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首页> 外文期刊>Cancer research: The official organ of the American Association for Cancer Research, Inc >Dual inhibition of the PI3K/mTOR pathway increases tumor radiosensitivity by normalizing tumor vasculature.
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Dual inhibition of the PI3K/mTOR pathway increases tumor radiosensitivity by normalizing tumor vasculature.

机译:PI3K / mTOR通路的双重抑制可通过使肿瘤脉管正常化来增加肿瘤的放射敏感性。

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The aberrant vascular architecture of solid tumors results in hypoxia that limits the efficacy of radiotherapy. Vascular normalization using antiangiogenic agents has been proposed as a means to improve radiation therapy by enhancing tumor oxygenation, but only short-lived effects for this strategy have been reported so far. Here, we show that NVP-BEZ235, a dual inhibitor of phosphoinositide-3-kinase (PI3K) and mTOR, can improve tumor oxygenation and vascular structure over a prolonged period that achieves the aim of effective vascular normalization. Because PI3K inhibition can radiosensitize tumor cells themselves, our experimental design explicitly distinguished effects on the blood vasculature versus tumor cells. Drug administration coincident with radiation enhanced the delay in tumor growth without changing tumor oxygenation, establishing that radiosensitization is a component of the response. However, the enhanced growth delay was substantially greater after induction of vascular normalization, meaning that this treatment enhanced the tumoral radioresponse. Importantly, changes in vascular morphology persisted throughout the entire course of the experiment. Our findings indicated that targeting the PI3K/mTOR pathway can modulate the tumor microenvironment to induce a prolonged normalization of blood vessels. The substantial therapeutic gain observed after combination of NVP-BEZ235 with irradiation has conceptual implications for cancer therapy and could be of broad translational importance.
机译:实体瘤的异常血管结构导致缺氧,限制了放疗的疗效。已经提出使用抗血管生成剂的血管正常化作为通过增强肿瘤氧合来改善放射疗法的手段,但是迄今为止,仅报道了该策略的短期作用。在这里,我们显示NVP-BEZ235,一种磷酸肌醇-3-激酶(PI3K)和mTOR的双重抑制剂,可以长期改善肿瘤的氧合作用和血管结构,从而实现有效的血管正常化的目的。因为PI3K抑制作用可以使肿瘤细胞自身放射增敏,所以我们的实验设计明确区分了对血管和肿瘤细胞的影响。与放射线同时给药的药物在不改变肿瘤氧合的情况下增加了肿瘤生长的延迟,从而确定了放射增敏是反应的组成部分。然而,诱导血管正常化后,增加的生长延迟明显更大,这意味着这种治疗增强了肿瘤的放射反应。重要的是,血管形态的变化在整个实验过程中持续存在。我们的研究结果表明,靶向PI3K / mTOR途径可以调节肿瘤微环境,以诱导血管的长期正常化。 NVP-BEZ235与放射线结合后观察到的实质性治疗获益对癌症治疗具有概念上的意义,并且可能具有广泛的翻译重要性。

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