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首页> 外文期刊>Experimental Eye Research >Inhibition of corneal neovascularization with plasmid pigment epithelium-derived factor (p-PEDF) delivered by synthetic amphiphile INTeraction-18 (SAINT-18) vector in an experimental model of rat corneal angiogenesis.
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Inhibition of corneal neovascularization with plasmid pigment epithelium-derived factor (p-PEDF) delivered by synthetic amphiphile INTeraction-18 (SAINT-18) vector in an experimental model of rat corneal angiogenesis.

机译:在大鼠角膜血管新生实验模型中,通过合成两亲物INTeraction-18(SAINT-18)载体传递的质粒色素上皮衍生因子(p-PEDF)抑制角膜新血管形成。

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摘要

The use of Synthetic Amphiphile INTeraction-18 (SAINT-18) carrying plasmid pigment epithelium-derived factor (p-PEDF) as an anti-angiogenesis strategy to treat corneal neovascularization in a rat model was evaluated. Four partially dried forms (Group A: 0 microg, B: 0.1 microg, C: 1 microg, D: 10 microg) of a p-PEDF-SAINT-18 were prepared and implanted into the rat subconjunctival substantia propria 1.5 mm from the limbus at the temporal side. The 1 microg of plasmid-basic fibroblast growth factor--SAINT-18 (p-bFGF-SAINT-18) (1 microg) was prepared and implanted into the rat corneal stroma 1.5 mm from the limbus on the same side. Inhibition of neovascularization was observed and quantified from day 1 to day 60. PEDF (50-kDa) and bFGF (18-kDa) protein expression were analyzed by biomicroscopic examination, Western blot analysis, and immunohistochemistry. Gene expression in corneal and conjunctival tissue was observed as early as 3 days after gene transfer and stably lasted for over 3 months with minimal immune reaction. Subconjunctival injection of a highly efficient p-PEDF-SAINT-18 successfully inhibited corneal neovascularization. Successful gene expression of bFGF, PEDF and a mild immune response of HLA-DR were shown by immunohistochemistry staining. We concluded that SAINT-18 was capable of directly delivering genes to the ocular surface by way of subconjunctival injection, and delivered sustained, high levels of gene expression in vivo to inhibit angiogenesis.
机译:评估了携带质粒色素上皮衍生因子(p-PEDF)的合成两亲性INTeraction-18(SAINT-18)作为抗血管生成策略在大鼠模型中的治疗角膜新生血管的作用。制备了p-PEDF-SAINT-18的四种部分干燥的形式(A组:0微克,B:0.1微克,C:1微克,D:10微克),并将其植入距角膜缘1.5 mm的大鼠结膜下固有层中在颞侧。制备1微克质粒碱性成纤维细胞生长因子SAINT-18(p-bFGF-SAINT-18)(1微克),并将其植入距角膜缘同一侧1.5毫米的大鼠角膜基质中。从第1天到第60天观察到并抑制了新血管形成的抑制。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了PEDF(50-kDa)和bFGF(18-kDa)的蛋白表达。早在基因转移后3天就观察到了在角膜和结膜组织中的基因表达,并且稳定地持续了3个月以上,免疫反应很小。结膜下注射高效p-PEDF-SAINT-18可成功抑制角膜新生血管形成。免疫组织化学染色显示bFGF,PEDF的成功基因表达和HLA-DR的轻度免疫反应。我们得出的结论是SAINT-18能够通过结膜下注射将基因直接传递到眼表,并在体内传递持续的高水平基因表达以抑制血管生成。

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