Development of BDNF/NGF/IKVAV Peptide Modified and Gold Nanoparticle Conductive PCL/PLGA Nerve Guidance Conduit for Regeneration of the Rat Spinal Cord Injury

Author:

Ozcicek Ilyas12ORCID,Aysit Nese12,Balcikanli Zeynep1,Ayturk Nilufer Ulas3,Aydeger Asel14,Baydas Gulsena145,Aydin Mehmet Serif1,Altintas Esra14,Erim Umit Can16

Affiliation:

1. Research Institute for Health Sciences and Technologies (SABITA) Istanbul Medipol University Istanbul 34810 Turkey

2. Department of Medical Biology School of Medicine Istanbul Medipol University Istanbul 34815 Turkey

3. Department of Histology and Embryology Faculty of Medicine Çanakkale Onsekiz Mart University Canakkale 17020 Turkey

4. Graduate School of Health Sciences Istanbul Medipol University Istanbul 34815 Turkey

5. Department of Physiology School of Medicine Istanbul Medipol University Istanbul 34815 Turkey

6. Department of Analytical Chemistry School of Pharmacy Istanbul Medipol University Istanbul 34815 Turkey

Abstract

AbstractSpinal cord injuries are very common worldwide, leading to permanent nerve function loss with devastating effects in the affected patients. The challenges and inadequate results in the current clinical treatments are leading scientists to innovative neural regenerative research. Advances in nanoscience and neural tissue engineering have opened new avenues for spinal cord injury (SCI) treatment. In order for designed nerve guidance conduit (NGC) to be functionally useful, it must have ideal scaffold properties and topographic features that promote the linear orientation of damaged axons. In this study, it is aimed to develop channeled polycaprolactone (PCL)/Poly‐D,L‐lactic‐co‐glycolic acid (PLGA) hybrid film scaffolds, modify their surfaces by IKVAV pentapeptide/gold nanoparticles (AuNPs) or polypyrrole (PPy) and investigate the behavior of motor neurons on the designed scaffold surfaces in vitro under static/bioreactor conditions. Their potential to promote neural regeneration after implantation into the rat SCI by shaping the film scaffolds modified with neural factors into a tubular form is also examined. It is shown that channeled groups decorated with AuNPs highly promote neurite orientation under bioreactor conditions and also the developed optimal NGC (PCL/PLGA G1‐IKVAV/BDNF/NGF‐AuNP50) highly regenerates SCI. The results indicate that the designed scaffold can be an ideal candidate for spinal cord regeneration.

Funder

Türkiye Bilimsel ve Teknolojik Araştirma Kurumu

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,Biomaterials,Bioengineering,Biotechnology

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