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Aligned Scaffolds with Biomolecular Gradients for Regenerative Medicine

Journal

POLYMERS
Volume 11, Issue 2, Pages -

Publisher

MDPI
DOI: 10.3390/polym11020341

Keywords

aligned scaffolds; biomolecular gradients; electrospinning; 3D printing; regenerative medicine

Funding

  1. National Natural Science Foundation of China [81771338]
  2. Ministry of Science and Technology of China [2016YFC1101501]
  3. Strategic Priority Research Program of the Chinese Academy of Sciences [XDA16020103]
  4. Youth Innovation Promotion Association of the Chinese Academy of Sciences [2016291]

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Aligned topography and biomolecular gradients exist in various native tissues and play pivotal roles in a set of biological processes. Scaffolds that recapitulate the complex structure and microenvironment show great potential in promoting tissue regeneration and repair. We begin with a discussion on the fabrication of aligned scaffolds, followed by how biomolecular gradients can be immobilized on aligned scaffolds. In particular, we emphasize how electrospinning, freeze drying, and 3D printing technology can accomplish aligned topography and biomolecular gradients flexibly and robustly. We then highlight several applications of aligned scaffolds and biomolecular gradients in regenerative medicine including nerve, tendon/ligament, and tendon/ligament-to-bone insertion regeneration. Finally, we finish with conclusions and future perspectives on the use of aligned scaffolds with biomolecular gradients in regenerative medicine.

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