Literature DB >> 23924908

Nanoparticle-mediated delivery of TGF-β1 miRNA plasmid for preventing flexor tendon adhesion formation.

Youlang Zhou1, Luzhong Zhang, Weixin Zhao, Yafang Wu, Changlai Zhu, Yumin Yang.   

Abstract

Treatment of the disrupted digital flexor tendon is troublesome because of the lack of sufficient healing capacity and the formation of adhesions. Sustained gene delivery may be a promising approach of modulating gene expression in enhancing tendon healing and decreasing adhesions. In this study, a microRNA-based RNAi plasmid was used to specifically silence the expression of TGF-β1 gene associated with scar and adhesion formation in the flexor tendons. The miRNA plasmids were complexed with polylactic-co-glycolic acid (PLGA) nanoparticles to form nanoparticle/TGF-β1 miRNA plasmid (nanoparticle/plasmid) complexes. In vitro and in vivo transfection efficiencies experiments against tenocytes revealed that nanoparticle/plasmid complexes have significantly superior transfection efficiency over the lipofectamine/plasmid complexes. The gene and protein expression associated with adhesion of tendon treated with nanoparticle/plasmid complexes were evaluated by real-time PCR and immunoblotting. The grading of adhesions for tendons treated with nanoparticle/plasmid complexes was less severe than that treated with the nanoparticle/mock plasmid complexes. However, the ultimate strength of repaired tendons treated with nanoparticle/plasmid complexes was significantly lower than that of tendons treated with the nanoparticle/mock plasmid complexes.
© 2013 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Flexor tendon; Gene delivery; Nanoparticle; Transfection efficiency; microRNA

Mesh:

Substances:

Year:  2013        PMID: 23924908     DOI: 10.1016/j.biomaterials.2013.07.072

Source DB:  PubMed          Journal:  Biomaterials        ISSN: 0142-9612            Impact factor:   12.479


  20 in total

1.  Cell and Biologic-Based Treatment of Flexor Tendon Injuries.

Authors:  Stephen W Linderman; Richard H Gelberman; Stavros Thomopoulos; Hua Shen
Journal:  Oper Tech Orthop       Date:  2016-09

Review 2.  Biomaterial-Guided Gene Delivery for Musculoskeletal Tissue Repair.

Authors:  Justin L Madrigal; Roberta Stilhano; Eduardo A Silva
Journal:  Tissue Eng Part B Rev       Date:  2017-03-10       Impact factor: 6.389

3.  An Evaluation of Wound Healing Efficacy of a Film Dressing Made from Polymer-integrated Amnion Membrane.

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Journal:  Organogenesis       Date:  2020-11-08       Impact factor: 2.500

4.  Aging does not alter tendon mechanical properties during homeostasis, but does impair flexor tendon healing.

Authors:  Jessica E Ackerman; Ibrahima Bah; Jennifer H Jonason; Mark R Buckley; Alayna E Loiselle
Journal:  J Orthop Res       Date:  2017-05-03       Impact factor: 3.494

Review 5.  The role of MicroRNAs in tendon injury, repair, and related tissue engineering.

Authors:  Qian Liu; Yaxi Zhu; Weihong Zhu; Ge Zhang; Yunzhi Peter Yang; Chunfeng Zhao
Journal:  Biomaterials       Date:  2021-08-26       Impact factor: 15.304

Review 6.  Flexor Tendon: Development, Healing, Adhesion Formation, and Contributing Growth Factors.

Authors:  Ashley L Titan; Deshka S Foster; James Chang; Michael T Longaker
Journal:  Plast Reconstr Surg       Date:  2019-10       Impact factor: 4.730

7.  Diblock Copolymer Hydrophobicity Facilitates Efficient Gene Silencing and Cytocompatible Nanoparticle-Mediated siRNA Delivery to Musculoskeletal Cell Types.

Authors:  Dominic W Malcolm; Margaret A T Freeberg; Yuchen Wang; Kenneth R Sims; Hani A Awad; Danielle S W Benoit
Journal:  Biomacromolecules       Date:  2017-10-11       Impact factor: 6.988

Review 8.  Nanoparticles for Tendon Healing and Regeneration: Literature Review.

Authors:  Paolo D Parchi; Orazio Vittorio; Lorenzo Andreani; Pietro Battistini; Nicola Piolanti; Stefano Marchetti; Andrea Poggetti; Michele Lisanti
Journal:  Front Aging Neurosci       Date:  2016-08-22       Impact factor: 5.750

9.  Thermosensitive hydrogel containing dexamethasone micelles for preventing postsurgical adhesion in a repeated-injury model.

Authors:  Qinjie Wu; Ning Wang; Tao He; Jinfeng Shang; Ling Li; Linjiang Song; Xi Yang; Xia Li; Na Luo; Wenli Zhang; Changyang Gong
Journal:  Sci Rep       Date:  2015-09-01       Impact factor: 4.379

10.  Serpine1 Knockdown Enhances MMP Activity after Flexor Tendon Injury in Mice: Implications for Adhesions Therapy.

Authors:  Margaret A T Freeberg; Youssef M Farhat; Anas Easa; Jacob G Kallenbach; Dominic W Malcolm; Mark R Buckley; Danielle S W Benoit; Hani A Awad
Journal:  Sci Rep       Date:  2018-04-11       Impact factor: 4.379

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