首页> 外文期刊>Ophthalmic Research: Journal for Research in Experimental and Clinical Ophthalmology >Overexpression of thymosin beta-10 inhibits VEGF mRNA expression, autocrine VEGF protein production, and tube formation in hypoxia-induced monkey choroid-retinal endothelial cells.
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Overexpression of thymosin beta-10 inhibits VEGF mRNA expression, autocrine VEGF protein production, and tube formation in hypoxia-induced monkey choroid-retinal endothelial cells.

机译:胸腺素β-10的过表达抑制缺氧诱导的猴脉络膜-视网膜内皮细胞中VEGF mRNA的表达,自分泌VEGF蛋白的产生以及管的形成。

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PURPOSE: One purpose of this study was to examine if expression of the thymosin beta(10 )(TB10), thymosin beta(4) (TB4), and VEGF165 isoform genes would change in response to hypoxia in monkey choroidal retinal endothelial cells (RF/6A). We also sought to determine if overexpression of the TB10 gene could inhibit VEGF165 mRNA expression, autocrine VEGF production, and tube formation in hypoxic RF/6A cells. METHODS: An adenovirus vector, Ad-TB10, was constructed to deliver the human TB10 gene. Under hypoxic conditions, TB10, TB4, and VEGF165 mRNA were measured using real-time PCR, and VEGF protein expression was evaluated by ELISA. For tube formation assays, the RF/6A cells were transfected with Ad-TB10 and exposed to hypoxia for 4 h. RESULTS: VEGF165 mRNA was 2- and 5.8-fold increased when the RF/6A cells were exposed to hypoxia for 2 and 4 h, respectively. TB10 mRNA decreased at 2 h and increased to a baseline level at 4 h, while TB4 mRNA level increased slightly by 2 and 4 h. Increased VEGF165 mRNA was down-regulated by transfected Ad-TB10, and ELISA results showed that VEGF protein levels increased 2.4-fold after 4-hour hypoxia, and decreased 2-fold after transfection with Ad-TB10. Hypoxia also induced tube formation of the RF/6A cells. This was significantly reduced by Ad-TB10. CONCLUSION: These data indicate that (1) TB4 and TB10 mRNA expression in RF/6A cells present different changes under 2- and 4-hour hypoxia, and (2) TB10 may be an effective inhibitor of angiogenesis by inhibiting VEGF expression and autocrine protein production.
机译:目的:本研究的目的之一是检查猴脉络膜视网膜内皮细胞(RF)中的胸腺素β(10)(TB10),胸腺素β(4)(TB4)和VEGF165亚型基因的表达是否会因缺氧而改变/ 6A)。我们还试图确定TB10基因的过表达是否可以抑制低氧RF / 6A细胞中VEGF165 mRNA的表达,自分泌VEGF的产生以及管的形成。方法:构建腺病毒载体Ad-TB10,以传递人TB10基因。在低氧条件下,使用实时PCR测量TB10,TB4和VEGF165 mRNA,并通过ELISA评估VEGF蛋白的表达。对于试管形成测定,将RF / 6A细胞用Ad-TB10转染并暴露于缺氧4 h。结果:RF / 6A细胞缺氧2 h和4 h时VEGF165 mRNA分别增加2倍和5.8倍。 TB10 mRNA在2 h时降低并在4 h时升高至基线水平,而TB4 mRNA水平在2 h和4 h时略有增加。转染的Ad-TB10会下调VEGF165 mRNA的表达,而ELISA结果表明,缺氧4小时后VEGF蛋白水平增加了2.4倍,转染Ad-TB10后降低了2倍。缺氧也诱导RF / 6A细胞的管形成。 Ad-TB10大大减少了这种情况。结论:这些数据表明(1)RF / 6A细胞在缺氧2小时和4小时后TB4和TB10 mRNA表达存在不同的变化,(2)TB10可能通过抑制VEGF表达和自分泌蛋白而有效抑制血管生成生产。

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