Department of Joint Surgery, The First Affiliated Hospital of Sun Yat-Sen University, Guangzhou 510080, China.
Biomater Sci. 2021 Jul 13;9(14):4922-4935. doi: 10.1039/d1bm00691f.
Aseptic loosening caused by peri-implant osteolysis (PIO) is a common complication after joint replacement, and there is still no better treatment than revision surgery. The wear particle-induced inflammation response, especially subsequent osteoclastic bone resorption, is responsible for PIO. As the importance of wear particles in inducing autophagy in cells around the prosthesis in PIO has been discovered, this might be a central process underlying aseptic loosening. However, the role of autophagy induced by wear particles in osteoclastogenesis during PIO remains unclear. In this study, we investigated the role of autophagy in osteoclastogenesis and verified it in a mouse calvarial osteolysis model. We found that osteoclasts were increased in the interface membranes of patients with aseptic loosening. In vitro, knocking down the Atg5 gene or using autophagy inhibitors (3-MA, LY294002) to inhibit autophagy was found to repress osteoclastogenesis and decrease expression of the osteoclast-related genes TRAP, cathepsin K, and matrix metalloprotein 9 (MMP-9) with or without titanium (Ti) particles. In vivo, 3-MA and LY294002 repressed Ti particle-stimulated osteolysis and osteoclastogenesis and reduced expression of the pro-inflammatory factors TNF-α, IL-1β, and IL-6. Our results suggest that 3-MA and LY294002 might be the potential medicines to prevent and treat PIO and aseptic loosening.
种植体周围骨溶解(PIO)引起的无菌性松动是关节置换术后的常见并发症,除了翻修手术外,目前尚无更好的治疗方法。磨损颗粒引起的炎症反应,尤其是随后的破骨细胞骨吸收,是 PIO 的罪魁祸首。由于已经发现磨损颗粒在 PIO 中诱导假体周围细胞自噬的重要性,这可能是无菌性松动的核心过程。然而,磨损颗粒诱导的自噬在 PIO 中的破骨细胞生成中的作用尚不清楚。在这项研究中,我们研究了自噬在破骨细胞生成中的作用,并在小鼠颅骨骨溶解模型中进行了验证。我们发现,无菌性松动患者的界面膜中破骨细胞增多。在体外,敲低 Atg5 基因或使用自噬抑制剂(3-MA、LY294002)抑制自噬,发现可以抑制破骨细胞生成,并降低破骨细胞相关基因 TRAP、组织蛋白酶 K 和基质金属蛋白酶 9(MMP-9)的表达,无论有无钛(Ti)颗粒。在体内,3-MA 和 LY294002 抑制 Ti 颗粒刺激的骨溶解和破骨细胞生成,并降低促炎因子 TNF-α、IL-1β 和 IL-6 的表达。我们的研究结果表明,3-MA 和 LY294002 可能是预防和治疗 PIO 和无菌性松动的潜在药物。