在大鼠股骨缺损模型中,通过在膜中预先加入去除了 CD8 淋巴细胞的骨髓单核细胞,提高了一步法膜技术治疗大面积骨缺损的效果。

IF 5.7 2区 医学 Q1 IMMUNOLOGY Frontiers in Immunology Pub Date : 2024-10-23 eCollection Date: 2024-01-01 DOI:10.3389/fimmu.2024.1488611
Marissa Penna-Martinez, Andreas Kammerer, Pia Stützle, Sabatian Fees, Savina Behr, Inna Schaible, Katrin Schröder, René Danilo Verboket, Jonas Neijhoft, Ingo Marzi, Christoph Nau, Dirk Henrich
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引用次数: 0

摘要

背景:使用人体无细胞真皮基质(hADM)的一步膜技术是一种治疗大面积骨缺损的实验性方法。这种方法省去了 Masquelet 膜诱导步骤,在保持疗效的同时缩短了手术时间。然而,以前的研究表明,用骨髓单核细胞(BMC)定植 hADM 会使愈合恶化,这可能是由于 CD8+ 淋巴细胞的存在,而 CD8+ 淋巴细胞会对骨再生产生负面影响。本研究旨在探究在该技术中,骨髓单核细胞对骨愈合的负面影响是否是由 CD8+ 细胞群造成的:将 25 只雄性 Sprague-Dawley 大鼠分为三组(G1-G3),每组股骨缺损 5 毫米。BMC 从合子供体大鼠中分离,其中一组用磁力从 BMC 部分中去除 CD8+ 淋巴细胞。用骨屑填充缺损处,并用不同处理的 hADM 包扎:G1 组接受原生 hADM,G2 组接受 hADM+BMC,G3 组接受 hADM+BMC-CD8。8 周后,通过放射学、生物力学和组织学检查对股骨进行评估:结果:与 G2(hADM+BMC)相比,G3(hADM+BMC-CD8)的骨缺损和骨矿物质密度(BMD)明显改善。G3组的骨量、骨形成和中位弯曲硬度更高。免疫组织学分析表明,与 G2 相比,G3 的 CD8 细胞数量明显减少,产生 IFNγ 的细胞比例也更低:结论:在定植 hADM 之前消耗 BMC 中的 CD8+ 细胞可明显改善骨愈合,这可能是由于局部介质环境发生了变化。这表明,术前使用去CD8+细胞的BMC定植可提高一步膜技术的效果。
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Enhancement of a one-step membrane technique for the treatment of large bone defects by pre-seeding the membrane with CD8 lymphocyte depleted bone marrow mononuclear cells in a rat femoral defect model.

Background: The one-step membrane technique, using a human acellular dermal matrix (hADM), is an experimental method for treating large bone defects. This eliminates the need for the Masquelet membrane induction step, shortening the procedure while maintaining effectiveness. However, previous studies showed that colonizing hADM with bone marrow mononuclear cells (BMC) worsens healing, likely due to the presence of CD8+ lymphocytes, which negatively affect bone regeneration. This study aims to investigate whether the negative impact of BMC on bone healing in this technique is due to the CD8+ cell population.

Materials and methods: A 5 mm femoral defect was created in 25 male Sprague-Dawley rats, divided into three groups (G1-G3). BMC were isolated from syngenic donor rats, with CD8+ lymphocytes removed magnetically from the BMC fraction in one group. The defects were filled with bone chips and wrapped with differently treated hADM: G1 received native hADM, G2 received hADM+BMC, and G3 received hADM+BMC-CD8. After 8 weeks, the femurs were evaluated through radiological, biomechanical, and histological examinations.

Results: Bone defects and bone mineral density (BMD) were significantly improved in G3 (hADM+BMC-CD8) compared to G2 (hADM+BMC). Bone volume, bone formation, and median bending stiffness were higher in G3. Immunohistological analysis showed a significant decrease in CD8 cell count in G3, with a lower percentage of IFNγ-producing cells compared to G2.

Conclusion: Depleting CD8+ cells from BMC before colonizing hADM significantly improved bone healing, likely due to changes in the local mediator environment. This suggests that preoperative colonization with CD8+-depleted BMC could enhance the one-step membrane technique.

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来源期刊
CiteScore
9.80
自引率
11.00%
发文量
7153
审稿时长
14 weeks
期刊介绍: Frontiers in Immunology is a leading journal in its field, publishing rigorously peer-reviewed research across basic, translational and clinical immunology. This multidisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to researchers, academics, clinicians and the public worldwide. Frontiers in Immunology is the official Journal of the International Union of Immunological Societies (IUIS). Encompassing the entire field of Immunology, this journal welcomes papers that investigate basic mechanisms of immune system development and function, with a particular emphasis given to the description of the clinical and immunological phenotype of human immune disorders, and on the definition of their molecular basis.
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