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肿瘤坏死因子对视网膜新生血管形成小鼠模型中基质金属蛋白酶表达的调控

Regulation of matrix metalloproteinase expression by tumor necrosis factor in a murine model of retinal neovascularization.

作者信息

Majka Susan, McGuire Paul G, Das Arup

机构信息

Division of Ophthalmology, University of New Mexico School of Medicine, Albuquerque, New Mexico 87131, USA.

出版信息

Invest Ophthalmol Vis Sci. 2002 Jan;43(1):260-6.

Abstract

PURPOSE

Hypoxia and growth factors are postulated to be involved in the development of retinal neovascularization through the regulation of extracellular proteinase production. It has been shown that matrix metalloproteinases (MMPs) are elevated in the retina during the neovascularization process. However, the factors and mechanisms that regulate the expression of these enzymes are not well characterized. The present study examines the potential role of tumor necrosis factor (TNF)-alpha as a regulator of MMPs in the retinal neovascularization process.

METHODS

C57/Bl6 mice were treated with 75% oxygen (experimental) or room air (control) from postnatal days (P)7 through P12, followed by room air until P17. Retinas were collected at P13, P15, or P17 and total RNA analyzed for the relative level of TNFalpha, TNF receptor (p55), and TNFalpha-converting enzyme (TACE). Immunostaining was used to identify changes in TNF protein expression as well as to localize TNFalpha within specific retinal cell types. The role of TNFalpha in stimulating retinal microvascular endothelial cell (RMVEC) proteinase production was evaluated using isolated murine RMVECs grown in normoxic or hypoxic conditions. Message expression was analyzed by RT-PCR and protein expression by zymographic analysis.

RESULTS

TNFalpha mRNA was increased in the retinas of experimental animals on P13 and P15, during the early stages of retinal neovascularization. In addition to being expressed by Müller glial cells and the inner nuclear layer, additional expression was noted in the outer nuclear layer of experimental animals. No significant level of apoptosis was detected in the retina of experimental animals with retinal neovascularization. Isolated RMVECs did not significantly increase MMP production directly in response to a hypoxic stimulus, but required the presence of exogenous TNFalpha. TNFalpha increased the expression of MT1-MMP, MMP-3, and MMP-9 in these cells. The levels of TACE and p55, proteins important in mediating the response of cells to TNFalpha, were found to be increased by the angiogenic protein, vascular endothelial growth factor (VEGF), which was also elevated in the experimental retinas.

CONCLUSIONS

TNFalpha levels increase in experimental mouse retinas exposed to hypoxic stimuli. Increased production of MMPs by RMVECs does not occur directly in response to a hypoxic stimulus. These cells are responsive, however, to stimulation by TNFalpha, which enhances the production of specific members of the MMP family. VEGF also plays a role in this process through its regulation of TACE and p55 mRNA in the vascular endothelial cells. These findings support the hypothesis that these two growth factors have a role in the regulation of extracellular proteinase expression during retinal neovascularization.

摘要

目的

据推测,缺氧和生长因子通过调节细胞外蛋白酶的产生参与视网膜新生血管的形成。研究表明,在新生血管形成过程中视网膜中的基质金属蛋白酶(MMPs)水平升高。然而,调节这些酶表达的因素和机制尚未完全明确。本研究探讨肿瘤坏死因子(TNF)-α作为MMPs调节因子在视网膜新生血管形成过程中的潜在作用。

方法

C57/Bl6小鼠从出生后第7天(P7)至第12天接受75%氧气(实验组)或室内空气(对照组)处理,之后置于室内空气环境直至P17。在P13、P15或P17收集视网膜,分析总RNA中TNFα、TNF受体(p55)和TNFα转换酶(TACE)的相对水平。采用免疫染色鉴定TNF蛋白表达的变化,并将TNFα定位到特定的视网膜细胞类型中。使用在常氧或低氧条件下培养的分离小鼠视网膜微血管内皮细胞(RMVEC)评估TNFα在刺激视网膜微血管内皮细胞蛋白酶产生中的作用。通过逆转录聚合酶链反应(RT-PCR)分析信使表达,通过酶谱分析分析蛋白表达。

结果

在视网膜新生血管形成的早期阶段即P13和P15,实验组动物视网膜中的TNFα mRNA增加。除了由Müller神经胶质细胞和内核层表达外,在实验组动物的外核层也观察到额外表达。在有视网膜新生血管形成的实验组动物视网膜中未检测到明显的凋亡水平。分离的RMVECs对低氧刺激没有直接显著增加MMP的产生,但需要外源性TNFα的存在。TNFα增加了这些细胞中MT1-MMP、MMP-3和MMP-9 的表达。血管生成蛋白血管内皮生长因子(VEGF)可增加TACE和p55的水平,这两种蛋白在介导细胞对TNFα的反应中起重要作用,而VEGF在实验组视网膜中也升高。

结论

暴露于低氧刺激的实验小鼠视网膜中TNFα水平升高。RMVECs中MMPs产生的增加不是对低氧刺激的直接反应。然而,这些细胞对TNFα刺激有反应,TNFα可增强MMP家族特定成员的产生。VEGF通过调节血管内皮细胞中的TACE和p55 mRNA也在这一过程中发挥作用。这些发现支持了这两种生长因子在视网膜新生血管形成过程中调节细胞外蛋白酶表达的假说。

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