首页> 美国卫生研究院文献>Journal of Biomechanical Engineering >Design Requirements for Annulus Fibrosus Repair: Review of Forces Displacements and Material Properties of the Intervertebral Disk and a Summary of Candidate Hydrogels for Repair
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Design Requirements for Annulus Fibrosus Repair: Review of Forces Displacements and Material Properties of the Intervertebral Disk and a Summary of Candidate Hydrogels for Repair

机译:纤维环修复的设计要求:评估椎间盘的力位移和材料特性以及候选水凝胶的摘要

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摘要

There is currently a lack of clinically available solutions to restore functionality to the intervertebral disk (IVD) following herniation injury to the annulus fibrosus (AF). Microdiscectomy is a commonly performed surgical procedure to alleviate pain caused by herniation; however, AF defects remain and can lead to accelerated degeneration and painful conditions. Currently available AF closure techniques do not restore mechanical functionality or promote tissue regeneration, and have risk of reherniation. This review determined quantitative design requirements for AF repair materials and summarized currently available hydrogels capable of meeting these design requirements by using a series of systematic PubMed database searches to yield 1500+ papers that were screened and analyzed for relevance to human lumbar in vivo measurements, motion segment behaviors, and tissue level properties. We propose a testing paradigm involving screening tests as well as more involved in situ and in vivo validation tests to efficiently identify promising biomaterials for AF repair. We suggest that successful materials must have high adhesion strength (∼0.2 MPa), match as many AF material properties as possible (e.g., approximately 1 MPa, 0. 3 MPa, and 30 MPa for compressive, shear, and tensile moduli, respectively), and have high tensile failure strain (∼65%) to advance to in situ and in vivo validation tests. While many biomaterials exist for AF repair, few undergo extensive mechanical characterization. A few hydrogels show promise for AF repair since they can match at least one material property of the AF while also adhering to AF tissue and are capable of easy implantation during surgical procedures to warrant additional optimization and validation.
机译:当前缺乏临床上可用的解决方案来恢复纤维环(AF)的椎间盘突出症后椎间盘(IVD)的功能。微盘切除术是减轻疝气引起的疼痛的常用手术方法。但是,AF缺陷仍然存在,并可能导致加速的变性和痛苦的状况。当前可用的AF闭合技术不能恢复机械功能或促进组织再生,并且具有再生的风险。这篇综述确定了AF修复材料的定量设计要求,并总结了目前可用的水凝胶,这些水凝胶通过使用一系列系统的PubMed数据库搜索来产生1500+篇论文,这些论文经过筛选和分析与人体腰椎体内测量,运动的相关性节段行为和组织水平特性。我们提出了一种涉及筛选测试以及更多地涉及原位和体内验证测试的测试范式,以有效地识别有前途的AF修复生物材料。我们建议成功的材料必须具有较高的粘合强度(〜0.2 MPa),并与尽可能多的AF材料属性匹配(例如,压缩模量,剪切模量和拉伸模量分别约为1 MPa,0。3 MPa和30 MPa) ,并具有较高的拉伸破坏应变(〜65%),可以进行原位和体内验证测试。尽管存在许多用于AF修复的生物材料,但很少有材料进行广泛的机械表征。一些水凝胶显示出有可能修复房颤,因为它们可以匹配房颤的至少一种材料特性,同时还附着在房颤组织上,并且能够在外科手术过程中轻松植入,以确保进行额外的优化和验证。

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