Department of Spine Surgery, Tianjin Hospital, Tianjin University, Tianjin, 300211, P. R. China.
Department of Orthopedics, Qilu Hospital of Shandong University, Jinan, Shandong, 250012, P. R. China.
Adv Mater. 2024 Oct;36(41):e2408678. doi: 10.1002/adma.202408678. Epub 2024 Sep 2.
As an age-related disease, intervertebral disc degeneration is closely related to inflammation and aging. Inflammatory cytokines and cellular senescence collectively contribute to the degradation of intervertebral disc. Blocking this synergy reduces disc extracellular matrix damage caused by inflammation and aging. In this study, drug-loaded nanofibers with sequential targeting functions are constructed through intelligent response, hydrophilicity, and in situ self-assembly empowerment of flurbiprofen. The peptide precursor responds to the cleavage of overexpressed MMP-2 in the degenerative intervertebral disc microenvironment (intracellular and extracellular), resulting in the formation of self-assembled nanofibers that enable the on-demand release of flurbiprofen and COX-2 response. In vitro, Comp. 1 (Flurbiprofen-GFFYPLGLAGEEEERGD) reduces the expression of inflammation-related genes and proteins and the polarization of M1 macrophages by competitively inhibiting COX-2 and increases the expression of extracellular matrix proteins COL-2 and aggrecan. Additionally, it can reduce the expression of Senescence-Associated Secretory Phenotype and DNA damage in aged nucleus pulposus cells and promote the recovery of proliferation and cell cycle. In vivo, drug-loaded nanofibers delay intervertebral disc degeneration by inhibiting inflammation and preventing the accumulation of senescent cells. Therefore, the sequentially targeted self-assembled drug-loaded nanofibers can delay intervertebral disc degeneration by blocking the synergistic effect of inflammatory cytokines and cellular senescence.
作为一种与年龄相关的疾病,椎间盘退变性疾病与炎症和衰老密切相关。炎症细胞因子和细胞衰老共同导致椎间盘的降解。阻断这种协同作用可以减少炎症和衰老引起的椎间盘细胞外基质损伤。在这项研究中,通过智能响应、氟比洛芬的亲水性和原位自组装赋予能力,构建了具有顺序靶向功能的载药纳米纤维。肽前体响应在退变椎间盘微环境(细胞内和细胞外)中过表达的 MMP-2 的裂解,形成自组装纳米纤维,实现氟比洛芬和 COX-2 反应的按需释放。在体外,Comp.1(氟比洛芬-GFFYPLGLAGEEEERGD)通过竞争性抑制 COX-2 降低与炎症相关的基因和蛋白表达以及 M1 巨噬细胞的极化,并增加 COL-2 和聚集蛋白的表达。此外,它还可以减少衰老核髓核细胞中衰老相关分泌表型和 DNA 损伤的表达,并促进增殖和细胞周期的恢复。在体内,载药纳米纤维通过抑制炎症和防止衰老细胞的积累来延缓椎间盘退变。因此,顺序靶向自组装载药纳米纤维可以通过阻断炎症细胞因子和细胞衰老的协同作用来延缓椎间盘退变。