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Local acting Sticky-trap inhibits vascular endothelial growth factor dependent pathological angiogenesis in the eye

机译:局部作用粘滞带抑制眼睛中依赖血管内皮生长因子的病理性血管生成

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摘要

Current therapeutic antiangiogenic biologics used for the treatment of pathological ocular angiogenesis could have serious side effects due to their interference with normal blood vessel physiology. Here, we report the generation of novel antivascular endothelial growth factor-A (VEGF) biologics, termed VEGF “Sticky-traps,” with unique properties that allow for local inhibition of angiogenesis without detectable systemic side effects. Using genetic and pharmacological approaches, we demonstrated that Sticky-traps could locally inhibit angiogenesis to at least the same extent as the original VEGF-trap that also gains whole-body access. Sticky-traps did not cause systemic effects, as shown by uncompromised wound healing and normal tracheal vessel density. Moreover, if injected intravitreally, recombinant Sticky-trap remained localized to various regions of the eye, such as the inner-limiting membrane and ciliary body, for prolonged time periods, without gaining access either to the photoreceptors/choriocapillaris area or the circulation. These unique pharmacological characteristics of Sticky-trap could allow for safe treatment of pathological angiogenesis in patients with diabetic retinopathy and retinopathy of pre-maturity.
机译:当前用于治疗病理性眼部血管新生的治疗性抗血管生成生物制剂由于其干扰正常血管生理而可能具有严重的副作用。在这里,我们报告了称为VEGF“粘着剂”的新型抗血管内皮生长因子A(VEGF)生物制剂的产生,其独特的特性可局部抑制血管生成而无可检测的系统性副作用。使用遗传学和药理学方法,我们证明了粘滞捕集器可以局部抑制血管生成,其程度至少与原始的VEGF捕集器相同,并且也可以进入全身。粘滞带不会引起全身性影响,如伤口愈合和气管血管密度正常所显示的那样。此外,如果进行玻璃体内注射,则重组粘滞带会长时间停留在眼睛的各个区域(例如内部限制膜和睫状体),而不会进入感光器/脉络膜毛细血管区域或循环。 Sticky-trap的这些独特药理特性可为糖尿病性视网膜病变和早熟性视网膜病变的患者提供安全的病理性血管生成治疗。

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