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用于腰椎椎间融合的三维打印钛笼与聚醚醚酮笼:体外、动物和人体对比研究的系统评价

Three-Dimensional-Printed Titanium Versus Polyetheretherketone Cages for Lumbar Interbody Fusion: A Systematic Review of Comparative In Vitro, Animal, and Human Studies.

作者信息

Patel Neal A., O’Bryant Sinead, Rogers Christopher D., Boyett Candler K., Chakravarti Sachiv, Gendreau Julian, Brown Nolan J., Pennington Zach A., Hatcher Neill B., Kuo Cathleen, Diaz-Aguilar Luis Daniel, Pham Martin H.

机构信息

School of Medicine, Mercer University, Columbus, GA, USA

School of Medicine, Mercer University, Savannah, GA, USA

出版信息

Neurospine. 2023 Jun;20(2):451-463. doi: 10.14245/ns.2346244.122. Epub 2023 Jun 30.

Abstract

Interbody fusion is a workhorse technique in lumbar spine surgery that facilities indirect decompression, sagittal plane realignment, and successful bony fusion. The 2 most commonly employed cage materials are titanium (Ti) alloy and polyetheretherketone (PEEK). While Ti alloy implants have superior osteoinductive properties they more poorly match the biomechanical properties of cancellous bones. Newly developed 3-dimensional (3D)-printed porous titanium (3D-pTi) address this disadvantage and are proposed as a new standard for lumbar interbody fusion (LIF) devices. In the present study, the literature directly comparing 3D-pTi and PEEK interbody devices is systematically reviewed with a focus on fusion outcomes and subsidence rates reported in the in vitro, animal, and human literature. A systematic review directly comparing outcomes of PEEK and 3D-pTi interbody spinal cages was performed. PubMed, Embase, and Cochrane Library databases were searched according to PRISMA (Preferred Reporting Items for Systematic Reviews and Meta-Analysis) guidelines. Mean Newcastle-Ottawa Scale score for cohort studies was 6.4. A total of 7 eligible studies were included, comprising a combination of clinical series, ovine animal data, and in vitro biomechanical studies. There was a total population of 299 human and 59 ovine subjects, with 134 human (44.8%) and 38 (64.4%) ovine models implanted with 3D-pTi cages. Of the 7 studies, 6 reported overall outcomes in favor of 3D-pTi compared to PEEK, including subsidence and osseointegration, while 1 study reported neutral outcomes for device related revision and reoperation rate. Though limited data are available, the current literature supports 3D-pTi interbodies as offering superior fusion outcomes relative to PEEK interbodies for LIF without increasing subsidence or reoperation risk. Histologic evidence suggests 3D-Ti to have superior osteoinductive properties that may underlie these superior outcomes, but additional clinical investigation is merited.

摘要

椎间融合术是腰椎手术中的一项主要技术,可实现间接减压、矢状面复位以及成功的骨融合。两种最常用的椎间融合器材料是钛(Ti)合金和聚醚醚酮(PEEK)。虽然钛合金植入物具有优异的骨诱导性能,但它们与松质骨的生物力学性能匹配性较差。新开发的三维(3D)打印多孔钛(3D-pTi)解决了这一缺点,并被提议作为腰椎椎间融合(LIF)装置的新标准。在本研究中,对直接比较3D-pTi和PEEK椎间融合器的文献进行了系统综述,重点关注体外、动物和人体文献中报道的融合结果和下沉率。进行了一项直接比较PEEK和3D-pTi椎间融合器结果的系统综述。根据PRISMA(系统评价和Meta分析的首选报告项目)指南搜索了PubMed、Embase和Cochrane图书馆数据库。队列研究的平均纽卡斯尔-渥太华量表评分为6.4。共纳入7项符合条件的研究,包括临床系列研究、绵羊动物数据和体外生物力学研究。总共有299名人类和59只绵羊受试者,其中134名人类(44.8%)和38只(64.4%)绵羊模型植入了3D-pTi椎间融合器。在这7项研究中,6项报告总体结果显示3D-pTi优于PEEK,包括下沉和骨整合,而1项研究报告了与器械相关的翻修和再次手术率的中性结果。尽管可用数据有限,但目前的文献支持3D-pTi椎间融合器相对于PEEK椎间融合器在LIF中提供更好的融合结果,而不会增加下沉或再次手术风险。组织学证据表明3D-Ti具有优异的骨诱导性能,这可能是这些优异结果的基础,但值得进行更多的临床研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fceb/10323354/f89394ef04d5/ns-2346244-122f1.jpg

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