首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Understanding the Future Prospects of Synergizing Minimally Invasive Transforaminal Lumbar Interbody Fusion Surgery with Ceramics and Regenerative Cellular Therapies
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Understanding the Future Prospects of Synergizing Minimally Invasive Transforaminal Lumbar Interbody Fusion Surgery with Ceramics and Regenerative Cellular Therapies

机译:了解陶瓷和再生细胞疗法协同促进微创突变突变体腰椎间融合手术的未来前景

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摘要

Transforaminal lumber interbody fusion (TLIF) is the last resort to address the lumber degenerative disorders such as spondylolisthesis, causing lower back pain. The current surgical intervention for these abnormalities includes open TLIF. However, in recent years, minimally invasive TLIF (MIS-TLIF) has gained a high momentum, as it could minimize the risk of infection, blood loss, and post-operative complications pertaining to fusion surgery. Further advancement in visualizing and guiding techniques along with grafting cage and materials are continuously improving the safety and efficacy of MIS-TLIF. These assistive techniques are also playing a crucial role to increase and improve the learning curve of surgeons. However, achieving an appropriate output through TLIF still remains a challenge, which might be synergized through 3D-printing and tissue engineering-based regenerative therapy. Owing to their differentiation potential, biomaterials such as stem/progenitor cells may contribute to restructuring lost or damaged tissues during MIS-TLIF, and this therapeutic efficacy could be further supplemented by platelet-derived biomaterials, leading to improved clinical outcomes. Thus, based on the above-mentioned strategies, we have comprehensively summarized recent developments in MIS-TLIF and its possible combinatorial regenerative therapies for rapid and long-term relief.
机译:晶状体木材椎间体融合(TLIF)是解决木材退行性疾病如脊柱细胞凋亡的最后一个手段,导致腰部疼痛。目前的这些异常手术干预包括开放的TLIF。然而,近年来,微创TLIF(MIS-TLIF)获得了高势头,因为它可以最大限度地减少与融合手术有关的感染,失血和术后并发症的风险。可视化和引导技术以及接枝笼和材料的进一步进步是不断提高MIS-TLIF的安全性和功效。这些辅助技术也在发挥重要作用,以增加和改善外科医生的学习曲线。然而,通过TLIF实现适当的输出仍然是一个挑战,这可能通过3D印刷和基于组织工程的再生治疗来协同效应。由于它们的分化潜力,诸如茎/祖细胞的生物材料可能有助于在MIS-TLIF期间重组丢失或受损的组织,并且这种治疗效果可以通过血小板衍生的生物材料进一步补充,导致临床结果改善。因此,基于上述策略,我们全面地汇总了MIS-TLIF的最新发展及其可能的组合再生疗法,可快速和长期缓解。

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