首页> 外文期刊>Journal of Orthopaedic Translation >A bio-inductive collagen scaffold that supports human primary tendon-derived cell growth for rotator cuff repair
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A bio-inductive collagen scaffold that supports human primary tendon-derived cell growth for rotator cuff repair

机译:一种生物诱导胶原屑支架,用于支撑人初级肌腱衍生的旋转袖带修复的细胞生长

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BackgroundRotator Cuff (RC) tendon tearing is a common clinical problem and there is a high incidence of revision surgery due to re-tearing. In an effort to improve patient outcome and reduce surgical revision, scaffolds have been widely used for augmentation of RC repairs. However, little is known about how scaffolds support tendon stem cell growth or facilitate tendon regeneration. The purpose of this study is to evaluate the structural and biological properties of a bioactive collagen scaffold (BCS) with the potential to promote tendon repair. Additionally, we conducted a pilot clinical study to assess the safety and feasibility of using the BCS for repair of RC tears.MethodsA series of physical, ultrastructural, molecular andin vitrotests determined the biocompatibility and teno-inductive properties of this BCS. In addition, a prospective case study of 18 patients with RC tendon tears (>20??mm in diameter) was performed in an open-label, single-arm study, involving either mini-open or arthroscopic surgical RC repair with the BCS. Clinical assessment of RC repair status was undertaken by MRI-imaging at baseline, 6 and 12 months and patient evaluated questionnaires were taken at baseline as well as 3, 6 & 12 months.ResultsThe BCS consists of highly purified type-I collagen, in bundles of varying diameter, arranged in a higher order tri-laminar structure. BCS have minimal immunogenicity, being cell and essentially DNA-free as well as uniformly negative for the porcine α-Gal protein. BCS seeded with human primary tendon-derived cells and exposed to 6% uniaxial loading conditionsin vitro, supported increased levels of growth and proliferation as well as up-regulating expression of tenocyte differentiation marker genes including TNMD, Ten-C, Mohawk and Collagen-1α1. To test the safety and feasibility of using the BCS for augmentation of RC repairs, we followed the IDEAL framework and conducted a first, open-label single arm prospective case series study of 18 patients. One patient was withdrawn from the study at 3 months due to wound infection unrelated to the BCS. The remaining 17 cases showed that the BCS is safe to be implanted. The patients reported encouraging improvements in functional outcomes (ASES, OSS and Constant-Murley scores), as well as quality of life assessments (AQoL) and a reduction in VAS pain scores. MRI assessment at 12 months revealed complete healing in 64.8% patients (11/17), 3 partial thickness re-tears (17.6%) and 3 full thickness re-tears (17.6%).ConclusionThe BCS is composed of type-I collagen that is free of immunogenic proteins and supports tendon-derived cell growth under mechanical loadingin vitro. This pilot study shows that it is safe and feasible to use BCS for RC argumentation and further controlled prospective studies are required to demonstrate its efficacy.The Translational potential of this articleThe results of this study indicate that this bioactive collagen scaffold has unique properties for supporting tendon growth and that it is non-immunogenic. The clinical study further confirms that the scaffold is a promising biological device for augment of human rotator cuff repairs.
机译:背景处袖口(RC)肌腱撕裂是一种常见的临床问题,并且由于重新撕裂而导致修正手术的发病率很高。努力改善患者的结果并减少手术修订,脚手架已被广泛用于增强RC维修。然而,关于支架支持肌腱干细胞生长或促进肌腱再生的方法很少。本研究的目的是评估生物活性胶原支架(BCS)的结构和生物学,具有促进肌腱修复的潜力。此外,我们进行了试点临床研究,以评估使用BCS修复RC Tears的安全性和可行性。方法的物理,超微结构,分子和玻璃体玻璃素醚确定了该BCS的生物相容性和对网状性能。此外,在开放标签,单臂研究中进行18例RC肌腱撕裂患者的前瞻性案例研究,涉及与BCS的迷你开放或关节镜手术RC修复。 RC修复状态的临床评估是通过基线MRI成像进行的,6和12个月,患者评估问卷在基线以及3,6& 12个月。BCS由高级直径的高度纯化的I胶原蛋白组成,布置在更高阶三层结构中。 BCS具有最小的免疫原性,是细胞,基本上是无DNA的以及猪α-GAL蛋白的均匀负。 BCS播种与人的原发性肌腱衍生细胞和暴露于6%的单轴负载条件,支持增加的生长水平和增殖水平,以及近核细胞分化标志物基因的上升表达,包括TNMD,Ten-C,MoHawk和胶原-1α1 。为了测试使用BCS的安全性和可行性进行RC维修,我们遵循理想的框架,并进行了一首开放标签的单臂预期案例系列研究18名患者。由于与BC无关的伤口感染,在3个月内从研究中取出一名患者。剩下的17例案例表明,BCS是安全的植入安全。患者报告令人鼓舞的功能结果(ASES,OSS和MULLEY SCORES)以及生活质量评估(AQOL)和VAS疼痛评分的减少。 12个月的MRI评估显示64.8%患者的完全愈合(11/17),3个部分厚度重新撕裂(17.6%)和3个全厚度重新撕裂(17.6%)。结论BCS由类型-I胶原蛋白组成不含免疫原性蛋白质,并在机械载体体外支持肌腱衍生的细胞生长。这项试验研究表明,使用BCS对于RC参数使用BCS是安全可行的,并且需要进一步的受控前瞻性研究来证明其疗效。该研究的这种艺术结果的翻译潜力表明,这种生物活性胶原蛋白支架具有独特的支持肌腱性能生长和它是非免疫原性的。临床研究进一步证实,脚手架是增强人转子袖带修理的有前途的生物学装置。

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