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临床试验/NCT07199075
NCT07199075尚未招募不适用

Fusion Rate of Anterior Lumbar Interbody Fusion and Extreme Lateral Interbody Fusion Using Titanium Cages Filled With Stand-alone Fibergraft in Lumbar Spinal Fusion

AO Innovation Translation Center1 个研究点 分布在 1 个国家目标入组 80 人开始时间: 2025年10月31日最近更新:
适应症

试验速览

阶段
不适用
状态
尚未招募
发起方
入组人数
80
试验地点
1
主要终点
Interbody fusion status

研究概览

简要总结

Some people have back problems caused by degenerative conditions or instability of the spine (eg. Spondylolisthesis). These problems can lead to pain, nerve issues, or difficulties in walking. A common treatment is a type of back surgery called lumbar interbody fusion, which helps stabilize the spine.

At the St. Maartenskliniek in the Netherlands, doctors have been using a special material called Fibergraft Bioactive Glass Putty for such surgeries since 2023. This material helps bones grow and heal, and it's placed inside the spine without needing extra bone from another part of the body.

This study will look at how well this material works by evaluating how many patients' bones successfully healed after surgery using this material. It will also look at how patients feel and recover after the procedure

详细描述

Lumbar interbody fusion is an established procedure for patients with lumbar degenerative conditions and spondylolisthesis, with symptoms of pain, radiculopathy, and/or myelopathy. Completion of fusion, ie, union, of an intended motion segment remains a desirable endpoint of spinal fusion, supported by the observations that pseudoarthrosis, ie, nonunion, following spinal fusion is correlated with poorer patient outcomes.

Iliac crest bone autograft is considered the gold standard for spinal fusion with excellent fusion rates and clinical outcomes. However, its clinical use has been restricted due to limited availability of harvestable bone, donor-site morbidity, increased surgical time, and the need for additional surgical staff and associated costs. As a result, there has been great interest in the search for bone graft substitutes to replace or reduce the amount of autograft, which will lower the risks associated with the harvesting procedure while still providing a favorable environment for a solid fusion. A wide range of synthetic bone grafts have been explored, including ceramics, bioactive glasses, and polymer-based compounds.

Although bioactive glasses have been used in spinal fusion for three decades, literature on them is dispersed over the wide array of bioactive glasses investigated and numerous small clinical studies. There is marked variability in these studies in terms of the patient population, indications, procedures performed, single- vs multi-level procedures, types of bioactive glasses, use of autografts, duration of follow-up (FU), and methods to determine fusion status. It is therefore difficult to draw conclusions on the optimal bioactive glass for a particular application. Nonetheless, the current literature suggests that bioactive glasses may be effective as bone graft extenders when combined with autograft to promote spinal fusion, yielding at least noninferior fusion rates when compared with autograft alone. There is limited data regarding the effectiveness of bone glasses as standalone bone graft substitutes or in interbody fusion procedures.

This single-center study to be conducted at the St. Maartenskliniek, the Netherlands, aims to address this knowledge gap. Since 2023, the hospital has consistently used Fibergraft Bioactive Glass (BG) Putty, a product from the FIBERGRAFTTM Bioactive Bone Graft Substitute family (Johnson & Johnson MedTech), as standalone cage fillers for anterior lumbar interbody fusion (ALIF) and extreme lateral interbody fusion (XLIF). This provides an opportunity for a case series to determine the fusion rate for bioactive glass as a standalone bone graft substitute in lumbar interbody fusion.

研究设计

研究类型
Observational
观察模型
Cohort
时间视角
Prospective

入排标准

年龄范围
18 Years 至 —(Adult, Older Adult)
性别
All
接受健康志愿者

入选标准

  • Adults ≥ 18 years old
  • Diagnosed with the following lumbar spine disorders: foraminal nerve root compression, isthmic spondylolisthesis, and short-segment (1-2 levels) deformity.
  • Undergone primary surgery of ALIF or XLIF using titanium cages filled with standalone Fibergraft and with the following criteria fulfilled (ie, the index surgery):
  • ALIF (up to 2 levels) as either standalone (ie, no posterior procedure) or as an anterior first procedure with posterior procedure as a second procedure.
  • XLIF (up to 2 levels) as an anterior first procedure with posterior procedure as a second procedure.
  • Consenting to have CT scans taken to allow assessment of fusion status at 12-24 months post index surgery
  • This criterion is applicable to patients who have not undergone revision surgery.
  • For patients who have undergone revision surgery due to any reason other than nonunion, which typically occurs within 1 year of the index surgery, this criterion is only applicable if it is possible to obtain the CT scan within 12-24 months of the index surgery. If no CT scan can be taken during this window, the patient does not need to undergo the CT scan; in such cases, the CT scan that has been taken as part of the standard of care before the revision surgery will be retrospectively retrieved to assess the fusion status at the time of the revision surgery.
  • This criterion is not applicable to patients who underwent revision surgery due to nonunion, which typically occurs 1 year after the index surgery; these patients do not need to undergo the CT scan. In such cases, the CT scan that has been taken as part of the standard of care before the revision surgery will also be retrospectively retrieved to assess and grade the fusion status at the time of the revision surgery.
  • Ability to provide informed consent according to the IRB/EC defined and approved procedures

排除标准

  • Revision surgery
  • Standalone XLIF
  • Posterior lumbar interbody fusion
  • Diagnosis of fractures, malignancies, ankylosing spondylitis, or acute cauda equina syndrome
  • Diagnosis of Parkinson's disease
  • Body mass index > 35kg/m2

结局指标

主要结局

Interbody fusion status

时间窗: 12months to 24th months after index surgery

The primary outcome measure is the interbody fusion status determined by a regular lumbar spine CT scan protocol without additional radiation or contrast agents. The patients will be evaluated with one CT-scan within a window of 12 to 24 months postsurgery. The Bridwell Interbody Fusion Grading Classification will be used to assess fusion status for each intended segment.

次要结局

  • Patient's overall satisfaction(12months to 24th months after the index surgery)
  • General back pain and (worse side) leg pain(Before the index surgery and 12-24 months after the index surgery)
  • Oswestry Disability Index (ODI)(Before the index surgery and 12-24months post index surgery)
  • Reoperations(From after the index surgery until the 12months to 24months visit after the index surgery)
  • The EuroQoL-5 Dimension(Before the index surgery and 12-24months after the index surgery)
  • Complications(From after the index surgery until the visit at 12months to 24months after the index surgery)

研究者

发起方
AO Innovation Translation Center
申办方类型
Other
责任方
Sponsor

研究点 (1)

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