Fu Jin-Rong, Liu Wen-Li, Zhou Jian-Feng, Sun Han-Ying, Xu Hui-Zhen, Luo Li, Zhang Heng, Zhou Yu-Feng
Department of Hematology, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430030, China.
Acta Pharmacol Sin. 2006 Jun;27(6):685-93. doi: 10.1111/j.1745-7254.2006.00335.x.
To investigate the effects of Sonic hedgehog (shh) protein on bone marrow- derived endothelial progenitor cells (BM-EPC) proliferation, migration and vascular endothelial growth factor (VEGF) production, and the potential signaling pathways involved in these effects.
Bone marrow-derived Flk-1(+) cells were enriched using the MACS system from adult Kunming mice and then BM-EPC was cultured in gelatin-coated culture dishes. The effects of shh N-terminal peptide on BM-EPC proliferation were evaluated using the MTT colorimetric assay. Cell migration was assayed using a modified Boyden chamber technique. The production of VEGF was determined by ELISA and immunofluorescence analysis. The potential involvement of PKC and PI3K signaling pathways was explored using selective inhibitor or Western blot.
The proliferation, migration and VEGF production in BM-EPC could be promoted by endogenous shh N-terminal peptide at concentrations of 0.1 microg/mL to 10 microg/mL, and could be inhibited by anti-shh antibodies. Shh-mediated proliferation and migration in BM-EPC could be partly attenuated by anti-VEGF. Phospho-PI3-kinase expression in newly separated BM-EPC was low, and it increased significantly when exogenous shh N-terminal peptide was added, but could be attenuated by anti-human/mouse shh N-terminal peptide antibody. Moreover, the inhibitor of the PI3-kinase, but not the inhibitor of the PKC, significantly inhibited the shh-mediated proliferation, migration and VEGF production.
Shh protein can stimulate bone marrow-derived BM-EPC proliferation, migration and VEGF production, which may promote neovascularization to ischemic tissues. This results also suggests that the PI3-kinase/Akt signaling pathways are involved in the angiogenic effects of shh.
研究音猬因子(shh)蛋白对骨髓来源的内皮祖细胞(BM-EPC)增殖、迁移及血管内皮生长因子(VEGF)分泌的影响,以及参与这些作用的潜在信号通路。
采用磁珠分选系统从成年昆明小鼠中富集骨髓来源的Flk-1(+)细胞,然后将BM-EPC接种于明胶包被的培养皿中培养。采用MTT比色法评估shh N端肽对BM-EPC增殖的影响。使用改良的Boyden小室技术检测细胞迁移。通过ELISA和免疫荧光分析测定VEGF的分泌。使用选择性抑制剂或蛋白质印迹法探讨PKC和PI3K信号通路的潜在参与情况。
浓度为0.1μg/mL至10μg/mL的内源性shh N端肽可促进BM-EPC的增殖、迁移及VEGF分泌,而抗shh抗体可抑制这些作用。抗VEGF可部分减弱shh介导的BM-EPC增殖和迁移。新分离的BM-EPC中磷酸化PI3激酶的表达较低,加入外源性shh N端肽后其表达显著增加,但抗人/小鼠shh N端肽抗体可减弱这种增加。此外,PI3激酶抑制剂而非PKC抑制剂可显著抑制shh介导的增殖、迁移及VEGF分泌。
Shh蛋白可刺激骨髓来源的BM-EPC增殖、迁移及VEGF分泌,这可能促进缺血组织的新生血管形成。该结果还提示PI3激酶/Akt信号通路参与了shh的血管生成作用。