Exogenous Crosslinking of Tendons as a Strategy for Mechanical Augmentation and Repair: A Narrative Review.

IF 1.7 Q2 ORTHOPEDICS
Alexandru Fofiu, Robert G Tripon, Tiberiu Băţagă, Traian V Chirilă
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引用次数: 0

Abstract

Collagens constitute a family of triple-helical proteins with a high level of structural polymorphism and a broad diversity of structural and chemical characteristics. Collagens are designed to form supporting aggregates in the extracellular spaces of our body, but they can be isolated from animal sources and processed to become available as biomaterials with wide applications in biomedicine and bioengineering. Collagens can be conveniently modified chemically, and their propensity for participating in crosslinking reactions is an important feature. While the crosslinking promoted by a variety of agents provides a range of collagen-based products, there has been minor interest for therapies based on the crosslinking of collagen while located within living connective tissues, known as exogenous crosslinking. Currently, there is only one such treatment in ocular therapeutics (for keratoconus), and another two in development, all based on mechanical augmentation of tissues due to ultraviolet (UV)-induced crosslinking. As seen in this review, there was some interest to employ exogenous crosslinking in order to reinforce mechanically the lax tendons with an aim to arrest tear propagation, stabilize the tissue, and facilitate the healing. Here we reviewed in details both the early stages and the actual status of the experimental research dedicated to the topic. Many results have not been encouraging, however there is sufficient evidence that tendons can be mechanically reinforced by chemical or photochemical exogenous crosslinking. We also compare the exogenous crosslinking using chemical agents, which was predominant in the literature reviewed, to that promoted by UV radiation, which was rather neglected but might have some advantages.

Abstract Image

外源性交联肌腱作为机械增强和修复的策略:叙述回顾。
胶原蛋白是一个三螺旋蛋白家族,具有高度的结构多态性和广泛的结构和化学特征。胶原蛋白被设计成在我们身体的细胞外空间形成支持聚集体,但它们可以从动物源中分离出来并加工成可用于生物医学和生物工程的生物材料。胶原蛋白可以方便地进行化学修饰,并且它们参与交联反应的倾向是一个重要特征。虽然各种药物促进的交联提供了一系列基于胶原蛋白的产品,但基于胶原蛋白交联的治疗方法很少受到关注,而胶原蛋白位于活结缔组织内,称为外源性交联。目前,在眼科治疗中只有一种这样的治疗方法(用于圆锥角膜),另外两种正在开发中,都是基于紫外线(UV)诱导的交联对组织的机械增强。正如在这篇综述中所看到的,有一些兴趣采用外源性交联来机械地加强松弛的肌腱,目的是阻止撕裂传播,稳定组织,促进愈合。在这里,我们详细回顾了致力于该主题的实验研究的早期阶段和实际状况。许多结果并不令人鼓舞,但是有足够的证据表明,肌腱可以通过化学或光化学外源性交联进行机械增强。我们还比较了在文献综述中以化学试剂为主的外源交联与被忽视但可能具有一定优势的紫外辐射促进的外源交联。
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来源期刊
Orthopedic Research and Reviews
Orthopedic Research and Reviews Medicine-Orthopedics and Sports Medicine
CiteScore
2.80
自引率
0.00%
发文量
51
审稿时长
16 weeks
期刊介绍: Orthopedic Research and Reviews is an international, peer-reviewed, open-access journal focusing on the patho-physiology of the musculoskeletal system, trauma, surgery and other corrective interventions to restore mobility and function. Advances in new technologies, materials, techniques and pharmacological agents will be particularly welcome. Specific topics covered in the journal include: Patho-physiology and bioengineering, Technologies and materials science, Surgical techniques, including robotics, Trauma management and care, Treatment including pharmacological and non-pharmacological, Rehabilitation and Multidisciplinarian care approaches, Patient quality of life, satisfaction and preference, Health economic evaluations. The journal welcomes submitted papers covering original research, basic science and technology, clinical studies, reviews and evaluations, guidelines, expert opinion and commentary, case reports and extended reports.
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