Kuo Chien-Neng, Chen Ching-Hsein, Chen San-Ni, Huang Jou-Cheng, Lai Li-Ju, Lai Chien-Hsiung, Hung Chia-Hui, Lee Chien-Hsing, Chen Chung-Yi
Department of Ophthalmology, Chang Gung Memorial Hospital, No. 6, W. Sec., Jiapu Rd, Puzi City, Chiayi County, 61363, Taiwan.
Chang Gung University College of Medicine, No. 259, Wenhua 1st Rd., Guishan Township, Taoyuan County, 33302, Taiwan.
Int Ophthalmol. 2018 Apr;38(2):747-756. doi: 10.1007/s10792-017-0530-6. Epub 2017 Apr 9.
This study was to investigate the anti-angiogenic effect of hexahydrocurcumin (HHC) to evaluate gene (p-basic fibroblast growth factor (bFGF)-SAINT-18 & p-vascular endothelial growth factor (VEGF)-SAINT-18 complex)-induced corneal neovascularization (CorNV) in rats.
CorNV was induced in 24 eyes of 24 rats. Four groups (Group A: 0 μg, B: 0.01 μg, C: 0.1 μg, and D: 1 μg) of HHC were prepared and implanted into the rat subconjunctival substantia propria 1.5 mm from the limbus at temporal side. The 1 μg of p-bFGF-SAINT-18 & p-VEGF-SAINT-18 complex were prepared and implanted into the rat corneal stroma 1.5 mm from the limbus at the same side. Inhibition of CorNV was observed and quantified from day 1 to day 60. bFGF and VEGF protein expression were analyzed by biomicroscopic examination, western blot analysis, and immunohistochemistry.
Subconjunctival injection by 1 μg HHC successfully inhibited gene-induced CorNV in rats. bFGF and VEGF protein expression were reduced after 6 days. Meanwhile, the reduction of HLA-DR expression was detected.
Our study showed that the HHC might provide an important anti-angiogenesis factor to inhibit CorNV development at the corneal experimental angiogenesis model.
本研究旨在探讨六氢姜黄素(HHC)的抗血管生成作用,以评估基因(p-碱性成纤维细胞生长因子(bFGF)-SAINT-18与p-血管内皮生长因子(VEGF)-SAINT-18复合物)诱导的大鼠角膜新生血管形成(CorNV)。
对24只大鼠的24只眼睛诱导形成CorNV。制备四组HHC(A组:0μg、B组:0.01μg、C组:0.1μg、D组:1μg),并将其植入颞侧距角膜缘1.5mm的大鼠结膜下固有层。制备1μg的p-bFGF-SAINT-18与p-VEGF-SAINT-18复合物,并将其植入同一侧距角膜缘1.5mm的大鼠角膜基质中。从第1天至第60天观察并量化CorNV的抑制情况。通过生物显微镜检查、蛋白质印迹分析和免疫组织化学分析bFGF和VEGF蛋白表达。
1μg HHC结膜下注射成功抑制了大鼠基因诱导的CorNV。6天后bFGF和VEGF蛋白表达降低。同时,检测到HLA-DR表达降低。
我们的研究表明,在角膜实验性血管生成模型中,HHC可能提供一种重要的抗血管生成因子来抑制CorNV的发展。