography, biochemical cues, and extrinsic MF stimulation for spinal cord regeneration following severe SCI.

Keywords: Spinal cord injury, Aligned fibrin nanofibers, Magnetic nanoparticles, Magnetic field stimulation, Magnetic hydrogel

Suggested Citation

Yang, Chun-Yi and Meng, Zhe and Yang, Kaiyuan and He, Zhijun and Hou, Zhaohui and Yang, Jia and Lu, Jinsong and Cao, Zheng and Yang, Shuhui and Chai, Yi and Zhao, He and Zhao, Lingyun and Sun, Xiaodan and Wang, Guihuai and Wang, Xiumei, External Magnetic Field Non-Invasively Stimulates Spinal Cord Regeneration in Rat Via a Magnetic-Responsive Aligned Fibrin Hydrogel. Available at SSRN: https://ssrn.com/abstract=4254100 or http://dx.doi.org/10.2139/ssrn.4254100

Chun-Yi Yang

Tsinghua University ( email )

Beijing, 100084
China

Zhe Meng

Tsinghua University ( email )

Beijing, 100084
China

Kaiyuan Yang

Tsinghua University ( email )

Beijing, 100084
China

Zhijun He

Tsinghua University ( email )

Beijing, 100084
China

Zhaohui Hou

Tsinghua University ( email )

Beijing, 100084
China

Jia Yang

Tsinghua University ( email )

Beijing, 100084
China

Jinsong Lu

Tsinghua University ( email )

Beijing, 100084
China

Zheng Cao

Tsinghua University ( email )

Beijing, 100084
China

Shuhui Yang

Zhejiang Sci-tech University ( email )

Yi Chai

Tsinghua University ( email )

Beijing, 100084
China

He Zhao

Tsinghua University ( email )

Beijing, 100084
China

Lingyun Zhao

Tsinghua University ( email )

Beijing, 100084
China

Xiaodan Sun

Tsinghua University ( email )

Beijing, 100084
China

Guihuai Wang

Tsinghua University ( email )

Beijing, 100084
China

Xiumei Wang (Contact Author)

Tsinghua University - State Key Laboratory of New Ceramics and Fine Processing ( email )

Beijing
China

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