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首页> 外文期刊>Graefe's archive for clinical and experimental ophthalmology: Albrecht von Graefes Archiv fur klinische und experimentelle Opthalmologie >Anti-neovascular effect of chondrocyte-derived extracellular matrix on corneal alkaline burns in rabbits
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Anti-neovascular effect of chondrocyte-derived extracellular matrix on corneal alkaline burns in rabbits

机译:软骨细胞外基质对家兔角膜碱烧伤的抗血管作用

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摘要

Purpose: We investigated the effect of a chondrocyte-derived extracellular matrix (CDECM) on experimental corneal alkaline burns in rabbits. Methods: Corneal neovascularization (NV) was induced by applying an 8-mm filter paper soaked in 1 N NaOH to the right central corneas of rabbits for 1 minute. Ten days later, the rabbits were randomly divided into three groups: the alkaline burn group, the CDECM transplantation group, and the human amniotic membrane (HAM) transplantation group. The left eyes were used as controls. CDECM and HAM were transplanted onto the corneal surface to completely cover the resected area and were subsequently sutured. On the 10th day after transplantation, the structural changes of the cornea were analyzed histologically. We examined the effects of CDECM on clinical NV features and on the expression of corneal NV markers. Results: The alkaline burn produced significant NV and increased the corneal thickness. On day 10 after transplantation, the thickness, NV and opacity of the cornea were markedly decreased in the CDECM group (p<0.001). However, the HAM transplantation group did not exhibit improvements in these clinical parameters, and there were no significant differences relative to the burn group. In addition, the use of CDECM improved the healing of the cornea following the alkaline burn by disrupting the corneal epithelial proliferation and reducing the fibrotic changes of the stroma. The hallmarks of NV were significantly induced in the subepithelium by the alkaline burn, and these levels were also suppressed by CDECM. The CDECM suppressed corneal NV by inhibiting nuclear factor-kappa B (NF-κB) activation by blocking the PKC and Akt signaling pathways. Conclusions: CDECM transplantation was markedly effective in healing alkali-burned corneas by modulating the translocation of NF-κB to the nucleus, thereby representing a promising material for the noninvasive treatment of ocular surface disease.
机译:目的:我们研究了软骨细胞源性细胞外基质(CDECM)对家兔实验性角膜碱烧伤的影响。方法:通过将浸有1 N NaOH的8 mm滤纸在兔右中央角膜上施加1分钟,诱导角膜新生血管(NV)。十天后,将兔子随机分为三组:碱烧伤组,CDECM移植组和人羊膜(HAM)移植组。左眼用作对照。将CDECM和HAM移植到角膜表面以完全覆盖切除区域,然后进行缝合。移植后第10天,组织学分析角膜的结构变化。我们检查了CDECM对临床NV特征和角膜NV标志物表达的影响。结果:碱性烧伤产生明显的NV并增加了角膜厚度。移植后第10天,CDECM组的角膜厚度,NV和不透明性明显降低(p <0.001)。但是,HAM移植组在这些临床参数上并未表现出改善,并且相对于烧伤组没有显着差异。另外,CDECM的使用通过破坏角膜上皮增殖并减少基质的纤维化变化,改善了碱性烧伤后角膜的愈合。碱性灼伤显着诱导了上皮下皮细胞的NV标志,而CDECM也抑制了这些水平。 CDECM通过阻止PKC和Akt信号传导通路来抑制核因子-κB(NF-κB)活化,从而抑制了角膜NV。结论:CDECM移植通过调节NF-κB向核的移位而显着有效地治愈了碱烧伤的角膜,从而为无创治疗眼表疾病提供了有希望的材料。

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