Yoshino Hiroyuki, Morita Ikuo, Murota Sei-Itsu, Ishikawa Isao
Section of Cellular Physiological Chemistry and Section of Periodontology, Department of Hard Tissue Engineering, Graduate School, Tokyo Medical and Dental University, Bunkyo-ku, Tokyo, Japan.
J Periodontal Res. 2003 Aug;38(4):405-10. doi: 10.1034/j.1600-0765.2003.00660.x.
As periodontal tissues are constantly exposed to mechanical stress during mastication, the relationship between mechanical stimulation and biochemical phenomena has been extensively investigated.
The aim of the present study was to assess the change in the production of angiogenic regulators produced by human gingival fibroblasts (HGF) and periodontal ligament fibroblasts (HPLF), cultured on a flexible substrate, before and after application of cyclic tensile stretching.
Both cell types were stretched in a Flexercell Strain Unit to 7, 14 and 21% elongation, at a frequency of 12 cycles/min. Medium cultured with HGF or HPLF was examined by enzyme-linked immunosorbent assay (ELISA) for vascular endothelial growth factor (VEGF), Western blotting of pigment epithelium-derived factor (PEDF) and in vitro angiogenesis assay. The residual cells were analyzed by reverse transcription-polymerase chain reaction (RT-PCR) for both VEGF and PEDF mRNA expression.
Stretching increased the VEGF mRNA level and VEGF secretion in both HGF and HPLF. The concentration of VEGF in the conditioned medium of the stretched HPLF was almost the same as that of stretched HGF. In the in vitro angiogenesis assay, the conditioned medium of HPLF after stretching showed a dramatic increase in tube formation. In contrast, stretched HGF did not show enhanced tube formation, despite the increase in VEGF secretion by stretched HGF. The mRNA levels of PEDF, an inhibitor of angiogenesis, were higher in HGF than HPLF. The protein level of PEDF in HGF was also higher than that in HPLF.
These findings suggest that under mechanical stress HPLF promotes angiogenesis via expression of VEGF, whereas under the same conditions angiogenesis is not promoted in HGF, due to the expression of PEDF.
由于咀嚼过程中牙周组织不断受到机械应力作用,机械刺激与生化现象之间的关系已得到广泛研究。
本研究旨在评估在柔性基质上培养的人牙龈成纤维细胞(HGF)和牙周膜成纤维细胞(HPLF)在施加周期性拉伸之前和之后,血管生成调节因子产生量的变化。
将两种细胞类型在Flexercell应变单元中以12次循环/分钟的频率拉伸至伸长7%、14%和21%。通过酶联免疫吸附测定(ELISA)检测用HGF或HPLF培养的培养基中的血管内皮生长因子(VEGF),对色素上皮衍生因子(PEDF)进行蛋白质印迹分析,并进行体外血管生成测定。通过逆转录-聚合酶链反应(RT-PCR)分析剩余细胞中VEGF和PEDF mRNA的表达。
拉伸增加了HGF和HPLF中VEGF mRNA水平和VEGF分泌。拉伸后的HPLF条件培养基中VEGF的浓度与拉伸后的HGF几乎相同。在体外血管生成测定中,拉伸后的HPLF条件培养基显示出管形成的显著增加。相比之下,尽管拉伸后的HGF中VEGF分泌增加,但拉伸后的HGF并未显示出增强的管形成。血管生成抑制剂PEDF的mRNA水平在HGF中高于HPLF。HGF中PEDF的蛋白质水平也高于HPLF。
这些发现表明,在机械应力下,HPLF通过VEGF的表达促进血管生成,而在相同条件下,由于PEDF的表达,HGF中血管生成未得到促进。