Flowable placental connective tissue matrices for tendon repair: A review

IF 2.5 3区 工程技术 Q2 BIOLOGY
Protzman Nicole M, M. Yong, S. Raja, Long Desiree, Gosiewska Anna, Hariri Robert J, Brigido Stephen A
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引用次数: 2

Abstract

Tendon injuries are associated with considerable pain and disability. Owing to the hypovascularity and hypocellularity of the tissue, natural tendon healing is slow and ineffective. Traditional conservative and surgical treatment options fail to address the underlying pathology. As a result, the healed tendon is mechanically incompetent and prone to degeneration and rupture. Therefore, new biological methods have been suggested to enhance tendon repair and regeneration. Flowable Placental Connective Tissue Matrices (FP-CTMs) represent a promising means to promote tendon healing. Like non-flowable placental scaffolds, FP-CTMs possess the innate healing properties of the placenta and provide structural and biochemical extracellular matrix components. Unlike their non-flowable counterparts, FP-CTMs have the added benefits of minimal invasiveness and the capacity to fill irregular spaces. FP-CTMs can enhance tendon repair by providing a three-dimensional extracellular matrix for cellular attachment and proliferation while decreasing inflammation and limiting adhesion formation. The present report reviews tendon biology, pathology, healing, and current treatment modalities, followed by a comprehensive literature review, evaluating the clinical application of FP-CTMs for tendon repair. Recent research suggests that the use of FP-CTMs in tendon repair is safe and efficacious and further indicates that FP-CTMs can modulate the tendon repair environment and improve clinical outcomes. However, the existing clinical evidence is limited to retrospective case series with no control group. Therefore, additional work must be performed to better understand the clinical applications and therapeutic benefits of FP-CTM in tendon repair compared with conventional treatments.
可流动胎盘结缔组织基质用于肌腱修复:综述
肌腱损伤与相当大的疼痛和残疾有关。由于组织的低血管性和低细胞性,肌腱自然愈合是缓慢和无效的。传统的保守和手术治疗方案不能解决潜在的病理。因此,愈合后的肌腱在机械上是无能的,容易发生退变和断裂。因此,人们提出了新的生物方法来增强肌腱的修复和再生。可流动胎盘结缔组织基质(FP-CTMs)是一种很有前途的促进肌腱愈合的手段。与不可流动的胎盘支架一样,FP-CTMs具有胎盘固有的愈合特性,并提供结构和生化细胞外基质成分。与非流动介质不同,FP-CTMs具有侵入性最小和填充不规则空间的能力。FP-CTMs可以通过提供三维细胞外基质促进细胞附着和增殖,同时减少炎症和限制粘连形成,从而增强肌腱修复。本报告回顾了肌腱生物学、病理学、愈合和目前的治疗方式,然后进行了全面的文献回顾,评估了FP-CTMs在肌腱修复中的临床应用。最近的研究表明,FP-CTMs在肌腱修复中的应用是安全有效的,进一步表明FP-CTMs可以调节肌腱修复环境,改善临床效果。然而,现有的临床证据仅限于回顾性病例系列,没有对照组。因此,必须进行额外的工作,以更好地了解FP-CTM在肌腱修复中的临床应用和治疗效果,与传统治疗方法相比。
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来源期刊
Yale Journal of Biology and Medicine
Yale Journal of Biology and Medicine Biochemistry, Genetics and Molecular Biology-General Biochemistry,Genetics and Molecular Biology
CiteScore
5.00
自引率
0.00%
发文量
41
期刊介绍: The Yale Journal of Biology and Medicine (YJBM) is a graduate and medical student-run, peer-reviewed, open-access journal dedicated to the publication of original research articles, scientific reviews, articles on medical history, personal perspectives on medicine, policy analyses, case reports, and symposia related to biomedical matters. YJBM is published quarterly and aims to publish articles of interest to both physicians and scientists. YJBM is and has been an internationally distributed journal with a long history of landmark articles. Our contributors feature a notable list of philosophers, statesmen, scientists, and physicians, including Ernst Cassirer, Harvey Cushing, Rene Dubos, Edward Kennedy, Donald Seldin, and Jack Strominger. Our Editorial Board consists of students and faculty members from Yale School of Medicine and Yale University Graduate School of Arts & Sciences. All manuscripts submitted to YJBM are first evaluated on the basis of scientific quality, originality, appropriateness, contribution to the field, and style. Suitable manuscripts are then subject to rigorous, fair, and rapid peer review.
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