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Novel hybrid biocomposites for tendon grafts:The addition of silk to polydioxanone and poly(lactide-co-caprolactone)enhances material properties,in vitro and in vivo biocompatibility
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作者 Behzad Shiroud Heidari Emma muiños Lopez +10 位作者 Emma Harrington Rui Ruan Peilin Chen Seyed mohammad Davachi Benjamin Allardyce Rangam Rajkhowa Rodney Dilley Froilán Granero-moltó elena m.de-juan-pardo minghao Zheng Barry Doyle 《Bioactive Materials》 SCIE CSCD 2023年第7期291-306,共16页
Biopolymers play a critical role as scaffolds used in tendon and ligament(TL)regeneration.Although advanced biopolymer materials have been proposed with optimised mechanical properties,biocompatibility,degradation,and... Biopolymers play a critical role as scaffolds used in tendon and ligament(TL)regeneration.Although advanced biopolymer materials have been proposed with optimised mechanical properties,biocompatibility,degradation,and processability,it is still challenging to find the right balance between these properties.Here,we aim to develop novel hybrid biocomposites based on poly(p-dioxanone)(PDO),poly(lactide-co-caprolactone)(LCL)and silk to produce high-performance grafts suitable for TL tissue repair.Biocomposites containing 1-15%of silk were studied through a range of characterisation techniques.We then explored biocompatibility through in vitro and in vivo studies using a mouse model.We found that adding up to 5%silk increases the tensile properties,degradation rate and miscibility between PDO and LCL phases without agglomeration of silk inside the composites.Furthermore,addition of silk increases surface roughness and hydrophilicity.In vitro experiments show that the silk improved attachment of tendon-derived stem cells and proliferation over 72 h,while in vivo studies indicate that the silk can reduce the expression of pro-inflammatory cytokines after six weeks of implantation.Finally,we selected a promising biocomposite and created a prototype TL graft based on extruded fibres.We found that the tensile properties of both individual fibres and braided grafts could be suitable for anterior cruciate ligament(ACL)repair applications. 展开更多
关键词 BIOCOMPOSITE Tendon graft SILK Fibre extrusion Biodegradable scaffolds Anterior cruciate ligament
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Natural,synthetic and commercially-available biopolymers used to regenerate tendons and ligaments
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作者 Behzad Shiroud Heidari Rui Ruan +4 位作者 Ebrahim Vahabli Peilin Chen elena m.de-juan-pardo minghao Zheng Barry Doyle 《Bioactive Materials》 SCIE CSCD 2023年第1期179-197,共19页
Tendon and ligament(TL)injuries affect millions of people annually.Biopolymers play a significant role in TL tissue repair,whether the treatment relies on tissue engineering strategies or using artificial tendon graft... Tendon and ligament(TL)injuries affect millions of people annually.Biopolymers play a significant role in TL tissue repair,whether the treatment relies on tissue engineering strategies or using artificial tendon grafts.The biopolymer governs the mechanical properties,biocompatibility,degradation,and fabrication method of the TL scaffold.Many natural,synthetic and hybrid biopolymers have been studied in TL regeneration,often combined with therapeutic agents and minerals to engineer novel scaffold systems.However,most of the advanced biopolymers have not advanced to clinical use yet.Here,we aim to review recent biopolymers and discuss their features for TL tissue engineering.After introducing the properties of the native tissue,we discuss different types of natural,synthetic and hybrid biopolymers used in TL tissue engineering.Then,we review biopolymers used in commercial absorbable and non-absorbable TL grafts.Finally,we explain the challenges and future directions for the development of novel biopolymers in TL regenerative treatment. 展开更多
关键词 Synthetic biopolymers Natural biopolymers Hybrid composites Tendon scaffolds Commercial grafts
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