GUO Xu, PENG Jiang, WANG Yu, ZHANG Li, XUE Jing, GUO Quan-yi, ZHANG Xin-li, YUAN Mei, XU Wen-jing, WANG Ai-yuan, LU Shi-bi. Effect of adenovirus-mediated NELL1 on proliferation and differentiation of osteoblasts in mice[J]. ACADEMIC JOURNAL OF CHINESE PLA MEDICAL SCHOOL, 2012, 33(5): 509-511.
Citation: GUO Xu, PENG Jiang, WANG Yu, ZHANG Li, XUE Jing, GUO Quan-yi, ZHANG Xin-li, YUAN Mei, XU Wen-jing, WANG Ai-yuan, LU Shi-bi. Effect of adenovirus-mediated NELL1 on proliferation and differentiation of osteoblasts in mice[J]. ACADEMIC JOURNAL OF CHINESE PLA MEDICAL SCHOOL, 2012, 33(5): 509-511.

Effect of adenovirus-mediated NELL1 on proliferation and differentiation of osteoblasts in mice

  • Objective To study the effect of recombinant adenovirus-mediated NELL1 on proliferation and differentiation of osteoblasts(MC3T3E1) and expression of osteocalcin(OCN) and osteopontin(OPN) in mice. Methods Expression of recombinant adenovirus-transfected green fluorescence protein(GFP) and NELL1 was identified with immunofluorescence staining.MC3T3E1 transfected with adenovirus-mediated NELL1 were observed under fluorescent microscope and divided into control group,NELL1 group,and GFP group.Growth curve was plotted for MC3T3E1 with a CCK-8 kit.The number of calcium nodules was calculated with alizarin red staining.Expression of osteoblast master genes(OCN and OPN) was detected by real-time PCR. Results The immunofluorescence showed that the bone marrow matrix cells expressed both GFP and NELL1 72h after transfected with adenovirus-mediated NELL1.At the best multiplicity of infection(MOI)=200pfu/cell,the adenovirus-mediated NELL1 and GFP had no significant effect on the proliferation of MC3T3E1.The number of calcium nodules was significantly greater in NELL1 group than in control group and GFP group(7±2 vs 2±1 and 2±1,P<0.05).The expression levels of OCN and OPN were 3.7-fold and 5.1-fold higher in NELL1 group than in control group(P<0.05). Conclusion Adenovirus-mediated NELL1 can effectively promote the differentiation of osteoblasts with no significant toxicity to their proliferation.
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