Department of Orthopedic Surgery, Qing Hai University Affiliated Hospital, Xining, Qinghai, China; Department of Pain Physiotherapy, People's Hospital of Rizhao, Rizhao, Shandong,
Physiol Res. 2024 Nov 19;73(5):819-829. doi: 10.33549/physiolres.935439.
Bone nonunion delays fracture end repair and is associated with inflammation. Although bone nonunion can be effectively repaired in clinical practice, many cases of failure. Studies have confirmed that BMP-2 and nHA/PA66 repaired bone defects successfully. There are few studies on the effects of the combined application of BMP-2 and NHA/PA66 on bone nonunion osteogenesis and inflammation. We aimed to investigate the expression level of inflammation-related genes in patients with bone nonunion and the effect of BMP-2-infected mesenchymal stem cells combined with nHA/PA66 on the level of inflammation in femur nonunion rats. We searched for a gene expression profile related to bone nonunion inflammation (GSE93138) in the GEO public database. Bone marrow mesenchymal stem cells (MSCs) of SD rats were cultured and passed through. We infected the third generation of MSCs with lentivirus carrying BMP-2 and induced the infected MSCs to bone orientation. We detected the expression level of BMP-2 by RT-PCR and the cell viability and alkaline phosphatase (ALP) activity by CCK8 and then analyzed the cell adhesion ability. Finally, the levels of related inflammatory factors, including C-reactive protein (CRP), interleukin-6 (IL-6), tumor necrosis factor-alpha (TNF-alpha) and Erythrocyte Sedimentation Rate (ESR), were detected in nonunion rats. Our findings: The patients with nonunion had up-regulated expression of 26 differentially inflammatory genes. These genes are mainly enriched in innate immune response, extracellular region, calcium ion binding, Pantothenate and CoA biosynthesis pathways. The expression level of BMP-2 in the Lenti-BMP-2 group was higher (vs. empty lentivirus vector group: t=5.699; vs. uninfected group t=3.996). The cell activity of the MSCs + BMP-2 + nHA/PA66 group increased gradually. After being combined with nHA/PA66, MSCs transfected with BMP-2 spread all over the surface of nHA/PA66 and grew into the material pores. MSCs + BMP-2 + nHA/PA66 cells showed positive ALP staining, and the OD value of ALP was the highest. The levels of CRP, IL-6, TNF-alpha, and ESR in the MSCs + BMP-2 + nHA/PA66 group were lower than those in the MSCs and MSCs + nHA/PA66 group but higher than those in MSCs + BMP-2 group. The above comparisons were all P<0.05. The findings demonstrated that the expression level of inflammation-related genes increased in the patients with bone nonunion. The infection of MSCs by BMP-2 could promote the directed differentiation of MSCs into osteoblasts in the bone marrow of rats, enhance the cell adhesion ability and ALP activity, and reduce inflammation in rats with bone nonunion.
骨不连延迟骨折端修复,并与炎症有关。虽然骨不连在临床实践中可以得到有效修复,但许多病例仍会失败。研究证实,BMP-2 和 nHA/PA66 可成功修复骨缺损。关于 BMP-2 和 nHA/PA66 联合应用对骨不连成骨和炎症的影响的研究较少。我们旨在研究骨不连患者炎症相关基因的表达水平,以及 BMP-2 感染的间充质干细胞与 nHA/PA66 联合应用对股骨干不连大鼠炎症水平的影响。我们在 GEO 公共数据库中搜索与骨不连炎症相关的基因表达谱(GSE93138)。培养 SD 大鼠骨髓间充质干细胞(MSCs)并传代。我们用携带 BMP-2 的慢病毒感染第三代 MSCs,并诱导感染的 MSCs 向成骨方向分化。通过 RT-PCR 检测 BMP-2 的表达水平,通过 CCK8 检测细胞活力和碱性磷酸酶(ALP)活性,然后分析细胞黏附能力。最后,检测骨不连大鼠相关炎症因子的水平,包括 C-反应蛋白(CRP)、白细胞介素-6(IL-6)、肿瘤坏死因子-α(TNF-α)和红细胞沉降率(ESR)。我们的研究结果:骨不连患者有 26 个炎症相关基因表达上调。这些基因主要富集于先天免疫反应、细胞外区域、钙离子结合、泛酸和辅酶 A 生物合成途径。Lenti-BMP-2 组的 BMP-2 表达水平较高(与空慢病毒载体组相比:t=5.699;与未感染组相比:t=3.996)。MSCs+BMP-2+nHA/PA66 组的细胞活性逐渐增加。与 nHA/PA66 结合后,转染 BMP-2 的 MSCs 遍布 nHA/PA66 表面,并生长到材料孔中。MSCs+BMP-2+nHA/PA66 细胞呈 ALP 染色阳性,ALP 的 OD 值最高。MSCs+BMP-2+nHA/PA66 组的 CRP、IL-6、TNF-α和 ESR 水平低于 MSCs 组和 MSCs+nHA/PA66 组,但高于 MSCs+BMP-2 组。上述比较均 P<0.05。结果表明,骨不连患者炎症相关基因表达水平升高。BMP-2 感染 MSCs 可促进大鼠骨髓中 MSCs 向成骨细胞的定向分化,增强细胞黏附能力和 ALP 活性,降低骨不连大鼠的炎症反应。