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Fabrication of Anatomically Equivalent Pectin-Based Multifilament Nerve Conduits
Preethy Amruthavarshini Ramesh1, Swaminathan Sethuraman1, Anuradha Subramanian1
1Centre for Nanotechnology and Advanced Biomaterials, ABCDE Innovation Centre, School of Chemical and Biotechnology, SASTRA Deemed University, Thanjavur 613 401, India.
This study developed novel pectin-based multifilament nerve conduits for peripheral nerve repair. These conduits promote axonal regeneration and precise fascicular complementation, offering a sutureless solution for nerve defects.
Area of Science:
- Biomaterials Science
- Regenerative Medicine
- Tissue Engineering
Background:
- Peripheral nerve defects pose challenges for regeneration due to issues with axonal guidance and fascicular complementation.
- Conventional hollow nerve guides often fail to provide adequate support for nerve repair.
Purpose of the Study:
- To fabricate and evaluate dual cross-linked, pectin-based multifilament nerve conduits for peripheral nerve regeneration.
- To address the limitations of current nerve guides in ensuring proper reinnervation and axonal guidance.
Main Methods:
- Pectin was conjugated with methacrylate residues and fabricated into multifilament conduits using a 3D wet writing process followed by photo-cross-linking.
- Conduit anatomy was analyzed using scanning electron microscopy and micro-CT.
- Cytocompatibility and neurite outgrowth were assessed using PC12 cells.
- Ex vivo testing in a goat sciatic nerve model evaluated fascicular complementation.
Main Results:
- The multifilament conduits exhibited anatomical equivalence to native nerve structures.
- Conduits demonstrated cytocompatibility and promoted significant neurite outgrowth (16.90 ± 1.82 μm at day 14).
- Precise fascicular complementation was achieved in an ex vivo goat sciatic nerve model, eliminating the need for sutures.
Conclusions:
- Dual cross-linked pectin-based multifilament nerve conduits are a promising, customizable solution for peripheral nerve repair.
- This approach facilitates axonal regeneration and precise fascicular complementation, improving outcomes for nerve defects.
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