Literature DB >> 23132501

Cationised gelatin and hyaluronic acid coating enhances polyethylene terephthalate artificial ligament graft osseointegration in porcine bone tunnels.

Samson Cho1, Hong Li, Chen Chen, Jia Jiang, Hongyue Tao, Shiyi Chen.   

Abstract

PURPOSE: The aim of this study was to investigate whether cationised gelatin and hyaluronic acid (CH) coating could induce polyethylene terephthalate (PET) artificial ligament graft osseointegration in the bone tunnel.
METHODS: Surface modification of PET artificial ligament graft was performed by layer-by-layer (LBL) self-assembly CH coating. Six pigs underwent anterior cruciate ligament (ACL) reconstruction on the right knees, with three pigs receiving the CH-coated PET grafts and the other three pigs non-CH-coated PET grafts as controls. They were sacrificed at three months after surgery and the graft-bone complexes were acquired for computed tomography (CT) scan and histological examination.
RESULTS: CT scans showed a significant difference at the distal femoral site (p = 0.031) or at the distal tibial site (p = 0.0078), but no significant difference in the bone tunnel areas' enlargement at other sites (p > 0.05) between the CH group and the control group. Histologically, application of CH coating induced new bone formation between graft and bone at three months compared with the controls at the distal site. The interface width of the CH group was significantly lower than that of the control group at the distal femoral site (p = 0.0327) and at the distal tibial site (p = 0.0047).
CONCLUSIONS: The study has shown that CH coating on the PET artificial ligament surface has a positive biological effect in the induction of artificial ligament osseointegration within the bone tunnel at the distal site of the bone tunnel.

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Year:  2012        PMID: 23132501      PMCID: PMC3580098          DOI: 10.1007/s00264-012-1694-3

Source DB:  PubMed          Journal:  Int Orthop        ISSN: 0341-2695            Impact factor:   3.075


  37 in total

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2.  Effect of early and delayed mechanical loading on tendon-to-bone healing after anterior cruciate ligament reconstruction.

Authors:  Asheesh Bedi; David Kovacevic; Alice J S Fox; Carl W Imhauser; Mark Stasiak; Jonathan Packer; Robert H Brophy; Xiang-Hua Deng; Scott A Rodeo
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3.  Arthroscopic posterior cruciate ligament reconstruction using LARS artificial ligament: a retrospective study.

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4.  Anterior cruciate ligament reconstruction with double-looped semitendinosus and gracilis tendon graft directly fixed to cortical bone: 5-year results.

Authors:  Francesco Giron; Paolo Aglietti; Pierluigi Cuomo; Nicola Mondanelli; Antonio Ciardullo
Journal:  Knee Surg Sports Traumatol Arthrosc       Date:  2004-10-16       Impact factor: 4.342

5.  Four-strand hamstring tendon autograft versus LARS artificial ligament for anterior cruciate ligament reconstruction.

Authors:  Zhong-tang Liu; Xian-long Zhang; Yao Jiang; Bing-Fang Zeng
Journal:  Int Orthop       Date:  2009-04-25       Impact factor: 3.075

6.  Tunnel widening after anterior cruciate ligament reconstruction: a prospective randomized computed tomography--based study comparing 2 different femoral fixation methods for hamstring graft.

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7.  Enhancement of tendon-bone osteointegration of anterior cruciate ligament graft using granulocyte colony-stimulating factor.

Authors:  Ken Sasaki; Ryosuke Kuroda; Kazunari Ishida; Seiji Kubo; Tomoyuki Matsumoto; Yutaka Mifune; Keisuke Kinoshita; Katsumasa Tei; Toshihiro Akisue; Yasuhiko Tabata; Masahiro Kurosaka
Journal:  Am J Sports Med       Date:  2008-04-15       Impact factor: 6.202

8.  Hyaluronic acid inhibits mRNA expression of proinflammatory cytokines and cyclooxygenase-2/prostaglandin E(2) production via CD44 in interleukin-1-stimulated subacromial synovial fibroblasts from patients with rotator cuff disease.

Authors:  Yasuhiro Mitsui; Masafumi Gotoh; Kenjirou Nakama; Tetsu Yamada; Fujio Higuchi; Kensei Nagata
Journal:  J Orthop Res       Date:  2008-07       Impact factor: 3.494

9.  Delivery of plasmid IGF-1 to chondrocytes via cationized gelatin nanoparticles.

Authors:  Ximing Xu; Ramille M Capito; Myron Spector
Journal:  J Biomed Mater Res A       Date:  2008-01       Impact factor: 4.396

10.  Graft healing in anterior cruciate ligament reconstruction.

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  6 in total

1.  Demineralized Bone Matrix to Augment Tendon-Bone Healing: A Systematic Review.

Authors:  Adam T Hexter; Catherine Pendegrass; Fares Haddad; Gordon Blunn
Journal:  Orthop J Sports Med       Date:  2017-10-25

2.  Enhance the biocompatibility and osseointegration of polyethylene terephthalate ligament by plasma spraying with hydroxyapatite in vitro and in vivo.

Authors:  Siheng Wang; Yunshen Ge; Chengchong Ai; Jia Jiang; Jiangyu Cai; Dandan Sheng; Fang Wan; Xingwang Liu; Yuefeng Hao; Jun Chen; Shiyi Chen
Journal:  Int J Nanomedicine       Date:  2018-06-25

3.  Anterior Cruciate Ligament Reconstruction with LARS Artificial Ligament-Clinical Results after a Long-Term Follow-Up.

Authors:  Paolo Domenico Parchi; Gianluca Ciapini; Carlo Paglialunga; Michele Giuntoli; Carmine Picece; Fabio Chiellini; Michele Lisanti; Michelangelo Scaglione
Journal:  Joints       Date:  2018-05-23

Review 4.  Anterior Cruciate Ligament Reconstruction: Is Biological Augmentation Beneficial?

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Journal:  Int J Mol Sci       Date:  2021-11-22       Impact factor: 5.923

Review 5.  Systematic Review of Biological Modulation of Healing in Anterior Cruciate Ligament Reconstruction.

Authors:  Sai-Chuen Fu; Yau-Chuk Cheuk; Shu-Hang Yung; Christer Gustav Rolf; Kai-Ming Chan
Journal:  Orthop J Sports Med       Date:  2014-03-24

6.  Frame Coating of Single-Walled Carbon Nanotubes in Collagen on PET Fibers for Artificial Joint Ligaments.

Authors:  Alexander Yu Gerasimenko; Natalia N Zhurbina; Nadezhda G Cherepanova; Anna E Semak; Vadim V Zar; Yulia O Fedorova; Elena M Eganova; Alexander A Pavlov; Dmitry V Telyshev; Sergey V Selishchev; Olga E Glukhova
Journal:  Int J Mol Sci       Date:  2020-08-26       Impact factor: 5.923

  6 in total

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