Literature DB >> 28823058

Polyurethane/Gelatin Nanofibrils Neural Guidance Conduit Containing Platelet-Rich Plasma and Melatonin for Transplantation of Schwann Cells.

Majid Salehi1, Mahdi Naseri-Nosar1, Somayeh Ebrahimi-Barough1, Mohammdreza Nourani2, Arash Khojasteh3, Saeed Farzamfar4, Korosh Mansouri5, Jafar Ai6.   

Abstract

The current study aimed to enhance the efficacy of peripheral nerve regeneration using a biodegradable porous neural guidance conduit as a carrier to transplant allogeneic Schwann cells (SCs). The conduit was prepared from polyurethane (PU) and gelatin nanofibrils (GNFs) using thermally induced phase separation technique and filled with melatonin (MLT) and platelet-rich plasma (PRP). The prepared conduit had the porosity of 87.17 ± 1.89%, the contact angle of 78.17 ± 5.30° and the ultimate tensile strength and Young's modulus of 5.40 ± 0.98 MPa and 3.13 ± 0.65 GPa, respectively. The conduit lost about 14% of its weight after 60 days in distilled water. The produced conduit enhanced the proliferation of SCs demonstrated by a tetrazolium salt-based assay. For functional analysis, the conduit was seeded with 1.50 × 104 SCs (PU/GNFs/PRP/MLT/SCs) and implanted into a 10-mm sciatic nerve defect of Wistar rat. Three control groups were used: (1) PU/GNFs/SCs, (2) PU/GNFs/PRP/SCs, and (3) Autograft. The results of sciatic functional index, hot plate latency, compound muscle action potential amplitude and latency, weight-loss percentage of wet gastrocnemius muscle and histopathological examination using hematoxylin-eosin and Luxol fast blue staining, demonstrated that using the PU/GNFs/PRP/MLT conduit to transplant SCs to the sciatic nerve defect resulted in a higher regenerative outcome than the PU/GNFs and PU/GNFs/PRP conduits.

Entities:  

Keywords:  Gelatin; Melatonin; Neural guidance conduit; Platelet-rich plasma; Polyurethane; Schwann cells

Mesh:

Substances:

Year:  2017        PMID: 28823058     DOI: 10.1007/s10571-017-0535-8

Source DB:  PubMed          Journal:  Cell Mol Neurobiol        ISSN: 0272-4340            Impact factor:   5.046


  39 in total

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Authors:  Lukas A Pfister; Michaël Papaloïzos; Hans P Merkle; Bruno Gander
Journal:  J Peripher Nerv Syst       Date:  2007-06       Impact factor: 3.494

2.  Effects of Local Administration of Platelet Rich Plasma on Functional Recovery after Bridging Sciatic Nerve Defect Using Silicone Rubber Chamber; An Experimental Study.

Authors:  Sedighe Abbasipour-Dalivand; Rahim Mohammadi; Vahid Mohammadi
Journal:  Bull Emerg Trauma       Date:  2015-01

3.  Biomimetic electrospun nanofibrous structures for tissue engineering.

Authors:  Xianfeng Wang; Bin Ding; Bingyun Li
Journal:  Mater Today (Kidlington)       Date:  2013-06-01       Impact factor: 31.041

4.  Fibroblast growth factor effects on peripheral nerve regeneration in a silicone chamber model.

Authors:  N Danielsen; B Pettmann; H L Vahlsing; M Manthorpe; S Varon
Journal:  J Neurosci Res       Date:  1988-07       Impact factor: 4.164

5.  Regeneration across preserved peripheral nerve grafts.

Authors:  P J Evans; S E Mackinnon; T J Best; J A Wade; D C Awerbuck; A P Makino; D A Hunter; R Midha
Journal:  Muscle Nerve       Date:  1995-10       Impact factor: 3.217

6.  Cellulose acetate/poly lactic acid coaxial wet-electrospun scaffold containing citalopram-loaded gelatin nanocarriers for neural tissue engineering applications.

Authors:  Mahdi Naseri-Nosar; Majid Salehi; Shahriar Hojjati-Emami
Journal:  Int J Biol Macromol       Date:  2017-05-15       Impact factor: 6.953

7.  Methods to evaluate functional nerve recovery in adult rats: walking track analysis, video analysis and the withdrawal reflex.

Authors:  J R Dijkstra; M F Meek; P H Robinson; A Gramsbergen
Journal:  J Neurosci Methods       Date:  2000-03-15       Impact factor: 2.390

8.  Melatonin enhances the in vitro and in vivo repair of severed rat sciatic axons.

Authors:  Ronda C Stavisky; Joshua M Britt; Aleksej Zuzek; Elizabeth Truong; George D Bittner
Journal:  Neurosci Lett       Date:  2004-12-15       Impact factor: 3.046

Review 9.  Designing ideal conduits for peripheral nerve repair.

Authors:  Godard C W de Ruiter; Martijn J A Malessy; Michael J Yaszemski; Anthony J Windebank; Robert J Spinner
Journal:  Neurosurg Focus       Date:  2009-02       Impact factor: 4.047

10.  Beneficial effect of TNF-α inhibition on diabetic peripheral neuropathy.

Authors:  Xiaohong Shi; Yinghui Chen; Lubna Nadeem; Guoxiong Xu
Journal:  J Neuroinflammation       Date:  2013-06-04       Impact factor: 8.322

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  5 in total

Review 1.  Revisiting the Role of Biologically Active Natural and Synthetic Compounds as an Intervention to Treat Injured Nerves.

Authors:  Natália Melo Souza; Mateus Figueiredo Gonçalves; Luiz Fernando Romanholo Ferreira; Muhammad Bilal; Hafiz M N Iqbal; Renato Nery Soriano
Journal:  Mol Neurobiol       Date:  2021-07-06       Impact factor: 5.590

Review 2.  Platelet-Rich Plasma Therapy in the Treatment of Diseases Associated with Orthopedic Injuries.

Authors:  Jie Fang; Xin Wang; Wen Jiang; Yaqiong Zhu; Yongqiang Hu; Yanxu Zhao; Xueli Song; Jinjuan Zhao; Wenlong Zhang; Jiang Peng; Yu Wang
Journal:  Tissue Eng Part B Rev       Date:  2020-11-03       Impact factor: 7.376

Review 3.  Rational design of biodegradable thermoplastic polyurethanes for tissue repair.

Authors:  Cancan Xu; Yi Hong
Journal:  Bioact Mater       Date:  2021-12-31

Review 4.  Melatonin-Loaded Nanocarriers: New Horizons for Therapeutic Applications.

Authors:  Luiz Gustavo de Almeida Chuffa; Fábio Rodrigues Ferreira Seiva; Adriana Alonso Novais; Vinícius Augusto Simão; Virna Margarita Martín Giménez; Walter Manucha; Debora Aparecida Pires de Campos Zuccari; Russel J Reiter
Journal:  Molecules       Date:  2021-06-10       Impact factor: 4.411

5.  An update-tissue engineered nerve grafts for the repair of peripheral nerve injuries.

Authors:  Nitesh P Patel; Kristopher A Lyon; Jason H Huang
Journal:  Neural Regen Res       Date:  2018-05       Impact factor: 5.135

  5 in total

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