Institute of Orthopaedic Diseases, Jinan University & Department of Orthopaedics, First Affiliated Hospital of Jinan University, Guangzhou, Guangdong 510630, China.
Chin Med J (Engl). 2011 Nov;124(21):3537-45.
Transplantation of mensenchymal stem cells (MSCs) has been proposed as a promising way for tissue engineering. However, the application of MSCs for transplantation will undergo apoptosis due to the extremely harsh microenvironment such as excessive inflammation. Apigenin (API) has been reported to protect cells against inflammatory damage and cell death by exhibiting anti-inflammatory and anti-oxidative capacity. Here we investigated the modulatory effects of API in lipopolysaccharide (LPS)-mediated inflammation and apoptosis of MSCs, and further defined the underlying mechanism.
Effects of different concentrations of API (0, 5, 10, 20, 40 and 80 µmol/L) for 24 hours, and LPS (0, 0.5 and 5.0 µg/ml) for 6 hours and 24 hours on MSCs viability were assayed by MTT. Based on this, MSCs were pretreated with different concentrations of API (0 - 40 µmol/L) at the indicated times (6, 12 and 24 hours) followed by exposure to 5 µg/ml LPS for 24 hours. MTT, phase-contrast microscopy, annexinV/propidium iodide (PI) double stain flow cytometry (FCM) and Hoechst staining were applied to explore the effects of API on MSCs induced by 5 µg/ml LPS for 24 hours. In addition, reverse-transcription polymerase chain reaction (RT-PCR) was applied to detect the mRNA expression of pro-inflammatory factors including cyclooxygenase-2 (COX-2), inducible nitric oxide synthase (iNOS), nuclear factor-kappa B (NF-κB), pro-apoptotic gene caspase-3, Bad, and anti-apoptotic gene Bcl-2. Moreover, AutoDock software was used to imitate the docking score of API and vitamin D receptor (VDR). In parallel, Western blotting and RT-PCR were used to investigate protein and mRNA expression of VDR.
MSCs stimulated with LPS 5 µg/ml for 24 hours was used as a model of apoptosis induced by over inflammatory stimulus. API (0 - 40 µmol/L) had non-toxic effect on MSCs; however, it could decrease mRNA expression of COX-2, iNOS and NF-κB at different time points in MSCs induced by LPS, except for API at the concentration of 5 µmol/L.
from phase-contrast microscopy, MTT, Hoechst staining and AnnexinV/PI double stain FCM demonstrated that with the increasing concentrations of API and extension of administrating time, significant morphological changes of MSCs occurred, viability of cells was strongly inhibited, and meanwhile, apoptosis of LPS-administrated MSCs was exacerbated, compared with LPS individual group. In addition, API promoted caspase-3, Bad mRNA expression and inhibited Bcl-2 mRNA expression in a time-dependent and concentration- dependent manner. Further study found that pro-apoptosis effect of API was related to suppress VDR expression.
API could inhibit the expression of inducible inflammatory factors, therefore exert the strong anti-inflammatory function. However, API could not protect MSC apoptosis induced by LPS but amplified the apoptosis. The apoptosis is related to Bad/Bcl-2 increasing and caspase-3 activation, which is mediated through suppressing VDR expression.
间充质干细胞(MSCs)的移植已被提出作为组织工程的一种很有前途的方法。然而,由于过度炎症等极其恶劣的微环境,MSCs 的移植应用将经历细胞凋亡。芹菜素(API)已被报道通过表现出抗炎和抗氧化能力来保护细胞免受炎症损伤和细胞死亡。在这里,我们研究了 API 在脂多糖(LPS)介导的 MSC 炎症和凋亡中的调节作用,并进一步定义了其潜在机制。
用不同浓度的 API(0、5、10、20、40 和 80 µmol/L)处理 MSC 24 小时,用 LPS(0、0.5 和 5.0 µg/ml)处理 6 小时和 24 小时,用 MTT 测定细胞活力。基于此,用不同浓度的 API(0-40 µmol/L)在指定时间(6、12 和 24 小时)预处理 MSC,然后用 5 µg/ml LPS 处理 24 小时。MTT、相差显微镜、 AnnexinV/PI 双染流式细胞术(FCM)和 Hoechst 染色用于研究 API 对 LPS(5 µg/ml)诱导的 MSC 24 小时的影响。此外,逆转录聚合酶链反应(RT-PCR)用于检测促炎因子包括环加氧酶-2(COX-2)、诱导型一氧化氮合酶(iNOS)、核因子-κB(NF-κB)、促凋亡基因 caspase-3、Bad 和抗凋亡基因 Bcl-2 的 mRNA 表达。此外,AutoDock 软件用于模拟 API 和维生素 D 受体(VDR)的对接评分。同时,Western blot 和 RT-PCR 用于研究 VDR 的蛋白和 mRNA 表达。
用 5 µg/ml LPS 刺激 24 小时的 MSC 被用作过炎症刺激诱导的细胞凋亡模型。API(0-40 µmol/L)对 MSC 无毒性作用;然而,它可以降低 LPS 诱导的 MSC 中 COX-2、iNOS 和 NF-κB 的 mRNA 表达,除了浓度为 5 µmol/L 的 API。
相差显微镜、MTT、Hoechst 染色和 AnnexinV/PI 双染 FCM 表明,随着 API 浓度的增加和给药时间的延长,MSC 的形态发生明显变化,细胞活力受到强烈抑制,同时,LPS 处理的 MSC 凋亡加剧,与 LPS 单独组相比。此外,API 以时间依赖性和浓度依赖性方式促进 caspase-3、Bad mRNA 表达,并抑制 Bcl-2 mRNA 表达。进一步的研究发现,API 的促凋亡作用与抑制 VDR 表达有关。
API 可以抑制诱导性炎症因子的表达,从而发挥强大的抗炎作用。然而,API 不能保护 LPS 诱导的 MSC 凋亡,反而放大了凋亡。凋亡与 Bad/Bcl-2 增加和 caspase-3 激活有关,这是通过抑制 VDR 表达介导的。