Suppr超能文献

[(*)AG490可通过抑制Jak2-STAT3信号通路抑制骨髓间充质干细胞迁移、矿化及骨缺损愈合]

[(*)AG490 could suppress bone marrow mesenchymal stem cells migration, mineralization and bone defect healing via inhibiting Jak2-STAT3 pathway].

作者信息

Yu X, Wan Q L, Li Z, Li Z B

机构信息

The State Key Laboratory Breeding Base of Basic Science of Stomatology & Key Laboratory of Oral Biomedicine Ministry of Education, School of Stomatology, Wuhan University, Wuhan 430079, China.

Department of Oral and Maxillofacial Trauma and Plastic Surgery, School of Stomatology, Wuhan University, Wuhan 430079, China.

出版信息

Zhonghua Kou Qiang Yi Xue Za Zhi. 2018 May 9;53(5):293-300. doi: 10.3760/cma.j.issn.1002-0098.2018.05.002.

Abstract

To study the effect of Jak2-STAT3 pathway on cell proliferation, migration, mineralization and bone defect healing via simulating Jak2-STAT3 pathway inhibitor AG490 to bone marrow mesenchymal stem cells (BMSC) and bone defect mice models. The effect of AG490 on BMSC proliferation was measured by MTT (methyl thiazolyl tetrazolium) assay. Regulation of AG490 on BMSC migration was tested by scratch assay and transwell assay. The BMSC migration related gene, matrix metalloproteinase (MMP)-7, MMP-9 and CXC subfamily receptor 4 (CXCR4), regulated by AG490 was studied by real-time PCR. Western blotting was adopted to analyze the regulation of Jak2-STAT3 phosphorylation through the simulation of AG490. The alizarin red staining and alkaline phosphatase (ALP) activity assay were performed to measure the effect of AG490 on BMSC mineralization and osteogenic differentiation. Mice femur bone defect models were built to analyzed the effect of AG490 on bone remodeling. AG490 significantly suppressed the migration rate of BMSC at 1 d and 2 d in the experiment group [(12.42±7.50) %, (41.8±2.6)%] compared with the control group [(55.5±9.9)%, (86.9±8.7)%] in scratch assay (=0.000, =0.000), the number of migrated BMSC in the experiment group (22.8± 5.9) was significantly suppressed compared with the control group (58.3±6.6) in Transwell assay (=0.000). The expression of MMP-7, MMP-9 and CXCR4 were significantly downregulated in experiment group [(0.5± 0.1), (0.1±0.1) and (0.35±0.07)] compared with the control group [(1.1±0.1), (1.06±0.33), (1.08±0.13)] (= 0.0003, =0.000 and =0.000). Also, the phosphorylation of Jak2-STAT3 was downregulated by AG490 in western blotting. After BMSCs were osteogenic induced for 14 days, the formation of mineralized nodule and the ALP activity of BMSC is significantly suppressed in experiment group (8.0±2.1) compared with the control group (35.7 ± 1.8) (=0.0005). AG490 suppressed the bone defects healing,the expression level of phosphorylated Jak2 and phosphorylated STAT3, and the number of alkaline phosphatase positive cell at defect area in vivo is lower in experiment group than the control group. AG490 suppressed the relatively bone density at the defect area significantly (=0.0004) at 5(th) week after the surgery. AG490 could suppress proliferation, migration and mineralization to of BMSCs regulate bone defect healing via inhibiting Jak2-STAT3 pathway.

摘要

通过模拟Jak2-STAT3通路抑制剂AG490作用于骨髓间充质干细胞(BMSC)和骨缺损小鼠模型,研究Jak2-STAT3通路对细胞增殖、迁移、矿化及骨缺损愈合的影响。采用MTT(噻唑蓝)法检测AG490对BMSC增殖的影响。通过划痕实验和Transwell实验检测AG490对BMSC迁移的调控作用。采用实时PCR研究AG490对BMSC迁移相关基因基质金属蛋白酶(MMP)-7、MMP-9和CXC亚族受体4(CXCR4)的调控。采用蛋白质免疫印迹法分析模拟AG490对Jak2-STAT3磷酸化的调控。进行茜素红染色和碱性磷酸酶(ALP)活性检测,以测定AG490对BMSC矿化和成骨分化的影响。构建小鼠股骨骨缺损模型,分析AG490对骨重塑的影响。在划痕实验中,与对照组[(55.5±9.9)%,(86.9±8.7)%]相比,实验组在第1天和第2天AG490显著抑制了BMSC的迁移率[(12.42±7.50)%,(41.8±2.6)%](=0.000,=0.000);在Transwell实验中,实验组迁移的BMSC数量(22.8±5.9)与对照组(58.3±6.6)相比显著受到抑制(=0.000)。与对照组[(1.1±0.1),(1.06±0.33),(1.08±0.13)]相比,实验组中MMP-7、MMP-9和CXCR4的表达显著下调[(0.5±0.1),(0.1±0.1)和(0.35±0.07)](=0.0003,=0.000,=0.000)。此外,蛋白质免疫印迹法显示AG490下调了Jak2-STAT3的磷酸化。BMSCs成骨诱导14天后,与对照组(35.7±1.8)相比,实验组矿化结节的形成及BMSC的ALP活性显著受到抑制(8.0±2.1)(=0.0005)。AG490抑制了体内骨缺损的愈合,实验组缺损区域磷酸化Jak2和磷酸化STAT3的表达水平以及碱性磷酸酶阳性细胞数量均低于对照组。术后第5周,AG490显著抑制了缺损区域的相对骨密度(=0.0004)。AG490可通过抑制Jak2-STAT3通路抑制BMSCs的增殖、迁移和矿化,从而调节骨缺损愈合。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验