›› 2018, Vol. 9 ›› Issue (3): 115-119.

• 论著 •    下一篇

组蛋白去甲基化酶Jmjd3对大鼠不同胚源BMSCs的衰老调控作用

徐娟1,林佳琳1,张平2,徐荣耀2,江宏兵1   

  1. 1. 南京医科大学附属口腔医院
    2. 江苏省南京医科大学附属口腔医院口腔颌面外科
  • 收稿日期:2018-08-03 修回日期:2018-09-03 出版日期:2018-09-25 发布日期:2018-09-29
  • 通讯作者: 江宏兵 E-mail:jhb@njmu.edu.cn
  • 基金资助:
    国家自然科学基金;江苏高校优势学科建设工程资助项目

Roles of Jmjd3 in Site-Specific Senescence of Bone Marrow Stromal Cells in rats

  • Received:2018-08-03 Revised:2018-09-03 Online:2018-09-25 Published:2018-09-29
  • Contact: hongbing jiang E-mail:jhb@njmu.edu.cn

摘要: 目的:针对不同胚源的大鼠骨髓间充质干细胞(BMSCs)表现出的衰老差异,探讨组蛋白去甲基化酶Jmjd3对衰老的调控作用。方法:取大鼠下颌骨(M)和胫骨(T)后提取BMSCs原代培养并进行传代,通过β-半乳糖苷酶(SA-β-gal)衰老染色检测细胞衰老特征,茜素红染色检测细胞成骨特征。通过实时定量RT-PCR,Western blot检测Jmjd3及衰老因子在两种BMSCs中的表达。构建shJmjd3病毒敲减Jmjd3,转染T-BMSCs检测衰老指标。在大鼠颌骨区域建立骨缺损模型,移植shJmjd3修饰的T-BMSCs,通过Micro-CT、Masson染色检测Jmjd3被抑制的T-BMSCs对骨缺损区的修复作用。结果:经SA-β-gal衰老染色,T-BMSCs中衰老细胞数量明显多于M-BMSCs。Jmjd3及衰老因子在M-BMSCs中低表达,在T-BMSCs中高表达。转染shJmjd3病毒导致T-BMSCs中Jmjd3及衰老因子低表达。移植敲减Jmjd3的T-BMSCs,Micro-CT显示其骨平均密度,骨体积分数明显升高,Masson染色显示其骨小梁结构增多。结论:不同胚源大鼠BMSCs的衰老特征具有差异性,将T-BMSCs中Jmjd3抑制以后,可以增强细胞的抗衰老能力,有利于体内的骨修复的治疗。

Abstract: [Abstract] Objective: To investigate the effects of histone demethylase Jumonji D3 (Jmjd3) on the senescence of rat BMSCs from different embryonic origins. Methods: BMSCs were extracted from mandibular (M) and tibia (T) of rats and cultured for the following experiments. The characteristics of cell senescence were detected byβ-gal staining, and osteogenic differentiation were detected by alizarin red staining. The expression of Jmjd3 and senescence related factors, P16 and P21, were detected in M and T group by qRT-PCR and Western Blot. Then, shJmjd3 Lentivirus was constructed and transfected into T-BMSCs to knock down Jmjd3 expression. A critical-sized bone defect model was established in the rat jaw region and shJmjd3-modified BMSCs were transplanted into the defect area. The bone healing region by BMSCs transplantation was detected by Micro-CT and Masson staining. Results: SA-β-gal staining revealed that the number of senescent cells in T-BMSCs was significantly higher than that of M-BMSCs, as well as the expression of Jmjd3 and senescence related factors. T-BMSCs transfected with shJmjd3 resulted in decreased SA-β-gal positive staining cells and declined expression of Jmjd3 and senescence factors. Compared with GFP T-BMSCs, rats transplanted with shJmjd3 T-BMSCs exhibited the increased mean bone density and bone volume fraction by Micro-CT, as well as elevated trabecular bone structure by Masson staining. Conclusions: M-BMSCs exhibited lower senescence characteristics than that of T-BMSCs, which have a higher Jmjd3 expression. Inhibition of Jmjd3 in BMSCs can enhance the anti-senescence ability of cells and promote bone repair in vivo.