Literature DB >> 26339372

Promoting peripheral nerve regeneration with biodegradable poly (DL-lactic acid) films.

Ruijun Li1, Lei Chen1, Jinling Fu2, Zhigang Liu1, Shuang Wang1, Yuehai Pan1.   

Abstract

Regeneration and repair of peripheral nerve injury has always been a major problem in the clinic. The conventional technique based on suturing the nerve ends to each other coupled with the implantation of nerve conduits outside is associated with postoperative adhesions and scar problems. Recently, a novel biodegradable poly (DL-lactic acid) (PDLLA) film has been introduced. This novel anti-adhesion film has a porous structure with better mechanical properties, better flexibility, and more controllable degradation as compared to traditional non-porous nerve conduits. However, little is known about the effects of such PDLLA films on regeneration and repair of peripheral nerve injury in vivo. In this study, we evaluated the effects of PDLLA films implantation after sciatic nerve transection and anastomosis on subsequent sciatic nerve regeneration in vivo, using a rat sciatic nerve injury model. Sciatic nerve transection surgery coupled with direct suturing only, suturing and wrapping with traditional nerve conduits, or suturing and wrapping with PDLLA films was performed on adult Wistar rats. The additional wrapping with PDLLA films inhibited the nerve adhesion after 12 weeks recovery from surgery. It also increased the compound muscle action potentials and tibialis and gastrocnemius muscle wet weight ratio following 8 weeks recovery from surgery. Regenerated nerve fibers were relatively straight and the aligned structure was complete in rats with implantations of PDLLA films. The results suggested that PDLLA films can improve the nutritional status in the muscles innervated by the damaged nerves and promote nerve regeneration in vivo.

Entities:  

Keywords:  Biodegradable materials; peripheral nerve; poly (DL-lactic acid) film; regeneration

Mesh:

Substances:

Year:  2015        PMID: 26339372      PMCID: PMC4555700     

Source DB:  PubMed          Journal:  Int J Clin Exp Pathol        ISSN: 1936-2625


  25 in total

1.  Factors affecting the outcome of peripheral nerve surgery.

Authors:  Hanno Millesi
Journal:  Microsurgery       Date:  2006       Impact factor: 2.425

2.  Pores in synthetic nerve conduits are beneficial to regeneration.

Authors:  C L A M Vleggeert-Lankamp; G C W de Ruiter; J F C Wolfs; A P Pêgo; R J van den Berg; H K P Feirabend; M J A Malessy; E A J F Lakke
Journal:  J Biomed Mater Res A       Date:  2007-03-15       Impact factor: 4.396

3.  Highly permeable polylactide-caprolactone nerve guides enhance peripheral nerve regeneration through long gaps.

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Journal:  Biomaterials       Date:  1999-08       Impact factor: 12.479

4.  Guided regeneration with resorbable conduits in experimental peripheral nerve injuries.

Authors:  N Nicoli Aldini; M Fini; M Rocca; G Giavaresi; R Giardino
Journal:  Int Orthop       Date:  2000       Impact factor: 3.075

5.  Molecular biocompatibility evaluation of poly(D,L-lactic acid)-modified biomaterials based on long serial analysis of gene expression.

Authors:  Yan Xiang; Yuanliang Wang; Yanfeng Luo; Bingbing Zhang; Juan Xin; Danfang Zheng
Journal:  Colloids Surf B Biointerfaces       Date:  2011-03-08       Impact factor: 5.268

6.  Reduction of postoperative perineural adhesions by Hyaloglide gel: an experimental study in the rat sciatic nerve.

Authors:  Phong Dam-Hieu; Catherine Lacroix; Gérard Said; Pauline Devanz; Song Liu; Marc Tadie
Journal:  Neurosurgery       Date:  2005-04       Impact factor: 4.654

7.  Biomedical Applications of Biodegradable Polymers.

Authors:  Bret D Ulery; Lakshmi S Nair; Cato T Laurencin
Journal:  J Polym Sci B Polym Phys       Date:  2011-06-15

8.  Axonal supercharging technique using reverse end-to-side neurorrhaphy in peripheral nerve repair: an experimental study in the rat model.

Authors:  Toshihiro Fujiwara; Ken Matsuda; Tateki Kubo; Koichi Tomita; Ryo Hattori; Takeshi Masuoka; Kenji Yano; Ko Hosokawa
Journal:  J Neurosurg       Date:  2007-10       Impact factor: 5.115

9.  Local effects on triiodothyronine-treated polyglactin sutures on regeneration across peripheral nerve defects.

Authors:  Peter Scherman; Martin Kanje; Lars B Dahlin
Journal:  Tissue Eng       Date:  2004 Mar-Apr

Review 10.  Peripheral nerve reconstruction after injury: a review of clinical and experimental therapies.

Authors:  D Grinsell; C P Keating
Journal:  Biomed Res Int       Date:  2014-09-03       Impact factor: 3.411

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  5 in total

1.  Fabrication and Evaluation of a Xenogeneic Decellularized Nerve-Derived Material: Preclinical Studies of a New Strategy for Nerve Repair.

Authors:  Ting Li; Zhigang Sui; Akira Matsuno; Hirotomo Ten; Kenichi Oyama; Akihiro Ito; Hong Jiang; Xiaomin Ren; Rabia Javed; Lihua Zhang; Qiang Ao
Journal:  Neurotherapeutics       Date:  2020-01       Impact factor: 7.620

Review 2.  Polymer Scaffolds for Biomedical Applications in Peripheral Nerve Reconstruction.

Authors:  Meng Zhang; Ci Li; Li-Ping Zhou; Wei Pi; Pei-Xun Zhang
Journal:  Molecules       Date:  2021-05-05       Impact factor: 4.411

3.  A Controlled Design of Aligned and Random Nanofibers for 3D Bi-functionalized Nerve Conduits Fabricated via a Novel Electrospinning Set-up.

Authors:  Jeong In Kim; Tae In Hwang; Ludwig Erik Aguilar; Chan Hee Park; Cheol Sang Kim
Journal:  Sci Rep       Date:  2016-03-29       Impact factor: 4.379

4.  Aligned laminin core-polydioxanone/collagen shell fiber matrices effective for neuritogenesis.

Authors:  Su-Jin Song; Yong Cheol Shin; Sung Eun Kim; Il Keun Kwon; Jong-Ho Lee; Suong-Hyu Hyon; Dong-Wook Han; Bongju Kim
Journal:  Sci Rep       Date:  2018-04-03       Impact factor: 4.379

Review 5.  Xenogeneic Decellularized Extracellular Matrix-based Biomaterials For Peripheral Nerve Repair and Regeneration.

Authors:  Ting Li; Rabia Javed; Qiang Ao
Journal:  Curr Neuropharmacol       Date:  2021       Impact factor: 7.708

  5 in total

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