Zhang Xin-Xin, Liang Xu, Li Sen-Rui, Guo Kuang-Jin, Li Dai-Feng, Li Tian-Fang
Department of Rheumatology, Zhengzhou University First Affiliated Hospital, Zhengzhou, China.
Department of Orthopaedics, Zhengzhou University First Affiliated Hospital, Zhengzhou, China.
Cell Transplant. 2022 Jan-Dec;31:9636897221082687. doi: 10.1177/09636897221082687.
Glucocorticoid (GC)-induced avascular osteonecrosis of femoral head (AOFH) is a devastating complication, and no cures are currently available for it. Previous studies have demonstrated that implantation of bone marrow mesenchymal stem cells (BMMSCs) may prevent the progression of pre-collapse AOFH. Based on previous observations, we hypothesized that GCs induce AOFH via the COX-2 (cyclooxygenase-2)-PGE-2 (prostaglandin E2)-HIF-1α (hypoxia-inducible factor-1α) axis, and that modification of BMMSCs may improve the efficacy of their implantation. BMMSCs isolated from wild-type (WT) mice were treated with dexamethasone (Dex) and the results showed that Dex repressed the expression of COX-2. Femoral head samples harvested from both WT and COX-2 knock-out (COX-2) mice were subjected to micro-computed tomography and histological examinations. Compared with their WT littermates, COX-2 mice had larger trabecular separations, diminished microvasculature, and reduced HIF-1α expression in their femoral heads. angiogenesis assays with tube formation and fetal metatarsal sprouting demonstrated that Dex repressed angiogenesis and PGE-2 antagonized its effects. An AOFH model was successfully established in C57BL/6J mice. experiment showed that BMMSCs infected with Lentivirus encoding HIF-1α (Lenti-HIF-1α) resulted in a robust increase in the production of HIF-1α protein. Implantation of BMMSCs overexpressing HIF-1α into femoral heads of AOFH mice significantly reduced osteonecrotic areas and enhanced bone repair, thus largely preserving the structural integrity of femoral heads. Our studies provide strong rationales for early intervention with core decompression and implantation of modified BMMSCs for GC-induced AOFH, which may spare patients from expensive and difficult surgical procedures.
糖皮质激素(GC)诱导的股骨头缺血性坏死(AOFH)是一种严重的并发症,目前尚无治愈方法。先前的研究表明,植入骨髓间充质干细胞(BMMSCs)可能会阻止塌陷前AOFH的进展。基于先前的观察结果,我们推测GC通过COX-2(环氧化酶-2)-PGE-2(前列腺素E2)-HIF-1α(缺氧诱导因子-1α)轴诱导AOFH,并且对BMMSCs的修饰可能会提高其植入的效果。用去炎松(Dex)处理从野生型(WT)小鼠分离的BMMSCs,结果显示Dex抑制COX-2的表达。对从WT和COX-2基因敲除(COX-2)小鼠收集的股骨头样本进行微计算机断层扫描和组织学检查。与它们的WT同窝小鼠相比,COX-2小鼠的股骨头小梁间距更大,微血管减少,HIF-1α表达降低。通过管形成和胎儿跖骨发芽进行的血管生成试验表明,Dex抑制血管生成,而PGE-2拮抗其作用。在C57BL/6J小鼠中成功建立了AOFH模型。实验表明,用编码HIF-1α的慢病毒(Lenti-HIF-1α)感染BMMSCs导致HIF-1α蛋白的产生显著增加。将过表达HIF-1α的BMMSCs植入AOFH小鼠的股骨头中,可显著减少骨坏死面积并增强骨修复,从而在很大程度上保持股骨头的结构完整性。我们的研究为GC诱导的AOFH的早期减压和改良BMMSCs植入提供了有力的理论依据,这可能使患者免于昂贵且困难的手术程序。