Zhu Jun, Tang Haoyu, Zhang Zhenhua, Zhang Yong, Qiu Chengfeng, Zhang Ling, Huang Pinge, Li Feng
Minimally invasive Department of Orthopedics, The first people's Hospital of Huaihua, 418000, Hunan, PR China.
Minimally invasive Department of Orthopedics, The first people's Hospital of Huaihua, 418000, Hunan, PR China.
Int Immunopharmacol. 2017 Feb;43:236-242. doi: 10.1016/j.intimp.2016.12.020. Epub 2016 Dec 30.
Intervertebral disc (IVD) degeneration is a common disease that represents a significant cause of socio-economic problems. Bone marrow-derived mesenchymal stem cells (BMSCs) are a potential autologous stem cell source for the nucleus pulposus regeneration. Kaempferol has been reported to exert protective effects against both osteoporosis and obesity. This study explored the effect of kaempferol on BMSCs differentiation and inflammation. The results demonstrated that kaempferol did not show any cytotoxicity at concentrations of 20, 60 and 100μM. Kaempferol enhanced cell viability by counteracting the lipopolysaccharide (LPS)-induced cell apoptosis and increasing cell proliferation. Western blot analysis of mitosis-associated nuclear antigen (Ki67) and proliferation cell nuclear antigen (PCNA) further confirmed the increased effect of kaempferol on LPS-induced decreased viability of BMSCs. Besides, kaempferol elevated LPS-induced reduced level of chondrogenic markers (SOX-9, Collagen II and Aggrecan), decreased the level of matrix-degrading enzymes, i.e., matrix metalloprotease (MMP)-3 and MMP-13, suggesting the osteogenesis of BMSC under kaempferol treatment. On the other hand, kaempferol enhanced LPS-induced decreased expression of lipid catabolism-related genes, i.e., carnitine palmitoyl transferase-1 (CPT-1). Kaempferol also suppressed the expression of lipid anabolism-related genes, i.e., peroxisome proliferators-activated receptor-γ (PPAR-γ). The Oil red O staining further convinced the inhibition effect of kaempferol on BMSCs adipogenesis. In addition, kaempferol alleviated inflammatory by reducing the level of pro-inflammatory cytokines (i.e., interleukin (IL)-6) and increasing anti-inflammatory cytokine (IL-10) via inhibiting the nucleus translocation of nuclear transcription factor (NF)-κB p65. Taken together, our research indicated that kaempferol may serve as a novel target for treatment of IVD degeneration.
椎间盘(IVD)退变是一种常见疾病,是社会经济问题的重要原因。骨髓间充质干细胞(BMSCs)是用于髓核再生的潜在自体干细胞来源。据报道,山奈酚对骨质疏松症和肥胖症均具有保护作用。本研究探讨了山奈酚对BMSCs分化和炎症的影响。结果表明,在20、60和100μM浓度下,山奈酚未显示出任何细胞毒性。山奈酚通过对抗脂多糖(LPS)诱导的细胞凋亡并增加细胞增殖来提高细胞活力。对有丝分裂相关核抗原(Ki67)和增殖细胞核抗原(PCNA)的蛋白质印迹分析进一步证实了山奈酚对LPS诱导的BMSCs活力降低的增强作用。此外,山奈酚提高了LPS诱导的软骨生成标志物(SOX-9、胶原蛋白II和聚集蛋白聚糖)水平的降低,降低了基质降解酶即基质金属蛋白酶(MMP)-3和MMP-13的水平,表明山奈酚处理下BMSC的成骨作用。另一方面,山奈酚增强了LPS诱导的脂质分解代谢相关基因即肉碱棕榈酰转移酶-1(CPT-1)表达的降低。山奈酚还抑制了脂质合成代谢相关基因即过氧化物酶体增殖物激活受体-γ(PPAR-γ)的表达。油红O染色进一步证实了山奈酚对BMSCs脂肪生成的抑制作用。此外,山奈酚通过抑制核转录因子(NF)-κB p65的核转位,降低促炎细胞因子(即白细胞介素(IL)-6)水平并增加抗炎细胞因子(IL-10)来减轻炎症。综上所述,我们的研究表明山奈酚可能作为治疗IVD退变的新靶点。